WO2015088247A1 - Residue moving device and content accommodating container having same - Google Patents

Residue moving device and content accommodating container having same Download PDF

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Publication number
WO2015088247A1
WO2015088247A1 PCT/KR2014/012149 KR2014012149W WO2015088247A1 WO 2015088247 A1 WO2015088247 A1 WO 2015088247A1 KR 2014012149 W KR2014012149 W KR 2014012149W WO 2015088247 A1 WO2015088247 A1 WO 2015088247A1
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WO
WIPO (PCT)
Prior art keywords
negative pressure
container
contents
moving
residue
Prior art date
Application number
PCT/KR2014/012149
Other languages
French (fr)
Korean (ko)
Inventor
박현수
Original Assignee
바쉔 주식회사
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from KR1020140059268A external-priority patent/KR101658345B1/en
Priority claimed from KR1020140081342A external-priority patent/KR20150068275A/en
Application filed by 바쉔 주식회사 filed Critical 바쉔 주식회사
Publication of WO2015088247A1 publication Critical patent/WO2015088247A1/en

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B11/00Single-unit hand-held apparatus in which flow of contents is produced by the muscular force of the operator at the moment of use
    • B05B11/01Single-unit hand-held apparatus in which flow of contents is produced by the muscular force of the operator at the moment of use characterised by the means producing the flow
    • B05B11/02Membranes or pistons acting on the contents inside the container, e.g. follower pistons
    • B05B11/028Pistons separating the content remaining in the container from the atmospheric air to compensate underpressure inside the container
    • B05B11/029Pistons separating the content remaining in the container from the atmospheric air to compensate underpressure inside the container located on top of the remaining content

Definitions

  • the present invention relates to a residue moving device and a content accommodating container having the same, and more particularly, to scrape the residues of the contents on the inner wall of the container in a direction in which the contents are stored to prevent waste or loss of the contents.
  • a residue moving device and a contents receiving container having the same.
  • the liquid fluid contained in the container is discharged to the outside through the discharge hole provided in the container.
  • the fluid since the fluid has a viscosity in the structure that is directly discharged in the container, there is a problem that waste or loss is caused by a considerable amount remaining on the inner wall of the container.
  • Japanese Patent Application Laid-Open No. 05-051076 name of the invention: a pressure vessel
  • a pressure vessel is filled with gas so as not to come into contact with the contents inside the container to prevent unnecessary chemical changes or deterioration due to the contact between the gas and the contents.
  • Korean Patent Registration No. 10-1185606 name of the invention: a fluid discharge device and a container member having the same
  • Korean Patent Registration No. 10-1185606 name of the invention: a fluid discharge device and a container member having the same
  • Korean Patent Registration No. 10-1185606 has been proposed a technology that allows the fluid in the liquid state uniformly discharged.
  • the fluid since the fluid has a viscosity in the structure that is directly discharged in the container, there is a problem that waste or loss is caused by a considerable amount remaining on the inner wall of the container.
  • the present invention has been made to solve the above problems, the moving part including the negative pressure moving unit and the negative pressure air is moved in the direction of decreasing the contents in the container and the contents are stored in the residue of the contents on the inner wall of the container It is an object of the present invention to provide a residue moving device and a contents receiving container having the same, which are intended to prevent waste or loss of contents by scraping in a direction to guide the discharge of the contents as much as possible.
  • the present invention forms an air chamber sealed by the contents on the upper side or the lower side of the moving part facing the contents to discharge the contents and as the negative pressure is generated upon reduction, the moving portion naturally moves in the direction in which the contents are reduced, so as to move the negative pressure of the moving portion. It is an object of the present invention to provide a residue moving device and a content receiving container having the same, which allows to scrape the residue of the container wall as possible through.
  • the present invention is intended to prevent the viscous liquid content from remaining on the inner wall of the container. It is an object of the present invention to provide a residue moving device for reducing waste of resources by inducing the exhausted residual contents in the container and a content accommodating container having the same.
  • An object of the present invention is to provide a residue moving device for preventing the contents from flowing out when the container is tilted or shaken, and a contents receiving container having the same.
  • the present invention allows the liquid contents to be sucked through the suction straw in the case of the liquid contents, such as drinking water, and a residue moving device for allowing the liquid contents to come out only through the straw without flowing out even when the container is tilted, and the contents accommodating therewith
  • the purpose is to provide a container.
  • An object of the present invention is to provide a residue moving device for fixing the upper surface of the liquid contents, to maintain the state without tilting during movement or rotation, and to be applied to the device configuration to be used, and a content receiving container having the same. .
  • a residue moving device includes: a residue moving device having a discharge part formed at one side thereof and used for a container in which fluid contents are accommodated, the moving part; And as the amount of the contents decreases, an air cavity in which at least a portion of the open space opened in the direction of reducing contents is closed to guide the moving portion by negative pressure in the direction of decreasing contents. It includes a negative pressure air for.
  • At least a portion of the contents side portion of the moving part is partitioned to form an open space toward the contents side to form the negative pressure air portion, and the contents are discharged through the discharge portion by forming the air chamber in at least a portion of the open space.
  • a negative pressure is generated inside the negative pressure air part, so that the negative pressure moving part including the negative pressure air part moves in the direction in which the surface of the contents moves.
  • the negative pressure air portion may be configured to include a side wall extending a portion of the moving portion to the upper side or the lower side.
  • the negative pressure air part may be provided separately from the main body air part of the container through which air is introduced from the outside.
  • the moving part forms a scraper at the edge or the edge of scraping the residue on the inner surface of the container during movement, and the scraper is moved along the inner surface of the container and scrapes the residue. Simple side contact.
  • the moving part may be provided at any one of an upper side, a circumferential surface, and a lower side of the negative pressure moving unit so that the scraper may scrape residues attached to the lower end of the inner side of the container.
  • the discharge portion is located in a direction opposite to the direction of movement of the surface of the contents stored in the container, and further comprises a discharge tube passage portion for contacting the discharge tube to the contents in order to discharge the contents, the discharge tube passage portion to the partition wall
  • the discharge tube may be partitioned so as not to communicate with the negative pressure air portion, and the discharge tube may be inserted without being air tight in the discharge tube passage.
  • the discharge part may be provided under the container in a direction in which the surface of the contents moves, and the negative pressure air part may move in a discharge direction of the contents.
  • the edge or the edge of the moving part may not flow out.
  • the negative pressure air unit may protrude an air enclosing wall in the direction of the contents stored in the container with respect to the moving unit in order to expand the air storage space or increase the adhesion with the contents.
  • the negative pressure air part includes a convex part that is convex in a direction opposite to the contents direction along the air enclosure wall with respect to the moving part to expand the air storage space.
  • the moving part may be formed with a through hole through which the discharge tube passes, and a contact portion may be formed around the through hole so as to maintain contact with the discharge tube.
  • the close contact portion may be formed in the moving part and may be formed by fitting a separate component.
  • the scraper may have a structure in which the end is elastic so as to be in contact with the inner wall of the container to maintain adhesion.
  • the negative pressure moving unit may be formed by fitting a separate component to the moving unit.
  • the container includes a lid to prevent the contents from flowing out.
  • It may include a fixed portion for connecting the negative pressure air portion to the moving part, the portion other than the negative pressure air portion and the negative pressure moving portion may be formed to be closed or open.
  • the negative pressure air part may be configured in plural, and one negative pressure air part may be connected to another negative pressure air part, or may be connected to another negative pressure air part through the fixing part.
  • the negative pressure air portion may be partitioned by a partition wall.
  • the moving part may include a finishing member along an edge, and the finishing member may contact the inner side surface of the container to form an uneven protrusion to scrape off residues on the inner side surface of the container.
  • the movable portion extends a rib at an edge or an edge, and the rib may form the scraper to scrape off residues on the inner surface of the container when the movable portion moves.
  • the scraper may be made of a singular or plural.
  • the air enclosing wall may include an elongate movable member.
  • the moving unit may be guided by the guide unit to move the position along the inner surface of the container.
  • the content container having a residue moving device a container having a discharge portion is formed on one side, the fluid content is accommodated, as the amount of the content is reduced, by the negative pressure (negative pressure)
  • the residue moving device includes a negative pressure moving part configured to form an air cavity for guiding the moving part by the negative pressure as the amount of the contents decreases below the moving part. It further includes.
  • a discharge tube for guiding discharge of the contents to the discharge unit, and the residue moving device may be provided to be movable along the discharge tube.
  • the negative pressure air portion may be configured to include a side wall extending a portion of the moving portion to the upper side or the lower side.
  • the negative pressure air part may be provided separately from the main body air part of the container through which air is introduced from the outside.
  • the moving part forms a scraper at the edge or the edge of scraping the residue on the inner surface of the container during movement, and the scraper is moved along the inner surface of the container and scrapes the residue. Simple side contact.
  • the discharge portion is located in a direction opposite to the direction in which the surface of the contents stored in the container is moved, further comprising a discharge pipe passage portion for contacting the discharge tube to the contents to discharge the contents, the discharge tube passage portion partition wall
  • the discharge pipe may be inserted into the discharge pipe passage part without being airtight without being communicated with the negative pressure air part provided in the negative pressure moving part.
  • the discharge part may be provided under the container in a direction in which the surface of the contents moves, and the negative pressure air part may move in a discharge direction of the contents.
  • the edge or the edge of the moving part may not flow out.
  • the negative pressure air unit may protrude an air enclosing wall in the direction of the contents stored in the container with respect to the moving unit in order to expand the air storage space or increase the adhesion with the contents.
  • It may include a fixed portion for connecting the negative pressure air portion to the moving part, the portion other than the negative pressure air portion and the negative pressure moving portion may be formed to be closed or open.
  • the negative pressure air part may be configured in plural, and one negative pressure air part may be connected to another negative pressure air part, or may be connected to another negative pressure air part through the fixing part.
  • the negative pressure air portion may be partitioned by a partition wall.
  • the movable portion extends a rib at an edge or an edge, and the rib may form the scraper to scrape off residues on the inner surface of the container when the movable portion moves.
  • the residue moving device As described above, the residue moving device according to the present invention and the contents receiving container having the same, unlike the prior art, a moving part including a negative pressure moving part and a negative pressure air part is moved in a direction in which the contents decrease in the container and inside the container. By scraping the residues of the contents on the wall in the direction in which the contents are stored, the contents are discharged as much as possible to prevent waste or loss of the contents.
  • the present invention forms an air chamber sealed by the contents on the upper side or the lower side of the moving part facing the contents to discharge the contents and as the negative pressure is generated upon reduction, the moving portion naturally moves in the direction in which the contents are reduced, so as to move the negative pressure of the moving portion. It is possible to scrape away the residue on the container wall as much as possible.
  • the discharge tube is not closely contacted with the discharge tube passage part, and is separated from the moving part to be freely movable, thereby simplifying the construction and reducing the manufacturing cost.
  • the negative pressure air part is made of a negative pressure air chamber which is naturally sealed by the contents, a separate airtight facility is unnecessary.
  • the present invention is intended to prevent the viscous liquid content from remaining on the inner wall of the container. This can lead to exhaust of the remaining contents in the container, thereby reducing waste of resources.
  • the present invention can prevent the contents from flowing out when the container around the moving portion in contact with the inner surface of the container is tilted or shaken.
  • the present invention allows the liquid contents to be sucked through the suction straw in the case of liquid contents such as drinking water, and even when the container is tilted, the liquid contents can be discharged only through the straw without flowing out.
  • the present invention is fixed to the upper surface of the liquid content, can be applied to the device configuration to use while maintaining the state without tilting during movement or rotation.
  • the present invention can reduce the environmental waste by configuring the residue transfer device can be applied to another container again.
  • FIG. 1 is a perspective view of a content accommodating container having a residue moving device according to a first embodiment of the present invention.
  • FIG. 2 is an exploded perspective view of the contents container having a residue moving device according to the first embodiment of the present invention.
  • FIG 3 is a longitudinal cross-sectional view of the contents container having a residue moving device according to the first embodiment of the present invention.
  • FIG. 4 is a perspective view of a residue moving device according to a first embodiment of the present invention.
  • FIG. 5 is a bottom perspective view of the residue moving device according to the first embodiment of the present invention.
  • FIG. 6 is a perspective view of a residue moving device according to a second embodiment of the present invention.
  • FIG. 7 is a bottom perspective view of the residue moving device according to the second embodiment of the present invention.
  • Fig. 8 is a longitudinal sectional view of a content accommodating container having a residue moving device according to a second embodiment of the present invention.
  • FIG. 9 is a perspective view of a residue moving device according to a third embodiment of the present invention.
  • FIG. 10 is a bottom perspective view of the residue moving device according to the third embodiment of the present invention.
  • 11 and 12 are longitudinal cross-sectional view of the container containing the contents showing the state in which the residue moving device scrapes the residue to move according to the third embodiment of the present invention.
  • Fig. 13 is a perspective view of a contents container having a residue moving device according to a fourth embodiment of the present invention.
  • Fig. 14 is an exploded perspective view of a contents container having a residue moving device according to a fourth embodiment of the present invention.
  • Fig. 15 is a cross sectional view of a content accommodating container having a residue moving device according to a fourth embodiment of the present invention.
  • 16 to 18 are cross-sectional views showing an operating state of the residue moving device according to the fourth embodiment of the present invention.
  • FIG. 19 is an exploded view of a content accommodating container equipped with a residue moving device according to a fifth embodiment of the present invention.
  • FIG. 20 is a cross-sectional view of the combined state of the container containing the contents of the residue transfer device according to the fifth embodiment of the present invention.
  • 21 is a cross-sectional view of the contents receiving container attached to the residue moving device according to the sixth embodiment of the present invention.
  • FIG. 22 is a state diagram of use of the residue moving device according to the sixth embodiment of the present invention.
  • Figure 23 is a perspective view of the container containing the contents of the residue transfer device according to a seventh embodiment of the present invention.
  • FIG 24 is a cross-sectional view of the combined state of the container containing the contents of the residue transfer device according to the seventh embodiment of the present invention.
  • 25 is an exploded perspective view of a contents container having a residue moving device according to a seventh embodiment of the present invention.
  • 26 is a perspective view of a residue moving device according to a seventh embodiment of the present invention.
  • FIG. 27 is a bottom perspective view of the residue moving device according to the seventh embodiment of the present invention.
  • FIG. 1 is a perspective view of a content container having a residue moving device according to a first embodiment of the present invention
  • FIG. 2 is an exploded view of a content container having a residue moving device according to a first embodiment of the present invention. Perspective view.
  • FIG. 3 is a longitudinal cross-sectional view of the contents container having a residue moving device according to the first embodiment of the present invention
  • FIG. 4 is a perspective view of the residue moving device according to the first embodiment of the present invention
  • the contents accommodating container 10 stores contents 2 having fluidity therein.
  • the contents 2 have fluidity such as liquid or powder.
  • the container 10 forms a discharge part 12 on one side to discharge the stored contents 2.
  • the discharge part 12 is an open side of the container 10, and is formed to be open to the upper side of the container 10 for convenience.
  • the container 10 may be provided to open and close the cover 14 to facilitate storage or refilling of the contents 2.
  • the cover 14 is detachably coupled to the container 10 in various ways such as by screwing.
  • the discharge portion 12 is formed in the cover (14).
  • the container 10 and the cover 14 is made of various shapes and various materials.
  • a discharge pipe 20 is inserted into the discharge part 12.
  • the discharge tube 20 serves to guide discharge of the contents 2 stored in the container 10.
  • the discharge tube 20 is forcibly fitted into the discharge portion 12 while the lower side is in contact with the contents 2 and fixed.
  • the discharge portion 12 is formed below the container 10 in which the contents 2 are stored, the discharge portion 20 is naturally discharged through the discharge portion 12 in which the contents 2 are opened. Will not. At this time, the discharge portion 12 is opened and closed to control the flow of the contents (2).
  • the position at which the discharge portion 12 is formed in the container 10 is not limited. That is, the contents 2 may be discharged to the upper side of the container 10, or may be discharged to the lower side.
  • the diameter, number, size, material, and the like of the discharge tube 20 are not limited.
  • the contents 2 of the container 10 are discharged to the outside through the discharge pipe 20 by the external force.
  • the dispenser device 30 is provided above the discharge tube 20. As the dispenser device 30 is forcedly pumped, the contents 2 stored in the container 10 flow along the discharge tube 20 by a predetermined amount and are discharged after passing through the dispenser device 30. At this time, the dispenser device 30 is conventional, and detailed drawings of the operation are omitted. As the dispenser device 30 is pumped on the upper side of the discharge tube 20, the discharge tube 20 is firmly supported by the discharge unit 12.
  • the contents 2 stored in the container 10 are discharged through the discharge pipe 20, but the container 10 is left with a lot of residues of the contents 2 on the inner surface. That is, the contents 2 stored in the container 10 are discarded without a considerable amount being discharged.
  • the container 10 has a residue moving device 100 therein.
  • the residue moving device 100 is provided to be movable along the discharge tube 20 and moves in the direction of the content 2 which is reduced by the negative pressure when discharging the content 2.
  • the residue moving device 100 is moved along the direction in which the contents 2 are reduced due to the discharge and collects the residues on the inner surface of the container 10 to collect the contents 2 stored in the container 10. do.
  • the container 10 is a negative pressure is generated as much as the contents 2 are discharged through the discharge pipe 20 in a state where the contents 2 and the air is equalized.
  • the residue mover 100 moves in the direction of the reduced content 2.
  • the residue mover 100 includes a mover 110.
  • the moving unit 110 is located above the contents 2 in the container 10. In particular, when the contents 2 are located below the air in the container 10, the moving part 110 presses the contents 2 with a load, thereby scraping the residue and storing the contents 2 in the container 10. You can also make it a lot easier to collect.
  • the moving unit 110 is not coupled to the discharge tube 20 by interference fitting, and the discharge tube 20 is not bound to the moving unit 110 so that the discharge tube 20 can move freely in the discharge tube passage 116. Is formed.
  • the discharge pipe passage portion 116 is located inside the planar moving portion 110.
  • the discharge tube passage part 116 is a hole.
  • the discharge pipe passing portion 116 may be spaced apart by a predetermined interval along the circle trajectory with respect to the center of the moving unit 110.
  • the discharge tube 20 is inserted in the discharge tube passage portion 116 so as not to be air tight. That is, the diameter of the discharge tube 20 is formed smaller than the diameter of the discharge tube passage portion 116, so that the air can move or circulate along the discharge tube passage portion 116 in the state where the discharge tube 20 is inserted. It becomes possible.
  • the moving unit 110 is shaken a lot by the contents (2) during the discharge.
  • the discharge tube passage portion 116 can insert a bushing (117).
  • the discharge pipe 20 is axially inserted into the bushing 117.
  • the moving part 110 is discharged so that the inside of the discharge pipe passage part 116 which is the main body air part 11 separated from the contents 2 by the moving part 110 is isolated from the negative pressure air part 130.
  • the partition wall 118 extends upwardly or downwardly along an edge of the tube passing part 116.
  • the partition wall 118 increases the contact area with the discharge pipe 20, so that the moved or stopped moving part 110 is more stably supported.
  • the partition wall 118 is not limited in length, it can be manufactured integrally with the moving part (110).
  • the bushing 117 is fitted over the discharge pipe passage part 116 and the partition 118.
  • the moving unit 110 also includes a state that is not completely blocked. That is, the moving unit 110 may be formed by connecting the negative pressure air unit 130 and the negative pressure moving unit 120, and parts other than the negative pressure air unit 130 and the negative pressure moving unit 120 are closed or open. .
  • At least a portion of one side of the moving part 110 facing the contents 2 stored in the container 10 forms an open space 112 that is open in the contents 2 direction. At least a portion of the open space 112 forms a sealed air cavity 114. That is, in the state in which the moving part 110 is in contact with or floating in the contents 2, the contents 2 are introduced into a part of the open space 112. For this reason, in the open space 112, the air chamber 114 in which air remains sealed is formed.
  • the moving unit 110 moves in the direction of the contents 2 which is reduced by the negative pressure acting on the air chamber 114 formed in at least a portion of the open space 112. At this time, the moving unit 110 is moved upward or downward in the interior of the container 10 along the direction of reduction of the contents (2). For convenience, the contents 2 are discharged to the upper side of the container 10 while being stored in the lower side of the inside of the container 10. Thus, the moving unit 110 moves downward in the container 10.
  • the residue moving device 100 further includes a negative pressure moving part 120 and a negative pressure air part 130.
  • the negative pressure moving part 120 and the negative pressure air part 130 are formed in the moving part 110.
  • the negative pressure air unit 130 is formed at the central portion of the moving unit 110, the negative pressure moving unit 120 is formed at the edge of the moving unit 110.
  • the open space 112 and the air chamber 114 are included in the negative pressure air 130.
  • the negative pressure air unit 130 includes an air enclosure wall 134.
  • the air enclosure wall 134 protrudes from the moving part 110 in the direction of the contents 2 stored in the container 10. At this time, the air envelope wall 134 is formed continuously in the circumferential direction.
  • the air enclosing wall 134 serves to confine air to one side of the moving part 110 facing the contents 2 and to remain.
  • the air enclosure wall 134 serves to expand the air storage space in the open space 112.
  • the partition wall 118 is located inside the air enclosure wall 134, and is made of the same height or different height as the air enclosure wall 134.
  • the height of the partition wall 118 is shown to be equal to the height of the air enclosure wall 134.
  • the negative pressure air portion 130 includes a convex portion 136.
  • the convex portion 136 protrudes from the moving part 110 in a direction opposite to the direction of the contents 2 stored in the container 10.
  • the open space 112 is expanded.
  • the convex portion 136 serves to further expand the air storage space in the open space 112.
  • the convex portion 136 is shown to be formed in the moving portion 110 along the edge trajectory of the air enclosure wall 134.
  • the convex portion 136 may be formed in various shapes and various sizes.
  • the convex portion 136 is formed at the center portion of the moving part 110, and is formed continuously or discontinuously along the circle trajectory around the discharge tube passage 116.
  • the convex portions 136 may be spaced apart at regular intervals along the circular trajectory or symmetrically disposed at the moving portion 110. This is to allow a uniform negative pressure to be generated in the moving unit 110.
  • the partition wall 118 may be formed to be as long as the height of the open space 112 is increased due to the convex portion 136. Thus, by increasing the contact area between the discharge tube 20 and the moving unit 110, the supporting force of the moving unit 110 with respect to the discharge tube 20 is further improved.
  • the air chamber 114 may be formed by being recessed in the moving unit 110.
  • the negative pressure moving unit 120 moves with the negative pressure air 130.
  • the negative pressure moving part 120 is an edge of the moving part 110, and when the moving part 110 moves, the negative pressure moving part 120 scrapes the residue on the inner surface of the container 10 in the direction of the contents 2 stored in the container 10. do.
  • the negative pressure moving unit 120 simply contacts the inner surface of the container 10 to scrape off residues on the inner surface of the container 10, and minimizes the resistance during transfer by reducing the contact area with the inner surface of the container 10.
  • a sharp scraper 122 is formed at the edge of the negative pressure moving part 120.
  • the scraper 122 is moved simply in contact with the inner surface of the container 10 and scratches the residue.
  • the scraper 122 is continuously formed along the trajectory of the inner surface of the container 10.
  • the scraper 122 may be formed in various ways.
  • the scraper 122 may extend to contact the inner surface of the container 10 at the edge of the moving part 110.
  • the discharge pipe passing part 116 is divided into the partition wall 118 so as not to communicate with the negative pressure air part 130 provided in the negative pressure moving part 120.
  • the air chamber 114 is closed for the negative pressure action.
  • FIG. 6 is a perspective view of a residue moving device according to a second embodiment of the present invention
  • FIG. 7 is a bottom perspective view of a residue moving device according to a second embodiment of the present invention
  • FIG. 8 is a second embodiment of the present invention. It is a longitudinal cross-sectional view of the content accommodating container provided with the residue moving apparatus which concerns on the example.
  • the contents container 10 includes a residue moving device 100 which is moved in a direction in which the contents 2 stored therein are reduced.
  • the residue mover 100 includes a mover 110.
  • the moving part 110 is partitioned so that at least a portion of one side of the container 10 facing in the direction of the reduced content 2 forms an open space 112 in the direction of the reduced content 2.
  • At least a portion of the open space 112 forms a sealed air chamber 114. That is, in the state in which the moving part 110 is in contact with or floating in the contents 2, the contents 2 are introduced into a part of the open space 112. As a result, the air chamber 114 in which air remains while the open space 112 is sealed by the air enclosure wall 134 and the surface of the contents 2 is formed.
  • the moving part 110 When discharging the contents 2, the amount of the contents 2 decreases, and the moving part 110 is reduced by the negative pressure acting on the sealed air chamber 114 formed in at least a part of the open space 112. It moves in the (2) direction. At this time, the moving unit 110 is moved upward or downward in the interior of the container 10 along the direction of reduction of the contents (2).
  • the residue moving device 100 further includes a negative pressure moving part 120 and a negative pressure air part 130.
  • the negative pressure air 130 includes an air enclosure wall 134, a convex portion 136, a side wall 132, and a partition wall 138.
  • the air envelope 134 and the convex portion 136 are replaced with those described above.
  • the open space 112 is also formed at a portion corresponding to the convex portion 136 of the moving portion 110, and is also formed at a portion corresponding to the negative pressure moving portion 120. This is to increase the air chamber 114 to further increase the negative pressure.
  • the side wall 132 protrudes from the moving part 110 to partition the open space 112 formed in the convex portion 136 and the open space 112 formed in the negative pressure moving part 120. 110 can be stably moved in the direction of reducing the content (2) without shaking.
  • the partition wall 138 is formed to partition at least one of the open space 112 formed in the convex portion 136 and the open space 112 formed in the negative pressure moving part 120.
  • the partition wall 138 is shown as partitioning the open space 112 formed in the negative pressure moving part 120.
  • the partition wall 138 may equalize or close the air density of each of the divided open spaces 112, so that the negative pressure may act evenly over the entire negative pressure air 130 of the moving part 110.
  • the number of partition walls 138 is not limited.
  • the moving part 110 is provided with a finishing member 150 along the rim, the finishing member 150 forms the uneven protrusions 152 along the rim toward the inner surface of the container (10).
  • Finishing member 150 is applicable to a variety of materials, such as rubber or resin that can be elastically stretched to be mounted on the edge of the moving part (110).
  • the uneven protrusions 152 are simply contacted with the inner surface of the container 10 so as not to be airtight with the inner surface of the container 10. It serves to scrape off residues.
  • the uneven protrusion 152 may be formed in various shapes.
  • the moving unit 110 in particular, the negative pressure moving unit 120 may form a scraper 122 along the edge or edge.
  • the uneven protrusion 152 In the case where the uneven protrusion 152 is in liquid contact with the inner surface of the container 10 in a liquid-tight manner, the uneven protrusion 152 and the air surrounded wall 134 or the uneven protrusion 152 in the absence of the air surrounded wall 134 and The space between the side walls 132 forms a negative pressure air portion including an air chamber in contact with the liquid contents.
  • FIG. 9 is a perspective view of a residue moving apparatus according to a third embodiment of the present invention
  • FIG. 10 is a bottom perspective view of a residue moving apparatus according to a third embodiment of the present invention
  • FIGS. 11 and 12 are views of the present invention.
  • 3 is a longitudinal cross-sectional view of the contents container having a state in which the residue moving device according to the third embodiment scratches and moves the residue.
  • the contents receiving container 10 includes a residue moving device 100 which is moved in a direction in which the contents 2 stored therein are reduced.
  • the residue mover 100 includes a mover 110.
  • the moving unit 110 is partitioned to form an open space 112. At least a portion of the open space 112 forms a sealed air chamber 114. That is, in the state in which the moving part 110 is in contact with or floating in the contents 2, the contents 2 are introduced into a part of the open space 112. When discharging the contents 2, the moving unit 110 moves in the direction of the contents 2 which is reduced by the negative pressure acting on the air chamber 114 formed in at least a portion of the open space 112. At this time, the moving unit 110 is moved in the interior of the container 10 along the direction of reduction of the contents (2).
  • the residue moving device 100 further includes a negative pressure moving part 120 and a negative pressure air part 130.
  • the open space 112 and the air chamber 114 are formed on the negative pressure air 130.
  • the negative pressure air 130 includes an air enclosure wall 134, a convex portion 136, and a partition wall 138.
  • the air envelope 134, the convex portion 136, and the partition wall 138 replace those described above.
  • the partition wall 138 makes the air density of each of the partitioned open spaces 112 equal or similar, so that the negative pressure can act evenly over the entire negative pressure air portion 130 of the moving part 110.
  • partition walls 138 is not limited.
  • the moving unit 110 extends the ribs 140 on the edge or border.
  • the rib 140 extends in the direction of the inner surface of the container 10 at the edge of the moving part 110, in particular the negative pressure moving part 120.
  • the rib 140 may be formed in various shapes and may be integrally manufactured to the moving part 110.
  • the rib 140 may extend from various positions of the moving part 110.
  • the rib 140 is formed to extend from the lower side (as seen in the drawing) of the negative pressure moving part 120.
  • the rib 140 forms a scraper 122.
  • the scraper 122 serves to scrape off residues on the inner surface of the container 10 when the moving unit 110 moves.
  • the negative pressure moving unit 120 may also form the scraper 122. That is, the scraper 122 is provided with a singular or plural number so that the residue of the contents 2 buried on the inner side can be scraped as much as possible to guide the discharge side to the inner side while simply contacting the inner side of the container 10.
  • the air enclosing wall 134 may include an elongate movable member 160. As the air enclosure wall 134 includes the cylindrical extension member 160, the area of the air chamber 114 sealed by the contents 2 is increased. So, the negative pressure acts bigger.
  • the extension member 160 is provided to be slidable to the air enclosure wall 134 according to the viscosity or storage amount of the contents (2).
  • the moving member 110 is moved under negative pressure so that the extension member 160 is slid so that the negative pressure moving part 120 can scrape the residue as much as possible.
  • extension member 160 is installed to be separated from the air enclosure wall 134.
  • the air enclosing wall 134 forms a flange 162 on the outer circumferential surface
  • the extension member 160 forms a locking jaw 164 on the inner surface to be caught by the flange 162.
  • the flange 162 and the latching jaw 164 may be deformed into various shapes, and the extension member 160 may be applied to various shapes and various materials.
  • FIG. 13 is a perspective view of a content container having a residue moving device according to a fourth embodiment of the present invention
  • FIG. 14 is an exploded view of a content container having a residue moving device according to a fourth embodiment of the present invention.
  • Fig. 15 is a sectional view of a combined contents container having a residue moving device according to a fourth embodiment of the present invention.
  • 16 to 18 are cross-sectional views showing an operating state of the residue moving device according to the fourth embodiment of the present invention.
  • the contents receiving container 10 is located on the surface (upper surface) of the contents stored therein and the residue is moved in the direction of reduction of the contents by the negative pressure
  • the residue moving device 100 is a body that covers the upper surface of the contents, and is formed at a predetermined height on the lower surface of the body, and the lower portion thereof is opened to open the upper surface of the contents. It has an open space 112 which is a space in which an overpressure is maintained.
  • the present embodiment further includes a dispenser device 30 installed at an upper end of the container 10 and having an upper discharge pipe 21 to guide the discharge of the contents, and a discharge tube for discharging the contents of the container 10.
  • the residue moving device 100 is formed with a discharge pipe passing part 116 through which the discharge pipe 20 penetrates, and the discharge pipe passing part 116 is formed. Is in close contact with the discharge tube 22.
  • the discharge tube passage part 116 is not in close contact with the discharge tube 22, and the discharge tube 20 is formed so as not to be bound to the moving part 110 so as to be free to move in the discharge tube passage part 116. Can be.
  • the residue moving device 100 maintains its position at a negative pressure corresponding to the contents stored in the container 10, and while the content of the container 10 is discharged, the negative pressure contacting the inner wall of the container 10 is lowered. It comprises a moving unit 110 including the eastern portion 120.
  • Negative pressure moving part 120 is a structure having the end is elastic so as to keep in contact with the inner wall of the container 10, and is formed to be fitted and coupled separately separated configuration as a circumference located on the outer portion of the moving part (110). As the contents of the container 10 are exhausted, the container 10 serves to pull down the residue remaining on the inner wall of the container 10.
  • the container 10 includes a dispenser device 30 in which an upper discharge pipe 21 is formed therein so as to discharge the contents by applying pressure by pumping by hand.
  • the container 10 is to store the contents of the liquid, the air is left in the main body air portion 11 is formed so that the contents of the liquid is filled and stored.
  • the discharge part 12 for coupling the dispenser device 30 is formed at the upper end of the container (10).
  • the dispenser device 30 may be configured to be screwed through the discharge portion 12 formed at the top of the container 10.
  • the dispenser device 30 may be a separate configuration according to the manufacturing method of the container 10 or may be in the form of a stopper on the upper portion of the container 10.
  • the dispenser device 30 may be inserted into the upper discharge pipe 21 through which the contents are discharged, and vertically inserted into the area near the bottom of the container so as to be immersed in the liquid contents in the container 10 at the bottom thereof to discharge the contents of the container 10.
  • the discharge pipe 20 is formed to be.
  • the inside of the pressing portion of the dispenser device 30 is configured to have a pumping structure consisting of a general spring and the opening and closing ball for discharging the contents corresponding to the known art, the detailed description thereof will be omitted.
  • the residue moving device 100 is installed on the outer periphery of the moving part 110 and the moving part 110 through which the discharge tube 20 of the dispenser device 30 is connected. 10) includes a negative pressure moving part 120 formed to pull down the residue remaining on the inner wall.
  • the moving part 110 of the residue moving device 100 is formed to cover the upper surface of the contents, and the discharge hole formed with a through hole 116a through which the discharge pipe 20 of the dispenser device 30 is connected.
  • the tube passing part 116 and the lower part of the moving part 110 are formed at a predetermined height, and the lower part thereof is opened to include an open space 112 which is a space where the upper surface and the negative pressure of the contents are maintained.
  • the negative pressure moving unit 120 is integrally formed or separately coupled to correspond to the outer circumference of the residue moving device 100.
  • the negative pressure moving part 120 may be formed by forcing a circular rubber plate to the outer periphery of the residue moving device 100 by interference fit.
  • the residue moving device 100 includes a moving part 110 and a negative pressure moving part 120, and in contact with the inner wall inside the container 10, gradually descends as the contents are used, and thus, the inside of the container 10 is lowered. The sidewall residue is pulled downward to bring the contents into the container 10.
  • the moving unit 110 is moved downward by the amount of exhausted contents by the dispenser device 30 having a discharge pump structure.
  • the moving part 110 is in a state in which the lower portion is in contact with the liquid contents or is contained in a predetermined portion so that a negative pressure may be applied to the open space 112, and when the surface water level P of the liquid contents changes, the pressure is applied. , While moving (P) on the upper surface of the moved liquid contents.
  • the viscous liquid residue remaining on the inner wall of the container 10 is removed from the inner wall by the negative pressure moving part 120 during the movement of the residue moving device 100.
  • the residue moving device 100 moves downward in the step of reducing the volume of the contents in the container 10.
  • the negative pressure moving part 120 formed on the outer rim of the residue moving device 100 which is in close contact with the inner wall of the container 10, slides on the inner wall while pulling down the remaining contents of the inner wall.
  • Figure 19 is an exploded view of the contents receiving container is attached to the residue moving device according to the fifth embodiment of the present invention
  • Figure 20 is a combination of the contents receiving container attached to the residue moving device according to the fifth embodiment of the present invention It is a cross-sectional view of the state.
  • the contents receiving container 10 includes a residue moving device 100 in contact with the upper surface of the contents by the negative pressure therein, the residue movement And a dispenser device 30 connected to the discharge tube 22 penetrating the apparatus 100 and having a top discharge tube 21 for sucking and discharging the liquid contents in the container 10.
  • the residue moving device 100 has a predetermined height on the bottom of the moving part 110, the discharge tube passage 116 penetrating through the center of the moving part 110, the moving part 110 covering the upper surface of the liquid content. While the lower portion is opened to the upper end of the liquid content and the open space 112, which is a space for maintaining the negative pressure, the discharge tube passage portion 116 so as to be in contact with the discharge tube 20 to maintain the adhesiveness is elastic Including the close contact portion 113, the negative pressure moving portion 120 which is in close contact with the inner wall of the container 10 while falling as the contents of the container 10 is discharged.
  • the negative pressure moving part 120 serves to pull down the residue remaining on the inner wall of the container 10 while descending according to the exhaustion of the contents of the container 10.
  • the close contact portion 113 has an end portion that is elastic and curved so that the end portion may be in contact with the discharge tube passage portion 116 in a circumference of the discharge tube passage portion 116 so as to be in close contact with the discharge tube passage portion 116.
  • the negative pressure moving portion 120 may also be formed to have an elastic end so that the end is in contact with the inner wall of the container 10 to maintain the adhesion while the end is bent.
  • the negative pressure moving unit 120 simply contacts the inner surface of the container 10 to scrape off residues on the inner surface of the container 10 and to minimize the resistance during transfer by reducing the contact area with the inner surface of the container 10.
  • a sharp scraper 122 may be formed at the edge of the negative pressure moving part 120. The scraper 122 is moved simply in contact with the inner surface of the container 10 and scratches the residue. The scraper 122 is continuously formed along the trajectory of the inner surface of the container 10.
  • the scraper 122 may be formed of various materials and various shapes.
  • the contents receiving container 10 further includes a cover 14 for opening and closing the opened one side.
  • the cover 14 can be deformed into various shapes.
  • FIG. 21 is a cross-sectional view of the contents receiving container in which the residue moving device is installed according to the sixth embodiment of the present invention
  • FIG. 22 is a diagram illustrating a use of the residue moving device according to the sixth embodiment of the present invention.
  • the moving part 110 of the residue moving device 100 is formed at a predetermined height on a lower side thereof, and has an open space 112 that is a space in which a lower part thereof is opened to maintain an upper surface and a negative pressure of the contents.
  • the negative pressure moving part 120 is in contact with the inner wall of the container 10 so as to have sufficient adhesion, and even when the container 10 is tilted, the beverage does not flow out but is discharged only through the suction straw 220 that is the discharge tube.
  • Figure 23 is a perspective view of the contents receiving container with a residue moving device according to the seventh embodiment of the present invention
  • Figure 24 is a combination of the contents receiving container with a residue moving device according to a seventh embodiment of the present invention It is a cross-sectional view of the state.
  • FIG. 25 is an exploded perspective view of a contents container having a residue moving device according to a seventh embodiment of the present invention.
  • FIG. 26 is a perspective view of a residue moving device according to a seventh embodiment of the present invention. Bottom perspective view of a residue moving device according to a seventh embodiment of the present invention.
  • the content receiving container 10 includes a residue moving device 100 which is moved in a direction in which the content 2 stored therein is reduced.
  • the residue mover 100 includes a mover 110.
  • the moving unit 110 is partitioned to form an open space 112. At least a portion of the open space 112 forms a sealed air chamber 114. That is, in the state in which the moving part 110 is in contact with or floating in the contents 2, the contents 2 are introduced into a part of the open space 112. When discharging the contents 2, the moving unit 110 moves in the direction of the contents 2 which is reduced by the negative pressure acting on the air chamber 114 formed in at least a portion of the open space 112. At this time, the moving unit 110 is moved in the interior of the container 10 along the direction of reduction of the contents (2).
  • the residue moving device 100 further includes a negative pressure moving part 120 and a negative pressure air part 130.
  • the open space 112 and the air chamber 114 are formed on the negative pressure air 130.
  • the negative pressure air 130 includes an air enclosure wall 134, a convex portion 136, and a partition wall 138.
  • the air envelope 134, the convex portion 136, and the partition wall 138 replace those described above.
  • the container 10 may be provided to open and close the lid 14 to facilitate storage or refilling of the contents 2.
  • the discharge pipe 20 is formed to penetrate the cover 14, the suction straw for sucking the contents of the container 10 may be included.
  • the negative pressure air 130 included in the residue moving device 100 may be configured in plural.
  • a plurality of open spaces 112 may be divided into a plurality of open spaces 112 which are opened in the direction of decreasing contents by the air enclosing wall 134 of the negative pressure air unit 130.
  • a fixing part 119 connecting the negative pressure air part 130 to the moving part 110 may be further included.
  • the fixing part 119 fixes the negative pressure air part 130 to the moving part 110 to move together.
  • any one of the plurality of negative pressure air 130, the negative pressure air 130 may be connected to the other negative pressure air 130, or may be connected to the other negative pressure air 130 through the fixing unit 119. have.
  • one negative pressure air unit 130 may be connected to the moving unit 110, or another negative pressure air unit 130. ) May be connected.
  • the moving part 110 of the residue moving device 100 has a negative pressure moving part 120 at the edge, and the negative pressure moving part 120 is provided with a scraper 122 at the edge.
  • the scraper 122 serves to scrape off residues on the inner surface of the container 10 when the moving unit 110 moves.
  • the scraper 122 may be a packing.
  • the packing serves to prevent the contents from leaking in the opposite direction to the moving direction of the moving part 110 when the moving part 110 moves in the direction of decreasing the content in the container 10.
  • the residue moving device 100 may be guided to stably level with respect to the bottom surface of the container 10 without inclining to one side when moving in the direction of reduction of the contents in the interior of the container (10).
  • the negative pressure air unit 130 may include a partition wall 138 or may be formed of only the air enclosure wall 134.
  • the negative pressure air part 130 including the partition wall 138 is located at the outer circumference of the moving part 110, and the cylindrical negative pressure air part 130 formed only by the air enclosing wall 134 is the moving part ( Located in the center of 110.
  • the discharge pipe passage part 116 is divided into the partition wall 118 so as not to communicate with the negative pressure air part 130 provided in the negative pressure moving part 120.
  • Portions other than the negative pressure air unit 130 and the negative pressure moving unit 120 may be formed closed or open.
  • a portion other than the negative pressure air unit 130 and the negative pressure moving unit 120 is formed to be open, where the discharge pipe passage part 116 is a cylindrical negative pressure air unit provided in the center of the moving unit 110.
  • An open space between the 120 and the partition wall 118 corresponds to a space between the diameters of the discharge tubes 20 passing therethrough.
  • the moving part 110 and the negative pressure moving part 120, etc. of the residue moving device 100 may be guided by the guide part 400 along the inner surface of the container 10.
  • the guide part 400 includes a guide groove 410 and a guide protrusion 420.
  • the guide groove 410 is recessed along the edge of the negative pressure moving part 120.
  • the guide protrusion 420 is disposed along the circumferential direction on the inner side surface of the container 10 so as to correspond to the guide groove 410 one to one, and protrudes in the axial direction of the container 10.
  • the guide protrusion 420 is accommodated in the guide groove 410 to guide the movement of the negative pressure moving part 120 and the moving part 110.
  • the guide protrusion 420 may be formed to protrude from the negative pressure moving portion 120, the guide groove 410 may be formed on the inner surface of the container (10).

Landscapes

  • Containers And Packaging Bodies Having A Special Means To Remove Contents (AREA)

Abstract

The present invention relates to a residue moving device and a content accommodating container having same. The residue moving device, including a discharge part on one side thereof and used in a container in which contents having fluidity are accommodated, includes a movable unit and a negative pressure moving unit comprising a negative pressure air part for forming an air cavity to guide the movable unit by means of negative pressure generated toward the lower side of the movable unit due to a decrease in the amount of contents. Unlike the related art, the present invention enables content residue attached to the inner wall surface of the container to be scraped out in a direction in which the contents are stored, preventing the contents from being wasted or lost.

Description

잔류물 이동장치 및 이를 구비하는 내용물 수용 용기Residue moving device and contents container having same
본 발명은 잔류물 이동장치 및 이를 구비하는 내용물 수용 용기에 관한 것으로서, 더욱 상세하게는 용기 내부 벽면에 묻은 내용물의 잔류물을 내용물이 저장되어 있는 방향으로 긁어내어 내용물의 낭비나 손실을 방지하고자 하는 잔류물 이동장치 및 이를 구비하는 내용물 수용 용기에 관한 것이다.The present invention relates to a residue moving device and a content accommodating container having the same, and more particularly, to scrape the residues of the contents on the inner wall of the container in a direction in which the contents are stored to prevent waste or loss of the contents. A residue moving device and a contents receiving container having the same.
일반적으로, 용기에 담긴 액체 상태의 유체는, 용기에 구비된 배출공을 통하여 외측으로 배출된다.In general, the liquid fluid contained in the container is discharged to the outside through the discharge hole provided in the container.
사용자는 용기를 일정한 힘으로 가압하거나 흡입하여 유체를 배출시키거나, 또는 용기를 뒤집어서 배출공이 하측을 향하게 하므로, 유체는 배출공을 통하여 외측으로 배출된다.The user presses or sucks the container with a constant force to discharge the fluid, or the container is turned over so that the discharge hole faces downward, so that the fluid is discharged outward through the discharge hole.
특히, 유체는 용기 내에서 직접 토출되는 구조에서 점도가 있기 때문에 용기 내벽에 상당량이 잔존함으로써 낭비 내지는 손실이 초래되는 문제점이 있다.In particular, since the fluid has a viscosity in the structure that is directly discharged in the container, there is a problem that waste or loss is caused by a considerable amount remaining on the inner wall of the container.
아울러, 일본공개특허공보 특개평05-051076호(발명의 명칭: 압력용기)에는 용기 내부의 내용물과 접촉되지 않도록 가스를 충진하여 가스와 내용물의 접촉에 따른 불필요한 화학변화나 품질 저하를 방지하는 구조가 제안되어 있다.In addition, Japanese Patent Application Laid-Open No. 05-051076 (name of the invention: a pressure vessel) is filled with gas so as not to come into contact with the contents inside the container to prevent unnecessary chemical changes or deterioration due to the contact between the gas and the contents. Is proposed.
또한, 대한민국 특허등록 제10-1185606호(발명의 명칭: 유체배출장치 및 이를 구비하는 용기부재)에는 액체상태의 유체가 균일하게 배출할 수 있도록 한 기술이 제안되어 있다.In addition, Korean Patent Registration No. 10-1185606 (name of the invention: a fluid discharge device and a container member having the same) has been proposed a technology that allows the fluid in the liquid state uniformly discharged.
하지만, 가스를 충진하는 챔버가 밀폐되어 있기 때문에 내용물의 출렁임에 따라 챔버가 많이 흔들리게 되며, 이로 인해 용기 벽면의 묻은 잔류물의 유실율이 큰 문제점이 있다. 아울러, 가스를 충진 후 밀폐하는 챔버의 제작비용이 많이 드는 문제점이 있다. However, since the chamber filling the gas is sealed, the chamber shakes a lot as the contents swell, which causes a large problem of loss of residues on the wall of the container. In addition, there is a problem that the manufacturing cost of the chamber to be sealed after filling the gas is expensive.
그리고, 유체는 용기 내에서 직접 토출되는 구조에서 점도가 있기 때문에 용기 내벽에 상당량이 잔존함으로써 낭비 내지는 손실이 초래되는 문제점이 있다.In addition, since the fluid has a viscosity in the structure that is directly discharged in the container, there is a problem that waste or loss is caused by a considerable amount remaining on the inner wall of the container.
특히, 액상 내용물 중 점성이 있는 것은 용기의 내벽 또는 바닥에 남아 있어 내용물을 모두 소진하는 데에는 한계가 있기 때문에, 잔류 내용물이 상당히 남아 있음에도 불구하고 더 이상 사용할 수 없다고 판단하여 그대로 버려지는 경우가 대부분이다. 이와 같은 비경제적인 잔류 내용물의 낭비가 발생할 뿐만 아니라, 잔류 내용물의 유출 시 수질을 오염시키는 등 환경오염을 발생시키는 원인이 되기도 한다. 또한, 이러한 이유로 용기의 재활용을 위해 처리되는 과정에서, 용기의 세척이 필요로 하는 등의 문제점도 있다.Particularly, since viscous liquid contents remain on the inner wall or bottom of the container and there is a limit to exhausting the contents, most of the liquid contents are discarded as they are determined to be no longer usable even though there is considerable residual content. . In addition to the waste of such uneconomic residual contents, it also causes environmental pollution, such as polluting the water quality when the residual contents are leaked. In addition, for this reason, there is also a problem such as the need to wash the container in the process of processing for recycling of the container.
따라서, 이를 개선할 필요성이 요청된다.Therefore, there is a need for improvement.
상기한 기술구성은 본 발명의 이해를 돕기 위한 배경기술로서, 본 발명이 속하는 기술분야에서 널리 알려진 종래기술을 의미하는 것은 아니다.The above technical configuration is a background art for helping understanding of the present invention, and does not mean a conventional technology well known in the art.
본 발명은 상기와 같은 문제점들을 개선하기 위하여 안출된 것으로서, 부압이동부와 부압공기부를 포함하는 이동부가 용기 내에서 내용물이 감소하는 방향으로 이동되며 용기 내부 벽면에 묻은 내용물의 잔류물을 내용물이 저장되어 있는 방향으로 긁어내어 내용물을 최대한 토출하도록 유도함에 따라 내용물의 낭비나 손실을 방지하고자 하는 잔류물 이동장치 및 이를 구비하는 내용물 수용 용기를 제공하는데 그 목적이 있다. The present invention has been made to solve the above problems, the moving part including the negative pressure moving unit and the negative pressure air is moved in the direction of decreasing the contents in the container and the contents are stored in the residue of the contents on the inner wall of the container It is an object of the present invention to provide a residue moving device and a contents receiving container having the same, which are intended to prevent waste or loss of contents by scraping in a direction to guide the discharge of the contents as much as possible.
본 발명은 내용물을 향하는 이동부의 상측 또는 하측에 내용물에 의해 밀폐되는 공기실을 형성하여 내용물이 배출되며 감소시 부압이 발생됨에 따라 이동부가 자연스럽게 내용물이 감소되는 방향으로 이동되도록 함으로써 이동부의 부압이동부를 통해 용기 벽면의 잔류물을 최대한 긁어모을 수 있도록 하는 잔류물 이동장치 및 이를 구비하는 내용물 수용 용기를 제공하는데 그 목적이 있다.The present invention forms an air chamber sealed by the contents on the upper side or the lower side of the moving part facing the contents to discharge the contents and as the negative pressure is generated upon reduction, the moving portion naturally moves in the direction in which the contents are reduced, so as to move the negative pressure of the moving portion. It is an object of the present invention to provide a residue moving device and a content receiving container having the same, which allows to scrape the residue of the container wall as possible through.
본 발명은 점성의 액상 내용물이 용기의 내벽 등에 남아있지 않도록 하기 위함이다. 이를 통하여 용기 내의 잔류 내용물을 소진하도록 유도하여 자원의 낭비를 줄이기 위한 잔류물 이동장치 및 이를 구비하는 내용물 수용 용기를 제공하는데 그 목적이 있다. The present invention is intended to prevent the viscous liquid content from remaining on the inner wall of the container. It is an object of the present invention to provide a residue moving device for reducing waste of resources by inducing the exhausted residual contents in the container and a content accommodating container having the same.
본 발명은 용기가 기울어지거나 흔들리는 경우 내용물이 밖으로 흘러나오지 않도록 하기 위한 잔류물 이동장치 및 이를 구비하는 내용물 수용 용기를 제공하는데 그 목적이 있다. SUMMARY OF THE INVENTION An object of the present invention is to provide a residue moving device for preventing the contents from flowing out when the container is tilted or shaken, and a contents receiving container having the same.
본 발명은 음료수와 같은 액상 내용물의 경우 흡인 빨대를 통해 액상 내용물이 흡인되도록 하며, 용기를 기울였을 때에도 액상 내용물이 밖으로 흐르지 않고 빨대를 통해서만 나올 수 있도록 하기 위한 잔류물 이동장치 및 이를 구비하는 내용물 수용 용기를 제공하는데 그 목적이 있다.The present invention allows the liquid contents to be sucked through the suction straw in the case of the liquid contents, such as drinking water, and a residue moving device for allowing the liquid contents to come out only through the straw without flowing out even when the container is tilted, and the contents accommodating therewith The purpose is to provide a container.
본 발명은 액상 내용물의 상부면을 고정하여, 이동 또는 회전 시 기울임이 없이 상태를 유지하며 사용하는 기기 구성에 적용되도록 하기 위한 잔류물 이동장치 및 이를 구비하는 내용물 수용 용기를 제공하는데 그 목적이 있다.An object of the present invention is to provide a residue moving device for fixing the upper surface of the liquid contents, to maintain the state without tilting during movement or rotation, and to be applied to the device configuration to be used, and a content receiving container having the same. .
본 발명은 잔류물 이동장치를 다른 용기에 다시 결합하여 적용할 수 있도록 구성하여 환경쓰레기를 줄일 수 있도록 하기 위한 잔류물 이동장치 및 이를 구비하는 내용물 수용 용기를 제공하는데 그 목적이 있다.It is an object of the present invention to provide a residue moving device for reducing the environmental waste by configuring the residue moving device to be applied to another container again to apply to the other container and the contents receiving container having the same.
본 발명은 간단한 구성으로 제작할 수 있는 잔류물 이동장치 및 이를 구비하는 내용물 수용 용기를 제공하는데 그 목적이 있다. It is an object of the present invention to provide a residue moving device which can be manufactured with a simple configuration, and a content accommodating container having the same.
본 발명에 따른 잔류물 이동장치는: 일측에 배출부가 형성되고, 유동성 내용물이 수용되는 용기에 사용되는 잔류물 이동장치에 있어서, 이동부; 및 상기 내용물의 양이 감소함에 따라, 상기 이동부가 감소하는 내용물 방향으로 부압에 의해 안내되도록, 상기 이동부에 내용물 감소 방향으로 개방된 열린 공간의 적어도 일부분이 밀폐된 공기실(air cavity)을 형성하기 위한 부압공기부를 포함한다.A residue moving device according to the present invention includes: a residue moving device having a discharge part formed at one side thereof and used for a container in which fluid contents are accommodated, the moving part; And as the amount of the contents decreases, an air cavity in which at least a portion of the open space opened in the direction of reducing contents is closed to guide the moving portion by negative pressure in the direction of decreasing contents. It includes a negative pressure air for.
상기 이동부의 내용물 측 부위 중 적어도 일부분은 상기 내용물 측으로 열린 공간을 형성하여 상기 부압공기부를 형성하도록 구획되고, 상기 열린 공간 중 적어도 일부분에 상기 공기실이 형성되도록 하여 상기 내용물이 상기 배출부를 통해 배출되는 경우, 상기 부압공기부 내부에 부압이 발생하여 상기 부압공기부를 포함하는 부압이동부가 상기 내용물의 표면이 이동하는 방향으로 이동할 수 있다.At least a portion of the contents side portion of the moving part is partitioned to form an open space toward the contents side to form the negative pressure air portion, and the contents are discharged through the discharge portion by forming the air chamber in at least a portion of the open space. In this case, a negative pressure is generated inside the negative pressure air part, so that the negative pressure moving part including the negative pressure air part moves in the direction in which the surface of the contents moves.
상기 부압공기부는 상기 이동부 중 일부분이 상측 또는 하측으로 연장되는 측벽을 포함하여 구성될 수 있다.The negative pressure air portion may be configured to include a side wall extending a portion of the moving portion to the upper side or the lower side.
상기 부압공기부는 외부로부터 공기 인입이 이루어지는 상기 용기의 본체공기부와 별도로 격리되어 구비될 수 있다.The negative pressure air part may be provided separately from the main body air part of the container through which air is introduced from the outside.
상기 이동부는 이동시 상기 용기의 내측면에 묻은 잔류물을 긁는 스크래퍼(scraper)를 가장자리 또는 테두리에 형성하고, 상기 스크래퍼는 상기 용기의 내측면을 따라 이동되며 상기 잔류물을 긁어내리도록 상기 용기의 내측면과 단순 접할 수 있다.The moving part forms a scraper at the edge or the edge of scraping the residue on the inner surface of the container during movement, and the scraper is moved along the inner surface of the container and scrapes the residue. Simple side contact.
상기 이동부는 상기 부압이동부의 상측, 둘레면 및 하측 중 어느 한 위치에 구비되어 상기 스크래퍼가 상기 용기의 내측면 하단에 묻은 잔류물을 긁어낼 수 있다.The moving part may be provided at any one of an upper side, a circumferential surface, and a lower side of the negative pressure moving unit so that the scraper may scrape residues attached to the lower end of the inner side of the container.
상기 배출부는 상기 용기에 저장된 상기 내용물의 표면이 이동하는 방향의 반대방향에 위치하고, 상기 내용물을 토출시키기 위하여 토출관을 내용물에 접하도록 하는 토출관 통과부를 더 포함하며, 상기 토출관 통과부는 격벽으로 구획되어 상기 부압공기부와 통하지 않고, 상기 토출관은 상기 토출관 통과부 내에서 공기 밀실하지 않게 삽입될 수 있다.The discharge portion is located in a direction opposite to the direction of movement of the surface of the contents stored in the container, and further comprises a discharge tube passage portion for contacting the discharge tube to the contents in order to discharge the contents, the discharge tube passage portion to the partition wall The discharge tube may be partitioned so as not to communicate with the negative pressure air portion, and the discharge tube may be inserted without being air tight in the discharge tube passage.
상기 배출부는 상기 내용물의 표면이 이동하는 방향인 상기 용기의 하측에 구비되고, 상기 부압공기부는 상기 내용물의 토출 방향으로 이동될 수 있다.The discharge part may be provided under the container in a direction in which the surface of the contents moves, and the negative pressure air part may move in a discharge direction of the contents.
상기 이동부의 가장자리 또는 테두리 부위가 용기의 내측면에 접하여 용기가 기울어지거나 흔들리는 경우 내용물이 밖으로 흘러나오지 않을 수 있다.When the container is inclined or shakes in contact with the inner surface of the container, the edge or the edge of the moving part may not flow out.
상기 부압공기부는 공기 저장 공간을 확장하거나 상기 내용물과의 밀착성을 높이기 위해 상기 이동부를 기준으로 상기 용기에 저장된 내용물 방향으로 공기포위벽을 돌출 형성할 수 있다.The negative pressure air unit may protrude an air enclosing wall in the direction of the contents stored in the container with respect to the moving unit in order to expand the air storage space or increase the adhesion with the contents.
상기 부압공기부는 공기 저장 공간을 확장하기 위해 상기 이동부를 기준으로 상기 공기포위벽을 따라 내용물 방향의 반대 방향으로 볼록한 볼록부를 포함한다.The negative pressure air part includes a convex part that is convex in a direction opposite to the contents direction along the air enclosure wall with respect to the moving part to expand the air storage space.
상기 이동부에는 상기 토출관이 관통하는 관통공이 형성되고, 상기 관통공의 둘레에는 상기 토출관에 접하여 밀착성을 유지할 수 있도록, 밀착부가 형성될 수 있다.The moving part may be formed with a through hole through which the discharge tube passes, and a contact portion may be formed around the through hole so as to maintain contact with the discharge tube.
상기 밀착부는 상기 이동부에 형성되며, 별도로 분리된 구성이 끼움 결합되어 형성될 수 있다.The close contact portion may be formed in the moving part and may be formed by fitting a separate component.
상기 스크래퍼는 상기 용기의 내벽에 접하여 밀착성을 유지할 수 있도록 끝단이 탄성을 가지는 구조일 수 있다.The scraper may have a structure in which the end is elastic so as to be in contact with the inner wall of the container to maintain adhesion.
상기 부압이동부는 상기 이동부에, 별도로 분리된 구성이 끼움 결합되어 형성될 수 있다.The negative pressure moving unit may be formed by fitting a separate component to the moving unit.
상기 내용물을 토출시키도록 상기 배출부 측에 구비되는 디스펜서 장치를 더 포함한다.It further comprises a dispenser device provided on the discharge side to discharge the contents.
상기 용기는 상기 내용물이 밖으로 흐르지 않도록 하는 덮개를 포함한다.The container includes a lid to prevent the contents from flowing out.
상기 부압공기부를 상기 이동부에 연결하는 고정부를 포함하고, 상기 부압공기부와 상기 부압이동부 이외의 부분이 폐쇄 또는 개방되어 형성될 수 있다.It may include a fixed portion for connecting the negative pressure air portion to the moving part, the portion other than the negative pressure air portion and the negative pressure moving portion may be formed to be closed or open.
상기 부압공기부는 복수로 구성되고, 어느 하나의 부압공기부는 다른 부압공기부와 연결되거나, 또는 상기 고정부를 통해 다른 부압공기부와 연결될 수 있다.The negative pressure air part may be configured in plural, and one negative pressure air part may be connected to another negative pressure air part, or may be connected to another negative pressure air part through the fixing part.
상기 부압공기부는 구획벽에 의해 구획될 수 있다.The negative pressure air portion may be partitioned by a partition wall.
상기 이동부는 테두리를 따라 마감부재를 구비하고, 상기 마감부재는 상기 용기의 내측면에 접하여 상기 용기의 내측면에 묻은 잔류물을 긁어내는 요철돌부를 형성할 수 있다.The moving part may include a finishing member along an edge, and the finishing member may contact the inner side surface of the container to form an uneven protrusion to scrape off residues on the inner side surface of the container.
상기 이동부는 가장자리 또는 테두리에 리브를 연장 형성하고, 상기 리브는 상기 이동부의 이동시 상기 용기의 내측면에 묻은 잔류물을 긁어내기 위해 상기 스크래퍼를 형성할 수 있다.The movable portion extends a rib at an edge or an edge, and the rib may form the scraper to scrape off residues on the inner surface of the container when the movable portion moves.
상기 스크래퍼는 단수 또는 복수 개로 이루어질 수 있다.The scraper may be made of a singular or plural.
상기 공기포위벽은 슬라이딩 이동 가능한 연장부재를 구비할 수 있다.The air enclosing wall may include an elongate movable member.
상기 이동부는 가이드부에 의해 상기 용기의 내측면을 따라 위치 이동 안내될 수 있다.The moving unit may be guided by the guide unit to move the position along the inner surface of the container.
또한, 본 발명에 따른 잔류물 이동장치를 구비하는 내용물 수용 용기는: 일측에 배출부가 형성되고, 유동성 내용물이 수용되는 용기에 있어서, 상기 내용물의 양이 감소함에 따라, 부압(negative pressure)에 의해 감소되는 상기 내용물 방향으로 이동되는 잔류물 이동장치를 포함하고, 상기 잔류물 이동장치는 이동부를 포함하고, 상기 이동부는 적어도 일부분이 감소하는 내용물 방향으로 개방된 열린 공간을 구획되게 형성하여, 상기 내용물의 토출시, 상기 열린 공간의 적어도 일부분에 형성된 공기실(air cavity)의 부압에 의해 상기 이동부를 안내하도록 구성될 수 있다.In addition, the content container having a residue moving device according to the present invention: a container having a discharge portion is formed on one side, the fluid content is accommodated, as the amount of the content is reduced, by the negative pressure (negative pressure) A residue moving device moved in the direction of the reduced content, the residue moving device including a moving part, the moving part defining an open space opened in a direction in which at least a portion of the content is reduced, so as to partition the content; May be configured to guide the moving part by a negative pressure of an air cavity formed in at least a portion of the open space.
상기 잔류물 이동장치는, 상기 이동부의 하측으로 상기 내용물의 양이 감소함에 따라 부압에 의해 상기 이동부를 안내하기 위해 상기 공기실(air cavity)을 형성하기 위한 부압공기부를 포함하여 구성되는 부압이동부를 더 포함한다.The residue moving device includes a negative pressure moving part configured to form an air cavity for guiding the moving part by the negative pressure as the amount of the contents decreases below the moving part. It further includes.
상기 내용물을 상기 배출부로 토출 안내하는 토출관을 포함하고, 상기 잔류물 이동장치는 상기 토출관을 따라 이동 가능하게 구비될 수 있다.And a discharge tube for guiding discharge of the contents to the discharge unit, and the residue moving device may be provided to be movable along the discharge tube.
상기 부압공기부는 상기 이동부 중 일부분이 상측 또는 하측으로 연장되는 측벽을 포함하여 구성될 수 있다.The negative pressure air portion may be configured to include a side wall extending a portion of the moving portion to the upper side or the lower side.
상기 부압공기부는 외부로부터 공기 인입이 이루어지는 상기 용기의 본체공기부와 별도로 격리되어 구비될 수 있다.The negative pressure air part may be provided separately from the main body air part of the container through which air is introduced from the outside.
상기 내용물을 토출시키도록 상기 배출부 측에 구비되는 디스펜서 장치를 포함한다.And a dispenser device provided on the discharge part side to discharge the contents.
상기 이동부는 이동시 상기 용기의 내측면에 묻은 잔류물을 긁는 스크래퍼(scraper)를 가장자리 또는 테두리에 형성하고, 상기 스크래퍼는 상기 용기의 내측면을 따라 이동되며 상기 잔류물을 긁어내리도록 상기 용기의 내측면과 단순 접할 수 있다.The moving part forms a scraper at the edge or the edge of scraping the residue on the inner surface of the container during movement, and the scraper is moved along the inner surface of the container and scrapes the residue. Simple side contact.
상기 배출부는 상기 용기에 저장된 상기 내용물의 표면이 이동하는 방향의 반대방향에 위치하고, 상기 내용물을 토출시키기 위하여 토출관을 상기 내용물에 접하도록 하는 토출관 통과부가 더 포함되며, 상기 토출관 통과부는 격벽으로 구획되어 상기 부압이동부 내에 구비되는 상기 부압공기부와 통하지 않고, 상기 토출관은 상기 토출관 통과부 내에서 공기 밀실되지 않게 삽입될 수 있다.The discharge portion is located in a direction opposite to the direction in which the surface of the contents stored in the container is moved, further comprising a discharge pipe passage portion for contacting the discharge tube to the contents to discharge the contents, the discharge tube passage portion partition wall The discharge pipe may be inserted into the discharge pipe passage part without being airtight without being communicated with the negative pressure air part provided in the negative pressure moving part.
상기 배출부는 상기 내용물의 표면이 이동하는 방향인 상기 용기의 하측에 구비되고, 상기 부압공기부는 상기 내용물의 토출 방향으로 이동될 수 있다.The discharge part may be provided under the container in a direction in which the surface of the contents moves, and the negative pressure air part may move in a discharge direction of the contents.
상기 이동부의 가장자리 또는 테두리 부위가 용기의 내측면에 접하여 용기가 기울어지거나 흔들리는 경우 내용물이 밖으로 흘러나오지 않을 수 있다.When the container is inclined or shakes in contact with the inner surface of the container, the edge or the edge of the moving part may not flow out.
상기 부압공기부는 공기 저장 공간을 확장하거나 상기 내용물과의 밀착성을 높이기 위해 상기 이동부를 기준으로 상기 용기에 저장된 내용물 방향으로 공기포위벽을 돌출 형성할 수 있다.The negative pressure air unit may protrude an air enclosing wall in the direction of the contents stored in the container with respect to the moving unit in order to expand the air storage space or increase the adhesion with the contents.
상기 부압공기부를 상기 이동부에 연결하는 고정부를 포함하고, 상기 부압공기부와 상기 부압이동부 이외의 부분이 폐쇄 또는 개방되어 형성될 수 있다.It may include a fixed portion for connecting the negative pressure air portion to the moving part, the portion other than the negative pressure air portion and the negative pressure moving portion may be formed to be closed or open.
상기 부압공기부는 복수로 구성되고, 어느 하나의 부압공기부는 다른 부압공기부와 연결되거나, 또는 상기 고정부를 통해 다른 부압공기부와 연결될 수 있다.The negative pressure air part may be configured in plural, and one negative pressure air part may be connected to another negative pressure air part, or may be connected to another negative pressure air part through the fixing part.
상기 부압공기부는 구획벽에 의해 구획될 수 있다.The negative pressure air portion may be partitioned by a partition wall.
상기 이동부는 가장자리 또는 테두리에 리브를 연장 형성하고, 상기 리브는 상기 이동부의 이동시 상기 용기의 내측면에 묻은 잔류물을 긁어내기 위해 상기 스크래퍼를 형성할 수 있다.The movable portion extends a rib at an edge or an edge, and the rib may form the scraper to scrape off residues on the inner surface of the container when the movable portion moves.
이상에서 설명한 바와 같이, 본 발명에 따른 잔류물 이동장치 및 이를 구비하는 내용물 수용 용기는 종래 기술과 달리 부압이동부와 부압공기부를 포함하는 이동부가 용기 내에서 내용물이 감소하는 방향으로 이동되며 용기 내부 벽면에 묻은 내용물의 잔류물을 내용물이 저장되어 있는 방향으로 긁어내어 내용물을 최대한 토출하도록 유도함에 따라 내용물의 낭비나 손실을 방지할 수 있다. As described above, the residue moving device according to the present invention and the contents receiving container having the same, unlike the prior art, a moving part including a negative pressure moving part and a negative pressure air part is moved in a direction in which the contents decrease in the container and inside the container. By scraping the residues of the contents on the wall in the direction in which the contents are stored, the contents are discharged as much as possible to prevent waste or loss of the contents.
본 발명은 내용물을 향하는 이동부의 상측 또는 하측에 내용물에 의해 밀폐되는 공기실을 형성하여 내용물이 배출되며 감소시 부압이 발생됨에 따라 이동부가 자연스럽게 내용물이 감소되는 방향으로 이동되도록 함으로써 이동부의 부압이동부를 통해 용기 벽면의 잔류물을 최대한 긁어모을 수 있다. The present invention forms an air chamber sealed by the contents on the upper side or the lower side of the moving part facing the contents to discharge the contents and as the negative pressure is generated upon reduction, the moving portion naturally moves in the direction in which the contents are reduced, so as to move the negative pressure of the moving portion. It is possible to scrape away the residue on the container wall as much as possible.
본 발명은 토출관이 토출관 통과부와 공기 기밀하게 밀착되지 않고, 자유 이동 가능하게 이동부와 분리되어 구성이 간단하며, 제작 비용이 절감될 수 있다.According to the present invention, the discharge tube is not closely contacted with the discharge tube passage part, and is separated from the moving part to be freely movable, thereby simplifying the construction and reducing the manufacturing cost.
본 발명은 부압공기부를 내용물에 의해 밀폐되어 자연적으로 형성되는 부압 공기실에 의해 만들어짐에 따라 별도의 기밀성 유지를 위한 설비가 불필요하게 된다.According to the present invention, since the negative pressure air part is made of a negative pressure air chamber which is naturally sealed by the contents, a separate airtight facility is unnecessary.
본 발명은 점성의 액상 내용물이 용기의 내벽 등에 남아있지 않도록 하기 위함이다. 이를 통하여 용기 내의 잔류 내용물을 소진하도록 유도하여 자원의 낭비를 줄일 수 있다.The present invention is intended to prevent the viscous liquid content from remaining on the inner wall of the container. This can lead to exhaust of the remaining contents in the container, thereby reducing waste of resources.
본 발명은 이동부 둘레 부위가 용기의 내측면에 접하여 용기가 기울어지거나 흔들리는 경우 내용물이 밖으로 흘러나오지 않도록 할 수 있다.The present invention can prevent the contents from flowing out when the container around the moving portion in contact with the inner surface of the container is tilted or shaken.
본 발명은 음료수와 같은 액상 내용물의 경우 흡인 빨대를 통해 액상 내용물이 흡인되도록 하며, 용기를 기울였을 때에도 액상 내용물이 밖으로 흐르지 않고 빨대를 통해서만 토출되게 할 수 있다.The present invention allows the liquid contents to be sucked through the suction straw in the case of liquid contents such as drinking water, and even when the container is tilted, the liquid contents can be discharged only through the straw without flowing out.
본 발명은 액상 내용물의 상부면을 고정하여, 이동 또는 회전 시 기울임이 없이 상태를 유지하며 사용하는 기기 구성에 적용될 수 있다.The present invention is fixed to the upper surface of the liquid content, can be applied to the device configuration to use while maintaining the state without tilting during movement or rotation.
본 발명은 잔류물 이동장치를 다른 용기에 다시 결합하여 적용할 수 있도록 구성하여 환경 쓰레기를 줄일 수 있다.The present invention can reduce the environmental waste by configuring the residue transfer device can be applied to another container again.
도 1은 본 발명의 제 1실시예에 따른 잔류물 이동장치를 구비하는 내용물 수용 용기의 사시도이다.1 is a perspective view of a content accommodating container having a residue moving device according to a first embodiment of the present invention.
도 2는 본 발명의 제 1실시예에 따른 잔류물 이동장치를 구비하는 내용물 수용 용기의 분해 사시도이다.2 is an exploded perspective view of the contents container having a residue moving device according to the first embodiment of the present invention.
도 3은 본 발명의 제 1실시예에 따른 잔류물 이동장치를 구비하는 내용물 수용 용기의 종단면도이다.3 is a longitudinal cross-sectional view of the contents container having a residue moving device according to the first embodiment of the present invention.
도 4는 본 발명의 제 1실시예에 따른 잔류물 이동장치의 사시도이다.4 is a perspective view of a residue moving device according to a first embodiment of the present invention.
도 5는 본 발명의 제 1실시예에 따른 잔류물 이동장치의 저면 사시도이다.5 is a bottom perspective view of the residue moving device according to the first embodiment of the present invention.
도 6은 본 발명의 제 2실시예에 따른 잔류물 이동장치의 사시도이다.6 is a perspective view of a residue moving device according to a second embodiment of the present invention.
도 7은 본 발명의 제 2실시예에 따른 잔류물 이동장치의 저면 사시도이다.7 is a bottom perspective view of the residue moving device according to the second embodiment of the present invention.
도 8은 본 발명의 제 2실시예에 따른 잔류물 이동장치를 구비하는 내용물 수용 용기의 종단면도이다.Fig. 8 is a longitudinal sectional view of a content accommodating container having a residue moving device according to a second embodiment of the present invention.
도 9는 본 발명의 제 3실시예에 따른 잔류물 이동장치의 사시도이다.9 is a perspective view of a residue moving device according to a third embodiment of the present invention.
도 10은 본 발명의 제 3실시예에 따른 잔류물 이동장치의 저면 사시도이다.10 is a bottom perspective view of the residue moving device according to the third embodiment of the present invention.
도 11 및 도 12는 본 발명의 제 3실시예에 따른 잔류물 이동장치가 잔류물을 긁으며 이동하는 상태를 보인 내용물 수용 용기의 종단면도이다.11 and 12 are longitudinal cross-sectional view of the container containing the contents showing the state in which the residue moving device scrapes the residue to move according to the third embodiment of the present invention.
도 13은 본 발명의 제 4실시예에 따른 잔류물 이동장치를 구비하는 내용물 수용 용기의 사시도이다.Fig. 13 is a perspective view of a contents container having a residue moving device according to a fourth embodiment of the present invention.
도 14는 본 발명의 제 4실시예에 따른 잔류물 이동장치를 구비하는 내용물 수용 용기의 분해 사시도이다.Fig. 14 is an exploded perspective view of a contents container having a residue moving device according to a fourth embodiment of the present invention.
도 15는 본 발명의 제 4실시예에 따른 잔류물 이동장치를 구비하는 내용물 수용 용기의 결합 단면도이다.Fig. 15 is a cross sectional view of a content accommodating container having a residue moving device according to a fourth embodiment of the present invention.
도 16 내지 도 18은 본 발명의 제 4실시예에 따른 잔류물 이동장치의 작동 상태를 보인 단면도이다.16 to 18 are cross-sectional views showing an operating state of the residue moving device according to the fourth embodiment of the present invention.
도 19는 본 발명의 제 5실시예에 따른 잔류물 이동장치가 부설된 내용물 수용 용기의 분해도이다.FIG. 19 is an exploded view of a content accommodating container equipped with a residue moving device according to a fifth embodiment of the present invention. FIG.
도 20은 본 발명의 제 5실시예에 따른 잔류물 이동장치가 부설된 내용물 수용 용기의 결합된 상태의 단면도이다.20 is a cross-sectional view of the combined state of the container containing the contents of the residue transfer device according to the fifth embodiment of the present invention.
도 21은 본 발명의 제 6실시예에 따른 잔류물 이동장치가 부설된 내용물 수용 용기의 결합 단면도이다.21 is a cross-sectional view of the contents receiving container attached to the residue moving device according to the sixth embodiment of the present invention.
도 22는 본 발명의 제 6실시예에 따른 잔류물 이동장치의 사용 상태도이다.22 is a state diagram of use of the residue moving device according to the sixth embodiment of the present invention.
도 23은 본 발명의 제 7실시예에 따른 잔류물 이동장치가 부설된 내용물 수용 용기의 사시도이다.Figure 23 is a perspective view of the container containing the contents of the residue transfer device according to a seventh embodiment of the present invention.
도 24는 본 발명의 제 7실시예에 따른 잔류물 이동장치가 부설된 내용물 수용 용기의 결합된 상태의 단면도이다.24 is a cross-sectional view of the combined state of the container containing the contents of the residue transfer device according to the seventh embodiment of the present invention.
도 25는 본 발명의 제 7실시예에 따른 잔류물 이동장치를 구비하는 내용물 수용 용기의 분해 사시도이다.25 is an exploded perspective view of a contents container having a residue moving device according to a seventh embodiment of the present invention.
도 26은 본 발명의 제 7실시예에 따른 잔류물 이동장치의 사시도이다.26 is a perspective view of a residue moving device according to a seventh embodiment of the present invention.
도 27은 본 발명의 제 7실시예에 따른 잔류물 이동장치의 저면 사시도이다.27 is a bottom perspective view of the residue moving device according to the seventh embodiment of the present invention.
이하, 첨부된 도면들을 참조하여 본 발명에 따른 잔류물 이동장치 및 이를 구비하는 내용물 수용 용기의 실시예들을 설명한다. 이 과정에서 도면에 도시된 선들의 두께나 구성요소의 크기 등은 설명의 명료성과 편의상 과장되게 도시되어 있을 수 있다. 또한, 후술되는 용어들은 본 발명에서의 기능을 고려하여 정의된 용어들로서 이는 사용자, 운용자의 의도 또는 관례에 따라 달라질 수 있다. 그러므로 이러한 용어들에 대한 정의는 본 명세서 전반에 걸친 내용을 토대로 내려져야 할 것이다.Hereinafter, with reference to the accompanying drawings will be described embodiments of the residue transfer device and the contents receiving container having the same according to the present invention. In this process, the thickness of the lines or the size of the components shown in the drawings may be exaggerated for clarity and convenience of description. In addition, terms to be described below are terms defined in consideration of functions in the present invention, which may vary according to the intention or convention of a user or an operator. Therefore, the definitions of these terms should be made based on the contents throughout the specification.
도 1은 본 발명의 제 1실시예에 따른 잔류물 이동장치를 구비하는 내용물 수용 용기의 사시도이고, 도 2는 본 발명의 제 1실시예에 따른 잔류물 이동장치를 구비하는 내용물 수용 용기의 분해 사시도이다.1 is a perspective view of a content container having a residue moving device according to a first embodiment of the present invention, and FIG. 2 is an exploded view of a content container having a residue moving device according to a first embodiment of the present invention. Perspective view.
도 3은 본 발명의 제 1실시예에 따른 잔류물 이동장치를 구비하는 내용물 수용 용기의 종단면도이며, 도 4는 본 발명의 제 1실시예에 따른 잔류물 이동장치의 사시도이고, 도 5는 본 발명의 제 1실시예에 따른 잔류물 이동장치의 저면 사시도이다.3 is a longitudinal cross-sectional view of the contents container having a residue moving device according to the first embodiment of the present invention, FIG. 4 is a perspective view of the residue moving device according to the first embodiment of the present invention, and FIG. Bottom perspective view of the residue moving device according to the first embodiment of the present invention.
도 1 내지 도 5를 참조하면, 본 발명의 제 1실시예에 따른 내용물 수용 용기(10)는 내부에 유동성을 갖는 내용물(2)이 저장된다. 내용물(2)은 액체나 분말 등 유동성을 갖는다. 그리고, 용기(10)는 저장된 내용물(2)을 토출 가능하도록 일측에 배출부(12)를 형성한다. 배출부(12)는 용기(10)의 개방측으로서, 편의상, 용기(10)의 상측으로 개방되어 형성되는 것으로 한다.1 to 5, the contents accommodating container 10 according to the first embodiment of the present invention stores contents 2 having fluidity therein. The contents 2 have fluidity such as liquid or powder. In addition, the container 10 forms a discharge part 12 on one side to discharge the stored contents 2. The discharge part 12 is an open side of the container 10, and is formed to be open to the upper side of the container 10 for convenience.
특히, 용기(10)는 내용물(2) 저장이나 보충이 용이하도록 덮개(14)를 개폐 가능하게 구비할 수 있다. 덮개(14)는 나사 결합 등 다양한 방식으로 용기(10)에 분리 가능하게 결합된다. 이때, 배출부(12)는 덮개(14)에 형성된다. 물론, 용기(10)와 덮개(14)는 다양한 형상 및 다양한 재질로 이루어진다.In particular, the container 10 may be provided to open and close the cover 14 to facilitate storage or refilling of the contents 2. The cover 14 is detachably coupled to the container 10 in various ways such as by screwing. At this time, the discharge portion 12 is formed in the cover (14). Of course, the container 10 and the cover 14 is made of various shapes and various materials.
또한, 배출부(12)에는 토출관(20)이 삽입된다. 토출관(20)은 용기(10)에 저장된 내용물(2)을 토출 안내하는 역할을 한다. 토출관(20)은 하측이 내용물(2)에 접한 채 배출부(12)에 억지 끼움되어 고정된다. In addition, a discharge pipe 20 is inserted into the discharge part 12. The discharge tube 20 serves to guide discharge of the contents 2 stored in the container 10. The discharge tube 20 is forcibly fitted into the discharge portion 12 while the lower side is in contact with the contents 2 and fixed.
물론, 내용물(2)이 저장된 용기(10)의 하측에 배출부(12)가 형성될 경우, 내용물(2)이 개방된 배출부(12)를 통해 자연스럽게 배출됨으로써, 토출관(20)은 필요치 않게 된다. 이때, 배출부(12)는 내용물(2)의 흐름을 단속하도록 개폐 가능하게 된다. 용기(10)의 배출부(12) 형성 위치는 한정하지 않는다. 즉, 내용물(2)은 용기(10)의 상측으로 배출될 수도 있고, 하측으로 배출될 수도 있다.Of course, when the discharge portion 12 is formed below the container 10 in which the contents 2 are stored, the discharge portion 20 is naturally discharged through the discharge portion 12 in which the contents 2 are opened. Will not. At this time, the discharge portion 12 is opened and closed to control the flow of the contents (2). The position at which the discharge portion 12 is formed in the container 10 is not limited. That is, the contents 2 may be discharged to the upper side of the container 10, or may be discharged to the lower side.
토출관(20)의 직경, 개수, 크기 및 재질 등은 한정되지 않는다.The diameter, number, size, material, and the like of the discharge tube 20 are not limited.
한편, 용기(10)의 내용물(2)은 외력에 의해 토출관(20)을 통해 외부로 토출된다. 예로서, 토출관(20)의 상측에는 디스펜서 장치(30)가 구비된다. 디스펜서 장치(30)가 강제 펌핑 작동됨으로써, 용기(10)에 저장된 내용물(2)은 일정량씩 토출관(20)을 따라 유동되며 디스펜서 장치(30)를 통과 후 토출된다. 이때, 디스펜서 장치(30)는 통상적인 것으로서, 작동에 대한 상세 도면은 생략한다. 디스펜서 장치(30)가 토출관(20)의 상측에서 펌핑 작동됨에 따라, 토출관(20)은 배출부(12)에 견고하게 고정 지지된다.On the other hand, the contents 2 of the container 10 are discharged to the outside through the discharge pipe 20 by the external force. For example, the dispenser device 30 is provided above the discharge tube 20. As the dispenser device 30 is forcedly pumped, the contents 2 stored in the container 10 flow along the discharge tube 20 by a predetermined amount and are discharged after passing through the dispenser device 30. At this time, the dispenser device 30 is conventional, and detailed drawings of the operation are omitted. As the dispenser device 30 is pumped on the upper side of the discharge tube 20, the discharge tube 20 is firmly supported by the discharge unit 12.
특히, 용기(10)에 저장된 내용물(2)은 토출관(20)을 통해 배출되지만, 용기(10)는 내측면에 내용물(2)의 잔류물이 많이 묻어있게 된다. 즉, 용기(10)에 저장된 내용물(2)은 상당량이 토출되지 않은 채 버려지게 된다.In particular, the contents 2 stored in the container 10 are discharged through the discharge pipe 20, but the container 10 is left with a lot of residues of the contents 2 on the inner surface. That is, the contents 2 stored in the container 10 are discarded without a considerable amount being discharged.
이에 따라, 용기(10)는 내부에 잔류물 이동장치(100)를 구비한다. 잔류물 이동장치(100)는 토출관(20)을 따라 이동 가능하게 구비되고, 내용물(2)의 토출시 부압(negative pressure)에 의해 감소되는 내용물(2) 방향으로 이동된다. 잔류물 이동장치(100)는 토출로 인해 내용물(2)의 감소되는 방향을 따라 이동되며 용기(10) 내측면에 묻어있는 잔류물을 긁어서 용기(10)에 저장된 내용물(2)에 모으는 역할을 한다.Accordingly, the container 10 has a residue moving device 100 therein. The residue moving device 100 is provided to be movable along the discharge tube 20 and moves in the direction of the content 2 which is reduced by the negative pressure when discharging the content 2. The residue moving device 100 is moved along the direction in which the contents 2 are reduced due to the discharge and collects the residues on the inner surface of the container 10 to collect the contents 2 stored in the container 10. do.
이때, 용기(10)는 내용물(2)과 공기가 평압을 이루고 있는 상태에서, 내용물(2)이 토출관(20)을 통해 토출되는 만큼 부압이 발생하게 된다. 그래서, 잔류물 이동장치(100)는 감소되는 내용물(2) 방향으로 이동하게 된다.At this time, the container 10 is a negative pressure is generated as much as the contents 2 are discharged through the discharge pipe 20 in a state where the contents 2 and the air is equalized. Thus, the residue mover 100 moves in the direction of the reduced content 2.
잔류물 이동장치(100)는 이동부(110)를 포함한다.The residue mover 100 includes a mover 110.
이동부(110)는 용기(10) 내부에서 내용물(2)의 상부에 위치한다. 특히, 내용물(2)이 용기(10) 내부에서 공기의 하측에 위치할 경우, 이동부(110)는 하중으로 내용물(2)을 눌러줌으로써, 잔류물을 긁어서 용기(10)에 저장된 내용물(2)에 모으는 것을 좀 더 원활하게 하는 기능도 할 수 있다.The moving unit 110 is located above the contents 2 in the container 10. In particular, when the contents 2 are located below the air in the container 10, the moving part 110 presses the contents 2 with a load, thereby scraping the residue and storing the contents 2 in the container 10. You can also make it a lot easier to collect.
그리고, 이동부(110)는 토출관(20)에 억지 끼움에 의해 결합되지 않고, 토출관(20)이 토출관 통과부(116) 내에서 자유롭게 이동 가능하도록 이동부(110)에 결속되지 않도록 형성된다. 이때, 토출관 통과부(116)는 평면상 이동부(110)의 내부에 위치한다. 토출관 통과부(116)는 홀(hole)이다. In addition, the moving unit 110 is not coupled to the discharge tube 20 by interference fitting, and the discharge tube 20 is not bound to the moving unit 110 so that the discharge tube 20 can move freely in the discharge tube passage 116. Is formed. At this time, the discharge pipe passage portion 116 is located inside the planar moving portion 110. The discharge tube passage part 116 is a hole.
물론, 도시하지는 않았지만, 토출관(20)이 복수 개 일 경우, 토출관 통과부(116)는 이동부(110)의 중심을 기준으로 원 궤적을 따라 일정간격 유격되게 배치될 수 있다.Of course, although not shown, when there are a plurality of discharge pipes 20, the discharge pipe passing portion 116 may be spaced apart by a predetermined interval along the circle trajectory with respect to the center of the moving unit 110.
특히, 토출관(20)은 토출관 통과부(116) 내에서 공기 밀실하지 않게 삽입된다. 즉, 토출관(20)의 직경이 토출관 통과부(116)의 직경보다 소정 작게 형성되어, 공기는 토출관(20)이 삽입된 상태의 토출관 통과부(116)를 따라 이동하거나 순환할 수 있게 된다. In particular, the discharge tube 20 is inserted in the discharge tube passage portion 116 so as not to be air tight. That is, the diameter of the discharge tube 20 is formed smaller than the diameter of the discharge tube passage portion 116, so that the air can move or circulate along the discharge tube passage portion 116 in the state where the discharge tube 20 is inserted. It becomes possible.
아울러, 토출관 통과부(116)가 허용 오차 범위 내에서 최대의 직경으로 형성될 경우, 이동부(110)는 토출시 출렁이는 내용물(2)에 의해 많이 흔들리게 된다. 그래서, 토출관 통과부(116)는 부싱(bushing,117)을 삽입할 수 있다. 그리고, 토출관(20)은 부싱(117)에 축 삽입된다. 부싱(117) 내측면이 토출관(20) 둘레면과 접함으로써, 이동부(110)는 안정적으로 지지된다.In addition, when the discharge tube passing portion 116 is formed to the maximum diameter within the tolerance range, the moving unit 110 is shaken a lot by the contents (2) during the discharge. Thus, the discharge tube passage portion 116 can insert a bushing (117). The discharge pipe 20 is axially inserted into the bushing 117. By moving the inner surface of the bushing 117 into the circumferential surface of the discharge tube 20, the moving part 110 is stably supported.
또한, 이동부(110)에 의해 내용물(2)과 분리되는 본체공기부(11)인 토출관 통과부(116)의 내부가 부압공기부(130)와 격리되도록, 이동부(110)는 토출관 통과부(116) 가장자리를 따라 상측 또는 하측으로 격벽(118)을 연장 형성한다. 또한, 격벽(118)은 토출관(20)과의 접촉 면적을 증가시킴으로써, 이동되거나 정지된 이동부(110)는 더욱 안정적으로 지지된다. 물론, 격벽(118)은 길이가 한정되지 않고, 이동부(110)에 일체로 제작될 수 있다. 이때, 부싱(117)은 토출관 통과부(116)와 격벽(118)에 걸쳐 끼워진다.In addition, the moving part 110 is discharged so that the inside of the discharge pipe passage part 116 which is the main body air part 11 separated from the contents 2 by the moving part 110 is isolated from the negative pressure air part 130. The partition wall 118 extends upwardly or downwardly along an edge of the tube passing part 116. In addition, the partition wall 118 increases the contact area with the discharge pipe 20, so that the moved or stopped moving part 110 is more stably supported. Of course, the partition wall 118 is not limited in length, it can be manufactured integrally with the moving part (110). At this time, the bushing 117 is fitted over the discharge pipe passage part 116 and the partition 118.
또한, 이동부(110)는 완전히 막혀 있지 않는 상태도 포함한다. 즉, 이동부(110)는 부압공기부(130)와 부압이동부(120)를 연결하고, 부압공기부(130)와 부압이동부(120) 이외의 부분이 폐쇄 또는 개방되어 형성될 수 있다.In addition, the moving unit 110 also includes a state that is not completely blocked. That is, the moving unit 110 may be formed by connecting the negative pressure air unit 130 and the negative pressure moving unit 120, and parts other than the negative pressure air unit 130 and the negative pressure moving unit 120 are closed or open. .
그리고, 용기(10)에 저장된 내용물(2)을 향하는 이동부(110)의 일측 중 적어도 일부분은 내용물(2) 방향으로 개방된 열린 공간(112)을 형성한다. 그리고, 열린 공간(112)의 적어도 일부분은 밀폐된 공기실(air cavity,114)을 형성한다. 즉, 이동부(110)가 내용물(2)에 접하거나 부유하고 있는 상태에서, 열린 공간(112)은 내부 일부에 내용물(2)이 유입된다. 이로 인해, 열린 공간(112)에는 밀폐된 채 공기가 잔류하고 있는 공기실(114)이 형성된다.In addition, at least a portion of one side of the moving part 110 facing the contents 2 stored in the container 10 forms an open space 112 that is open in the contents 2 direction. At least a portion of the open space 112 forms a sealed air cavity 114. That is, in the state in which the moving part 110 is in contact with or floating in the contents 2, the contents 2 are introduced into a part of the open space 112. For this reason, in the open space 112, the air chamber 114 in which air remains sealed is formed.
내용물(2)의 토출시, 이동부(110)는 열린 공간(112)의 적어도 일부분에 형성된 공기실(114)에 작용하는 부압에 의해 감소되는 내용물(2) 방향으로 이동하게 된다. 이때, 이동부(110)는 내용물(2)의 감소되는 방향을 따라 용기(10)의 내부에서 상측 또는 하측으로 이동하게 된다. 편의상, 내용물(2)은 용기(10)의 내부 하측에 저장된 채 용기(10)의 상측으로 토출되는 것으로 한다. 그래서, 이동부(110)는 용기(10) 내에서 하측으로 이동하게 된다.When discharging the contents 2, the moving unit 110 moves in the direction of the contents 2 which is reduced by the negative pressure acting on the air chamber 114 formed in at least a portion of the open space 112. At this time, the moving unit 110 is moved upward or downward in the interior of the container 10 along the direction of reduction of the contents (2). For convenience, the contents 2 are discharged to the upper side of the container 10 while being stored in the lower side of the inside of the container 10. Thus, the moving unit 110 moves downward in the container 10.
한편, 잔류물 이동장치(100)는 부압이동부(120)와 부압공기부(130)를 더 포함한다. 이때, 부압이동부(120)와 부압공기부(130)는 이동부(110)에 형성된다.Meanwhile, the residue moving device 100 further includes a negative pressure moving part 120 and a negative pressure air part 130. In this case, the negative pressure moving part 120 and the negative pressure air part 130 are formed in the moving part 110.
부압공기부(130)는 이동부(110)의 중앙 부위에 형성되고, 부압이동부(120)는 이동부(110)의 가장자리에 형성된다.The negative pressure air unit 130 is formed at the central portion of the moving unit 110, the negative pressure moving unit 120 is formed at the edge of the moving unit 110.
열린 공간(112)과 공기실(114)은 부압공기부(130)에 포함된다. The open space 112 and the air chamber 114 are included in the negative pressure air 130.
특히, 부압공기부(130)는 공기포위벽(134)을 포함한다. 공기포위벽(134)은 이동부(110)에서 용기(10)에 저장된 내용물(2) 방향으로 돌출 형성된다. 이때, 공기포위벽(134)은 원주 방향으로 연속되게 형성된다. 그래서, 공기포위벽(134)은 내용물(2)을 향하는 이동부(110)의 일측에 공기를 가두어 잔류시키는 역할을 한다. 공기포위벽(134)은 열린 공간(112)에 공기 저장 공간을 확장하는 역할을 한다. In particular, the negative pressure air unit 130 includes an air enclosure wall 134. The air enclosure wall 134 protrudes from the moving part 110 in the direction of the contents 2 stored in the container 10. At this time, the air envelope wall 134 is formed continuously in the circumferential direction. Thus, the air enclosing wall 134 serves to confine air to one side of the moving part 110 facing the contents 2 and to remain. The air enclosure wall 134 serves to expand the air storage space in the open space 112.
공기포위벽(134)으로 인해, 밀폐된 공기실(114)이 구비됨에 따라, 가둬진 공기의 양이 확보됨으로써, 부압이 발생하게 된다.Due to the air enclosing wall 134, as the sealed air chamber 114 is provided, the amount of trapped air is secured, whereby negative pressure is generated.
이때, 격벽(118)은 공기포위벽(134) 내측에 위치하게 되는데, 공기포위벽(134)과 동일 높이 또는 다른 높이로 이루어진다. 편의상, 격벽(118)의 높이가 공기포위벽(134)의 높이와 동일한 것으로 도시한다. At this time, the partition wall 118 is located inside the air enclosure wall 134, and is made of the same height or different height as the air enclosure wall 134. For convenience, the height of the partition wall 118 is shown to be equal to the height of the air enclosure wall 134.
아울러, 부압공기부(130)는 볼록부(136)를 포함한다. 볼록부(136)는 이동부(110)에서 용기(10)에 저장된 내용물(2) 방향의 반대 방향으로 돌출 형성된다. 그래서, 열린 공간(112)이 확장된다. 이로 인해, 볼록부(136)는 열린 공간(112)에 공기 저장 공간을 더욱 확장하는 역할을 한다. In addition, the negative pressure air portion 130 includes a convex portion 136. The convex portion 136 protrudes from the moving part 110 in a direction opposite to the direction of the contents 2 stored in the container 10. Thus, the open space 112 is expanded. Thus, the convex portion 136 serves to further expand the air storage space in the open space 112.
볼록부(136)로 인해, 밀폐된 공기실(114)이 더욱 확장됨에 따라, 가둬진 공기의 양이 좀 더 증가함으로써, 부압이 더 크게 발생하게 된다. Due to the convex portion 136, as the enclosed air chamber 114 is further expanded, the amount of trapped air increases further, so that the negative pressure is generated larger.
이때, 볼록부(136)는 공기포위벽(134)의 테두리 궤적을 따라 이동부(110)에 형성되는 것으로 도시된다. 물론, 볼록부(136)는 다양한 형상 및 다양한 크기로 이루어질 수 있다.At this time, the convex portion 136 is shown to be formed in the moving portion 110 along the edge trajectory of the air enclosure wall 134. Of course, the convex portion 136 may be formed in various shapes and various sizes.
그리고, 볼록부(136)는 이동부(110)의 중심 부위에 형성되는데, 토출관 통과부(116)를 중심으로 원 궤적을 따라 연속 또는 비연속되게 형성된다. 볼록부(136)는 비연속되게 이동부(110)에서 돌출 형성시, 원 궤적을 따라 일정 간격으로 유격되게 배치되거나 이동부(110)에서 대칭 균등하게 배치될 수 있다. 이는, 이동부(110)에 균일한 부압이 발생되도록 하기 위함이다.The convex portion 136 is formed at the center portion of the moving part 110, and is formed continuously or discontinuously along the circle trajectory around the discharge tube passage 116. When the convex portion 136 is formed to protrude from the moving portion 110 discontinuously, the convex portions 136 may be spaced apart at regular intervals along the circular trajectory or symmetrically disposed at the moving portion 110. This is to allow a uniform negative pressure to be generated in the moving unit 110.
격벽(118)은 볼록부(136)로 인해 열린 공간(112)의 높이가 증가된 만큼 길게 형성될 수 있다. 그래서, 토출관(20)과 이동부(110)의 접촉 면적이 증가됨으로써, 토출관(20)에 대한 이동부(110)의 지지력이 더욱 향상된다.The partition wall 118 may be formed to be as long as the height of the open space 112 is increased due to the convex portion 136. Thus, by increasing the contact area between the discharge tube 20 and the moving unit 110, the supporting force of the moving unit 110 with respect to the discharge tube 20 is further improved.
물론, 공기실(114)은 이동부(110)에 함몰되어 형성될 수도 있다. Of course, the air chamber 114 may be formed by being recessed in the moving unit 110.
한편, 공기실(114)에 작용하는 부압으로 부압공기부(130)가 감소되는 내용물(2) 방향으로 이동시, 부압이동부(120)는 부압공기부(130)와 함께 이동한다.On the other hand, when moving in the direction of the contents (2) where the negative pressure air 130 is reduced by the negative pressure acting on the air chamber 114, the negative pressure moving unit 120 moves with the negative pressure air 130.
부압이동부(120)는 이동부(110)의 가장자리로서, 이동부(110)의 이동시 용기(10) 내측면에 묻은 잔류물을 용기(10)에 저장된 내용물(2) 방향으로 긁어내는 역할을 한다.The negative pressure moving part 120 is an edge of the moving part 110, and when the moving part 110 moves, the negative pressure moving part 120 scrapes the residue on the inner surface of the container 10 in the direction of the contents 2 stored in the container 10. do.
이때, 부압이동부(120)가 용기(10)의 내측면에 단순히 접하여 용기(10) 내측면의 잔류물을 긁어내고, 용기(10)의 내측면과 접촉 면적을 줄여 이송시 저항을 최소화하기 위해, 부압이동부(120)의 테두리에는 뾰족한 스크래퍼(122)가 형성된다. 스크래퍼(122)는 용기(10) 내측면에 단순히 접한 채 이동되며 잔류물을 긁는다. 스크래퍼(122)는 용기(10) 내측면의 궤적을 따라 연속되게 형성된다. 스크래퍼(122)는 다양하게 형성될 수 있다.At this time, the negative pressure moving unit 120 simply contacts the inner surface of the container 10 to scrape off residues on the inner surface of the container 10, and minimizes the resistance during transfer by reducing the contact area with the inner surface of the container 10. To this end, a sharp scraper 122 is formed at the edge of the negative pressure moving part 120. The scraper 122 is moved simply in contact with the inner surface of the container 10 and scratches the residue. The scraper 122 is continuously formed along the trajectory of the inner surface of the container 10. The scraper 122 may be formed in various ways.
물론, 스크래퍼(122)는 이동부(110)의 가장자리에서 용기(10) 내측면에 접하도록 연장될 수도 있다.Of course, the scraper 122 may extend to contact the inner surface of the container 10 at the edge of the moving part 110.
그리고, 토출관 통과부(116)는 격벽(118)으로 구획되어 부압이동부(120) 내에 구비되는 부압공기부(130)와 통하지 않게 된다. 그래서, 공기실(114)은 부압 작용을 위해 밀폐된다.In addition, the discharge pipe passing part 116 is divided into the partition wall 118 so as not to communicate with the negative pressure air part 130 provided in the negative pressure moving part 120. Thus, the air chamber 114 is closed for the negative pressure action.
도 6은 본 발명의 제 2실시예에 따른 잔류물 이동장치의 사시도이고, 도 7은 본 발명의 제 2실시예에 따른 잔류물 이동장치의 저면 사시도이며, 도 8은 본 발명의 제 2실시예에 따른 잔류물 이동장치를 구비하는 내용물 수용 용기의 종단면도이다.6 is a perspective view of a residue moving device according to a second embodiment of the present invention, FIG. 7 is a bottom perspective view of a residue moving device according to a second embodiment of the present invention, and FIG. 8 is a second embodiment of the present invention. It is a longitudinal cross-sectional view of the content accommodating container provided with the residue moving apparatus which concerns on the example.
도 6 내지 도 8을 참조하면, 본 발명의 제 2실시예에 따른 내용물 용기(10)는 내부에 저장된 내용물(2)이 감소되는 방향으로 이동되는 잔류물 이동장치(100)를 구비한다.6 to 8, the contents container 10 according to the second embodiment of the present invention includes a residue moving device 100 which is moved in a direction in which the contents 2 stored therein are reduced.
잔류물 이동장치(100)는 이동부(110)를 포함한다.The residue mover 100 includes a mover 110.
이동부(110)는 용기(10) 내에서 감소되는 내용물(2) 방향을 향하는 일측 중 적어도 일부분은 감소되는 내용물(2) 방향으로 열린 공간(112)을 형성하도록 구획된다.The moving part 110 is partitioned so that at least a portion of one side of the container 10 facing in the direction of the reduced content 2 forms an open space 112 in the direction of the reduced content 2.
그리고, 열린 공간(112)의 적어도 일부분은 밀폐된 공기실(114)을 형성한다. 즉, 이동부(110)가 내용물(2)에 접하거나 부유하고 있는 상태에서, 열린 공간(112)은 내부 일부에 내용물(2)이 유입된다. 이로 인해, 열린 공간(112)은 공기포위벽(134)과 내용물(2) 표면으로 밀폐된 채 공기가 잔류하고 있는 공기실(114)이 형성된다.At least a portion of the open space 112 forms a sealed air chamber 114. That is, in the state in which the moving part 110 is in contact with or floating in the contents 2, the contents 2 are introduced into a part of the open space 112. As a result, the air chamber 114 in which air remains while the open space 112 is sealed by the air enclosure wall 134 and the surface of the contents 2 is formed.
내용물(2)의 토출시, 내용물(2)의 양이 줄면서, 이동부(110)는 열린 공간(112)의 적어도 일부분에 형성된 밀폐된 공기실(114)에 작용하는 부압에 의해 감소되는 내용물(2) 방향으로 이동하게 된다. 이때, 이동부(110)는 내용물(2)의 감소되는 방향을 따라 용기(10)의 내부에서 상측 또는 하측으로 이동하게 된다. When discharging the contents 2, the amount of the contents 2 decreases, and the moving part 110 is reduced by the negative pressure acting on the sealed air chamber 114 formed in at least a part of the open space 112. It moves in the (2) direction. At this time, the moving unit 110 is moved upward or downward in the interior of the container 10 along the direction of reduction of the contents (2).
한편, 잔류물 이동장치(100)는 부압이동부(120)와 부압공기부(130)를 더 포함한다. Meanwhile, the residue moving device 100 further includes a negative pressure moving part 120 and a negative pressure air part 130.
그리고, 부압공기부(130)는 공기포위벽(134), 볼록부(136), 측벽(132) 및 구획벽(138)을 포함한다.The negative pressure air 130 includes an air enclosure wall 134, a convex portion 136, a side wall 132, and a partition wall 138.
공기포위벽(134)과 볼록부(136)는 상술한 것으로 대체한다.The air envelope 134 and the convex portion 136 are replaced with those described above.
아울러, 측벽(132)은 이동부(110) 중 일부분이 상측 또는 하측으로 연장된다. 이때, 열린 공간(112)은 이동부(110)의 볼록부(136)에 대응되는 부위에도 형성되고, 부압이동부(120)에 대응되는 부위에도 형성된다. 이는, 공기실(114)을 증가시켜 부압을 더욱 증가시키기 위함이다. In addition, a portion of the side wall 132 extends upwardly or downwardly. In this case, the open space 112 is also formed at a portion corresponding to the convex portion 136 of the moving portion 110, and is also formed at a portion corresponding to the negative pressure moving portion 120. This is to increase the air chamber 114 to further increase the negative pressure.
측벽(132)은 볼록부(136)에 형성되는 열린 공간(112)과 부압이동부(120)에 형성되는 열린 공간(112)을 구획하기 위해 이동부(110)에 돌출 형성되어, 이동부(110)가 흔들리지 않고 안정적으로 내용물(2)이 감소하는 방향으로 이동할 수 있게 된다.The side wall 132 protrudes from the moving part 110 to partition the open space 112 formed in the convex portion 136 and the open space 112 formed in the negative pressure moving part 120. 110 can be stably moved in the direction of reducing the content (2) without shaking.
또한, 구획벽(138)은 볼록부(136)에 형성된 열린 공간(112)과 부압이동부(120)에 형성된 열린 공간(112) 중 적어도 어느 하나를 구획하도록 형성된다. 편의상, 구획벽(138)은 부압이동부(120)에 형성된 열린 공간(112)을 구획하는 것으로 도시한다.In addition, the partition wall 138 is formed to partition at least one of the open space 112 formed in the convex portion 136 and the open space 112 formed in the negative pressure moving part 120. For convenience, the partition wall 138 is shown as partitioning the open space 112 formed in the negative pressure moving part 120.
구획벽(138)은 구획된 열린 공간(112) 각각의 공기 밀도를 동일하거나 유사하게 함으로써, 부압이 이동부(110)의 부압공기부(130) 전체에 걸쳐 고르게 작용할 수 있다. 물론, 구획벽(138)의 개수는 한정하지 않는다.The partition wall 138 may equalize or close the air density of each of the divided open spaces 112, so that the negative pressure may act evenly over the entire negative pressure air 130 of the moving part 110. Of course, the number of partition walls 138 is not limited.
한편, 이동부(110)는 테두리를 따라 마감부재(150)를 구비하고, 마감부재(150)는 용기(10)의 내측면을 향하는 테두리를 따라 요철돌부(152)를 형성한다.On the other hand, the moving part 110 is provided with a finishing member 150 along the rim, the finishing member 150 forms the uneven protrusions 152 along the rim toward the inner surface of the container (10).
마감부재(150)는 이동부(110)의 테두리에 장착할 수 있도록 탄성적으로 늘어날 수 있는 고무나 수지 등 다양한 재질로 적용 가능하다.Finishing member 150 is applicable to a variety of materials, such as rubber or resin that can be elastically stretched to be mounted on the edge of the moving part (110).
그리고, 이동부(110)가 부압에 의해 내용물(2)의 줄어드는 방향으로 이동시, 요철돌부(152)는 용기(10)의 내측면에 공기 기밀하지 않도록 단순히 접하여 용기(10)의 내측면에 묻은 잔류물을 긁어내는 역할을 한다. 요철돌부(152)는 다양한 형상으로 형성될 수 있다.In addition, when the moving part 110 moves in the direction in which the contents 2 are reduced by the negative pressure, the uneven protrusions 152 are simply contacted with the inner surface of the container 10 so as not to be airtight with the inner surface of the container 10. It serves to scrape off residues. The uneven protrusion 152 may be formed in various shapes.
물론, 이동부(110) 특히, 부압이동부(120)는 가장자리나 테두리를 따라 스크래퍼(122)를 형성할 수도 있다.Of course, the moving unit 110, in particular, the negative pressure moving unit 120 may form a scraper 122 along the edge or edge.
요철돌부(152)가 용기(10)의 내측면에 액상 기밀하게 접하는 경우, 요철돌부(152)와 공기포위벽(134) 또는, 공기포위벽(134)이 없는 경우의 요철돌부(152)와 측벽(132) 사이 공간은 액상 내용물에 접한 공기실을 포함하는 부압공기부를 형성된다.In the case where the uneven protrusion 152 is in liquid contact with the inner surface of the container 10 in a liquid-tight manner, the uneven protrusion 152 and the air surrounded wall 134 or the uneven protrusion 152 in the absence of the air surrounded wall 134 and The space between the side walls 132 forms a negative pressure air portion including an air chamber in contact with the liquid contents.
미설명된 도면부호는 상술한 것으로 대체한다.Unexplained reference numerals are replaced with those described above.
도 9는 본 발명의 제 3실시예에 따른 잔류물 이동장치의 사시도이고, 도 10은 본 발명의 제 3실시예에 따른 잔류물 이동장치의 저면 사시도이며, 도 11 및 도 12는 본 발명의 제 3실시예에 따른 잔류물 이동장치가 잔류물을 긁으며 이동하는 상태를 보인 내용물 수용 용기의 종단면도이다.9 is a perspective view of a residue moving apparatus according to a third embodiment of the present invention, FIG. 10 is a bottom perspective view of a residue moving apparatus according to a third embodiment of the present invention, and FIGS. 11 and 12 are views of the present invention. 3 is a longitudinal cross-sectional view of the contents container having a state in which the residue moving device according to the third embodiment scratches and moves the residue.
도 9 내지 도 12를 참조하면, 본 발명의 제 3실시예에 따른 내용물 수용 용기(10)는 내부에 저장된 내용물(2)이 감소되는 방향으로 이동되는 잔류물 이동장치(100)를 구비한다.9 to 12, the contents receiving container 10 according to the third embodiment of the present invention includes a residue moving device 100 which is moved in a direction in which the contents 2 stored therein are reduced.
잔류물 이동장치(100)는 이동부(110)를 포함한다.The residue mover 100 includes a mover 110.
이동부(110)는 열린 공간(112)을 형성하도록 구획된다. 그리고, 열린 공간(112)의 적어도 일부분은 밀폐된 공기실(114)을 형성한다. 즉, 이동부(110)가 내용물(2)에 접하거나 부유하고 있는 상태에서, 열린 공간(112)은 내부 일부에 내용물(2)이 유입된다. 내용물(2)의 토출시, 이동부(110)는 열린 공간(112)의 적어도 일부분에 형성된 공기실(114)에 작용하는 부압에 의해 감소되는 내용물(2) 방향으로 이동하게 된다. 이때, 이동부(110)는 내용물(2)의 감소되는 방향을 따라 용기(10)의 내부에서 이동하게 된다. The moving unit 110 is partitioned to form an open space 112. At least a portion of the open space 112 forms a sealed air chamber 114. That is, in the state in which the moving part 110 is in contact with or floating in the contents 2, the contents 2 are introduced into a part of the open space 112. When discharging the contents 2, the moving unit 110 moves in the direction of the contents 2 which is reduced by the negative pressure acting on the air chamber 114 formed in at least a portion of the open space 112. At this time, the moving unit 110 is moved in the interior of the container 10 along the direction of reduction of the contents (2).
한편, 잔류물 이동장치(100)는 부압이동부(120)와 부압공기부(130)를 더 포함한다. Meanwhile, the residue moving device 100 further includes a negative pressure moving part 120 and a negative pressure air part 130.
열린 공간(112)과 공기실(114)은 부압공기부(130)측에 형성된다. The open space 112 and the air chamber 114 are formed on the negative pressure air 130.
그리고, 부압공기부(130)는 공기포위벽(134), 볼록부(136) 및 구획벽(138)을 포함한다. 공기포위벽(134), 볼록부(136) 및 구획벽(138)은 상술한 것으로 대체한다.The negative pressure air 130 includes an air enclosure wall 134, a convex portion 136, and a partition wall 138. The air envelope 134, the convex portion 136, and the partition wall 138 replace those described above.
구획벽(138)은 구획된 열린 공간(112) 각각의 공기 밀도를 동일하거나 유사하게 함으로써, 부압이 이동부(110)의 부압공기부(130) 전체에 걸쳐 고르게 작용할 수 있게 된다.The partition wall 138 makes the air density of each of the partitioned open spaces 112 equal or similar, so that the negative pressure can act evenly over the entire negative pressure air portion 130 of the moving part 110.
물론, 구획벽(138)의 개수는 한정하지 않는다.Of course, the number of partition walls 138 is not limited.
또한, 이동부(110)는 가장자리 또는 테두리에 리브(140)를 연장 형성한다. 리브(140)는 이동부(110), 특히 부압이동부(120)의 가장자리에서 용기(10)의 내측면 방향으로 연장 형성된다. 이때, 리브(140)는 다양한 형상으로 형성될 수 있고, 이동부(110)에 일체로 제작될 수 있다.In addition, the moving unit 110 extends the ribs 140 on the edge or border. The rib 140 extends in the direction of the inner surface of the container 10 at the edge of the moving part 110, in particular the negative pressure moving part 120. In this case, the rib 140 may be formed in various shapes and may be integrally manufactured to the moving part 110.
아울러, 리브(140)는 이동부(110)의 다양한 위치에서 연장 형성될 수 있다. 편의상, 리브(140)는 부압이동부(120)의 하측(도면에서 봤을 때)에서 연장 형성되는 것으로 한다.In addition, the rib 140 may extend from various positions of the moving part 110. For convenience, the rib 140 is formed to extend from the lower side (as seen in the drawing) of the negative pressure moving part 120.
그리고, 리브(140)는 스크래퍼(122)를 형성한다. 스크래퍼(122)는 이동부(110)의 이동시 용기(10)의 내측면에 묻은 잔류물을 긁어내는 역할을 한다. 물론, 부압이동부(120)도 스크래퍼(122)를 형성할 수 있다. 즉, 스크래퍼(122)는 단수 또는 복수 개 구비되어 용기(10)의 내측면에 단순히 접한 채 내측면에 묻은 내용물(2)의 잔류물을 최대한 긁어 토출측으로 유도할 수 있게 한다.The rib 140 forms a scraper 122. The scraper 122 serves to scrape off residues on the inner surface of the container 10 when the moving unit 110 moves. Of course, the negative pressure moving unit 120 may also form the scraper 122. That is, the scraper 122 is provided with a singular or plural number so that the residue of the contents 2 buried on the inner side can be scraped as much as possible to guide the discharge side to the inner side while simply contacting the inner side of the container 10.
또한, 공기포위벽(134)은 슬라이딩 이동 가능한 연장부재(160)를 구비할 수 있다. 공기포위벽(134)이 통 형상의 연장부재(160)를 구비함으로써, 내용물(2)에 의해 밀폐되는 공기실(114)의 면적이 증가된다. 그래서, 부압이 더 크게 작용한다.In addition, the air enclosing wall 134 may include an elongate movable member 160. As the air enclosure wall 134 includes the cylindrical extension member 160, the area of the air chamber 114 sealed by the contents 2 is increased. So, the negative pressure acts bigger.
이때, 연장부재(160)는 내용물(2)의 점성이나 저장량에 따라 공기포위벽(134)에 슬라이딩 가능하게 구비된다.At this time, the extension member 160 is provided to be slidable to the air enclosure wall 134 according to the viscosity or storage amount of the contents (2).
따라서, 연장부재(160)가 용기(10) 바닥에 접할 때 부압으로 이동부(110)가 이동하면서 연장부재(160)가 슬라이딩되어 부압이동부(120)가 잔류물을 최대한 긁어내릴 수 있게 된다.Therefore, when the extension member 160 is in contact with the bottom of the container 10, the moving member 110 is moved under negative pressure so that the extension member 160 is slid so that the negative pressure moving part 120 can scrape the residue as much as possible. .
그리고, 연장부재(160)는 공기포위벽(134)으로부터 이탈 방지되게 설치된다.In addition, the extension member 160 is installed to be separated from the air enclosure wall 134.
예로서, 공기포위벽(134)은 외측 둘레면에 플랜지(162)를 형성하고, 연장부재(160)는 플랜지(162)에 걸릴 수 있도록 내측면에 걸림턱(164)을 형성한다. 물론, 플랜지(162)와 걸림턱(164)은 다양한 형상으로 변형 가능하고, 연장부재(160)는 다양한 형상 및 다양한 재질로 적용 가능하다.For example, the air enclosing wall 134 forms a flange 162 on the outer circumferential surface, and the extension member 160 forms a locking jaw 164 on the inner surface to be caught by the flange 162. Of course, the flange 162 and the latching jaw 164 may be deformed into various shapes, and the extension member 160 may be applied to various shapes and various materials.
미설명된 도면부호는 상술한 것으로 대체한다.Unexplained reference numerals are replaced with those described above.
도 13은 본 발명의 제 4실시예에 따른 잔류물 이동장치를 구비하는 내용물 수용 용기의 사시도이고, 도 14는 본 발명의 제 4실시예에 따른 잔류물 이동장치를 구비하는 내용물 수용 용기의 분해 사시도이며, 도 15는 본 발명의 제 4실시예에 따른 잔류물 이동장치를 구비하는 내용물 수용 용기의 결합 단면도이다.FIG. 13 is a perspective view of a content container having a residue moving device according to a fourth embodiment of the present invention, and FIG. 14 is an exploded view of a content container having a residue moving device according to a fourth embodiment of the present invention. Fig. 15 is a sectional view of a combined contents container having a residue moving device according to a fourth embodiment of the present invention.
도 16 내지 도 18은 본 발명의 제 4실시예에 따른 잔류물 이동장치의 작동 상태를 보인 단면도이다.16 to 18 are cross-sectional views showing an operating state of the residue moving device according to the fourth embodiment of the present invention.
도 13 내지 도 18을 참조하면, 본 발명의 제 4실시예에 따른 내용물 수용 용기(10)는 내부에 저장된 내용물의 표면(상부면)에 위치하여 부압에 의해 내용물의 감소 방향으로 이동되는 잔류물 이동장치(100)를 구비하는데, 본 실시 예의 경우 잔류물 이동장치(100)는 내용물의 상부면을 덮는 형태의 몸체이면서, 몸체의 아랫면에는 일정 높이로 형성되면서 그 하부가 개방되어 내용물의 상부면과 부압이 유지되는 공간인 열린 공간(112)을 갖는다.13 to 18, the contents receiving container 10 according to the fourth embodiment of the present invention is located on the surface (upper surface) of the contents stored therein and the residue is moved in the direction of reduction of the contents by the negative pressure In the present embodiment, the residue moving device 100 is a body that covers the upper surface of the contents, and is formed at a predetermined height on the lower surface of the body, and the lower portion thereof is opened to open the upper surface of the contents. It has an open space 112 which is a space in which an overpressure is maintained.
본 실시 예는 용기(10)의 상단에 설치되어, 내용물을 토출 유도하도록 상부토출관(21)을 가지는 디스펜서 장치(30)를 더 포함하며, 용기(10) 내부의 내용물을 토출시키기 위한 토출관(20)이 잔류물 이동장치(100)를 관통하기 위하여 잔류물 이동장치(100)에는 토출관(20)이 관통하는 토출관 통과부(116)가 형성되어 있고, 토출관 통과부(116)는 토출관(22)에 밀착성이 있게 접한다.The present embodiment further includes a dispenser device 30 installed at an upper end of the container 10 and having an upper discharge pipe 21 to guide the discharge of the contents, and a discharge tube for discharging the contents of the container 10. In order for the 20 to penetrate the residue moving device 100, the residue moving device 100 is formed with a discharge pipe passing part 116 through which the discharge pipe 20 penetrates, and the discharge pipe passing part 116 is formed. Is in close contact with the discharge tube 22.
또는, 토출관 통과부(116)가 토출관(22)에 밀착되지 않고, 토출관(20)이 토출관 통과부(116) 내에서 자유롭게 이동 가능하도록 이동부(110)에 결속되지 않도록 형성될 수 있다.Alternatively, the discharge tube passage part 116 is not in close contact with the discharge tube 22, and the discharge tube 20 is formed so as not to be bound to the moving part 110 so as to be free to move in the discharge tube passage part 116. Can be.
잔류물 이동장치(100)는 용기(10)에 보관되는 내용물에 대응하여 부압으로 위치를 유지함과 아울러, 용기(10)의 내용물이 배출됨에 따라 하강하면서 용기(10)의 내벽에 밀착되는 부압이동부(120)를 포함하는 이동부(110)를 포함하여 이루어진다.The residue moving device 100 maintains its position at a negative pressure corresponding to the contents stored in the container 10, and while the content of the container 10 is discharged, the negative pressure contacting the inner wall of the container 10 is lowered. It comprises a moving unit 110 including the eastern portion 120.
부압이동부(120)는 용기(10)의 내벽에 접하여 밀착성을 유지할 수 있도록 끝단이 탄성을 가지는 구조이고, 이동부(110)의 외곽에 위치한 둘레부로서 별도로 분리된 구성이 끼움 결합되도록 형성되며 용기(10)의 내용물 소진에 따라 하강하면서 용기(10)의 내벽에 남아 있는 잔류물을 끌어내리는 역할을 한다.Negative pressure moving part 120 is a structure having the end is elastic so as to keep in contact with the inner wall of the container 10, and is formed to be fitted and coupled separately separated configuration as a circumference located on the outer portion of the moving part (110). As the contents of the container 10 are exhausted, the container 10 serves to pull down the residue remaining on the inner wall of the container 10.
용기(10)는 손으로 펌핑에 의한 압력을 가하여 눌러서 내용물을 토출시키도록 내부에 상부토출관(21)이 형성된 디스펜서 장치(30)를 포함한다.The container 10 includes a dispenser device 30 in which an upper discharge pipe 21 is formed therein so as to discharge the contents by applying pressure by pumping by hand.
용기(10)는 액상의 내용물을 담아 보관하는 것으로, 본체공기부(11)에 공기가 잔류하고, 액상의 내용물이 충전되어 보관되도록 형성된다.The container 10 is to store the contents of the liquid, the air is left in the main body air portion 11 is formed so that the contents of the liquid is filled and stored.
또한, 용기(10)의 상측단에는 디스펜서 장치(30)가 결합되기 위한 배출부(12)가 형성된다. 디스펜서 장치(30)는 용기(10)의 상부에서 형성된 배출부(12)를 통해 나사 체결되도록 구성될 수 있다. 다만, 디스펜서 장치(30)는 용기(10)의 제조 방법에 따라 별도의 구성이거나, 용기(10)의 상부 등에 마개 형태일 수도 있다.In addition, the discharge part 12 for coupling the dispenser device 30 is formed at the upper end of the container (10). The dispenser device 30 may be configured to be screwed through the discharge portion 12 formed at the top of the container 10. However, the dispenser device 30 may be a separate configuration according to the manufacturing method of the container 10 or may be in the form of a stopper on the upper portion of the container 10.
디스펜서 장치(30)는 내용물이 배출되는 상부토출관(21)과, 하단에는 용기(10) 내의 액상의 내용물에 잠기도록 용기 바닥 인근 부위까지 수직으로 삽입되어 용기(10)의 내용물을 토출시킬 수 있도록 하는 토출관(20)이 형성된다.The dispenser device 30 may be inserted into the upper discharge pipe 21 through which the contents are discharged, and vertically inserted into the area near the bottom of the container so as to be immersed in the liquid contents in the container 10 at the bottom thereof to discharge the contents of the container 10. The discharge pipe 20 is formed to be.
한편, 디스펜서 장치(30)의 누름부 내부는 내용물을 토출시키는 일반적인 스프링과 개폐볼로 이루어지는 펌핑 구조를 가지도록 구성되는 것으로 공지의 기술에 해당하며 그 자세한 설명은 생략한다.On the other hand, the inside of the pressing portion of the dispenser device 30 is configured to have a pumping structure consisting of a general spring and the opening and closing ball for discharging the contents corresponding to the known art, the detailed description thereof will be omitted.
특히, 본 실시예에 따른 잔류물 이동장치(100)는 디스펜서 장치(30)의 토출관(20)이 관통 연결되는 이동부(110), 이동부(110)의 바깥 둘레부에 설치되어 용기(10)의 내벽에 남아 있는 잔류물을 끌어 내리도록 형성되는 부압이동부(120)를 포함한다.In particular, the residue moving device 100 according to the present embodiment is installed on the outer periphery of the moving part 110 and the moving part 110 through which the discharge tube 20 of the dispenser device 30 is connected. 10) includes a negative pressure moving part 120 formed to pull down the residue remaining on the inner wall.
다시 말해서, 잔류물 이동장치(100)의 이동부(110)는 내용물의 상부면을 덮는 형태이면서, 디스펜서 장치(30)의 토출관(20)이 관통 연결되기 위한 관통공(116a)이 형성된 토출관 통과부(116), 및 이동부(110)의 아랫면에 일정 높이로 형성되면서 그 하부가 개방되어 내용물의 상부면과 부압이 유지되는 공간인 열린 공간(112)을 포함한다.In other words, the moving part 110 of the residue moving device 100 is formed to cover the upper surface of the contents, and the discharge hole formed with a through hole 116a through which the discharge pipe 20 of the dispenser device 30 is connected. The tube passing part 116 and the lower part of the moving part 110 are formed at a predetermined height, and the lower part thereof is opened to include an open space 112 which is a space where the upper surface and the negative pressure of the contents are maintained.
또한, 부압이동부(120)는 잔류물 이동장치(100)의 바깥 둘레부에 대응하여 일체로 형성되거나 별도로 결합된다. 특히, 부압이동부(120)는 잔류물 이동장치(100)의 바깥 둘레부에 원형의 고무판을 억지 끼움으로 결합하여 형성될 수도 있다.In addition, the negative pressure moving unit 120 is integrally formed or separately coupled to correspond to the outer circumference of the residue moving device 100. In particular, the negative pressure moving part 120 may be formed by forcing a circular rubber plate to the outer periphery of the residue moving device 100 by interference fit.
한편, 펌핑에 의한 액상의 내용물이 토출되는 작동을 설명한다. 사람이 손으로 디스펜서 장치(30)를 누른 후 떼는 동작을 하면 용기(10)의 내부공간에 저장되어 있던 내용물은 토출관(20)을 따라 디스펜서 장치(30)로 이동하여 일정량 저장된다. 이와 같이 내부로 이동하여 저장된 일정량의 점성 내용물은 다음 누름작동 시에 밖으로 배출된다.On the other hand, the operation in which the liquid contents are discharged by pumping will be described. When a person presses and releases the dispenser device 30 by hand, the contents stored in the inner space of the container 10 are moved to the dispenser device 30 along the discharge tube 20 and stored in a predetermined amount. As such, the viscous content of the viscous contents that is moved and stored inside is discharged out at the next pressing operation.
잔류물 이동장치(100)는 이동부(110) 및 부압이동부(120)를 포함하고, 용기(10) 내부에서 내측벽에 접하여 내용물을 사용함에 따라 점차 아래로 내려가면서 용기(10)의 내측벽 잔류물을 아래 방향으로 끌어서 용기(10) 내의 내용물에 합하게 한다.The residue moving device 100 includes a moving part 110 and a negative pressure moving part 120, and in contact with the inner wall inside the container 10, gradually descends as the contents are used, and thus, the inside of the container 10 is lowered. The sidewall residue is pulled downward to bring the contents into the container 10.
이동부(110)는 배출펌프 구조를 갖는 디스펜서 장치(30)에 의하여 내용물의 소진되는 양 만큼을 아래로 이동하게 된다.The moving unit 110 is moved downward by the amount of exhausted contents by the dispenser device 30 having a discharge pump structure.
다시 말해, 이동부(110)는 하부가 액상 내용물에 접하거나 일정 부분 담겨있어 열린 공간(112)에 부압이 걸릴 수 있는 상태가 되고, 액상 내용물의 표면 수위(P)의 변화가 생기면 압력을 받으면서, 이동한 액상 내용물의 상부면에 위치(P)하면서 함께 이동하게 된다.In other words, the moving part 110 is in a state in which the lower portion is in contact with the liquid contents or is contained in a predetermined portion so that a negative pressure may be applied to the open space 112, and when the surface water level P of the liquid contents changes, the pressure is applied. , While moving (P) on the upper surface of the moved liquid contents.
한편, 잔류물 이동장치(100)의 이동 과정에서 부압이동부(120)에 의해 용기(10)의 내측벽에 남아있는 점성 액상 잔류물을 내측벽으로부터 제거하게 된다. 디스펜서 장치(30)가 작동되면서 용기(10) 안의 내용물의 부피가 줄어드는 단계에서 잔류물 이동장치(100)가 아래 방향으로 이동하게 된다.Meanwhile, the viscous liquid residue remaining on the inner wall of the container 10 is removed from the inner wall by the negative pressure moving part 120 during the movement of the residue moving device 100. As the dispenser device 30 is operated, the residue moving device 100 moves downward in the step of reducing the volume of the contents in the container 10.
이와 동시에, 잔류물 이동장치(100)의 바깥 테두리에 형성된, 용기(10)의 내측벽에 밀착되는 부압이동부(120)가 내측벽에 슬라이딩되면서 내측벽의 잔류 내용물을 끌어 내리면서 남아있는 내용물과 합한다.At the same time, the negative pressure moving part 120 formed on the outer rim of the residue moving device 100, which is in close contact with the inner wall of the container 10, slides on the inner wall while pulling down the remaining contents of the inner wall. To be combined with
미설명된 도면부호는 상술한 것으로 대체한다.Unexplained reference numerals are replaced with those described above.
도 19는 본 발명의 제 5실시예에 따른 잔류물 이동장치가 부설된 내용물 수용 용기의 분해도이고, 도 20은 본 발명의 제 5실시예에 따른 잔류물 이동장치가 부설된 내용물 수용 용기의 결합된 상태의 단면도이다.19 is an exploded view of the contents receiving container is attached to the residue moving device according to the fifth embodiment of the present invention, Figure 20 is a combination of the contents receiving container attached to the residue moving device according to the fifth embodiment of the present invention It is a cross-sectional view of the state.
도 19 및 도 20을 참조하면, 본 발명의 제 5실시예에 따른 내용물 수용 용기(10)는 내부에서 부압에 의해 내용물의 상부면에 접하는 잔류물 이동장치(100)를 포함하고, 잔류물 이동장치(100)를 관통하는 토출관(22)과 연결되며 용기(10) 내부의 액상 내용물을 흡인하여 토출하기 위한 상부토출관(21)을 갖는 디스펜서 장치(30)를 더 포함한다.19 and 20, the contents receiving container 10 according to the fifth embodiment of the present invention includes a residue moving device 100 in contact with the upper surface of the contents by the negative pressure therein, the residue movement And a dispenser device 30 connected to the discharge tube 22 penetrating the apparatus 100 and having a top discharge tube 21 for sucking and discharging the liquid contents in the container 10.
또한, 잔류물 이동장치(100)는 액상 내용물의 상부면을 덮는 이동부(110), 이동부(110) 중앙에 관통되는 토출관 통과부(116), 이동부(110)의 아랫면에 일정 높이로 형성되면서 그 하부가 개방되어 액상 내용물의 상부면과 부압이 유지되는 공간인 열린 공간(112), 토출관(20)에 접하여 밀착성을 유지할 수 있도록 토출관 통과부(116)의 둘레 끝단이 탄성을 가지는 밀착부(113), 용기(10)의 내용물이 배출됨에 따라 하강하면서 용기(10)의 내벽에 밀착되는 부압이동부(120)를 포함한다.In addition, the residue moving device 100 has a predetermined height on the bottom of the moving part 110, the discharge tube passage 116 penetrating through the center of the moving part 110, the moving part 110 covering the upper surface of the liquid content. While the lower portion is opened to the upper end of the liquid content and the open space 112, which is a space for maintaining the negative pressure, the discharge tube passage portion 116 so as to be in contact with the discharge tube 20 to maintain the adhesiveness is elastic Including the close contact portion 113, the negative pressure moving portion 120 which is in close contact with the inner wall of the container 10 while falling as the contents of the container 10 is discharged.
부압이동부(120)는 용기(10)의 내용물 소진에 따라 하강하면서 용기(10)의 내벽에 남아 있는 잔류물을 끌어내리는 역할을 한다.The negative pressure moving part 120 serves to pull down the residue remaining on the inner wall of the container 10 while descending according to the exhaustion of the contents of the container 10.
밀착부(113)는 토출관 통과부(116)의 둘레에서 토출관(20)에 접하여 밀착성을 유지할 수 있도록, 끝단이 탄성을 가지며 휘어진 형태로 토출관 통과부(116)에 밀착될 수 있도록 끝단이 형성되어 있으며, 부압이동부(120)도 용기(10)의 내벽에 접하여 끝단이 휘어지면서 밀착성을 유지할 수 있도록 끝단이 탄성을 가지게 형성될 수 있다.The close contact portion 113 has an end portion that is elastic and curved so that the end portion may be in contact with the discharge tube passage portion 116 in a circumference of the discharge tube passage portion 116 so as to be in close contact with the discharge tube passage portion 116. Is formed, the negative pressure moving portion 120 may also be formed to have an elastic end so that the end is in contact with the inner wall of the container 10 to maintain the adhesion while the end is bent.
아울러, 부압이동부(120)가 용기(10)의 내측면에 단순히 접하여 용기(10) 내측면의 잔류물을 긁어내고, 용기(10)의 내측면과 접촉 면적을 줄여 이송시 저항을 최소화하기 위해, 부압이동부(120)의 테두리에는 뾰족한 스크래퍼(122)가 형성될 수 있다. 스크래퍼(122)는 용기(10) 내측면에 단순히 접한 채 이동되며 잔류물을 긁는다. 스크래퍼(122)는 용기(10) 내측면의 궤적을 따라 연속되게 형성된다. 스크래퍼(122)는 다양하게 재질 및 다양한 형상으로 형성될 수 있다.In addition, the negative pressure moving unit 120 simply contacts the inner surface of the container 10 to scrape off residues on the inner surface of the container 10 and to minimize the resistance during transfer by reducing the contact area with the inner surface of the container 10. To this end, a sharp scraper 122 may be formed at the edge of the negative pressure moving part 120. The scraper 122 is moved simply in contact with the inner surface of the container 10 and scratches the residue. The scraper 122 is continuously formed along the trajectory of the inner surface of the container 10. The scraper 122 may be formed of various materials and various shapes.
또한, 내용물 수용 용기(10)는 개방된 일측을 개폐하는 덮개(14)를 더 포함한다. 덮개(14)는 다양한 형상으로 변형 가능하다.In addition, the contents receiving container 10 further includes a cover 14 for opening and closing the opened one side. The cover 14 can be deformed into various shapes.
미설명된 도면부호는 상술한 것으로 대체한다.Unexplained reference numerals are replaced with those described above.
도 21은 본 발명의 제 6실시예에 따른 잔류물 이동장치가 부설된 내용물 수용 용기의 결합 단면도이며, 도 22는 본 발명의 제 6실시예에 따른 잔류물 이동장치의 사용 상태도이다.FIG. 21 is a cross-sectional view of the contents receiving container in which the residue moving device is installed according to the sixth embodiment of the present invention, and FIG. 22 is a diagram illustrating a use of the residue moving device according to the sixth embodiment of the present invention.
잔류물 이동장치(100)의 이동부(110)가 아랫면에 일정 높이로 형성되면서 그 하부가 개방되어 내용물의 상부면과 부압이 유지되는 공간인 열린 공간(112)을 가진다. The moving part 110 of the residue moving device 100 is formed at a predetermined height on a lower side thereof, and has an open space 112 that is a space in which a lower part thereof is opened to maintain an upper surface and a negative pressure of the contents.
부압이동부(120)는 용기(10)의 내벽에 충분한 밀착성이 있도록 접하여, 용기(10)를 기울였을 때에도 음료가 밖으로 흐르지 않고 토출관인 흡인 빨대(220)를 통해서만 토출된다.The negative pressure moving part 120 is in contact with the inner wall of the container 10 so as to have sufficient adhesion, and even when the container 10 is tilted, the beverage does not flow out but is discharged only through the suction straw 220 that is the discharge tube.
미설명된 도면부호는 상술한 것으로 대체한다.Unexplained reference numerals are replaced with those described above.
도 23은 본 발명의 제 7실시예에 따른 잔류물 이동장치가 부설된 내용물 수용 용기의 사시도이고, 도 24는 본 발명의 제 7실시예에 따른 잔류물 이동장치가 부설된 내용물 수용 용기의 결합된 상태의 단면도이다.Figure 23 is a perspective view of the contents receiving container with a residue moving device according to the seventh embodiment of the present invention, Figure 24 is a combination of the contents receiving container with a residue moving device according to a seventh embodiment of the present invention It is a cross-sectional view of the state.
도 25는 본 발명의 제 7실시예에 따른 잔류물 이동장치를 구비하는 내용물 수용 용기의 분해 사시도이며, 도 26은 본 발명의 제 7실시예에 따른 잔류물 이동장치의 사시도이고, 도 27은 본 발명의 제 7실시예에 따른 잔류물 이동장치의 저면 사시도이다.FIG. 25 is an exploded perspective view of a contents container having a residue moving device according to a seventh embodiment of the present invention. FIG. 26 is a perspective view of a residue moving device according to a seventh embodiment of the present invention. Bottom perspective view of a residue moving device according to a seventh embodiment of the present invention.
도 23 및 도 27을 참조하면, 본 발명의 제 7실시예에 따른 내용물 수용 용기(10)는 내부에 저장된 내용물(2)이 감소되는 방향으로 이동되는 잔류물 이동장치(100)를 구비한다.23 and 27, the content receiving container 10 according to the seventh embodiment of the present invention includes a residue moving device 100 which is moved in a direction in which the content 2 stored therein is reduced.
잔류물 이동장치(100)는 이동부(110)를 포함한다.The residue mover 100 includes a mover 110.
이동부(110)는 열린 공간(112)을 형성하도록 구획된다. 그리고, 열린 공간(112)의 적어도 일부분은 밀폐된 공기실(114)을 형성한다. 즉, 이동부(110)가 내용물(2)에 접하거나 부유하고 있는 상태에서, 열린 공간(112)은 내부 일부에 내용물(2)이 유입된다. 내용물(2)의 토출시, 이동부(110)는 열린 공간(112)의 적어도 일부분에 형성된 공기실(114)에 작용하는 부압에 의해 감소되는 내용물(2) 방향으로 이동하게 된다. 이때, 이동부(110)는 내용물(2)의 감소되는 방향을 따라 용기(10)의 내부에서 이동하게 된다. The moving unit 110 is partitioned to form an open space 112. At least a portion of the open space 112 forms a sealed air chamber 114. That is, in the state in which the moving part 110 is in contact with or floating in the contents 2, the contents 2 are introduced into a part of the open space 112. When discharging the contents 2, the moving unit 110 moves in the direction of the contents 2 which is reduced by the negative pressure acting on the air chamber 114 formed in at least a portion of the open space 112. At this time, the moving unit 110 is moved in the interior of the container 10 along the direction of reduction of the contents (2).
한편, 잔류물 이동장치(100)는 부압이동부(120)와 부압공기부(130)를 더 포함한다. Meanwhile, the residue moving device 100 further includes a negative pressure moving part 120 and a negative pressure air part 130.
열린 공간(112)과 공기실(114)은 부압공기부(130)측에 형성된다. The open space 112 and the air chamber 114 are formed on the negative pressure air 130.
그리고, 부압공기부(130)는 공기포위벽(134), 볼록부(136) 및 구획벽(138)을 포함한다. 공기포위벽(134), 볼록부(136) 및 구획벽(138)은 상술한 것으로 대체한다.The negative pressure air 130 includes an air enclosure wall 134, a convex portion 136, and a partition wall 138. The air envelope 134, the convex portion 136, and the partition wall 138 replace those described above.
용기(10)는 내용물(2) 저장이나 보충이 용이하도록 덮개(14)를 개폐 가능하게 구비할 수 있다.The container 10 may be provided to open and close the lid 14 to facilitate storage or refilling of the contents 2.
아울러, 덮개(14)를 관통하도록 형성되어 용기(10) 내부의 내용물을 흡인하기 위한 흡인 빨대인 토출관(20)이 포함될 수 있다.In addition, the discharge pipe 20 is formed to penetrate the cover 14, the suction straw for sucking the contents of the container 10 may be included.
잔류물 이동장치(100)에 포함되는 부압공기부(130)는 복수로 구성될 수 있다. 또한, 부압공기부(130)의 공기포위벽(134)에 의해 감소하는 내용물 방향으로 개방되는 열린 공간(112)이 복수 개로 나뉘어질 수 있다.The negative pressure air 130 included in the residue moving device 100 may be configured in plural. In addition, a plurality of open spaces 112 may be divided into a plurality of open spaces 112 which are opened in the direction of decreasing contents by the air enclosing wall 134 of the negative pressure air unit 130.
부압공기부(130)를 이동부(110)에 연결하는 고정부(119)가 더 포함될 수 있다. 고정부(119)는 부압공기부(130)를 이동부(110)에 고정하여 함께 이동할 수 있도록 한다. 또한, 복수개의 부압공기부(130) 중 어느 하나의 부압공기부(130)는 다른 부압공기부(130)와 연결되거나, 또는 고정부(119)를 통해 다른 부압공기부(130)와 연결될 수 있다.A fixing part 119 connecting the negative pressure air part 130 to the moving part 110 may be further included. The fixing part 119 fixes the negative pressure air part 130 to the moving part 110 to move together. In addition, any one of the plurality of negative pressure air 130, the negative pressure air 130 may be connected to the other negative pressure air 130, or may be connected to the other negative pressure air 130 through the fixing unit 119. have.
열린 공간(112)과 공기실(114)이 구비되는 복수 개의 부압공기부(130)에서, 하나의 부압공기부(130)는 이동부(110)와 연결될 수 있고, 또는 다른 부압공기부(130)와 연결될 수도 있다.In the plurality of negative pressure air units 130 including the open space 112 and the air chamber 114, one negative pressure air unit 130 may be connected to the moving unit 110, or another negative pressure air unit 130. ) May be connected.
아울러, 잔류물 이동장치(100)의 이동부(110)는 가장자리에 부압이동부(120)를 구비하고, 부압이동부(120)는 테두리에 스크래퍼(122)를 구비한다. 스크래퍼(122)는 이동부(110)의 이동시 용기(10)의 내측면에 묻은 잔류물을 긁어내는 역할을 한다.In addition, the moving part 110 of the residue moving device 100 has a negative pressure moving part 120 at the edge, and the negative pressure moving part 120 is provided with a scraper 122 at the edge. The scraper 122 serves to scrape off residues on the inner surface of the container 10 when the moving unit 110 moves.
스크래퍼(122)는 패킹일 수 있다. 패킹은 용기(10) 내에서 이동부(110)가 내용물의 감소 방향으로 이동시 내용물이 이동부(110)의 이동 방향에 대해 반대 방향으로 누출되는 것을 방지하는 역할을 한다. The scraper 122 may be a packing. The packing serves to prevent the contents from leaking in the opposite direction to the moving direction of the moving part 110 when the moving part 110 moves in the direction of decreasing the content in the container 10.
한편, 잔류물 이동장치(100)는 용기(10)의 내부에서 내용물의 감소 방향 으로 이동시 한쪽으로 기울지 않고 안정적으로 용기(10)의 바닥면에 대해 수평을 유지하도록 안내될 수 있다.On the other hand, the residue moving device 100 may be guided to stably level with respect to the bottom surface of the container 10 without inclining to one side when moving in the direction of reduction of the contents in the interior of the container (10).
부압공기부(130)는 구획벽(138)을 포함하거나, 공기포위벽(134)만으로 형성될 수 있다. 본 실시예에서는 구획벽(138)을 포함하는 부압공기부(130)가 이동부(110)의 외주부에 위치하고, 공기포위벽(134)만으로 형성되는 원통형의 부압공기부(130)가 이동부(110)의 중심부에 위치한다.The negative pressure air unit 130 may include a partition wall 138 or may be formed of only the air enclosure wall 134. In this embodiment, the negative pressure air part 130 including the partition wall 138 is located at the outer circumference of the moving part 110, and the cylindrical negative pressure air part 130 formed only by the air enclosing wall 134 is the moving part ( Located in the center of 110.
토출관 통과부(116)는 격벽(118)으로 구획되어 부압이동부(120) 내에 구비되는 부압공기부(130)와 통하지 않게 된다. The discharge pipe passage part 116 is divided into the partition wall 118 so as not to communicate with the negative pressure air part 130 provided in the negative pressure moving part 120.
부압공기부(130)와 부압이동부(120) 이외의 부분이 폐쇄 또는 개방되어 형성될 수 있다.Portions other than the negative pressure air unit 130 and the negative pressure moving unit 120 may be formed closed or open.
본 실시예에서 부압공기부(130)와 부압이동부(120) 이외의 부분이 개방되어 형성되며, 여기서, 토출관 통과부(116)는 이동부(110) 중앙에 구비되는 원통형의 부압공기부(120)와 격벽(118) 사이의 개방된 공간으로서 토출관(20)의 직경 크기가 통과하는 사이 공간이 해당된다.In the present embodiment, a portion other than the negative pressure air unit 130 and the negative pressure moving unit 120 is formed to be open, where the discharge pipe passage part 116 is a cylindrical negative pressure air unit provided in the center of the moving unit 110. An open space between the 120 and the partition wall 118 corresponds to a space between the diameters of the discharge tubes 20 passing therethrough.
잔류물 이동장치(100)의 이동부(110)와 부압이동부(120) 등은 가이드부(400)에 의해 용기(10)의 내측면을 따라 위치 이동 안내될 수 있다.The moving part 110 and the negative pressure moving part 120, etc. of the residue moving device 100 may be guided by the guide part 400 along the inner surface of the container 10.
가이드부(400)는 가이드홈부(410) 및 가이드돌부(420)를 포함한다.The guide part 400 includes a guide groove 410 and a guide protrusion 420.
가이드홈부(410)는 부압이동부(120)의 테두리를 따라 함몰 형성된다. 그리고, 가이드돌부(420)는 가이드홈부(410)에 일대일 대응되도록 용기(10)의 내측면에 원주 방향을 따라 배치되고, 용기(10)의 축 방향으로 돌출된다. 그래서, 가이드돌부(420)가 가이드홈부(410)에 수용됨으로써 부압이동부(120)와 이동부(110)의 이동을 안내하게 된다.The guide groove 410 is recessed along the edge of the negative pressure moving part 120. The guide protrusion 420 is disposed along the circumferential direction on the inner side surface of the container 10 so as to correspond to the guide groove 410 one to one, and protrudes in the axial direction of the container 10. Thus, the guide protrusion 420 is accommodated in the guide groove 410 to guide the movement of the negative pressure moving part 120 and the moving part 110.
물론, 가이드돌부(420)가 부압이동부(120)에 돌출 형성되고, 가이드홈부(410)가 용기(10)의 내측면에 형성될 수도 있다.Of course, the guide protrusion 420 may be formed to protrude from the negative pressure moving portion 120, the guide groove 410 may be formed on the inner surface of the container (10).
미설명된 도면부호는 상술한 것으로 대체한다.Unexplained reference numerals are replaced with those described above.
본 발명은 도면에 도시된 실시예를 참고로 하여 설명되었으나, 이는 예시적인 것에 불과하며, 당해 기술이 속하는 분야에서 통상의 지식을 가진 자라면 이로부터 다양한 변형 및 균등한 타 실시예가 가능하다는 점을 이해할 것이다. 따라서 본 발명의 진정한 기술적 보호범위는 아래의 특허청구범위에 의해서 정하여져야 할 것이다.Although the present invention has been described with reference to the embodiments shown in the drawings, this is merely exemplary, and those skilled in the art to which the art belongs can make various modifications and other equivalent embodiments therefrom. Will understand. Therefore, the true technical protection scope of the present invention will be defined by the claims below.

Claims (40)

  1. 일측에 배출부가 형성되고, 유동성 내용물이 수용되는 용기에 사용되는 잔류물 이동장치에 있어서,In the residue moving device is formed in the discharge portion on one side, used in the container containing the flowable contents,
    이동부; 및 Moving part; And
    상기 내용물의 양이 감소함에 따라, 상기 이동부가 감소하는 내용물 방향으로 부압에 의해 안내되도록, 상기 이동부에 내용물 감소 방향으로 개방된 열린 공간의 적어도 일부분이 밀폐된 공기실(air cavity)을 형성하기 위한 부압공기부를 포함하는 것을 특징으로 하는 잔류물 이동장치. As the amount of the content decreases, forming an air cavity in which at least a portion of the open space opened in the direction of the content reduction is closed such that the moving part is guided by the negative pressure in the direction of the decreasing content; Residual moving device comprising a negative pressure air for.
  2. 제 1항에 있어서, The method of claim 1,
    상기 이동부의 내용물 측 부위 중 적어도 일부분은 상기 내용물 측으로 열린 공간을 형성하여 상기 부압공기부를 형성하도록 구획되고, At least a portion of the contents side portion of the moving part is partitioned to form the negative pressure air by forming an open space toward the contents side,
    상기 열린 공간 중 적어도 일부분에 상기 공기실이 형성되도록 하여 상기 내용물이 상기 배출부를 통해 배출되는 경우, 상기 부압공기부 내부에 부압이 발생하여 상기 부압공기부를 포함하는 부압이동부가 상기 내용물의 표면이 이동하는 방향으로 이동하는 것을 특징으로 하는 잔류물 이동장치. When the contents are discharged through the discharge part so that the air chamber is formed in at least a part of the open space, a negative pressure is generated inside the negative pressure air part so that the negative pressure moving part including the negative pressure air part has a surface of the content. Residue moving device, characterized in that moving in the moving direction.
  3. 제 1항에 있어서,The method of claim 1,
    상기 부압공기부는 상기 이동부 중 일부분이 상측 또는 하측으로 연장되는 측벽을 포함하여 구성되는 것을 특징으로 하는 잔류물 이동장치.The negative pressure air portion is a residue moving device characterized in that it comprises a side wall portion of which the portion of the moving portion is extended to the upper or lower side.
  4. 제 1항에 있어서,The method of claim 1,
    상기 부압공기부는 외부로부터 공기 인입이 이루어지는 상기 용기의 본체공기부와 별도로 격리되어 구비되는 것을 특징으로 하는 잔류물 이동장치.The negative pressure air portion is a residue moving device, characterized in that is provided separately from the main body air portion of the container in which air is drawn from the outside.
  5. 제 2항에 있어서,The method of claim 2,
    상기 이동부는 이동시 상기 용기의 내측면에 묻은 잔류물을 긁는 스크래퍼(scraper)를 가장자리 또는 테두리에 형성하고,The moving part forms a scraper on the edge or the edge of scraping residues on the inner surface of the container during the movement,
    상기 스크래퍼는 상기 용기의 내측면을 따라 이동되며 상기 잔류물을 긁어내리도록 상기 용기의 내측면과 단순 접하는 것을 특징으로 하는 잔류물 이동장치.And said scraper is moved along the inner surface of said container and is simply in contact with the inner surface of said container to scrape off said residue.
  6. 제 5항에 있어서,The method of claim 5,
    상기 이동부는 상기 부압이동부의 상측, 둘레면 및 하측 중 어느 한 위치에 구비되어 상기 스크래퍼가 상기 용기의 내측면 하단에 묻은 잔류물을 긁어내는 것을 특징으로 하는 잔류물 이동장치.Wherein the moving unit is provided in any one of the upper side, the peripheral surface and the lower side of the negative pressure moving portion residue residue device, characterized in that the scraper scrapes the residue buried in the lower end of the inner surface of the container.
  7. 제 1항 내지 제 3항 중 어느 한 항에 있어서,The method according to any one of claims 1 to 3,
    상기 배출부는 상기 용기에 저장된 상기 내용물의 표면이 이동하는 방향의 반대방향에 위치하고,The discharge portion is located in a direction opposite to a direction in which the surface of the contents stored in the container moves;
    상기 내용물을 토출시키기 위하여 토출관을 내용물에 접하도록 하는 토출관 통과부를 더 포함하며,Further comprising a discharge tube passing through the discharge tube in contact with the contents in order to discharge the contents,
    상기 토출관 통과부는 격벽으로 구획되어 상기 부압공기부와 통하지 않고,The discharge pipe passage portion is partitioned by the partition wall does not communicate with the negative pressure air portion,
    상기 토출관은 상기 토출관 통과부 내에서 공기 밀실하지 않게 삽입되는 것을 특징으로 하는 잔류물 이동장치.The discharge pipe is a residue moving device, characterized in that is inserted in the discharge pipe passage portion without air tight.
  8. 제 1항 내지 제 3항 중 어느 한 항에 있어서,The method according to any one of claims 1 to 3,
    상기 배출부는 상기 내용물의 표면이 이동하는 방향인 상기 용기의 하측에 구비되고,The discharge portion is provided on the lower side of the container in the direction in which the surface of the contents move,
    상기 부압공기부는 상기 내용물의 토출 방향으로 이동되는 것을 특징으로 하는 잔류물 이동장치.And the negative pressure air portion is moved in the discharge direction of the contents.
  9. 제 1항 내지 제 3항 중 어느 한 항에 있어서,The method according to any one of claims 1 to 3,
    상기 이동부의 가장자리 또는 테두리 부위가 용기의 내측면에 접하여 용기가 기울어지거나 흔들리는 경우 내용물이 밖으로 흘러나오지 않는 것을 특징으로 하는 잔류물 이동장치.Residue moving device, characterized in that the contents do not flow out when the container is inclined or shaken in contact with the inner surface of the container is in contact with the inner surface of the container.
  10. 제 1항에 있어서,The method of claim 1,
    상기 부압공기부는 공기 저장 공간을 확장하거나 상기 내용물과의 밀착성을 높이기 위해 상기 이동부를 기준으로 상기 용기에 저장된 내용물 방향으로 공기포위벽을 돌출 형성하는 것을 특징으로 하는 잔류물 이동장치.And the negative pressure air unit protrudes an air enclosing wall in the direction of the contents stored in the container with respect to the moving unit in order to expand the air storage space or increase the adhesion with the contents.
  11. 제 10항에 있어서,The method of claim 10,
    상기 부압공기부는 공기 저장 공간을 확장하기 위해 상기 이동부를 기준으로 상기 공기포위벽을 따라 내용물 방향의 반대 방향으로 볼록한 볼록부를 포함하는 것을 특징으로 하는 잔류물 이동장치.And the negative pressure air portion includes a convex portion that is convex in a direction opposite to the contents direction along the air enclosure wall with respect to the moving portion to expand an air storage space.
  12. 제 7항에 있어서,The method of claim 7, wherein
    상기 이동부에는 상기 토출관이 관통하는 관통공이 형성되고,The moving part is formed with a through hole through which the discharge pipe passes,
    상기 관통공의 둘레에는 상기 토출관에 접하여 밀착성을 유지할 수 있도록, 밀착부가 형성되는 것을 특징으로 하는 잔류물 이동장치.Residue moving device, characterized in that the contact portion is formed in the circumference of the through-hole so as to maintain contact with the discharge tube.
  13. 제 12항에 있어서,The method of claim 12,
    상기 밀착부는 상기 이동부에 형성되며, 별도로 분리된 구성이 끼움 결합되어 형성되는 것을 특징으로 잔류물 이동장치.The close contact portion is formed in the moving portion, residue moving device, characterized in that formed separately coupled to form a combination.
  14. 제 5항에 있어서,The method of claim 5,
    상기 스크래퍼는 상기 용기의 내벽에 접하여 밀착성을 유지할 수 있도록 끝단이 탄성을 가지는 구조인 것을 특징으로 하는 잔류물 이동장치.The scraper is a residue moving device, characterized in that the end of the structure is elastic so as to maintain contact with the inner wall of the container.
  15. 제 2항 또는 제 14항에 있어서,The method according to claim 2 or 14,
    상기 부압이동부는 상기 이동부에, 별도로 분리된 구성이 끼움 결합되어 형성되는 것을 특징으로 하는 잔류물 이동장치.The negative pressure moving unit is a residue moving device, characterized in that formed in the moving part, a separately separated configuration is fitted.
  16. 제 1항에 있어서,The method of claim 1,
    상기 내용물을 토출시키도록 상기 배출부 측에 구비되는 디스펜서 장치를 더 포함하는 것을 특징으로 하는 잔류물 이동장치.And a dispenser device provided on the discharge side to discharge the contents.
  17. 제 1항에 있어서,The method of claim 1,
    상기 용기는 상기 내용물이 밖으로 흐르지 않도록 하는 덮개를 포함하는 것을 특징으로 하는 잔류물 이동장치.And the container includes a lid to prevent the contents from flowing out.
  18. 제 2항에 있어서,The method of claim 2,
    상기 부압공기부를 상기 이동부에 연결하는 고정부를 포함하고,A fixing part connecting the negative pressure air part to the moving part,
    상기 부압공기부와 상기 부압이동부 이외의 부분이 폐쇄 또는 개방되어 형성되는 것을 특징으로 하는 잔류물 이동장치.And a portion other than the negative pressure air portion and the negative pressure moving portion is closed or opened.
  19. 제 18항에 있어서,The method of claim 18,
    상기 부압공기부는 복수로 구성되고,The negative pressure air portion is composed of a plurality,
    어느 하나의 부압공기부는 다른 부압공기부와 연결되거나, 또는 상기 고정부를 통해 다른 부압공기부와 연결되는 것을 특징으로 하는 잔류물 이동장치.Residual moving device, characterized in that any one of the negative pressure air portion is connected to the other negative pressure air portion, or connected to the other negative pressure air portion through the fixing portion.
  20. 제 1항에 있어서,The method of claim 1,
    상기 부압공기부는 구획벽에 의해 구획되는 것을 특징으로 하는 잔류물 이동장치.And the negative pressure air portion is partitioned by partition walls.
  21. 제 1항에 있어서,The method of claim 1,
    상기 이동부는 테두리를 따라 마감부재를 구비하고,The moving part has a finishing member along the rim,
    상기 마감부재는 상기 용기의 내측면에 접하여 상기 용기의 내측면에 묻은 잔류물을 긁어내는 요철돌부를 형성하는 것을 특징으로 하는 잔류물 이동장치.The closing member is in contact with the inner surface of the container residue moving device, characterized in that to form a concave-convex portion scraping the residue on the inner surface of the container.
  22. 제 5항에 있어서,The method of claim 5,
    상기 이동부는 가장자리 또는 테두리에 리브를 연장 형성하고,The moving part extends to form a rib on the edge or border,
    상기 리브는 상기 이동부의 이동시 상기 용기의 내측면에 묻은 잔류물을 긁어내기 위해 상기 스크래퍼를 형성하는 것을 특징으로 하는 잔류물 이동장치.And the ribs form the scraper to scrape off residues on the inner surface of the container during movement of the moving parts.
  23. 제 22항에 있어서,The method of claim 22,
    상기 스크래퍼는 단수 또는 복수 개로 이루어지는 것을 특징으로 하는 잔류물 이동장치.The scraper is a residue moving device, characterized in that consisting of a single or a plurality.
  24. 제 10항 또는 제 11항에 있어서,The method according to claim 10 or 11, wherein
    상기 공기포위벽은 슬라이딩 이동 가능한 연장부재를 구비하는 것을 특징으로 하는 잔류물 이동장치.The air enclosing wall is a residue moving device, characterized in that it comprises a sliding member extending.
  25. 제 1항에 있어서,The method of claim 1,
    상기 이동부는 가이드부에 의해 상기 용기의 내측면을 따라 위치 이동 안내되는 것을 특징으로 하는 잔류물 이동장치.The moving unit is a residue moving device, characterized in that the position movement guided along the inner surface of the container by a guide.
  26. 일측에 배출부가 형성되고, 유동성 내용물이 수용되는 용기에 있어서,In the container in which the discharge portion is formed on one side, the fluid content is accommodated,
    상기 내용물의 양이 감소함에 따라, 부압(negative pressure)에 의해 감소되는 상기 내용물 방향으로 이동되는 잔류물 이동장치를 포함하고,As the amount of the content decreases, a residue mover moved in the direction of the content reduced by negative pressure,
    상기 잔류물 이동장치는 이동부를 포함하고,The residue moving device comprises a moving part,
    상기 이동부는 적어도 일부분이 감소하는 내용물 방향으로 개방된 열린 공간을 구획되게 형성하여, 상기 내용물의 토출시, 상기 열린 공간의 적어도 일부분에 형성된 공기실(air cavity)의 부압에 의해 상기 이동부를 안내하도록 구성되는 것을 특징으로 하는 내용물 수용 용기.The moving part is formed to define an open space opened in a direction in which at least a portion decreases, so that the moving part is guided by a negative pressure of an air cavity formed in at least a part of the open space when discharging the contents. Contents container, characterized in that configured.
  27. 제 26항에 있어서, The method of claim 26,
    상기 잔류물 이동장치는, 상기 이동부의 하측으로 상기 내용물의 양이 감소함에 따라 부압에 의해 상기 이동부를 안내하기 위해 상기 공기실(air cavity)을 형성하기 위한 부압공기부를 포함하여 구성되는 부압이동부를 더 포함하는 것을 특징으로 하는 내용물 수용 용기.The residue moving device includes a negative pressure moving part configured to form an air cavity for guiding the moving part by the negative pressure as the amount of the contents decreases below the moving part. Contents containing container further comprising.
  28. 제 26항에 있어서, The method of claim 26,
    상기 내용물을 상기 배출부로 토출 안내하는 토출관을 포함하고,A discharge pipe for guiding discharge of the contents to the discharge part;
    상기 잔류물 이동장치는 상기 토출관을 따라 이동 가능하게 구비되는 것을 특징으로 하는 내용물 수용 용기.And the residue moving device is provided to be movable along the discharge pipe.
  29. 제 27항에 있어서,The method of claim 27,
    상기 부압공기부는 상기 이동부 중 일부분이 상측 또는 하측으로 연장되는 측벽을 포함하여 구성되는 것을 특징으로 하는 내용물 수용 용기.The negative pressure air portion is a container containing the contents, characterized in that it comprises a side wall extending portion of the upper portion or the lower side.
  30. 제 27항에 있어서,The method of claim 27,
    상기 부압공기부는 외부로부터 공기 인입이 이루어지는 상기 용기의 본체공기부와 별도로 격리되어 구비되는 것을 특징으로 하는 내용물 수용 용기.And the negative pressure air portion is provided separately from the main body air portion of the container through which air is introduced from the outside.
  31. 제 26항에 있어서,The method of claim 26,
    상기 내용물을 토출시키도록 상기 배출부 측에 구비되는 디스펜서 장치를 포함하는 것을 특징으로 하는 내용물 수용 용기.And a dispenser device provided on the discharge part side to discharge the contents.
  32. 제 26항에 있어서,The method of claim 26,
    상기 이동부는 이동시 상기 용기의 내측면에 묻은 잔류물을 긁는 스크래퍼(scraper)를 가장자리 또는 테두리에 형성하고,The moving part forms a scraper on the edge or the edge of scraping residues on the inner surface of the container during the movement,
    상기 스크래퍼는 상기 용기의 내측면을 따라 이동되며 상기 잔류물을 긁어내리도록 상기 용기의 내측면과 단순 접하는 것을 특징으로 하는 내용물 수용 용기.Wherein said scraper moves along an inner surface of said container and is simply in contact with an inner surface of said container to scrape off said residue.
  33. 제 27항 내지 제 29항 중 어느 한 항에 있어서,The method according to any one of claims 27 to 29,
    상기 배출부는 상기 용기에 저장된 상기 내용물의 표면이 이동하는 방향의 반대방향에 위치하고,The discharge portion is located in a direction opposite to a direction in which the surface of the contents stored in the container moves;
    상기 내용물을 토출시키기 위하여 토출관을 상기 내용물에 접하도록 하는 토출관 통과부가 더 포함되며,Further comprising a discharge tube passing through the discharge tube in contact with the contents to discharge the contents,
    상기 토출관 통과부는 격벽으로 구획되어 상기 부압이동부 내에 구비되는 상기 부압공기부와 통하지 않고,The discharge pipe passage portion is partitioned into a partition wall and does not communicate with the negative pressure air portion provided in the negative pressure moving portion,
    상기 토출관은 상기 토출관 통과부 내에서 공기 밀실되지 않게 삽입되는 것을 특징으로 하는 내용물 수용 용기.And the discharge tube is inserted in the discharge tube passage so as not to be airtight.
  34. 제 27항 내지 제 29항 중 어느 한 항에 있어서,The method according to any one of claims 27 to 29,
    상기 배출부는 상기 내용물의 표면이 이동하는 방향인 상기 용기의 하측에 구비되고,The discharge portion is provided on the lower side of the container in the direction in which the surface of the contents move,
    상기 부압공기부는 상기 내용물의 토출 방향으로 이동되는 것을 특징으로 하는 내용물 수용 용기.And the negative pressure air unit is moved in the discharging direction of the contents.
  35. 제 27항 내지 제 29항 중 어느 한 항에 있어서,The method according to any one of claims 27 to 29,
    상기 이동부의 가장자리 또는 테두리 부위가 용기의 내측면에 접하여 용기가 기울어지거나 흔들리는 경우 내용물이 밖으로 흘러나오지 않는 것을 특징으로 하는 내용물 수용 용기.Contents container, characterized in that the contents do not flow out when the container is inclined or shaken in contact with the inner surface of the container or the edge portion of the moving part.
  36. 제 27항에 있어서,The method of claim 27,
    상기 부압공기부는 공기 저장 공간을 확장하거나 상기 내용물과의 밀착성을 높이기 위해 상기 이동부를 기준으로 상기 용기에 저장된 내용물 방향으로 공기포위벽을 돌출 형성하는 것을 특징으로 하는 내용물 수용 용기.And the negative pressure air unit protrudes an air enclosing wall in the direction of the contents stored in the container with respect to the moving part in order to expand the air storage space or increase the adhesion with the contents.
  37. 제 27항에 있어서,The method of claim 27,
    상기 부압공기부를 상기 이동부에 연결하는 고정부를 포함하고,A fixing part connecting the negative pressure air part to the moving part,
    상기 부압공기부와 상기 부압이동부 이외의 부분이 폐쇄 또는 개방되어 형성되는 것을 특징으로 하는 내용물 수용 용기.And a portion other than the negative pressure air portion and the negative pressure moving portion is closed or opened.
  38. 제 37항에 있어서,The method of claim 37,
    상기 부압공기부는 복수로 구성되고,The negative pressure air portion is composed of a plurality,
    어느 하나의 부압공기부는 다른 부압공기부와 연결되거나, 또는 상기 고정부를 통해 다른 부압공기부와 연결되는 것을 특징으로 하는 내용물 수용 용기.Either one of the negative pressure air portion is connected to the other negative pressure air portion, or the contents containing container, characterized in that connected to the other negative pressure air through the fixing portion.
  39. 제 27항에 있어서,The method of claim 27,
    상기 부압공기부는 구획벽에 의해 구획되는 것을 특징으로 하는 내용물 수용 용기.And the negative pressure air portion is partitioned by a partition wall.
  40. 제 32항에 있어서,The method of claim 32,
    상기 이동부는 가장자리 또는 테두리에 리브를 연장 형성하고,The moving part extends to form a rib on the edge or border,
    상기 리브는 상기 이동부의 이동시 상기 용기의 내측면에 묻은 잔류물을 긁어내기 위해 상기 스크래퍼를 형성하는 것을 특징으로 하는 내용물 수용 용기.And the ribs form the scraper to scrape off residues on the inner surface of the container when the moving part is moved.
PCT/KR2014/012149 2013-12-11 2014-12-10 Residue moving device and content accommodating container having same WO2015088247A1 (en)

Applications Claiming Priority (6)

Application Number Priority Date Filing Date Title
KR1020130153888 2013-12-11
KR10-2013-0153888 2013-12-11
KR1020140059268A KR101658345B1 (en) 2014-05-16 2014-05-16 Moving apparatus and container apparatus having the moving apparatus
KR10-2014-0059268 2014-05-16
KR1020140081342A KR20150068275A (en) 2014-06-30 2014-06-30 Packaging with means to fix upper surface of liquid content
KR10-2014-0081342 2014-06-30

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110589438A (en) * 2019-08-23 2019-12-20 南京理工大学 Bottle capable of collecting residual liquid in bottle

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0551076A (en) * 1991-08-14 1993-03-02 Pola Chem Ind Inc Pressure vessel
KR200182789Y1 (en) * 1999-11-29 2000-05-15 주식회사연우 Dispenser case
JP2006124016A (en) * 2004-11-01 2006-05-18 Katsutoshi Masuda Fluid body storage container
KR101339855B1 (en) * 2011-04-11 2013-12-10 주식회사 우경아이앤아이 Content discharge courage

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0551076A (en) * 1991-08-14 1993-03-02 Pola Chem Ind Inc Pressure vessel
KR200182789Y1 (en) * 1999-11-29 2000-05-15 주식회사연우 Dispenser case
JP2006124016A (en) * 2004-11-01 2006-05-18 Katsutoshi Masuda Fluid body storage container
KR101339855B1 (en) * 2011-04-11 2013-12-10 주식회사 우경아이앤아이 Content discharge courage

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110589438A (en) * 2019-08-23 2019-12-20 南京理工大学 Bottle capable of collecting residual liquid in bottle

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