WO2013168999A1 - Appareil pour mesurer et charger une quantité fixe de poudre fine - Google Patents

Appareil pour mesurer et charger une quantité fixe de poudre fine Download PDF

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Publication number
WO2013168999A1
WO2013168999A1 PCT/KR2013/004011 KR2013004011W WO2013168999A1 WO 2013168999 A1 WO2013168999 A1 WO 2013168999A1 KR 2013004011 W KR2013004011 W KR 2013004011W WO 2013168999 A1 WO2013168999 A1 WO 2013168999A1
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WO
WIPO (PCT)
Prior art keywords
fine powder
inlet
horizontal
inlet pipe
fan ring
Prior art date
Application number
PCT/KR2013/004011
Other languages
English (en)
Korean (ko)
Inventor
장순주
Original Assignee
Jang Soon-Ju
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
Application filed by Jang Soon-Ju filed Critical Jang Soon-Ju
Publication of WO2013168999A1 publication Critical patent/WO2013168999A1/fr

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B1/00Packaging fluent solid material, e.g. powders, granular or loose fibrous material, loose masses of small articles, in individual containers or receptacles, e.g. bags, sacks, boxes, cartons, cans, or jars
    • B65B1/04Methods of, or means for, filling the material into the containers or receptacles
    • B65B1/10Methods of, or means for, filling the material into the containers or receptacles by rotary feeders
    • B65B1/12Methods of, or means for, filling the material into the containers or receptacles by rotary feeders of screw type
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B1/00Packaging fluent solid material, e.g. powders, granular or loose fibrous material, loose masses of small articles, in individual containers or receptacles, e.g. bags, sacks, boxes, cartons, cans, or jars
    • B65B1/30Devices or methods for controlling or determining the quantity or quality or the material fed or filled

Definitions

  • the present invention relates to a fine powder quantitative filling apparatus, and in the case of fine powder, it is primarily packaged in a plastic pack and then repackaged in raw material containers having various shapes such as round and square, and the inner diameter of such raw material containers is formed in a precise source.
  • the precisely-processed fan ring is inserted into the raw material container, and then the horizontal inlet pipe forming the inlet blade corresponding to the ring 3 ⁇ 4 of the fan ring is rotated, or the horizontal inlet pipe is fixed and the raw material container exhibiting the same efficiency.
  • a method for the fine powder quantitative filling device for precisely weighing the number of revolutions of the screw to ensure that only the fine powder of the precise quantity is introduced through the inlet blade by the rotating method. will be.
  • a fine powder filling device is a device for filling an accurate amount set in various kinds of fine powder into a quantitative container. It is a device widely used in various industries as well as filling the cartridge with the correct amount of powder toner.
  • FIGS. 1 to 2 reference numeral 1 denotes a container, 2 denotes a storage chamber, 3 denotes a filling chamber, 4 is a vacuum pump, 5 is a suction tube, 6 is a filter, 7 is a supply valve, 8 is a motor, 9 is auger and a crew, 10 is a fixed container, and 11 is a dust suction device.
  • a conventional fine powder filling apparatus includes a container 1 in which fine powder is stored, and an arc-shaped storage chamber for primary suction storage of fine powder stored in the container 1. 2), said storage chamber (2) at the bottom of the fine powder stored in the storage chamber (2) secondary: is configured to supply ever get filled in the hopper-shaped filling member as S (3) is connected.
  • a vacuum pump 4 is formed on the upper shaft of the storage chamber 2 to connect the container 1 to the suction pipe 5 to discharge the fine powder of the container 1 and discharge the air sucked through the suction pipe 5.
  • a supply valve 7 is formed at a lower portion of the storage chamber 2 at a connection portion connected to the filling chamber 3.
  • An auger screw rotated by a motor 8 in the center of the filling chamber 3 as described above. 9) and filling the fine powder into the metering vessel 10 by the rotation operation of the auger screw (9).
  • the remaining amount that does not flow into the quantitative container is classified as dust.
  • the dust suction device 11 is separately configured to remove a large amount of dust scattered by the rotation of the auger screw, and the dust suction device 11 has a high pressure to prevent the fine powder from being deposited in the middle of the pipe.
  • the inhalation device was formed and the fine powder in the inhaled air was collected by the filter and collected to be recycled. Therefore, in the case of fine powder sucked through the dust suction device 11 or through the vacuum pump 4, it is easy to penetrate into the filter structure because it is a fine particle, so it is necessary to replace the filter from time to time or to provide a separate cleaning device. To reduce productivity There was a problem.
  • the conventional device for quantitative filling of fine powder has a structure in which the fine powder is forced by the rotation of the auger screw by using the auger screw, so that frictional heat is generated by the continuous forced feeding to deform the fine powder.
  • the present invention has been made to solve the problems of the prior art and the necessity of technology development, and the introduction of a fan ring and horizontal inlet pipe or which can always provide a precise inner diameter regardless of the shape of the raw material container or By rotating the raw material container, fine powder of accurate quantity is introduced into the horizontal inlet pipe and filled to achieve precise weighing by the same number of screw rotations, and to realize the fully automated machinery and improve the productivity by not using the filter.
  • the present invention provides a raw material container in which raw materials of fine powder are stored. A turntable ball is formed to settle the cylinder, and a cylinder is formed in the inner diameter of the raw material container placed above the turntable ball.
  • a fan ring having a bore with an inner diameter formed by a round shape is inserted into the fan ring, and a support is formed on an upper side of the fan ring, and a ball screw shaft is installed on one side of the support.
  • the furnace includes a vertical moving part that forms a ball screw driving motor for rotating the screw shaft, and a cylinder is formed in the upper center portion of the upper support of the vertical moving part, and a horizontal bar is formed at the end of the cylinder rod so that both ends of the horizontal bar are pansing flanges.
  • Pansing inlet formed to be detachable from the upper side, and located on the center bottom of the support of the vertical movement portion, and rotates in the inner diameter of the fan ring infiltrated by the pansing inlet and stored in the raw material container
  • the inlet is formed by the upper surface of the fine powder is introduced into the scattering depth to the tablet depth, and the transfer unit for conveying the fine powder scattered by the repellent inlet through the formation of a transfer pipe
  • a plurality of position fixing funnels are formed on the outer side of the turntable outer diameter of the fan ring portion, and three insertion lines are formed at both ends of the horizontal bars of the cylinder rod.
  • the inner diameter of the fan ring provides a fine powder quantitative filling device, characterized in that the fluorine coated.
  • the inlet is a vertical inlet pipe formed on the center bottom of the support of the vertical moving portion bearing height is fixed to the bottom of the vertical inlet pipe, a horizontal inlet pipe of the shape of the upper end is rotatably installed inside the bearing, and the horizontal A screw motor is formed outside the inflow pipe to rotate the screw formed inside the horizontal inflow pipe, and the bottom of the horizontal inflow pipe Forming a hole to form an inlet blade protruding at a predetermined angle beneath the inlet hole so that the fine powder flows into the horizontal inlet pipe, vertical inlet so that the inlet blade can rotate the upper side of the fine powder stored in the raw material container
  • Forming a forward and reverse motor in the center of the tube top provides a quantitative measurement filling device of the fine powder characterized in that the top of the forward and reverse motor shaft height inlet pipe is coupled.
  • the transfer unit is connected to one side of the vertical inlet pipe to form a transfer pipe for the fine powder to be transferred to the filling device, the transfer pipe forms a suction fan for sucking the fine powder flowed into the horizontal inlet pipe Fine powder introduced by the suction fan (P)
  • the suction fan P
  • In order to control the end of the feed pipe provides a metering metering filling device of the two powders, characterized in that a valve for opening and closing the feed pipe is formed.
  • the turntable ball bottom surface of the fan ring portion provides a fine ball quantitative metering filling device to form a reversed-reverse motor and rotate the reverse direction of the raw material container placed on the turntable ball.
  • the vertical movement unit provides a fine powder metering filling device, characterized in that further forming a distance sensor on the screw motor of the inlet to move only the distance set on the upper side of the raw material of the container fine powder.
  • the forward and reverse motor shaft of the forward and reverse motor formed in the inlet is fixed to the upper inner diameter of the horizontal inlet pipe, but the end of the reverse motor shaft to form a "+ ⁇ 1- shaped stator to define the inner diameter of the horizontal inlet pipe end of the stator
  • a fine powder quantitative filling device characterized in that is fixed to the inner diameter of the horizontal inlet pipe.
  • the horizontal inlet pipe is formed between two screw plates located at the portion connected to the vertical inlet pipe to transfer and scatter the introduced fine powder, and the horizontal inlet pipe and
  • the inlet blade formed on the bottom of the horizontal inlet pipe is provided with a cover is formed so as to protect the fluorine coating of the inner diameter of the fan ring, and the inlet blade provides a fine powder quantitative filling device characterized in that the cover blade further formed.
  • the present invention is a method of rotating a horizontal inlet pipe located at an inner diameter of a precisely processed fan ring or rotating a raw material container on a turntable ball. After the inflow, the fine powder is scattered in the air through the scattering plate of the screw
  • the S mouth was made easy, and the synergy effect of further increasing the suction power of the venturi tube provided in the filling device was configured by configuring the S mouth fan in which the S input was generated.
  • the venturi tube of the filling device saves energy by generating high pressure suction power even when using low pressure, and does not have to replace the filter by transferring it without using the filter, and improves productivity by fully automatic operation of the device. It can improve the environment and protect the health of workers.
  • FIG. 1 is a schematic view showing a conventional semi-automatic fine powder filling apparatus
  • Figure 2 is a schematic diagram showing a conventional manual fine powder filling apparatus
  • FIG. 3 is a view illustrating a fine powder quantitative measurement filling apparatus according to the first embodiment of the present invention.
  • FIG. 4 is a perspective view showing a fan string portion of the fine powder quantitative filling apparatus according to the present invention.
  • Figure 5 is an enlarged stage, showing the inlet of the fine powder quantitative measurement device according to the present invention.
  • Figure 6 is an enlarged stage, showing the conveying part of the fine powder quantitative measurement filling apparatus according to the present invention
  • Figure 7 shows a second embodiment of the fine powder quantitative measurement filling apparatus according to the present invention brightness'
  • Figure 8 (a) (b) is an enlarged perspective view showing the operation of the inlet of the fine powder quantitative measurement filling apparatus according to the present invention
  • FIG. 10 is a state diagram of the use of the CC fine micro powder quantitative measurement device according to the present invention.
  • distance sensor 300 fan ring insert 301: cylinder 302: rod
  • inlet hole 407 inlet blade 408: stationary motor shaft 409: stationary motor
  • FIG. 3 is an explanatory view showing a fine powder quantitative measurement device of the first embodiment according to the present invention.
  • the fine powder quantitative filling apparatus has a fan string unit for forming the inner diameter of the raw material container 101 as a circle.
  • the fan 100 is installed in the vertical moving part 200 moving up and down from the upper side of the fan ring part 100 and the vertical moving part 200 to infiltrate the fan groove 103 of the fan ring part 100.
  • Ring inlet portion 300, the fan ring 103 is composed of the inlet portion 400 for introducing the fine powder of the raw material container 101 in a three-pressure state, and the conveying portion 500 for transferring the introduced fine powder .
  • the fan ring part 100 has an inner diameter of the fan ring 103 to prevent contamination by excellent fluorine coating of slinging property, and the thickness of the fan ring 103 is stored in the fine powder. It is ideal to form a thin thickness such as a blade for smooth penetration, and may be composed of any material that can be processed into a cylindrical shape of precise roundness, and formed in the turntable ball 102 in three directions above the fan ring 103
  • the flange 106 is formed in three directions so as to be inserted into the position fixing piece 104 in three directions so that the fan ring 103 is always positioned in the inner position of the raw material container 101, and the raw material container ( 101 is formed to prevent the departure from rotation.
  • the vertical moving part 200 is formed on one side of the fan ring part 100 so that the support 201 moves up and down on the upper side of the fan ring 103 of the fan ring part 100 as described above.
  • the screw shaft 202 is formed and a ball screw driving motor 203 for rotating the ball screw shaft 202 is formed at one side of the ball screw shaft 202.
  • the support 201 is a horizontal bar of the fan-singing portion 300 after the inflow process is completed
  • the fan ring 103 attached to the 303 is formed to return to a predetermined position together.
  • the fan-singing part 300 is formed below the support 201 of the vertical moving part 200 such as Iojin.
  • the fan ring shop mouth 300 is provided with a cylinder 301 so that the rod 302 of the cylinder 301 is raised and lowered from the bottom of the support 201 and wings are formed at both ends of the cylinder rod 302.
  • the horizontal bar 303 of the U ′′ shape is formed so that the center of the fan ring is pressurized, and the ⁇ ⁇ 304 is formed at both ends of the horizontal HK303.
  • the horizontal bar 303 formed on the rod 302 is formed to be detachably attached to the fan ring 103 flange 106 as the rod 302 moves up and down, and is attached to the fan ring 103 flange 106.
  • the rod 302 is lowered, and the fan ring 103 is inserted into the inner diameter of the raw material container 101 by the horizontal bar 303, and the flange 106 of the fan ring 103 is mounted.
  • the formed fixed flow 105 is three-fixed to the positioning hole 104.
  • the horizontal bar 303 is detached from the fan ring flange 106 and returned to the fan bar ring.
  • 103 is attached to the flange 106 and returned.
  • the fan ring insertion part 300 forms an edge piece 305 through which the horizontal bar 303 can be inserted into the flange 106, as shown in FIG. 4. It is preferable to firmly install the fixed punch 306 that can fix both ends of the horizontal bar 303 to the 305.
  • the inlet 400 is formed at the center bottom surface of the support 201 in order to introduce the fine powder ( ⁇ ) stored in the inner diameter of the fan ring 103, which is infiltrated by the fan ring injecting unit 300 as described above.
  • the inlet 400 is a support 201 of the vertical movement unit 200 as shown in FIG.
  • a vertical inlet pipe 401 is formed on the bottom of the hem, and a flange formed at the bottom of the manual inlet pipe 401.
  • (40 ⁇ ) forms a bearing ring 402 provided with a retainer 402 'on the upper and lower sides so that it is fixed by a cover, and the upper end of the "H-shaped horizontal inlet pipe 403 is inside the burring 402. It is formed embedded in the bearing 402 is rotated in contact with the sphere S.
  • One side of the horizontal inlet pipe 403 forms a screw motor 404 to rotate the screw 405 formed inside the horizontal inlet pipe 403 and the inlet hole 406 at the bottom of the horizontal inlet pipe 403. And forming an inclined blade 407 to be inclined at a predetermined angle so that the fine powder P is introduced into the horizontal inlet pipe 403 under the inlet hole 406.
  • the inlet blade 407 is inserted into the upper surface of the fine powder (P) stored in the raw material container 101 to a predetermined depth to form a forward and reverse motor (409) in the center of the vertical inlet pipe (401)
  • the upper end of the motor shaft 408 and the horizontal inlet pipe 403 is coupled.
  • the stationary motor shaft 408 is formed at the end of the magnetic stator 410 so that the end of the stator 410 is fixed to the inner diameter of the horizontal inlet pipe 403 horizontal inlet pipe 403 ) Can be partitioned.
  • the screw 405 formed in the inner diameter of the horizontal inlet pipe 403 is formed by two or more scattering plate 411 between the screw thread located in the portion connected to the vertical inlet pipe 401 and the fine powder ( P) is transported and scattered, and the horizontal inlet pipe 403 and the inlet blade 407 outside the cover 413 of a rubber-like material is formed so that the inner diameter of the fluorine resin coated of the fan ring 103 is protected.
  • the cover blade 412 is further formed on the inner side.
  • the distance sensor 204 is formed to determine the height so that the bottom of the inlet 3 ⁇ 4 blade 407 can be maintained at a precise distance from the upper surface of the fine powder (P).
  • the transfer unit 500 of the mall is formed to communicate with one side of the fine powder ⁇ (P) vertical inlet pipe 401 scattered by the scattering plate 411 of the inlet 400 as shown in FIG. Transfer through the transfer pipe (501).
  • the transfer pipe 501 forms a suction fan 502 for sucking the fine powder (P) flowing into the horizontal inlet pipe 403 and sucked by the suction fan 502, the fine powder (P) At the end of the transfer pipe 501 to control the valve 503 is formed to open and close the transfer pipe 501.
  • a suction fan 502 for suctioning DI powder P introduced and scattered into the horizontal inflow pipe 403 exists in a horizontal shape. It is configured under the pipe 501 and the suction fan hair EU504 for driving the suction fan 502 outside the transfer pipe 501 is present.
  • the suction fan 502 is formed with a rotating shaft of the motor penetrating the center of the inner diameter of the lower portion of the feed pipe 501, four blades are formed at the end of the rotating shaft, the shape of the blade is formed in the shape of a plate with a bar or a slope. .
  • valve 503 opening the transfer pipe 501 is introduced into each filling device when two or more filling devices are formed and the plurality of feeding pipes 501 communicate with the vertical inlet pipe 401. It is preferable to form at the end of the transfer pipe 501 to control the inflow amount to be made a quantitative measurement.
  • the bottom surface of the turn table 102 as a second embodiment for allowing the same inflow amount to flow into the inflow 3 ⁇ 4 blade 407 of the horizontal inflow pipe 403 even when the horizontal inflow pipe 403 is fixed.
  • a tebol ball station motor (107) to rotate the turntable ball 102 is formed so that the raw material container 101 itself.
  • the raw material container 101 is released and transported in a state in which the fine powder is contained in the manufacturing plant of the fine powder, and the raw material container 101 does not have a form of a primitive precise round.
  • the raw material container (101) is placed in the turntable (102), and then the inside of the raw material container (101) is equipped with a pan-ring (103), which is a precise source. Ingest as much as possible.
  • the cylinder rod 302 is lowered and pressed to the bottom of the horizontal bar 303
  • the attached fan ring 103 and flange 106 are also lowered so that the fan ring 103 is inserted into the inner diameter of the raw material container 101.
  • the fan ring 103 When the fan ring 103 is infiltrated into the raw material container 101, the fixed flow 105 formed in the flange 106 is infiltrated into the position fixing punch 104, and the inlet flow 304 formed in the horizontal bar 303 is also included. At the same time, the fan ring 103 of the raw material is fixed in a horizontal state to the inner diameter of the raw material container 101, and the rod 302 of the cylinder 301 is returned after being fixed.
  • the height of the upper surface of the fine powder (P) stored inside the fan ring 103 is almost similar at a certain distance.
  • the inlet blade 407 formed in the horizontal inlet pipe 403 is located below the upper surface of the fine powder P stored in the fan ring 103.
  • the support 201 raised above the upper surface height of the fine powder P is operated by the distance sensor 204 formed on the side of the screw motor 404 so that the lower edge of the inlet blade 407 is fine.
  • the ball screw motor 203 of the support 201 is operated to move the powder P upper surface so that the fine powder P can be maintained.
  • the fine powder (P) inflow work as described above is the inverse 400 EK409) or table of the inlet
  • the ball screw driving motor 203 is obtained and the support 201 descends a certain distance, thereby horizontally inflowing.
  • the inlet blade 407 of the tube 403 scratches the upper surface of the fine powder P in a state of being infiltrated with a constant payoff.
  • the fine powder (P) is introduced into the horizontal inlet pipe 403 through the inlet blade 407-the fine powder (P) introduced into the horizontal inlet pipe (403) through this process is a screw cap
  • the suction mechanism of the suction fan 502 is moved by the screw 405 by the driving of the rotor 404 and scattered by the scattering plate 411 formed on the screw 405 as shown in FIG. 10.
  • the suction force of the venturi tube 600 is configured to be suctioned and transferred to the transfer pipe 501 through the vertical inlet pipe 401 by the suction force of the high pressure, and filled in the fixed quantity container, and the rotation speed and rotation of the screw 405 are By controlling the time and at the same time by controlling the suction fan 502 and the Ben Mystery tube 600, the fine powder of the correct amount is metered and can also be controlled through the valve.
  • the fine powder transfer operation is carried out so that the height of the upper surface of the fine powder is gradually lowered, so that the support 201 is also lowered.
  • the control method can be achieved by controlling the forward rotation of the ball screw motor 203 for lowering the support 201 or the forward rotation of the table ball reverse motor 107.
  • the proportional control is applied such that the rotation shaft of the Bolls third-generation motor 203 is rotated by one forward rotation.
  • the controller for electrically connecting the stationary motor (409) or the Japanese-style stationary motor ⁇ (sensor (Japanese E-committer) and the ball screw E 203) to measure the rotational speed of 10-ga Not shown) is further provided, the control relationship between the sensor device and the controller is a technique that is obvious to the person skilled in the art, a separate description will be omitted.
  • the fine powder introduced is sucked by the suction force generated by the suction fan 502 and the venturi tube 600, and a plurality of filling devices are formed to form a vertical inlet pipe (
  • a plurality of transfer pipes 501 are formed in the 401, the valves 503 formed in each of the transfer pipes 501 are opened and closed sequentially according to the number of screw rotations or the filling time, so that each filling device has the same precise filling amount as that of the electronic balance. This is metered.
  • the following working process is the same as a general filling apparatus.
  • FIG. 10 The present invention is briefly described to help the understanding of the present invention by FIG. 10 as a device for filling fine powder is applied to the fine powder transfer device applied to the Republic of Korea Patent Publication No. 10-0902107 previously filed previously .
  • Venturi tube 600 which is provided in the center of the upper end of the chamber 601 and the upper end of the chamber ([converying pump) consisting of an air inlet, an inlet and an outlet) and on the pipe duct 602 communicating with the chamber 601. It is composed of a dust collecting fan 603 existing in the device to fill the fine powder without using a filter without using a filter to transfer the filling directly from the raw material container 101 to the metering vessel 604 without storing in the chamber 601 Direct way.
  • the blackening of the above method is as follows.
  • the fine powder (P) sucked into the vacuum pump is mixed with air and transported, and the fine powder mixed with the air cannot be filled without the air reservoir.
  • the dust collecting fan 603 suction part for separating and discharging only the air without the use of a filter in the mixture 3 ⁇ 4 of air and fine powder mixed is formed and the suction part of the dust collecting fan 603 is as follows.
  • the dust collecting fan 603 should be configured on the inside of the pipe duct 602 communicating with one side of the upper part of the chamber 601, and the junction of the pipe duct 602 communicating with the chamber 601 is the upper center of the chamber 601. And the spaced apart more than a predetermined distance formed on the upper end of the chamber 601, the width of the junction portion bonded to the chamber 601 and the pipe duct 602 should be configured to the dust collecting fan 603 suction portion below a certain size.
  • the range of suction force that the dust collecting fan 603 has the pressure to suck the fine powder is formed into a fan-shaped volume on the line in front of the dust collecting fan 603, and the fine powder can be sucked in the volume. This powder is sucked because there is a suction power.
  • the air in the volume out of the range does not have a suction force to transport the fine powder.
  • the entire amount of fine powder is discharged to the dust storage tank 605 connected to the duct pipe 602 by the suction force of the dust collecting fan 603.
  • the suction force of the dust collecting fan 603 existing on the pipe duct 602 communicating with the upper end of the chamber 601 is advanced in the air flow S opposite to the direction in which the fine powder falls and is filled.
  • the above phenomenon is an apparatus having an advantage that the generation of dust during filling induces the effect of reducing the falling speed of the fine powder.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Quality & Reliability (AREA)
  • Basic Packing Technique (AREA)

Abstract

La présente invention porte sur un appareil pour mesurer et charger une quantité fixe de poudre fine, lequel appareil comprend une cuve de matériau ayant différentes formes, telles qu'un cercle, un rectangle, etc., pour ré-emballer de façon secondaire la poudre fine emballée de façon primaire dans un emballage en vinyle, et un anneau de barrière usiné de façon précise pour former le diamètre interne de la cuve de matériau sous la forme d'un cercle idéal, et dans lequel, après l'insertion de l'anneau de barrière dans la cuve de matériau, un tube d'entrée horizontal formé avec une lame d'entrée ayant une taille égale au rayon de l'anneau de barrière est tourné, ou la cuve de matériau est tournée de façon à produire le même effet avec le tube d'entrée horizontal maintenu fixe, de façon à ne faire s'écouler qu'une quantité fixe précise de poudre fine à travers la lame d'entrée dans une vis formée à l'intérieur du tube d'entrée horizontal, de façon à produire ainsi en résultat une mesure précise en fonction du nombre de rotations de la vis. L'appareil pour mesurer une quantité fixe de poudre fine selon la présente invention comprend : une partie à déplacement vertical comprenant une table tournante pour porter une cuve de matériau cylindrique pour stocker un matériau de poudre fine, une partie d'anneau de barrière pour recevoir un anneau de barrière cylindrique ayant un diamètre interne formé sous la forme d'un cercle idéal, la partie d'anneau de barrière étant insérée dans l'intérieur de la cuve de matériau montée sur la table tournante, un élément de support formé sur le côté supérieur de l'anneau de barrière de la partie d'anneau de barrière ayant un côté pour monter un arbre à vis à bille, et un moteur d'entraînement de vis à bille disposé sur un côté de l'arbre à vis à bille pour faire tourner l'arbre à vis à bille ; une partie d'insertion d'anneau de barrière comprenant un cylindre disposé dans le centre du sommet de l'élément de support de la partie à déplacement vertical, une barre horizontale formée sur une extrémité de la tige de cylindre du cylindre, et les deux extrémités de la barre horizontale étant agencées de façon à être attachées de façon détachable à l'extrémité supérieure d'une bride d'anneau de barrière formée sur le côté inférieur de l'élément de support ; une partie d'entrée disposée en dessous du centre de l'élément de support de la partie à déplacement vertical de façon à être tournée dans l'intérieur de l'anneau de barrière inséré par la partie d'insertion d'anneau de barrière de façon à tirer la surface supérieure de la poudre fine stockée dans la cuve de matériau à une profondeur donnée pour la dispersion ; et une partie de distribution pour distribuer la poudre fine aspirée et dispersée par la partie d'entrée par l'intermédiaire d'un tube de distribution.
PCT/KR2013/004011 2012-05-10 2013-05-08 Appareil pour mesurer et charger une quantité fixe de poudre fine WO2013168999A1 (fr)

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KR10-2012-0049517 2012-05-10
KR1020120049517A KR101297512B1 (ko) 2012-05-10 2012-05-10 미세분말 정량계량 충진장치

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CN110816914A (zh) * 2019-11-24 2020-02-21 湖南力泓新材料科技股份有限公司 一种硫酸锌包装用分量设备和分量方法
CN117566159A (zh) * 2024-01-15 2024-02-20 湖南铁军工程建设有限公司 一种粉状物料的定量填充装置及粉状乳化***包装线

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CN111498156B (zh) * 2020-04-13 2024-06-11 珠海市富琳特食品有限公司 多包装机自动上料***

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CN117566159A (zh) * 2024-01-15 2024-02-20 湖南铁军工程建设有限公司 一种粉状物料的定量填充装置及粉状乳化***包装线
CN117566159B (zh) * 2024-01-15 2024-04-09 湖南铁军工程建设有限公司 一种粉状物料的定量填充装置及粉状乳化***包装线

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