CN211382706U - Medicine distributor - Google Patents

Medicine distributor Download PDF

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Publication number
CN211382706U
CN211382706U CN201921962485.7U CN201921962485U CN211382706U CN 211382706 U CN211382706 U CN 211382706U CN 201921962485 U CN201921962485 U CN 201921962485U CN 211382706 U CN211382706 U CN 211382706U
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China
Prior art keywords
medicine
storage box
section
accommodating cavity
dispensing assembly
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CN201921962485.7U
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Chinese (zh)
Inventor
傅钰
伍忠文
严小燕
邵方伟
景睿韬
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Sinopharm Chuankang Pharmaceutical Co Ltd
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Sinopharm Chuankang Pharmaceutical Co Ltd
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Priority to CN201921962485.7U priority Critical patent/CN211382706U/en
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Abstract

An embodiment of the utility model provides a divide medicine ware relates to the medicine and equally divides technical field. The medicine distributor comprises a medicine storage box, a medicine distribution assembly and a cover body. The medicine storage box is provided with a containing cavity, the cover body is provided with a medicine outlet hole, the medicine distribution component can be connected with the medicine storage box, and the cover body can be connected with the medicine distribution component. When the medicine distribution component is connected with the medicine storage box, the medicine distribution component has a first state and a second state and can be switched between the first state and the second state. When the medicine distribution assembly is located in the first state, the medicine distribution assembly can rotate around the central axis of the containing cavity so as to scrape the medicine in the containing cavity. When the medicine distribution assembly is located in the second state, the medicine distribution assembly can move along the axial direction of the accommodating cavity so as to divide the accommodating cavity into a plurality of sub-units. When the cover body rotates relative to the medicine distribution assembly, the medicine outlet hole can be selectively communicated with one of the sub-units so as to pour out the medicine of the sub-unit corresponding to the medicine outlet hole. Simple structure, reasonable and ingenious design, convenient operation and even medicine distribution.

Description

Medicine distributor
Technical Field
The utility model relates to a technical field is equallyd divide to the medicine, particularly, relates to a divide medicine ware.
Background
Generally, the dosage needs of patients with different ages or different weights are different.
Medicines such as powder and small particles are divided, so that different patients can take the medicines according to their own needs. However, the existing medicine dividing box has the problem of uneven medicine dividing.
SUMMERY OF THE UTILITY MODEL
In view of this, the utility model aims at including, for example, provide a divide medicine ware, it can equally divide according to the demand to the medicine of powder, small particle class, improves the uneven problem of branch medicine that current branch medicine box exists.
The embodiment of the utility model discloses a can realize like this:
in a first aspect, an embodiment provides a medicine dispenser, which includes a medicine storage box, a medicine dispensing assembly and a cover body, wherein the medicine storage box is provided with an accommodating cavity for accommodating medicines, the cover body is provided with a medicine outlet, the medicine dispensing assembly can be connected with the medicine storage box, and the cover body can be connected with the medicine dispensing assembly;
when the medicine distribution component is connected with the medicine storage box, the medicine distribution component has a first state and a second state relative to the medicine storage box and can be switched between the first state and the second state;
when the medicine distribution assembly is in the first state, the medicine distribution assembly can rotate around the central axis of the containing cavity so as to scrape the medicine in the containing cavity; when the medicine distribution assembly is in the second state, the medicine distribution assembly can move along the axial direction of the accommodating cavity so as to divide the accommodating cavity into a plurality of sub-units;
when the cover body rotates relative to the medicine distribution assembly, the medicine outlet hole can be selectively communicated with one of the sub-units so as to pour out the medicine of the sub-unit corresponding to the medicine outlet hole.
In an alternative embodiment, one of the inner wall of the drug dispensing assembly near one end of the drug storage box and the outer wall of the drug storage box near one end of the drug dispensing assembly is provided with a guide groove, the other one is provided with a projection for matching with the guide groove, and the drug dispensing assembly and the drug storage box are connected with the guide groove through the projection.
In an alternative embodiment, the guide groove comprises a first section, the first section extends along the axial direction of the accommodating cavity, and the medicine dispensing assembly comprises a uniform body;
the lug comprises a first position which is not embedded into the first section and a second position which is embedded into the first section, and when the lug is in the first position, the evenly-dividing bodies can extend into the containing cavity of the medicine storage box and rotate relatively so as to scrape the medicine in the containing cavity; when the lug is located at the second position, the medicine dispensing assembly moves along the axial direction of the accommodating cavity, so that the uniform components are abutted against the bottom wall of the accommodating cavity.
In an optional embodiment, the guide groove further comprises a second section communicated with the first section in sequence, the second section is close to the medicine storage box relative to the first section and extends along the circumferential direction, and the plane where the second section is located is perpendicular to the straight line where the first section is located;
when the lug is matched with the second section, the medicine distribution component rotates relative to the medicine storage box and can scrape the medicines in the accommodating cavity.
In an optional embodiment, the guide groove further includes a third section, the third section is connected to an end of the second section, which is far away from the first section, the third section extends along the axial direction, when the projection is matched with the third section, the medicine dispensing assembly is sleeved on the outer side wall of the medicine storage box, and the uniform distribution body extends into the accommodating cavity of the medicine storage box.
In an optional embodiment, the medicine dispensing assembly further comprises an annular shell, the uniform body is fixedly arranged in the middle of the shell and extends axially, the uniform body comprises a plurality of blades connected with one another at the side edges, and all the blades are uniformly arranged around the central axis of the accommodating cavity in a surrounding manner and are used for uniformly dividing the accommodating cavity into a plurality of subunits;
the blade includes relative stiff end and separation end, the stiff end with the casing is connected, separate the end be used for with hold the diapire butt in chamber, the width size of stiff end is greater than separate the width size of end.
In an optional embodiment, the inner side wall of the cover body is provided with first teeth, the outer side wall of the medicine dispensing assembly is provided with second teeth matched with the first teeth, the cover body is in rotating fit with the medicine dispensing assembly, and when the first teeth are meshed with the second teeth, the medicine outlet corresponds to any one of the subunits.
In an alternative embodiment, the projection of any one of the sub-units corresponding to the medicine outlet hole on the projection plane falls within the projection of the medicine outlet hole on the projection plane.
In an alternative embodiment, the medicine dispensing assembly comprises a first inner card and a second inner card which are fixedly connected, the uniform body is positioned in the first inner card and extends towards one side, away from the cover body, in the axial direction of the first inner card, and the guide groove or the projection is positioned on the inner side wall of the second inner card;
the second inner card is provided with a first mark, and the medicine storage box is provided with a second mark corresponding to the first mark, so that the lug is embedded in the guide groove.
In an optional implementation manner, the medicine dispensing device is further characterized by further comprising a top cover, the top cover is connected to one side of the cover body, which is far away from the medicine dispensing assembly, a buckling part is arranged on one side of the top cover, which faces the cover body, and the buckling part can be buckled with the medicine outlet hole to block the medicine dispensing device.
The utility model discloses beneficial effect includes at least, for example:
the medicine in the medicine storage box is equally divided by matching the medicine dividing component with the medicine storage box. Specifically, the medicine distribution component and the medicine storage box are matched in two states. It should be noted that, before dispensing, the medicine dispenser needs to be placed on a horizontal working surface, and the medicine to be dispensed is poured into the accommodating cavity of the medicine storage box. When dividing the medicine subassembly and being in first state for the medicine storage box, divide the medicine subassembly to rotate around its the central axis that holds the chamber for the medicine storage box, at rotatory in-process, divide the medicine subassembly to strickle the medicine in the medicine storage box to the upper surface that makes to wait to divide equally the medicine is in same horizontal plane basically, equipartition medicine for follow-up ready the prerequisite. When dividing the medicine subassembly and changing from first state to the second state for the medicine storage box, divide the medicine subassembly to hold the chamber for the medicine storage box along axial rectilinear motion, until dividing the tip butt that the medicine subassembly is close to the medicine storage box in the diapire that holds the chamber of medicine storage box to will hold the intracavity medicine of strickleing equally divide, make it be divided into a plurality of subunits, and the weight difference between the medicine of all subunits is all in acceptable error requirement range. Finally, the medicine is poured out through a medicine outlet hole on the cover body. Namely, the cover body is rotated relative to the medicine dispensing assembly, so that the medicine outlet hole can be selectively communicated with one of the divided sub-units, and the medicine in the communicated sub-unit is poured out.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings that are required to be used in the embodiments will be briefly described below, it should be understood that the following drawings only illustrate some embodiments of the present invention, and therefore should not be considered as limiting the scope, and for those skilled in the art, other related drawings can be obtained according to the drawings without inventive efforts.
Fig. 1 shows a schematic structural view of a medicine dispenser provided by an embodiment of the present invention;
fig. 2 is a sectional view of a medicine dispenser according to an embodiment of the present invention;
fig. 3 is an exploded schematic view of a medicine dispenser according to an embodiment of the present invention;
FIG. 4 shows a schematic structural view of the cartridge of FIG. 3;
FIG. 5 shows a cross-sectional view of the cartridge of FIG. 3;
FIG. 6 is a schematic diagram showing the structure of the second inner card of FIG. 3;
FIG. 7 shows a cross-sectional view of the second inner card of FIG. 3;
FIG. 8 is a schematic diagram illustrating a first view of the first inner card of FIG. 3;
FIG. 9 is a schematic diagram of the first inner card of FIG. 3 from a second perspective;
FIG. 10 is a schematic view showing the structure of the cover body in FIG. 3;
fig. 11 shows a schematic view of the structure of the top cover of fig. 3.
Icon: 100-medicine distributor; 10-a drug reservoir; 102-a containment chamber; 104-a bump; 105-a first snap; 106-a second identification; 12-a dispensing assembly; 13-a first inner card; 135-even split; 133-fixed end; 134-a separation end; 136-a second catch; 138-second tooth; 14-a second inner card; 141-a guide groove; 142-a first section; 143-a second section; 144-third section; 146-a first identification; 15-a cover body; 155-medicine outlet hole; 152-a first tooth; 18-a top cover; 182-a snap-fit portion.
Detailed Description
In order to make the objects, technical solutions and advantages of the embodiments of the present invention clearer, the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are some, but not all, embodiments of the present invention. The components of embodiments of the present invention, as generally described and illustrated in the figures herein, may be arranged and designed in a wide variety of different configurations.
Thus, the following detailed description of the embodiments of the present invention, presented in the accompanying drawings, is not intended to limit the scope of the invention, as claimed, but is merely representative of selected embodiments of the invention. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative efforts belong to the protection scope of the present invention.
It should be noted that: like reference numbers and letters refer to like items in the following figures, and thus, once an item is defined in one figure, it need not be further defined and explained in subsequent figures.
In the description of the present invention, it should be noted that, if the terms "upper", "lower", "inner", "outer", etc. indicate the position or positional relationship based on the position or positional relationship shown in the drawings, or the position or positional relationship which is usually placed when the products of the present invention are used, the description is only for convenience of description and simplification, but the indication or suggestion that the indicated device or element must have a specific position, be constructed and operated in a specific orientation, and thus, should not be interpreted as a limitation of the present invention.
Furthermore, the appearances of the terms "first," "second," and the like, if any, are used solely to distinguish one from another and are not to be construed as indicating or implying relative importance.
It should be noted that the features of the embodiments of the present invention may be combined with each other without conflict.
Examples
The embodiment of the utility model provides a divide medicine ware, this divide medicine ware can equally divide to the medicine of powder, small granule class. When the medicine distributor is used for uniformly distributing the medicines, firstly, the medicine distributor is placed on a horizontal table top or a working surface, so that the medicine distributor is in a stable state, and then the medicines to be uniformly distributed are poured into a containing cavity of the medicine distributor. The following description is made with the dispenser in a use right state.
Due to the fact that the bulk densities of the medicine powder are different, the existing medicine dividing device has the problem that medicine dividing is uneven, the medicine amount difference exceeds an allowable error range, or medicine clamping occurs in the medicine dividing process aiming at medicines with different bulk densities. The embodiment of the utility model provides a divide medicine ware can better improve above-mentioned problem.
The specific structure and the corresponding relationship between the components of the medicine dispenser provided by the embodiment are explained in detail below.
Fig. 1 is the structural schematic diagram of the medicine distributor 100 provided by the embodiment of the present invention, fig. 2 is the embodiment of the present invention provides a cross-sectional view of the medicine distributor 100, and fig. 3 is the embodiment of the present invention provides an exploded schematic diagram of the medicine distributor 100.
As shown in fig. 1, 2 and 3, the medicine dispenser 100 includes a medicine storage box 10, a medicine dispensing assembly 12, a cover body 15 and a top cover 18.
Wherein, drug storage box 10 has the chamber 102 that holds that is used for holding the medicine, divides medicine subassembly 12 to be connected with drug storage box 10, and can equally divide the medicine that holds in the chamber 102 of drug storage box 10, and lid 15 has seted up out medicine hole 155, and lid 15 can be connected with branch medicine subassembly 12 to pour out the use according to the user demand with the medicine after equally dividing in the drug storage box 10.
Specifically, when the dispensing assembly 12 is connected to the medicine storage box 10, the dispensing assembly 12 has two different states relative to the medicine storage box 10: a first state and a second state, and the dispensing assembly 12 is switchable between the first state and the second state.
When the dispensing assembly 12 is in the first state relative to the medicine storage box 10, the dispensing assembly 12 can rotate around the central axis of the accommodating cavity 102 of the medicine storage box 10, so that the dispensing assembly 12 and the medicine storage box 10 are in a relative rotation state, and in the relative rotation process, the dispensing assembly 12 scrapes off the medicine in the accommodating cavity 102.
When the dispensing assembly 12 is in the second state relative to the medicine storage box 10, the dispensing assembly 12 can linearly move along the axial direction of the accommodating cavity 102 of the medicine storage box 10, so that the dispensing assembly 12 and the medicine storage box 10 are in a relatively linearly moving state until the end of the dispensing assembly 12 moves to the bottom wall of the accommodating cavity 102 of the medicine storage box 10, thereby dividing the medicine in the accommodating cavity 102 into a plurality of sub-units. The aim of equally dividing the medicines is achieved, and the same medicine is located in the regular cylindrical containing cavity 102 due to the fact that the same medicine is identical in density, and therefore the aim of equally dividing can be well achieved.
After the medicines are equally divided into a plurality of sub-units by the medicine dividing assembly 12, the cover body 15 rotates relative to the medicine dividing assembly 12, in the rotating process, the medicine outlet 155 of the cover body 15 can be selectively communicated with one of the sub-units, and the medicine dividing device 100 is poured, so that the medicines in the sub-units corresponding to the medicine outlet 155 can be poured out to be taken by a patient.
One of the inner wall of the dispensing assembly 12 at the end close to the medicine storage box 10 and the outer wall of the medicine storage box 10 at the end close to the dispensing assembly 12 is provided with a guide groove 141, the other one is provided with a projection 104 for matching with the guide groove 141, and the dispensing assembly 12 and the medicine storage box 10 are connected with the guide groove 141 through the projection 104.
Further, the medicine dispensing assembly 12 comprises a first inner clamp 13 and a second inner clamp 14 which are fixedly connected, the first inner clamp 13 is provided with an equal split body 135, the second inner clamp 14 is close to the medicine storage box 10 relative to the first inner clamp 13, and the second inner clamp 14 and the medicine storage box 10 are connected in a matching mode through a guide groove 141 and a bump 104.
In this embodiment, the guiding groove 141 is opened on the inner wall of the second inner card 14, the protrusion 104 is disposed on the outer wall of the medicine storage box 10, and the cooperation between the protrusion 104 and the guiding groove 141 enables the medicine dispensing assembly 12 to have rotational movement and linear movement relative to the medicine storage box 10.
Fig. 4 is a schematic structural view of the cartridge 10 of fig. 3, and fig. 5 is a sectional view of the cartridge 10 of fig. 3.
As shown in fig. 4 and 5, the drug storage box 10 comprises an inner shell and an outer shell connected at one end, wherein the inner shell has a containing cavity 102 for placing the drug in the middle, the outer wall of the inner shell is provided with a convex block 104, and the inner wall of the outer shell is provided with a first buckle 105 for buckling with the drug dispensing component 12.
In this embodiment, the height of the inner shell is higher than that of the outer shell, so that the inner shell protrudes from the outer shell, and the protrusion 104 is located at the edge of the inner shell near the opening. The outer wall of the housing is provided with a second mark 106, and the second mark 106 is used for aligning with the first mark 146 on the dispensing component 12, so that the dispensing component 12 can be conveniently buckled on the medicine storage box 10 by the patient according to the first mark 146 and the second mark 106.
Optionally, the outer wall of the housing of the drug storage box 10 is further provided with anti-slip lines, so that the patient is not easy to slip when equally dividing the drugs or detaching the box body as required.
Fig. 6 is a structural view of the second inner card 14 of fig. 3, and fig. 7 is a sectional view of the second inner card 14 of fig. 3.
Referring to fig. 6 and 7, one end of the second inner clip 14 is fixedly connected to the first inner clip 13, and the other end is connected to the drug storage box 10, and the second inner clip 14 is provided with a guide groove 141 matching with the protrusion 104.
Specifically, the guide groove 141 includes a first section 142, a second section 143, and a third section 144 that are sequentially communicated, and the first section 142 extends along the axial direction of the accommodating cavity 102; the second section 143 is close to the medicine storage box 10 relative to the first section 142, the second section 143 extends along the circumferential direction, and the plane of the second section 143 is vertical to the straight line of the first section 142; the third segment 144 is connected to an end of the second segment 143 away from the first segment 142, the third segment 144 extends along the axial direction of the accommodating cavity 102, and the third segment 144 extends to an opening of the second inner card 14.
The second inner card 14 is of a stepped structure, one end, close to the first inner card 13, of the second inner card 14 is a large end face, and a first connecting hole and a second connecting hole are formed in the large end face, wherein the first connecting hole is used for being connected with the first inner card 13, and the second connecting hole is used for being connected with the medicine storage box 10.
Alternatively, when the first inner card 13 and the second inner card 14 are connected, the end of the uniform body 135 is flush with the end of the second inner card 14 adjacent to the cartridge 10.
When the medicine storage box 10 is matched with the medicine dispensing assembly 12, the projection 104 of the medicine storage box 10 is firstly matched with the third section 144 of the guide groove 141 of the second inner card 14 and moves relatively along the extending direction of the third section 144, so that the uniform components 135 in the first inner card 13 are inserted into the accommodating cavity 102 of the medicine storage box 10, and when the projection 104 moves to the bottom of the third section 144 to the second section 143, the uniform components 135 can just be attached to the upper surface of the medicine in the accommodating cavity 102. Then, the protrusions 104 are relatively moved along the second sections 143 of the guide grooves 141 so that the average body 135 is horizontally rotated with respect to the medicine in the accommodating chamber 102, thereby scraping the upper surface of the medicine to be uniformly distributed. Finally, the lug 104 moves along the first section 142 to the bottom of the first section 142, and the second inner card 14 drives the uniform components 135 of the first inner card 13 to be vertically inserted into the bottom of the accommodating cavity 102, so that the end parts of the uniform components 135 abut against the bottom wall of the accommodating cavity 102, and the medicines in the accommodating cavity 102 are evenly separated.
Further, the outer wall of the second inner card 14 is provided with a first mark 146, the first mark 146 is used for aligning with the second mark 106 provided on the drug storage box 10, when the first mark 146 and the second mark 106 are aligned, the patient can conveniently embed the bump 104 in the guiding groove 141, which facilitates quick installation. Preferably, the first mark 146 and the second mark 106 are both convex prism structures, and the patient can complete the installation by touching with hands, which is convenient to use.
Fig. 8 is a structural diagram of the first inner card 13 in fig. 3 from a first perspective, and fig. 9 is a structural diagram of the first inner card 13 in fig. 3 from a second perspective.
As shown in fig. 8 and 9, an even distribution body 135 is provided at a central position of the first inner card 13, and the even distribution body 135 extends toward a side close to the second inner card 14 in the axial direction of the first inner card 13. The outer shell of the first inner card 13 and the second inner card 14 together form a housing of the dispensing assembly 12, which optionally has a ring-shaped configuration.
Equal components of a whole that can function independently 135 includes the even ring of a plurality of blades that the side links to each other, and all blades are established around the central axis that holds chamber 102, and the contained angle between two adjacent blades is the same, and when the quantity of blade was N, N blade was N subunit for holding chamber 102 evenly separated of medicine storage box 10, and the contained angle of every subunit is 360/N.
Further, the blade includes opposite fixed ends 133 and a separating end 134, the fixed ends 133 are fixedly connected with the outer shell of the first inner card 13, and the separating end 134 is used for abutting against the bottom wall of the accommodating cavity 102 of the drug storage box 10. In order to stabilize the structure of the uniform dividing body 135 and better divide the medicine in the accommodating cavity 102 evenly, the width of the fixed end 133 of the blade is greater than that of the dividing end 134, so that the connection is stable, and the powder blocking phenomenon is avoided.
In this embodiment, the dividing end 134 is a cone-shaped structure, so as to achieve better scraping of the powder and improve the uniform distribution effect. To rotate the uniform distribution body 135 in the accommodating cavity 102, the uniform distribution body 135 in the present application has a cylindrical shape formed by a plurality of blades uniformly distributed. And the front and back of the equally-divided body 135 are communicated, so that the equally-divided medicines can be conveniently poured out according to requirements.
Further, a second buckle 136 is disposed at an end of the first inner card 13 close to the second inner card 14, the second buckle 136 is matched with the first connection hole of the second inner card 14, and the second buckle 136 is buckled with the first connection hole, so as to fixedly connect the first inner card 13 and the second inner card 14.
It will be appreciated that in alternative embodiments, the protrusions 104 may be located on the inner wall of the second inner card 14, and the corresponding guide grooves 141 are formed on the outer side wall of the drug storage box 10. The specific opening manner is not limited, as long as one of the guiding groove 141 or the protrusion 104 is located on the inner side wall of the second inner card 14, and the other one is located on the outer side wall of the drug storage box 10, which depends on the actual requirement.
Optionally, the outer surface of the medicine dispensing assembly 12 is convexly provided with an anti-slip part, so that when the patient needs to unscrew or screw the medicine dispensing device 100, the patient presses the anti-slip part to operate the hand which is not easy to slip, thereby facilitating the opening or screwing of the medicine dispensing device 100.
Fig. 10 is a schematic structural view of the cover 15 in the medicine dispenser 100 according to the embodiment of the present application.
Referring to fig. 10, the cover 15 can be fastened to the dispensing component 12 and rotate relative to the dispensing component 12, the cover 15 is provided with a dispensing hole 155 corresponding to any subunit, and the shape of the dispensing hole 155 is consistent with the cross-sectional shape of the subunit.
Further, in order to enable the medicines in the sub-units corresponding to the medicine outlet holes 155 to be completely poured out during pouring of the medicines without the phenomenon of material blockage, the projection of any sub-unit corresponding to the medicine outlet holes 155 on the projection surface falls into the projection of the medicine outlet holes 155 on the projection surface. And the medicine outlet 155 can only allow the medicine in one subunit to be poured out at one time, so that the medicine mixing is prevented.
Optionally, in order to enable the medicine outlet 155 to correspond to any sub-unit, a first tooth 152 is disposed on the inner side wall of the cover 15, a second tooth 138 is disposed on the outer side wall of the medicine dispensing assembly 12, and the first tooth 152 is matched with the second tooth 138. When the cover 15 is rotatably engaged with the dispensing assembly 12 and the first tooth 152 is engaged with the second tooth 138, the dispensing hole 155 corresponds to any one of the sub-units.
Alternatively, the number of first teeth 152 and second teeth 138 that are engaged with each other is the same as the number of sub-unit medicaments that are evenly divided. The medicine outlet 155 corresponds to different sub-units in turn each time the cover 15 is screwed with respect to the medicine dispensing assembly 12.
Fig. 11 is a schematic structural view of the top cap 18 in the medicine dispenser 100 according to the embodiment of the present application.
Referring to fig. 11, the top cover 18 is used to close the medicine outlet 155 of the cover body 15, the shape of the top cover 18 matches the shape of the medicine outlet 155, and the top cover 18 is connected to the side of the cover body 15 away from the medicine dispensing assembly 12.
One side of the top cover 18 facing the cover body 15 is provided with a buckling part 182 and a rotating part, the rotating part is of a columnar structure, the rotating part is rotatably arranged at the central hole of the cover body 15, and the buckling part 182 can be buckled at the medicine outlet hole 155 to block the medicine dispenser 100, so that the carrying is convenient.
It can be understood that the first inner card 13 and the second inner card 14 can be designed as an integral structure, in this embodiment, the first inner card 13 and the second inner card 14 are designed as two parts and can be connected to each other to form the dispensing assembly 12, which is beneficial to production and manufacture, simplifies the production process, and facilitates demolding and processing.
In alternative embodiments, the guiding groove 141 may include only the first segment 142 extending along the axial direction of the accommodating cavity 102, and the first segment 142 opens from the end of the second inner card 14 close to the medicine cartridge 10.
When the guiding groove 141 only includes the first section 142 and the protrusion 104 is located at the outer edge of the opening of the drug storage box 10, the uniform body 135 protrudes from the end of the second inner card 14 after the first inner card 13 and the second inner card 14 are fastened.
When the dispensing assembly 12 is engaged with the cartridge 10, the tab 104 includes a first position not embedded in the first segment 142 and a second position embedded in the first segment 142. When the protrusion 104 is in the first position, the even distribution body 135 can extend into the containing cavity 102 of the drug storage box 10 and rotate relatively to scrape the drug in the containing cavity 102. When the lug 104 is at the second position, the dispensing assembly 12 moves along the axial direction of the accommodating cavity 102, so that the distribution body 135 is abutted against the bottom wall of the accommodating cavity 102, and the accommodating cavity 102 is uniformly divided into a plurality of sub-units.
Further, in alternative other embodiments, the guiding groove 141 may only include a first section 142 and a second section 143 which are communicated in sequence, the first section 142 extends along the axial direction of the accommodating cavity 102, the second section 143 is close to the medicine storage box 10 relative to the first section 142, the second section 143 extends along the circumferential direction, and the plane where the second section 143 is located is perpendicular to the straight line where the first section 142 is located.
When the dispensing assembly 12 is engaged with the medicine storage box 10, the protrusion 104 is located at the second section 143, and the dispensing assembly 12 can rotate around the central axis of the accommodating cavity 102 relative to the medicine storage box 10, and the medicine in the accommodating cavity 102 is scraped off by the uniform body 135 during the rotation. When the projection 104 moves to the first section 142 relative to the dispensing assembly 12, the relative axial movement is performed, as described above, and will not be described herein.
It is understood that the guide groove 141 includes a first section 142, a second section 143 and a third section 144 which are connected in sequence. The third segment 144 may also be a spiral structure extending along the axial direction of the accommodating cavity 102, in addition to the structure extending along the axial direction of the accommodating cavity 102 in the above embodiment, and the purpose of the movement of the protrusion 104 relative to the third segment 144 of the guide groove 141 is to enable the uniform body 135 to be inserted into the accommodating cavity 102, so that the uniform body 135 is attached to the upper surface of the medicine when the protrusion 104 is matched with the second segment 143.
Optionally, according to different bulk densities of different medicines, the medicine dispenser 100 provided in the embodiment of the present application optionally marks a medicine indicating line in the accommodating cavity 102 of the medicine storage box 10, so that the capacity of the medicines meets the requirement that the end of the uniform body 135 is flush with the upper surface of the medicines.
To the powder medicine, the small granule medicine that different age bracket or the different patient of weight need took, this application adopts minimum demand to divide equally the medicine for the subunit for different patients take when taking, take with the mode that the multiple relation increases gradually according to self demand.
Optionally, each part structure of branch medicine ware 100 that this application embodiment provided can set up to different colours, because the equal white powder of general medicine, for example, lid 15 sets up to, transparent color, and medicine storage box 10 sets up to different colours with dividing medicine subassembly 12, and top cap 18 adopts the silica gel material, has the advantage that sealing performance is good, portable after sealed to the medicine after equalling divide equally.
The embodiment of the utility model provides a divide medicine ware 100 to have beneficial effect is:
simple structure, reasonable in design, ingenious, convenient operation, and divide the medicine even, divide equally the medicine weight difference after all in the error band of regulation, do not block the medicine, easily open, easy lock, conveniently carry.
The above description is only for the specific embodiments of the present invention, but the protection scope of the present invention is not limited thereto, and any changes or substitutions that can be easily conceived by those skilled in the art within the technical scope of the present invention should be covered by the protection scope of the present invention. Therefore, the protection scope of the present invention shall be subject to the protection scope of the claims.

Claims (10)

1. The medicine distribution device is characterized by comprising a medicine storage box, a medicine distribution assembly and a cover body, wherein the medicine storage box is provided with an accommodating cavity for accommodating medicines, the cover body is provided with a medicine outlet, the medicine distribution assembly can be connected with the medicine storage box, and the cover body can be connected with the medicine distribution assembly;
when the medicine distribution component is connected with the medicine storage box, the medicine distribution component has a first state and a second state relative to the medicine storage box and can be switched between the first state and the second state;
when the medicine distribution assembly is in the first state, the medicine distribution assembly can rotate around the central axis of the containing cavity so as to scrape the medicine in the containing cavity; when the medicine distribution assembly is in the second state, the medicine distribution assembly can move along the axial direction of the accommodating cavity so as to divide the accommodating cavity into a plurality of sub-units;
when the cover body rotates relative to the medicine distribution assembly, the medicine outlet hole can be selectively communicated with one of the sub-units so as to pour out the medicine of the sub-unit corresponding to the medicine outlet hole.
2. The medicine dispenser according to claim 1, wherein one of the inner wall of the medicine dispensing assembly at the end close to the medicine storage box and the outer wall of the medicine storage box at the end close to the medicine dispensing assembly is provided with a guide groove, the other one is provided with a projection for matching with the guide groove, and the medicine dispensing assembly and the medicine storage box are connected with the guide groove through the projection.
3. The medicine dispenser of claim 2 wherein the guide slot includes a first section extending axially of the receiving cavity, the medicine dispensing assembly including a uniform body;
the lug comprises a first position which is not embedded into the first section and a second position which is embedded into the first section, and when the lug is in the first position, the evenly-dividing bodies can extend into the containing cavity of the medicine storage box and rotate relatively so as to scrape the medicine in the containing cavity; when the lug is located at the second position, the medicine dispensing assembly moves along the axial direction of the accommodating cavity, so that the uniform components are abutted against the bottom wall of the accommodating cavity.
4. The medicine dispenser according to claim 3, wherein the guide groove further comprises a second section communicated with the first section in sequence, the second section is close to the medicine storage box relative to the first section and extends along the circumferential direction, and the plane of the second section is perpendicular to the straight line of the first section;
when the lug is matched with the second section, the medicine distribution component rotates relative to the medicine storage box and can scrape the medicines in the accommodating cavity.
5. The medicine dispenser according to claim 4, wherein the guide groove further comprises a third section, the third section is connected with one end of the second section, which is far away from the first section, the third section extends along the axial direction, when the projection is matched with the third section, the medicine dispensing assembly is sleeved on the outer side wall of the medicine storage box, and the uniform distribution body extends into the accommodating cavity of the medicine storage box.
6. The medicine distributor according to claim 3, wherein the medicine distributing assembly further comprises an annular shell, the uniform body is fixedly arranged in the middle of the shell and extends axially, the uniform body comprises a plurality of blades connected at sides, and all the blades are uniformly arranged around the central axis of the accommodating cavity in a surrounding manner and are used for uniformly dividing the accommodating cavity into a plurality of subunits;
the blade includes relative stiff end and separation end, the stiff end with the casing is connected, separate the end be used for with hold the diapire butt in chamber, the width size of stiff end is greater than separate the width size of end.
7. The medicine dispenser according to claim 1, wherein the inner side wall of the cover body is provided with first teeth, the outer side wall of the medicine dispensing assembly is provided with second teeth matched with the first teeth, the cover body is rotationally matched with the medicine dispensing assembly, and when the first teeth are meshed with the second teeth, the medicine outlet corresponds to any one of the subunits.
8. The medicine distributor according to claim 7, wherein the projection of any one of the sub-units corresponding to the medicine outlet holes on the projection plane falls within the projection of the medicine outlet holes on the projection plane.
9. The medicine dispenser according to claim 3, wherein the medicine dispensing assembly comprises a first inner card and a second inner card which are fixedly connected, the medicine dispensing assembly is located in the first inner card and extends along the axial direction of the first inner card towards one side away from the cover body, and the guide groove or the projection is located on the inner side wall of the second inner card;
the second inner card is provided with a first mark, and the medicine storage box is provided with a second mark corresponding to the first mark, so that the lug is embedded in the guide groove.
10. The medicine dispenser according to claim 1, further characterized by further comprising a top cover, wherein the top cover is connected to one side of the cover body, which is away from the medicine dispensing assembly, a buckling part is arranged on one side of the top cover, which faces the cover body, and the buckling part can be buckled with the medicine outlet hole to block the medicine dispenser.
CN201921962485.7U 2019-11-14 2019-11-14 Medicine distributor Active CN211382706U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110680740A (en) * 2019-11-14 2020-01-14 国药集团川抗制药有限公司 Medicine distributor

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110680740A (en) * 2019-11-14 2020-01-14 国药集团川抗制药有限公司 Medicine distributor

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