CN223350595U - Medicine divides medicine device - Google Patents

Medicine divides medicine device

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Publication number
CN223350595U
CN223350595U CN202422392435.7U CN202422392435U CN223350595U CN 223350595 U CN223350595 U CN 223350595U CN 202422392435 U CN202422392435 U CN 202422392435U CN 223350595 U CN223350595 U CN 223350595U
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CN
China
Prior art keywords
medicine
dispensing device
auxiliary rope
sealing cover
equally divided
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CN202422392435.7U
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Chinese (zh)
Inventor
禹洁
袁恒杰
李正翔
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Tianjin Medical University General Hospital
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Tianjin Medical University General Hospital
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Priority to CN202422392435.7U priority Critical patent/CN223350595U/en
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Abstract

The utility model discloses a medicine dispensing device which comprises a body, wherein an upper sealing cover is connected to the upper end of the body, an auxiliary rope is connected to the center of the upper sealing cover, the tail end of the auxiliary rope is flush with the inner bottom surface of the body, a plurality of equal division scale marks are formed on the side wall of the body from top to bottom, the auxiliary rope and the equal division scale marks are intersected to form intersection points, the distances between two adjacent intersection points on the auxiliary rope are equal, a medicine outlet is formed on the bottom surface of the body, a medicine discharging structure is arranged around the medicine outlet of the body, and a plurality of elastic rings are movably sleeved on the body. According to the utility model, accurate division of medicine dosage is realized through the plurality of equally divided scale marks and the auxiliary ropes on the bottle body, the structural design is ingenious, the safety of the medicine dosage of children is ensured, the medicine dividing process is simple and convenient to operate, the implementation is easy, the practicability is high, and the problem of medication of a non-minimum packaging unit is effectively solved.

Description

Medicine divides medicine device
Technical Field
The utility model belongs to the technical field of non-minimum packaging unit medication, and particularly relates to a medicine dispensing device.
Background
Along with the improvement of the pharmaceutical technology, the dosage forms of medicines for children patients are gradually increased, and the problem of difficult medicine taking of children patients is improved to a certain extent. However, in the field of medication for children patients, there are still some practical problems, such as many dosage forms for children are granules, powder or dry suspensions, and although the dosage forms greatly improve the convenience and acceptance of medication for children patients, situations that the minimum packaging unit (one bag) of the medicines needs to be taken by two or more times by using 1/2 bag, 1/3 bag, 3/4 bag, 4/5 bag or one bag and half and the like are often encountered. The medicine dispensing dosage is inaccurate, and the medicine is easy to be affected by moisture after unpacking, is difficult to be stored after being scattered, and the like, so that the biggest problem exists in the medicine taking of non-minimum packaging units. At present, there is a device for sub-packaging the whole minimum drug units such as whole tablets or whole capsules in a storage bag in the prior art, but there is no drug dispensing device for separating the minimum package units for granules, powder and the like.
Disclosure of utility model
The utility model provides a medicine dispensing device, which aims to solve the problems that the dispensing dosage of a non-minimum packaging unit for dosage forms such as granules, powder and dry suspension is inaccurate, the quality of medicines after unsealing cannot be ensured, and the medicines are inconvenient to store.
The utility model adopts the following technical scheme.
A medicine dispensing device comprises a body, wherein an upper sealing cover is connected to the upper end of the body, an auxiliary rope is connected to the center of the upper sealing cover, the tail end of the auxiliary rope is flush with the inner bottom surface of the body, a plurality of equal division scale marks are formed on the side wall of the body from top to bottom, the auxiliary rope and the equal division scale marks are intersected to form intersection points, the distances between two adjacent intersection points on the auxiliary rope are equal, a medicine outlet is formed on the bottom surface of the body, a medicine discharging structure is arranged around the medicine outlet of the body, and a plurality of elastic rings are movably sleeved on the body.
Further, two equally-divided scale mark groups are formed on the side wall of the body, the first equally-divided scale mark group comprises five equally-divided scale marks, four equally-divided scale marks, three equally-divided scale marks I, two equally-divided scale marks I and two equally-divided scale marks I which are sequentially arranged from top to bottom, and one ends of the equally-divided scale marks and the two equally-divided scale marks are located at the lower part of one side of the body and extend upwards to the other side of the body.
Further, the second halving scale line group comprises a second halving scale line, a second halving scale line and a second bottom line which are sequentially arranged from top to bottom, and one ends of the halving scale line and the bottom line are positioned at the lower part of one side of the body and extend upwards to the other side of the body.
Further, a drying agent accommodating basket is arranged in the upper sealing cover.
Further, put medicine structure including setting up the slot on the body bottom surface, the slot is located the both sides of play medicine mouth, sliding connection has the picture peg between two slots.
Further, a lower sealing cover is connected to the lower end of the body.
Further, the medicine distributing device also comprises a light-shielding box, and the body is connected with the upper sealing cover and the lower sealing cover and then is arranged in the light-shielding box.
Furthermore, the light-shielding box comprises a left box body and a right box body, and the back edges of the two box bodies are rotationally connected.
The present utility model achieves the following advantageous effects.
(1) According to the utility model, the accurate division of the medicine dosage is realized through the plurality of equally divided scale marks and the auxiliary ropes which are arranged on the bottle body, so that the safety of the medicine dosage for children is ensured, and the medicine dividing process is simple and convenient to operate and easy to implement;
(2) The medicine distributing device can better store the unsealed medicines, effectively prevent the medicines from being affected by moisture and influence the quality of the medicines, and can provide a light-shielding environment for the medicines needing to be stored in a light-shielding manner.
Drawings
FIG. 1 is a schematic view of the structure of the upper seal cap of the present utility model;
FIG. 2 is a schematic structural view of a first connecting ring intended to embody the present utility model;
FIG. 3 is a schematic view of the structure of the desiccant containment basket of the present utility model;
FIG. 4 is a schematic structural view of the body of the present utility model;
FIG. 5 is a schematic illustration of the structure of an halving graduation line and auxiliary cord intended to embody the present utility model;
FIG. 6 is a schematic view of the structure of the lower seal cap of the present utility model;
FIG. 7 is a schematic view of a bottom surface structure of a body intended to embody the present utility model;
FIG. 8 is a schematic structural view of the drug delivery structure of the present utility model;
FIG. 9 is an expanded view of a side wall of a body intended to embody a first set of equally divided graduation marks of the present utility model;
FIG. 10 is an expanded view of a side wall of a body intended to embody a second halving of the set of graduation marks of the present utility model;
FIG. 11 is a schematic view of the structure of the light-shielding box of the present utility model (with the box closed);
fig. 12 is a schematic view of the structure of the light-shielding case of the present utility model (case body open).
The novel anti-light box comprises a sealing cover 1, a cover plate 11, a first connecting ring 13, a drying agent accommodating basket 2, a body 21, five equally dividing graduation marks 22, four equally dividing graduation marks 23, three equally dividing graduation marks one, 24, two equally dividing graduation marks one, 25, a bottom line one, 26, three equally dividing graduation marks two, 27, two equally dividing graduation marks two, 28, two bottom lines, 29, a medicine outlet 210, a second connecting ring 3, a medicine discharging structure 31, a slot 32, a plugboard 4, a lower sealing cover 5, an auxiliary rope 6, an elastic ring 7 and a light-shielding box.
Detailed Description
The technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model.
As shown in fig. 1 to 12, a medicine dispensing device comprises a body 2, wherein the body 2 has a cylindrical structure with a bottom surface, an upper sealing cover 1 is connected to the upper end of the body 2 through threads, and a lower sealing cover 4 is connected to the lower end of the body 2 through threads.
Specifically, the upper sealing cover 1 comprises a cover plate 11, a first connecting ring 12 is arranged on the lower surface of the cover plate 11, threads are formed on the inner wall and the outer wall of the first connecting ring 12, the threads on the inner wall of the first connecting ring 12 are matched with the threads on the upper part of the outer wall of the drying agent accommodating basket 13, so that the upper sealing cover 1 is movably connected with the drying agent accommodating basket 13, the drying agent accommodating basket 13 is internally provided with a drying agent, the effectiveness of medicines in the body 2 can be effectively prevented from being influenced by deliquescence of the medicines, the threads on the outer wall of the first connecting ring 12 are matched with the threads on the upper part of the inner wall of the body 2, the upper sealing cover 1 is connected with the body 2, and the upper sealing cover 1 is sealed to the body 2.
The auxiliary rope 5 is connected to the center of the top of the upper sealing cover 1, the tail end of the auxiliary rope 5 is flush with the inner bottom surface of the body 2 after the auxiliary rope 5 is straightened, and the auxiliary rope 5 is matched with the dividing scale marks for use and is used for accurately dividing the medicine dosage.
A plurality of equally divided graduation lines are formed on the side wall of the body 2. Specifically, the side surface of the cylindrical body 2 is equally divided into two semicircular cambered surfaces, wherein one cambered surface is provided with a first equally-divided scale line group, and the other cambered surface is provided with a second equally-divided scale line group. The first equal division scale line group comprises five equal division scale lines 21, four equal division scale lines 22, three equal division scale lines one 23, two equal division scale lines one 24 and a bottom line one 25 which are sequentially arranged from top to bottom. In order to explain the arrangement modes of the four equally divided graduation marks and the bottom mark in more detail, as shown in fig. 9, the semicircular cambered surface is unfolded to form a rectangle, the lower part of one side of the rectangle is provided with an endpoint i of the five equally divided graduation marks 21, the distances from the endpoint i to the bottom edge of the rectangle are 5 parts, an endpoint g of the four equally divided graduation marks 22, an endpoint e of the three equally divided graduation marks 23, an endpoint c of the two equally divided graduation marks 24 and an endpoint a of the bottom mark 25 are respectively formed from top to bottom, meanwhile, the upper part of the other side of the rectangle is provided with an endpoint j of the five equally divided graduation marks 21, the distances from the endpoint j to the bottom edge of the rectangle are 5 parts, and an endpoint h of the four equally divided graduation marks 22, an endpoint f of the three equally divided graduation marks 23, an endpoint d of the two equally divided graduation marks 24 and an endpoint b of the bottom mark 25 are respectively formed from top to bottom. Endpoint i and endpoint j are connected to form a five-quarter scale line 21, endpoint g and endpoint h are connected to form a four-quarter scale line 22, endpoint e and endpoint f are connected to form a three-half scale line one 23, endpoint c and endpoint d are connected to form a two-half scale line one 24, and endpoint a and endpoint b are connected to form a bottom line one 25. Note that, the setting positions of the end point i and the end point j on the body 2 need to consider the total dose of the medicine, that is, the setting position of the end point i needs to be lower than the medicine line formed after the minimum dose (typically 0.1 g) of the medicine is poured into the body 2, and the setting position of the end point j needs to be higher than the maximum dose (typically 10 g) of the medicine is poured into the body 2. The four equally divided graduation marks, the bottom line and the auxiliary rope 5 (solid line in fig. 9) which are arranged in this way form 5 intersecting points, such as r, s, t, u, v in fig. 9, and the distance between r and s, the distance between s and t, the distance between t and u, the distance between u and v, and the distance between v and the bottom line are all equal.
By adopting the same method, a second halving scale line group is arranged on the other cambered surface of the body 2, as shown in fig. 10, the second halving scale line group comprises a second halving scale line 26, a second halving scale line 27 and a second bottom line 28 which are sequentially arranged from top to bottom, an endpoint P of the second halving scale line 26 is determined at the upper part of one side edge of a rectangle formed by expanding a semicircular cambered surface, the setting height of the endpoint P is the same as that of the endpoint j, the distance from the endpoint P to the bottom edge of the rectangle is 3 parts, an endpoint m of the second halving scale line 27 and an endpoint k of the second bottom line 28 are respectively formed from top to bottom, an endpoint q of the second halving scale line 26 is determined at the lower part of the other side edge of the rectangle, the setting height of the endpoint q is the same as that of the endpoint i, the distance from the endpoint q to the bottom edge of the rectangle is equally divided into 3 parts, an endpoint n of the second halving scale line 27 is respectively formed from top to bottom, an endpoint l of the endpoint P and the endpoint q forms the second halving scale line 26, an endpoint m and an endpoint n forms the endpoint of the second halving scale line 27, an endpoint k and an endpoint l forms an endpoint 28.
The medicine outlet 29 is formed in the center of the bottom surface of the body 2, and the medicine outlet 29 is used for discharging the medicine divided into doses in the body 2. The lower surface of the bottom surface of the body 2 is provided with a medicine discharging structure 3 for plugging the medicine outlet 29 and adjusting the medicine discharge amount. The medicine discharging structure 3 comprises slots 31 arranged at two sides of the medicine outlet 29, and a plugboard 32 is connected between the two slots 31 in a sliding manner. When the plugboard 32 completely shields the medicine outlet 29, the medicine outlet 29 can be thoroughly sealed, the shielding area of the plugboard 32 to the medicine outlet 29 can be adjusted, the flow of medicine outflow can be adjusted, and the medicine with the target dosage can be conveniently obtained.
In order to protect the medicine outlet 29 and the medicine discharging structure 3 from being polluted by external environment, the lower end of the body 2 is also connected with a lower sealing cover 4, and the lower sealing cover 4 is connected with the body 2 in a concrete way that a second connecting ring 210 is arranged on the lower surface of the bottom surface of the body 2, threads are arranged on the outer wall of the second connecting ring 210, and correspondingly, the inner wall of the lower sealing cover 4 is provided with threads matched with the threads, so that the connection between the body 2 and the lower sealing cover 4 is realized.
The medicine distributing device also comprises a plurality of elastic rings 6, the elastic rings 6 are movably sleeved on the body 2, and the elastic rings 6 can serve as dividing lines for dividing medicines by the auxiliary ropes 5 and the equal dividing scale marks to play a role in indication.
As a preferred embodiment, in order to meet the storage condition that some medicines need to be stored in a dark place, the application is also provided with a dark box 7 for the body 2, wherein the dark box 7 is a brown plastic box body. Specifically, the light-shielding box 7 includes left and right half box bodies, the back edges of the two half box bodies are rotationally connected, and the front edges of the two half box bodies can be further provided with a connecting piece for keeping the closed state of the light-shielding box 7.
Example 1
The medicine of the minimum packing unit of 3/5 bags is required to be split, the medicine line formed after the medicine is poured into the body 2 is shown by a dotted line in fig. 9, the auxiliary rope 5 is moved to the position of an intersection point (r point) of the medicine line and the five-equal-division scale line 21, the auxiliary rope 5 is straightened, at the moment, the auxiliary rope 5 is respectively crossed with the four-equal-division scale line 22, the three-equal-division scale line 23, the three-equal-division scale line 24 and the bottom line 25 (the intersection points are s, t, u, v respectively), the medicine can be equally split into five equal-division parts, an elastic ring 6 is sleeved at the intersection point u, at the moment, the medicine in the body 2 is divided into 3/5 parts and 2/5 parts, then the medicine opening structure 3 is opened, when the medicine line descends to the elastic ring 6 at the intersection point u, the medicine opening structure 3 is closed, and the medicine quantity taken out is the minimum packing unit of 3/5 bags.
Example 2
If the medicine in the 3/4 bag minimum packaging unit is required to be dispensed, the auxiliary rope 5 is only required to be moved to the intersection point (s ') of the medicine line and the quarter scale line 22, the auxiliary rope 5 is straightened, and at the moment, the medicine can be equally divided into four equal parts by the auxiliary rope 5 and the intersection points (t', u ', v') of the third scale line 23, the first half scale line 24 and the first bottom line 25 respectively, and 3/4 parts of the medicine can be discharged from the medicine outlet 29.
Example 3
The medicine of the minimum packing unit of 2/3 bags is required to be separated, the medicine dosage is still shown by a broken line in fig. 9, it can be seen from fig. 9 that the medicine line is higher than the highest point (f point) of the first trisection graduation mark 23, at this time, the medicine cannot be effectively divided by adopting the first halving graduation mark group, the medicine is required to be divided by adopting the second halving graduation mark group, as shown in fig. 10, the auxiliary rope 5 is moved to the intersection point (w point) of the medicine line and the second trisection graduation mark 26, and the medicine can be equally divided into three equal parts by the auxiliary rope 5 and the intersection points (x and y respectively) of the second trisection graduation mark 27 and the second base line 28.
Example 4
The medicines of the minimum packaging unit of 1/2 bags are required to be separated, the dosage of the medicines is still as shown by a dotted line in fig. 9, and the medicines can be equally separated by adopting an auxiliary rope 5 folding mode, and the specific method is as follows: after the auxiliary rope 5 is straightened, the part of the auxiliary rope 5 between the medicine line and the tail end is folded in half (the tail end of the auxiliary rope 5 is positioned on the medicine line), and the elastic ring 6 is sleeved at the bending point (z point in fig. 10) of the auxiliary rope 5, so that halving of the medicine dosage can be realized.
Example 5
The medicine of the minimum packaging unit of 5/6 bags is required to be separated, the dosage of the medicine is still shown as a dotted line in fig. 9, the medicine can be divided into three equal parts, two parts of the medicine are discharged from the medicine outlet 29, and then the last 1/3 parts of the medicine is further divided into two parts by folding the auxiliary rope 5, so that the medicine of the minimum packaging unit of 5/6 bags is obtained.
The drawings in the present utility model are for illustrative purposes only, and are not intended to be construed as limiting the present patent, and certain components of the drawings may be omitted, enlarged or reduced in order to better illustrate embodiments of the present utility model, and not to represent the actual product size, and it will be understood by those skilled in the art that certain well-known structures in the drawings and descriptions thereof may be omitted.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.

Claims (8)

1. A medicine dispensing device comprises a body (2) and is characterized in that an upper sealing cover (1) is connected to the upper end of the body (2), an auxiliary rope (5) is connected to the center of the upper sealing cover (1), the tail end of the auxiliary rope (5) is flush with the inner bottom surface of the body (2), a plurality of equal-division scale marks are formed on the side wall of the body (2) from top to bottom, the auxiliary rope (5) is intersected with the equal-division scale marks to form intersection points, the distances between two adjacent intersection points on the auxiliary rope (5) are equal, a medicine outlet (29) is formed on the bottom surface of the body (2), a medicine discharging structure (3) is arranged around the medicine outlet (29) of the body (2), and a plurality of elastic rings (6) are movably sleeved on the body (2).
2. A medicine dispensing device according to claim 1, wherein two equally divided scale mark groups are formed on the side wall of the body (2), the first equally divided scale mark group comprises five equally divided scale marks (21), four equally divided scale marks (22), three equally divided scale marks (23), two equally divided scale marks (24) and one bottom mark (25) which are sequentially arranged from top to bottom, and one ends of the equally divided scale marks and the bottom mark are located at the lower part of one side of the body (2) and extend upwards to the other side of the body (2).
3. A medicine dispensing device according to claim 2, wherein the second halving scale line group comprises a halving scale line II (26), a halving scale line II (27) and a bottom line II (28) which are sequentially arranged from top to bottom, and one ends of the halving scale line and the bottom line are positioned at the lower part of one side of the body (2) and extend upwards to the other side of the body (2).
4. A pharmaceutical dispensing device according to claim 1, wherein a desiccant containing basket (13) is provided in the upper sealing cover (1).
5. The medicine dispensing device according to claim 1, wherein the medicine placing structure (3) comprises slots (31) arranged on the bottom surface of the body (2), the slots (31) are positioned on two sides of the medicine outlet (29), and a plugboard (32) is connected between the two slots (31) in a sliding manner.
6. A pharmaceutical dispensing device according to claim 1, wherein a lower sealing cap (4) is connected to the lower end of the body (2).
7. The medicine dispensing device according to claim 1, further comprising a light-shielding box (7), wherein the body (2) is connected with the upper sealing cover (1) and the lower sealing cover (4) and then is arranged in the light-shielding box (7).
8. The medicine dispensing device according to claim 7, wherein the light-shielding box (7) comprises a left half box body and a right half box body, and the back edges of the two half box bodies are rotationally connected.
CN202422392435.7U 2024-09-30 2024-09-30 Medicine divides medicine device Active CN223350595U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202422392435.7U CN223350595U (en) 2024-09-30 2024-09-30 Medicine divides medicine device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202422392435.7U CN223350595U (en) 2024-09-30 2024-09-30 Medicine divides medicine device

Publications (1)

Publication Number Publication Date
CN223350595U true CN223350595U (en) 2025-09-19

Family

ID=97039937

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202422392435.7U Active CN223350595U (en) 2024-09-30 2024-09-30 Medicine divides medicine device

Country Status (1)

Country Link
CN (1) CN223350595U (en)

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