CN211675388U - Quantitative medicine taking device matched with medicine bottle - Google Patents

Quantitative medicine taking device matched with medicine bottle Download PDF

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Publication number
CN211675388U
CN211675388U CN201920796801.1U CN201920796801U CN211675388U CN 211675388 U CN211675388 U CN 211675388U CN 201920796801 U CN201920796801 U CN 201920796801U CN 211675388 U CN211675388 U CN 211675388U
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medicine
taking device
sliding block
slider
quantitative
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CN201920796801.1U
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Chinese (zh)
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杨进学
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Abstract

The utility model provides a ration with medicine bottle adapted ware of getting it filled, includes ware casing and slider of getting it filled, the slider is located inside the ware casing of getting it filled to with the guide slot sliding connection in the ware casing of getting it filled, the slider forms the ration chamber that allows the medicine grain to pass through with the inner wall of ware casing of getting it filled, the ration chamber is with bend form and entry and export butt joint, the slider has two extreme positions at the slip in-process of vertical position, respectively for locking the position and locking the position down, the slider has at least a position in slip in-process ration chamber and can hold back the medicine grain. The utility model discloses invert the use after docking with the medicine bottle bottleneck, press the slider through the casing that holds the ware, realize the locking and the clearance of medicine grain, press once, take out the medicine grain of fixed quantity, effectively prevent that the single from taking out medicine behind the unnecessary medicine by air pollution. The utility model discloses simple structure is applicable to the industrial production.

Description

Quantitative medicine taking device matched with medicine bottle
Technical Field
The utility model relates to a packaging container, in particular to a medicine bottle capable of controlling the quantity of medicine grains taken out.
Background
At present, a plurality of granular medicines are stored in the bottle body, and when the medicines stored in the bottle body are taken out, too many medicine granules can be poured out frequently due to difficulty in controlling the medicines. At this point, the excess pellets can only be returned to the vial by hand. In the taking and placing process, the medicine contacts air and hands, sweat, dirt and the like on the hands are inevitably contaminated by the medicine, so that pollution is caused, and the quality of the tablets is influenced. On the other hand, the aged has presbyopia, and if the particle size of the granular medicine is small and the number of the granular medicine to be taken is large, the counting is difficult.
The existing improved medicine discharging bottle is provided with medicine discharging ports on a bottle cap and a bottle plug, two medicine discharging ports are aligned, medicine grains are taken out, and the medicine discharging speed is controlled, but the medicine bottle cannot guarantee the medicine quantity taken every time.
SUMMERY OF THE UTILITY MODEL
The utility model provides a to prior art's defect, provide a ration ware of getting it filled with medicine bottle adapted, it can prevent to take out too much medicine and the medicine that causes pollutes at the in-process of getting it filled.
Technical problem is solved through following technical scheme:
a quantitative medicine taking device matched with a medicine bottle comprises a medicine taking device shell and a sliding block, wherein the sliding block is located inside the medicine taking device shell and is in sliding connection with a guide groove in the medicine taking device shell, a quantitative cavity allowing medicine particles to pass through is formed by the sliding block and the inner wall of the medicine taking device shell, a first limiting part is arranged at the top end of the quantitative cavity, a second limiting part is arranged at the bottom end of the quantitative cavity, an upper limiting part is arranged at the top end of the sliding block, a lower limiting part is arranged at the bottom end of the sliding block, the sliding block is provided with two limiting positions which are an upper locking position and a lower locking position respectively in the sliding process at a vertical position, when the sliding block is located at the upper locking position, the size of a channel formed by the second limiting part and the lower limiting part of the sliding block is larger than the outer diameter of the medicine particles, the medicine particles can enter the quantitative cavity, but the size of the; when the slider is located locking position down, the passageway size that the spacing portion of second and the lower spacing portion of slider formed becomes to be less than medicine grain external diameter, and medicine grain in the bottle is held back in getting the medicine ware entrance, and the passageway size that first spacing portion and the last spacing portion of slider formed becomes to be greater than medicine grain external diameter this moment, and the ration intracavity does not have medicine grain and is held back, and when the slider was located locking position and locking position down between the optional position, the spacing portion at ration chamber both ends had at least one position can hold back the medicine grain.
Above-mentioned ration medicine taking device with medicine bottle adapted, the slider top is equipped with the pressure handle, and the slider back is equipped with the torsional spring, and two arms of torsional spring are taken respectively and are established on the medicine taking device casing.
According to the quantitative medicine taking device matched with the medicine bottle, the cross section size of the quantitative cavity is at least larger than one time of the outer diameter of the medicine particles.
Above-mentioned ration medicine taking device with medicine bottle adapted, medicine taking device casing outer wall is equipped with the ware that holds of sliding connection with it, holds and is equipped with the pressure platform on the inner wall of ware, and in the slider slip, the pressure platform contacts with the pressure handle all the time.
Above-mentioned ration medicine taking device with medicine bottle adapted, the back of slider is equipped with the concave station, be equipped with the boss on the inner wall of medicine taking device casing, concave station and boss sliding connection. The difference value between the length of the limiting concave table and the length of the limiting convex table is the sliding distance of the sliding block.
Above-mentioned with medicine bottle adapted ration ware of getting it filled, guide slot and constant head tank in its casing of ware of getting matches with the slider, and guide slot and constant head tank provide level spacing for the slider jointly.
The above-mentioned ration with the medicine bottle adapted gets the medicine ware, be equipped with L shape recess on the outer wall of getting the medicine ware casing, be equipped with the buckle that matches with L shape recess on the inner wall that holds the ware.
Above-mentioned ration medicine taking device with medicine bottle adapted, the outer wall of medicine grain entry matches with medicine bottle mouth inner wall size.
Above-mentioned ration medicine taking device with medicine bottle adapted, be equipped with the draw-in groove on the outer wall of medicine grain entry, the diameter phase-match of draw-in groove and medicine bottle bottleneck.
The utility model has the advantages of it is following:
the utility model discloses a medicine taking device can cooperate arbitrary medicine bottle to use, is equipped with the ration chamber that allows the medicine grain to pass through in medicine taking device's inside, and one side in ration chamber is equipped with the slider of sliding connection, and the slider has two positions in the slip process, and first the upper locking position, and the other is the lower locking position of lower part, when getting it filled, inverts the medicine bottle, and the slider is located the upper locking position this moment, and the medicine enters into the ration intracavity under the effect of self gravity, temporarily stores in the ration chamber; pressing and holding the ware, becoming to be located locking position down after making the slider slide, the circulation passageway diameter between slider and the second spacing diminishes, and the circulation passageway diameter grow between slider and the first spacing, medicine in the medicine bottle is held back in the medicine bottle, and simultaneously, the medicine grain downward flow of ration intracavity is once got the medicine to holding in the ware. The slider is pressed through the casing that holds the ware, realizes the locking and the clearance of medicine grain, presses once, takes out the medicine grain of fixed quantity, prevents effectively that the single from taking out medicine behind the unnecessary medicine by air pollution.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a cross-sectional view taken along line A-A of FIG. 1;
FIG. 3 is a schematic view showing the arrangement of the guide grooves and the positioning grooves
FIG. 4 is an enlarged right-view schematic diagram of the torsional spring of FIG. 1;
FIG. 5 is a schematic view of the slide block of the present invention in the locked position;
fig. 6 is a schematic view of the usage state of the slider at the medicine discharge position of the present invention.
In the drawings, the respective reference numerals denote: 1. medicine grain entry, 2, slider, 3, the ware of getting it filled casing, 4, press the handle, 5, the torsional spring, 6, draw-in groove, 7, hold the ware, 8, press the platform, 9, ration chamber, 10, first spacing portion, 11, the ware of getting it filled export, 12, the ware of getting it filled entry, 13, the spacing portion of second, spacing portion on 14, the slider, spacing portion under 15, the slider, 16, the concave station, 17, the boss, 18, the guide slot, 19, the constant head tank.
Detailed Description
Referring to fig. 1, 3 and 4, the utility model discloses a dispenser casing 3 and a slider 2, the slider 2 is located inside the dispenser casing 3 and is connected with a guide groove 18 in the dispenser casing 3 in a sliding manner, the slider 2 and the inner wall of the dispenser casing 3 form a quantitative cavity 9 allowing the medicine particles to pass through, the slider 2 has two limit positions, namely an upper locking position and a lower locking position, in the sliding process of the vertical position, when the slider 2 is located at the upper locking position, the medicine particles can enter the quantitative cavity 9 but are retained at a dispenser outlet 11; when the slide block 2 is positioned at the lower locking position, the medicine particles in the bottle body are intercepted at the inlet 12 of the medicine taking device, no medicine particles are intercepted in the quantitative cavity 9, and when the slide block 2 is positioned at any position between the upper locking position and the lower locking position, at least one part at the upper end and the lower end of the quantitative cavity 9 can intercept the medicine particles.
The upper end and the lower end of the quantitative cavity 9 are respectively bent towards the same direction to form a side bathtub curve-shaped structure, the bent section is a limiting part, the slide block is bent corresponding to the upper end and the lower end in the same direction as the limiting part of the quantitative cavity, the top end of the quantitative cavity 9 is provided with a first limiting part 10, the bottom end of the quantitative cavity is provided with a second limiting part 13, the top of the slide block 2 is provided with an upper limiting part 14 of the slide block, the bottom end of the slide block 2 is provided with a lower limiting part 15, when the slide block 2 is positioned at the upper locking position, the size of a channel formed by the first limiting part 10 and the upper limiting part 14 of the slide block is smaller than the outer diameter of the medicine particles, the medicine particles are retained in the quantitative cavity 9, the slide block is pressed to move downwards until the lower locking position is reached, the size of the channel formed by the second limiting part 13 and the lower limiting part 15 of the slide block is smaller than the outer diameter of the medicine particles, when the slide block is located at a position where the size of the channel formed by the first stopper 10 and the upper stopper 14 of the slide block is the same as the size of the channel formed by the second stopper 13 and the lower stopper 15 of the slide block, the medicine particles in the dosing cavity 10 are always trapped in the dosing cavity 10. Repeating the above process, the medicine granules are poured out according to the set number.
The quantitative cavity 9 that slider 2 and the inner wall of the ware of getting it filled casing 3 formed is the tubulose, makes things convenient for the medicine grain to roll the storage.
Referring to the attached drawings 1 and 2, a pressing handle 4 is arranged at the top of a sliding block 2, a torsion spring 5 is arranged at the back of the sliding block 2, two arms of the torsion spring are respectively arranged on a medicine taking device shell 3, the torsion spring 5 in a natural state is in an upper locking position, the pressing handle 4 is pressed, the torsion spring 5 moves downwards along with the sliding block 2, the torsion spring 5 generates a resetting force, and at the moment, the sliding block 2 is in a lower locking position; after the pressing handle 4 is loosened, the sliding block is restored to the original position under the action of the resetting force of the torsion spring. Referring to fig. 1, several medicine particles can be accommodated in the quantitative cavity 9, and the cross-sectional dimension of the quantitative cavity 9 is larger than the outer diameter of the medicine particles, so that the utility model can be pressed for several times to take medicine.
Referring to fig. 2 and 3, the guide groove 18 and the positioning groove 19 in the medicine taking device housing 3 are matched with a slide block, the slide block is divided into two parts in the horizontal direction, namely a guide part 2-1 and a positioning part 2-2, one end of the positioning part 2-2 forms the outer wall of the quantitative cavity 9, the other end of the positioning part is connected with the guide part 2-1, the guide part 2-1 slides in the guide groove 18, the positioning groove 19 is arranged on one side corresponding to the guide groove 18, a clamping table matched with the positioning groove 19 is arranged on the positioning part 2-2, and the guide groove 18 and the positioning groove 19 jointly provide horizontal limiting for the slide block 2.
Referring to the attached drawing 1, the outer wall of the medicine taking device shell 3 is provided with a containing vessel 7 in sliding connection with the medicine taking device shell, the inner wall of the containing vessel 7 is provided with two pressing tables 8, the two pressing tables 8 are symmetrically arranged, one of the pressing tables 8 is always in contact with the pressing handle 4 in the sliding process of the sliding block 2, the pressing handle 4 is indirectly pressed to take medicine through pressing the containing vessel, and the medicine taken out in the way is directly contained in the containing vessel 7 and can be directly taken without contacting a palm, so that the medicine taking device is clean and sanitary.
In use, the inlet 1 is first snapped into the mouth of a vial, the vial is inverted and shaken slightly, with the slide 2 in the locked position and a fixed number of pellets temporarily stored in the dosing chamber 9. Afterwards, upwards press and hold ware 7 for slider 2 is in out the medicine position, and the fixed quantity of medicine grain landing in the ration intracavity can be repeatedly pressed as required in holding ware 7, has fixed quantity medicine grain landing once more, takes off and holds ware 7, accomplishes once getting it filled.
Be equipped with L shape recess on the outer wall of ware shell 3 of getting, be equipped with the buckle that matches with L shape recess on the inner wall that holds ware 7, L shape recess constitutes for vertical groove and horizontal groove, and the one end opening of its vertical groove, the opening is on the terminal surface of ware shell 3 of getting. The recess and the effect of buckle have the effect of alignment simultaneously in addition, and when the buckle was located the one end in the horizontal groove of recess, hold ware 7 and be connected with the ware of getting it filled, one of them pressure platform 8 contactable pressure handle 4 this moment.
The outer wall of medicine grain entry 1 matches with medicine bottle mouth inner wall size, and the ware of getting it filled with medicine is not fixed with the medicine bottle, and a ware of getting it filled with medicine like this can be applicable to a plurality of medicine bottles simultaneously.
The outer wall of the inlet 1 is matched with the inner wall of the medicine bottle opening in size. The top of the inlet 1 end of the medicine taking device shell 3 is provided with a clamping groove 6, and the clamping groove 6 is matched with the diameter of the bottle opening of the medicine bottle. The medicine taking device is suitable for different medicine bottles.

Claims (9)

1. The quantitative medicine taking device matched with the medicine bottle is characterized by comprising a medicine taking device shell (3) and a sliding block (2), wherein the sliding block (2) is positioned inside the medicine taking device shell (3) and is in sliding connection with a guide groove (18) in the medicine taking device shell (3), a quantitative cavity (9) allowing medicine particles to pass through is formed by the sliding block (2) and the inner wall of the medicine taking device shell (3), a first limiting part (10) is arranged at the top end of the quantitative cavity (9), a second limiting part (13) is arranged at the bottom end of the quantitative cavity, an upper limiting part (14) is arranged at the top end of the sliding block, a lower limiting part (15) is arranged at the bottom end of the sliding block, the sliding block (2) is provided with two limiting positions which are an upper limiting position and a lower limiting position respectively, and when the sliding block is positioned at the upper limiting position, the size of a channel formed by the second limiting part (13) and the lower limiting part (15), the medicine particles can enter the quantitative cavity, but the size of a channel formed by the first limiting part (10) and the upper limiting part (14) of the sliding block is smaller than the outer diameter of the medicine particles, and the medicine particles are intercepted at the outlet (11) of the medicine taking device; when slider (2) are located down the locking position, the passageway size that second spacing portion (13) and lower spacing portion (15) of slider formed becomes to be less than the medicine grain external diameter, the medicine grain in the bottle is held back in getting medicine ware entrance (12), the passageway size that first spacing portion (10) and upper limit portion (14) of slider formed becomes to be greater than the medicine grain external diameter this moment, no medicine grain is held back in ration chamber (9), when slider (2) are located the upper locking position and lock the position down when the optional position, the spacing portion at ration chamber (9) both ends has at least one position and can holds back the medicine grain.
2. The quantitative drug dispenser matched with the medicine bottle as claimed in claim 1, wherein the top of the sliding block (2) is provided with a pressing handle (4), the back of the sliding block (2) is provided with a torsion spring (5), and two arms of the torsion spring are respectively overlapped on the drug dispenser shell (3).
3. A dosing dispenser for use with a vial according to claim 2, characterised in that the dosing chamber (9) has a cross-section which comprises at least one complete projected area of the dose.
4. The quantitative medicine taking device matched with the medicine bottle as claimed in claim 3, wherein a containing vessel (7) in sliding connection with the medicine taking device shell (3) is arranged on the outer wall of the medicine taking device shell, a pressing platform (8) is arranged on the inner wall of the containing vessel (7), and the pressing platform (8) is always contacted with the pressing handle (4) in the sliding process of the sliding block (2).
5. The quantitative medicine taking device matched with the medicine bottle as claimed in claim 4, wherein a concave platform (16) is arranged at the back of the sliding block (2), a convex platform (17) is arranged on the inner wall of the medicine taking device shell (3), the concave platform (16) is in sliding connection with the convex platform (17), and the difference between the length of the concave platform (16) and the length of the convex platform (17) is the sliding distance of the sliding block (2).
6. A quantitative drug dispenser for use with a vial as claimed in claim 5, wherein the dispenser has a housing (3) with guide (18) and locating groove (19) matching the slide, the guide (18) and locating groove (19) together providing horizontal stop for the slide (2).
7. The quantitative medicine taking device matched with the medicine bottle as claimed in claim 6, wherein an L-shaped groove is formed on the outer wall of the medicine taking device shell (3), and a buckle matched with the L-shaped groove is formed on the inner wall of the containing vessel (7).
8. A dosing device for use with a vial according to claim 7 characterised in that a pellet inlet (1) is added, the outer wall of the pellet inlet (1) matching the inner wall of the vial mouth.
9. The quantitative medicine taking device matched with the medicine bottle is characterized in that a clamping groove (6) is formed in the outer wall of the medicine particle inlet (1), and the clamping groove (6) is matched with the diameter of the opening of the medicine bottle.
CN201920796801.1U 2019-05-30 2019-05-30 Quantitative medicine taking device matched with medicine bottle Active CN211675388U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920796801.1U CN211675388U (en) 2019-05-30 2019-05-30 Quantitative medicine taking device matched with medicine bottle

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920796801.1U CN211675388U (en) 2019-05-30 2019-05-30 Quantitative medicine taking device matched with medicine bottle

Publications (1)

Publication Number Publication Date
CN211675388U true CN211675388U (en) 2020-10-16

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Application Number Title Priority Date Filing Date
CN201920796801.1U Active CN211675388U (en) 2019-05-30 2019-05-30 Quantitative medicine taking device matched with medicine bottle

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CN (1) CN211675388U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110200805A (en) * 2019-05-30 2019-09-06 杨进学 A kind of drug taking device can be taken off fixed quantity powder

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110200805A (en) * 2019-05-30 2019-09-06 杨进学 A kind of drug taking device can be taken off fixed quantity powder

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