Quantitative medicine outlet bottle cap

By designing a quantitative dispensing bottle cap, the problem of inaccurate dispensing of solid medicines and food granules was solved, achieving both quantitative dispensing and sealing against moisture.

CN223851205UActive Publication Date: 2026-01-30文明球
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN202520204199.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-10
Publication Date
2026-01-30
Estimated Expiration
2035-02-10

AI Technical Summary

Technical Problem

In existing technologies, inaccurate measurement during packaging of solid pharmaceuticals and food granules leads to excess material needing to be returned to the bottle, causing contamination.

Method used

A quantitative dispensing bottle cap has been designed, including a cap assembly and a sealing assembly. The cap assembly realizes quantitative dispensing through a slide rail and a chamber assembly, while the sealing assembly ensures sealing and moisture protection through protrusions and moisture-absorbing blocks.

Benefits of technology

It achieves quantitative discharge, avoids contamination from material returning to the bottle after being poured out, and ensures the sealing and moisture-proof properties of the material inside the bottle.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223851205U_ABST
    Figure CN223851205U_ABST
Patent Text Reader

Abstract

The utility model discloses a quantitative medicine outlet bottle cap which comprises a bottle cap assembly, the bottle cap assembly comprises a bottle cap barrel, a groove is formed in the top end of the bottle cap barrel, a sliding rail part is integrally formed in the groove, a bin outlet hole is formed in the center of the bottom of the inner wall of the groove, a partition plate is arranged in the bottle cap barrel, and a sliding rail groove is formed in the center of the top of the partition plate. A bin assembly is arranged on the outer wall of one side of the top of the partition plate and comprises a lower cover plate, constraint guide plates are clamped to the outer walls of the two sides of the lower cover plate, a bin box is slidably connected between the two constraint guide plates, and an upper cover plate is clamped to the tops of the two constraint guide plates. When materials in a bottle are poured out, the bin box can slide towards one side of the sliding rail part, the bin box, the upper cover plate and the lower cover plate can form a discharging port, the bottle is inclined, the materials in the bottle can flow into the bin box through the sliding rail groove, then the materials can enter the bin outlet through the bin box, and then the materials can be discharged through the bin outlet. In the process, the purpose of quantitatively discharging the materials can be achieved, and the problem of inaccurate taking quantity is solved.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of bottled medicine granules, and particularly relates to a quantitative medicine dispensing bottle cap. BACKGROUND

[0002] Solid medicine (such as tablets, capsules, etc.) and food granules (such as candies, nuts, cereals, etc.) need to be packaged according to specified quantity and quality standards during production and circulation. Solid medicine and food granules are packaged by being loaded into corresponding containers according to a certain quantity. In the prior art, the container is generally a plastic bottle.

[0003] For example, a quantitative bottle cap with the application number CN106864979B and the authorization announcement date of 20180911 includes a bottle cap, a quantitative storage cavity for storing materials is arranged on the bottle cap, the quantitative storage cavity includes an inlet and an outlet, and a quantity control mechanism is further included. The quantity control mechanism includes a first component for opening or closing the cavity inlet and a second component for opening or closing the cavity outlet. When the first component opens the cavity inlet, the second component closes the cavity outlet, and at this time, the materials enter the cavity from the inlet. When the first component closes the cavity inlet, the second component opens the cavity outlet, and at this time, the materials are poured out from the outlet.

[0004] When the materials in the plastic medicine bottle are poured out, the quantity of the materials taken out is not accurate, and there is a problem that the poured-out quantity is too much and needs to be returned to the original bottle. The poured-out materials need to be poured back into the bottle, which causes pollution to the solid medicine, food granules, and other materials in the bottle. Therefore, there is an urgent need to design a quantitative medicine dispensing bottle cap to solve the above problems. UTILITY MODEL CONTENTS

[0005] The utility model aims to provide a quantitative medicine dispensing bottle cap to solve the above problems in the prior art.

[0006] In order to achieve the above-mentioned purpose, the utility model provides the following technical scheme:

[0007] The quantitative medicine dispensing bottle cap includes a bottle cap assembly, the bottle cap assembly includes a bottle cap cylinder, a groove is arranged at the top end of the bottle cap cylinder, a sliding rail part is integrally formed in the groove, an outlet hole is arranged at the center of the inner wall of the groove, a partition plate is arranged in the bottle cap cylinder, a sliding rail groove is arranged at the center of the top of the partition plate, a warehouse assembly is arranged on one side of the top of the partition plate, the warehouse assembly includes a lower cover plate, a constraint guide plate is arranged on the outer wall of the lower cover plate on both sides, a warehouse box is slidably connected between the two constraint guide plates, an upper cover plate is arranged on the top of the two constraint guide plates, the upper cover plate passes through the outlet hole, the warehouse box is slidably connected in the sliding rail part, and the lower cover plate is clamped in the sliding rail groove.

[0008] Further, one side outer wall of the bottle cap assembly is provided with a cover assembly, and one side inner wall of the bottle cap barrel is provided with a threaded part.

[0009] Further, the cover assembly comprises a cover shell, one side outer wall of the cover shell is installed on one side outer wall of the bottle cap barrel through a hinge structure, and one side outer wall of the cover shell is provided with a frosted pattern.

[0010] Further, one side outer wall of the cover shell is integrally formed with a protrusion, and one end of the protrusion is clamped in the recess.

[0011] Further, one side outer wall of the protrusion is provided with a receiving groove, and a mesh cloth is bonded on one side inner wall of the receiving groove through glue.

[0012] Further, the receiving groove is filled with an antibacterial moisture-absorbing block, and one end of the antibacterial moisture-absorbing block is in contact with the mesh cloth.

[0013] In the above technical solution, the quantitative medicine dispensing bottle cap has the following beneficial effects:

[0014] (1) When the material in the bottle needs to be poured out, the chamber box can be slid to one side of the slide rail part, the chamber box forms a discharge port with the upper cover plate and the lower cover plate, the bottle is inclined, the material in the bottle flows into the chamber box through the slide rail groove, then the material enters the discharge hole through the chamber box, and then the material is discharged through the discharge hole. This process can achieve the purpose of quantitative material discharge and solve the problem of inaccurate quantity.

[0015] (2) The cover assembly can be clamped at the top end of the bottle cap barrel through the protrusion to close the bottle cap barrel, which can ensure the sealing of the bottle cap barrel and the bottle, and the moisture-absorbing block in the cover shell can absorb the moisture in the recess, thereby ensuring the moisture-proof ability of the bottle cap discharge port. BRIEF DESCRIPTION OF DRAWINGS

[0016] In order to more clearly illustrate the technical solutions in the embodiments or prior art, the following will briefly introduce the drawings needed to be used in the embodiments. Obviously, the drawings described below are only some embodiments of the present application, and other drawings can also be obtained by those skilled in the art according to these drawings.

[0017] Figure 1 The overall structure schematic view of the quantitative medicine dispensing bottle cap embodiment of the present application is provided.

[0018] Figure 2 The bottle cap assembly structure schematic view of the quantitative medicine dispensing bottle cap embodiment of the present application is provided.

[0019] Figure 3 The chamber assembly structure schematic view of the quantitative medicine dispensing bottle cap embodiment of the present application is provided.

[0020] Figure 4 The sealing cover assembly structure schematic view provided by the quantitative medicine dispensing bottle cap embodiment of the utility model.

[0021] Mark explanation:

[0022] 1, bottle cap assembly; 2, sealing cover assembly; 3, bottle cap cylinder; 4, groove; 5, sliding rail part; 6, warehouse hole; 7, partition; 8, sliding rail groove; 9, warehouse chamber assembly; 10, threaded part; 11, lower cover plate; 12, constraint guide plate; 13, warehouse chamber box; 14, upper cover plate; 15, cover shell; 16, protrusion; 17, storage groove; 18, moisture-absorbing block; 19, mesh cloth. Specific embodiment

[0023] In order for those skilled in the art to better understand the technical scheme of the utility model, the utility model will be further described in detail below in conjunction with the drawings.

[0024] As Figures 1-4 The quantitative medicine dispensing bottle cap provided by the utility model embodiment includes bottle cap assembly 1, bottle cap assembly 1 includes bottle cap cylinder 3, the top end of bottle cap cylinder 3 is provided with groove 4, and sliding rail part 5 is integrally formed in the inside of groove 4, warehouse hole 6 is formed in the bottom center of the inner wall of groove 4, partition 7 is arranged in the inside of bottle cap cylinder 3, sliding rail groove 8 is formed in the top center of partition 7, warehouse chamber assembly 9 is arranged on the one side outer wall of the top of partition 7, warehouse chamber assembly 9 includes lower cover plate 11, constraint guide plate 12 is clamped on the outer wall of both sides of lower cover plate 11, and warehouse chamber box 13 is slidably connected between the two constraint guide plates 12, upper cover plate 14 is clamped on the top of the two constraint guide plates 12, and upper cover plate 14 passes through warehouse hole 6, warehouse chamber box 13 is slidably connected in the inside of sliding rail part 5, and lower cover plate 11 is clamped in the inside of sliding rail groove 8.

[0025] Specifically, in the embodiment, the bottle cap assembly 1 includes a bottle cap barrel 3, a groove 4 is formed at the top end of the bottle cap barrel 3, and a sliding rail part 5 is integrally formed inside the groove 4. A warehouse hole 6 is formed at the center of the bottom inner wall of the groove 4. A partition plate 7 is arranged inside the bottle cap barrel 3, and a sliding rail groove 8 is formed at the center of the top of the partition plate 7. A warehouse chamber assembly 9 is arranged on one side of the top of the partition plate 7. The warehouse chamber assembly 9 includes a lower cover plate 11. Restraining guide plates 12 are connected to the outer walls on both sides of the lower cover plate 11. Mortise and tenon structures are arranged on both sides of the restraining guide plates 12. A warehouse chamber box 13 is slidably connected between the two restraining guide plates 12. The warehouse chamber box 13 is slid to one side of the sliding rail part 5. The warehouse chamber box 13 forms a discharge port together with the upper cover plate 14 and the lower cover plate 11. Subsequently, the material in the bottle can flow into the warehouse chamber box 13 through the sliding rail groove 8. Then the material can enter the warehouse hole 6 through the warehouse chamber box 13. Subsequently, the material can be discharged through the warehouse hole 6. This process can achieve the purpose of quantitative material discharge. The upper cover plate 14 is connected to the top of the two restraining guide plates 12. Mortise and tenon grooves are formed on both sides of the upper cover plate 14 and the lower cover plate 11, so that the upper cover plate 14 and the lower cover plate 11 can be connected to the restraining guide plates 12. The upper cover plate 14 passes through the warehouse hole 6. The warehouse chamber box 13 is slidably connected inside the sliding rail part 5. The lower cover plate 11 is connected to the inside of the sliding rail groove 8.

[0026] When the material in the bottle needs to be discharged, the cap shell 15 can be opened by the frosted pattern on one side of the cap shell 15. Then the warehouse chamber box 13 can be slid to one side of the sliding rail part 5. The warehouse chamber box 13 forms a discharge port together with the upper cover plate 14 and the lower cover plate 11. Subsequently, the material in the bottle can flow into the warehouse chamber box 13 through the sliding rail groove 8. Then the material can enter the warehouse hole 6 through the warehouse chamber box 13. Subsequently, the material can be discharged through the warehouse hole 6. This process can achieve the purpose of quantitative material discharge, and solves the problem of inaccurate quantity.

[0027] In one embodiment of the utility model, as shown in Figures 1-2 The bottle cap assembly 1 is provided with a sealing cap assembly 2 on one side. A threaded part 10 is arranged on one side of the inner wall of the bottle cap barrel 3, so that the bottle cap barrel 3 can be installed on the medicine bottle.

[0028] In another embodiment of the utility model, as shown in Figure 4The cover assembly 2 includes a cover shell 15, one side of the cover shell 15 is installed on one side of the bottle cap barrel 3 through a hinge structure, one side of the cover shell 15 is provided with a frosted pattern, one side of the cover shell 15 is integrally formed with a protrusion 16, when taking out the material, the cover shell 15 can be clamped on the top end of the bottle cap barrel 3, in this process, through the design of the protrusion 16, the cover shell 15 will be clamped on the bottle cap barrel 3 to close the bottle cap barrel 3, which can ensure the sealing of the bottle cap barrel 3 and the inside of the bottle, and one end of the protrusion 16 is clamped in the groove 4, a receiving groove 17 is formed on one side of the protrusion 16, and a mesh cloth 19 is adhered to one side of the inner wall of the receiving groove 17 through glue, the mesh cloth 19 facilitates the moisture absorbing block 18 to directly contact with the material flowing into the groove 4, the receiving groove 17 is filled with the moisture absorbing block 18, the moisture absorbing block 18 is made of silica gel moisture absorbing material, the moisture absorbing block 18 can absorb the moisture in the groove 4, and the moisture in the bottle cap barrel 3 is absorbed through the warehouse assembly 9, which ensures the moisture-proof ability of the bottle cap outlet and the moisture absorbing block 18 is in contact with the mesh cloth 19.

[0029] Embodiment 1

[0030] The quantitative medicine bottle cap includes a bottle cap assembly 1, the bottle cap assembly 1 includes a bottle cap barrel 3, a groove 4 is formed on the top end of the bottle cap barrel 3, and a sliding rail part 5 is integrally formed in the groove 4, an outlet hole 6 is formed in the center of the bottom inner wall of the groove 4, a partition plate 7 is arranged in the bottle cap barrel 3, a sliding rail groove 8 is formed in the center of the top of the partition plate 7, and a warehouse assembly 9 is arranged on one side of the top of the partition plate 7, the warehouse assembly 9 includes a lower cover plate 11, constraint guide plates 12 are clamped on the two sides of the lower cover plate 11, the two constraint guide plates 12 are provided with a mortise and tenon structure, and a warehouse box 13 is slidably connected between the two constraint guide plates 12, the warehouse box 13 is slid to one side of the sliding rail part 5, the warehouse box 13, the upper cover plate 14 and the lower cover plate 11 form an outlet, the material in the bottle will flow into the warehouse box 13 through the sliding rail groove 8, then the material will enter the outlet hole 6 through the warehouse box 13, and then the material will be discharged through the outlet hole 6, which can achieve the purpose of quantitative discharging of the material, the upper cover plate 14 is clamped on the top of the two constraint guide plates 12, mortise and tenon grooves are formed on the two sides of the upper cover plate 14 and the lower cover plate 11, which facilitates the clamping of the upper cover plate 14, the lower cover plate 11 and the constraint guide plates 12 together, the upper cover plate 14 passes through the outlet hole 6, the warehouse box 13 is slidably connected in the sliding rail part 5, and the lower cover plate 11 is clamped in the sliding rail groove 8.

[0031] Embodiment 2

[0032] The embodiment is further limited on the basis of embodiment 1, wherein the one side outer wall of the bottle cap assembly 1 is provided with a cover assembly 2, and the one side inner wall of the bottle cap barrel 3 is provided with a threaded part 10, which facilitates the installation of the bottle cap barrel 3 on the medicine bottle; the cover assembly 2 comprises a cover shell 15, the one side outer wall of the cover shell 15 is installed on the one side outer wall of the bottle cap barrel 3 through a hinge structure, the one side outer wall of the cover shell 15 is provided with a frosted pattern, the one side outer wall of the cover shell 15 is integrally formed with a protrusion 16, when the material needs to be taken out, the cover shell 15 can be further clamped at the top end of the bottle cap barrel 3, in this process, the cover shell 15 will be clamped on the bottle cap barrel 3 through the design of the protrusion 16, and the bottle cap barrel 3 is closed, which can ensure the sealing of the bottle cap barrel 3 and the inside of the bottle, and one end of the protrusion 16 is clamped in the groove 4, the one side outer wall of the protrusion 16 is provided with a receiving groove 17, and the one side inner wall of the receiving groove 17 is adhered with a mesh cloth 19 through glue, the mesh cloth 19 facilitates the direct contact of the moisture absorbing block 18 with the material flowing into the groove 4, the receiving groove 17 is filled with the moisture absorbing block 18, the moisture absorbing block 18 is made of silica gel moisture absorbing material, the moisture absorbing block 18 can absorb the moisture in the groove 4, and the moisture in the bottle at the bottom of the bottle cap barrel 3 is absorbed through the warehouse assembly 9, thereby ensuring the moisture-proof capacity of the bottle cap outlet and the mutual contact of one end of the moisture absorbing block 18 and the mesh cloth 19.

[0033] Working principle: when the material in the bottle needs to be poured out, the cover shell 15 can be opened through the frosted pattern on the one side of the cover shell 15, and then the warehouse box 13 can be slid to the one side of the slide rail part 5, and the warehouse box 13 forms a discharge port with the upper cover plate 14 and the lower cover plate 11, and then the bottle is tilted, and the material in the bottle flows into the warehouse box 13 through the slide rail groove 8, and then the material enters the discharge hole 6 through the warehouse box 13, and then the material is discharged through the discharge hole 6, which can achieve the purpose of quantitative material discharge and solve the problem of inaccurate quantity, and when the material does not need to be taken out, the cover shell 15 can be clamped at the top end of the bottle cap barrel 3, in this process, the cover shell 15 will be clamped on the bottle cap barrel 3 through the design of the protrusion 16, and the bottle cap barrel 3 is closed, which can ensure the sealing of the bottle cap barrel 3 and the inside of the bottle, and the moisture absorbing block 18 in the cover shell 15 can absorb the moisture in the groove 4, and the moisture in the bottle at the bottom of the bottle cap barrel 3 is absorbed through the warehouse assembly 9, thereby ensuring the moisture-proof capacity of the bottle cap outlet.

[0034] The above only describes certain exemplary embodiments of the present application by way of illustration, without doubt, for ordinary skilled in the art, without departing from the spirit and scope of the present application, the described embodiments can be modified in various ways. Therefore, the above drawings and description are illustrative in nature and should not be construed as limiting the scope of protection of the claims of the present application.

Claims

1. A dosing vial cap, comprising a vial cap assembly (1), characterized in that, The bottle cap assembly (1) includes a bottle cap cylinder (3), the bottle cap cylinder (3) top end is provided with a groove (4), and the groove (4) is integrally formed with a slide rail part (5) inside, the groove (4) inner wall bottom center is provided with a warehouse hole (6), the bottle cap cylinder (3) is provided with a partition (7) inside, and the partition (7) top center is provided with a slide rail groove (8), the partition (7) top one side outer wall is provided with a warehouse room assembly (9), the warehouse room assembly (9) includes a lower cover plate (11), the lower cover plate (11) both sides outer wall is clamped with a constraint guide plate (12), and the constraint guide plate (12) is slidably connected with a warehouse room box (13) between the two, the constraint guide plate (12) top is clamped with an upper cover plate (14), and the upper cover plate (14) passes through the warehouse hole (6), the warehouse room box (13) is slidably connected inside the slide rail part (5), and the lower cover plate (11) is clamped inside the slide rail groove (8).

2. The dosing vial cap of claim 1, wherein, The bottle cap assembly (1) one side outer wall is provided with a sealing cover assembly (2), and the bottle cap cylinder (3) inner wall one side is provided with a threaded part (10).

3. The dosing vial cap of claim 2, wherein, The sealing cover assembly (2) includes a cover shell (15), and the cover shell (15) one side outer wall is installed on the bottle cap cylinder (3) one side outer wall through a hinge structure, and the cover shell (15) one side outer wall is provided with a frosted line.

4. The dosing vial cap of claim 3, wherein, The cover shell (15) one side outer wall is integrally formed with a convex (16), and the convex (16) one end is clamped inside the groove (4).

5. The dosing vial cap of claim 4, wherein, The convex (16) one side outer wall is provided with a receiving groove (17), and the receiving groove (17) inner wall one side is bonded with a mesh cloth (19) through glue.

6. The dosing vial cap of claim 5, wherein, The receiving groove (17) is filled with a moisture absorbing block (18), and the moisture absorbing block (18) one end is in contact with the mesh cloth (19).

Citation Information

Patent Citations

  • A quantitative bottle cap

    CN106864979B