Medicine bottle capable of being stored in multiple cavities
The design of the central bottle, partition, and annular sleeve forms an independent drug storage chamber, solving the problems of cross-contamination and sealing of drugs, and achieving safe storage and accurate dispensing of drugs.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHANTOU YUEHUI MEDICINE PACKING MATERIAL FACTORY CO LTD
- Filing Date
- 2025-06-24
- Publication Date
- 2026-05-12
AI Technical Summary
传统药瓶设计导致药品易交叉污染、摩擦影响药效,且难以精准控制剂量和操作繁琐,现有分装药盒密封性差,无法有效密封保存。
The design incorporates a central bottle body with four partitions and an annular sleeve to form an independent drug storage chamber. The drug dispensing control structure and filling and sealing structure enable physical separation and precise drug dispensing, while the locking mechanism of the threaded sleeve ensures airtightness.
It achieves physical separation of medicines, avoids cross-contamination, ensures the stability of drug efficacy, and enables precise control of dosage and improved sealing, making it convenient to operate.
Smart Images

Figure CN224225581U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of medicine bottle technology, specifically a medicine bottle that can store multiple cavities. Background Technology
[0002] Traditional medicine bottles typically employ a single-chamber design. Mixing different types of medications or those requiring multiple doses can easily lead to cross-contamination, physical friction, or chemical interactions, reducing the stability of drug efficacy. Patients also find it difficult to accurately control the dosage of a single medication, especially for those requiring multiple doses, which necessitates repeated screening, making the process cumbersome and prone to errors. While existing pillboxes offer multi-compartment designs, their poor sealing prevents the effective preservation of medications. Furthermore, conventional medicine bottles often share the same filling and dispensing openings, making it difficult to replenish medications at the bottom and prone to contamination. Therefore, while existing technologies may already offer solutions to these problems, this invention aims to provide an alternative or replacement solution. Summary of the Invention
[0003] To achieve the above objectives, this utility model is implemented through the following technical solution: a multi-chamber medicine bottle, including a central bottle body, four partitions are evenly installed on the outer side of the central bottle body, an annular sleeve is installed on the outer side of the four partitions, a first cap is installed at the top of the annular sleeve, four medicine outlets are evenly opened at the upper end of the first cap, a medicine dispensing control structure is installed on the outer side of the upper end of the central bottle body, and a medicine filling and sealing structure is installed at the bottom end of the annular sleeve;
[0004] The drug dispensing control structure includes: a mounting ring, a control plate, a control hole, a first external threaded sleeve, and a positioning ring;
[0005] The mounting ring is movably fitted onto the upper end of the central bottle body and is located above the first cap body. The control plate is installed on the outside of the mounting ring, and the control hole is opened on one side of the upper end of the control plate. The first external threaded sleeve is fixedly fitted onto the upper outer end of the central bottle body, and the positioning ring is movably fitted onto the outside of the first external threaded sleeve and is located above the mounting ring.
[0006] Preferably, the filling and sealing structure includes: a second external threaded sleeve, a connecting ring, and a sealing plate;
[0007] The second external threaded sleeve is fixedly fitted onto the lower outer side of the annular sleeve, the connecting ring is movably fitted onto the outer side of the second external threaded sleeve, and the sealing plate is fixedly installed at the lower end of the connecting ring and contacts the central bottle body, the four partitions, and the bottom end of the annular sleeve.
[0008] Preferably, the positioning ring has internal threads machined inside.
[0009] Preferably, the connecting ring has internal threads machined inside.
[0010] Preferably, the upper end of the control board is machined with four toggle blocks.
[0011] Preferably, a second cap is fitted onto the upper end of the central bottle. Beneficial effects
[0012] This utility model provides a multi-chamber medicine bottle with the following advantages: through the synergistic action of the central bottle body, four partitions, and annular sleeve, four completely isolated medicine storage chambers are formed, ensuring physical separation of different medicines, preventing mutual friction or component reactions, and significantly improving the safety of medicine storage. When the user rotates the control plate, its single control hole can be precisely aligned with a specific medicine outlet on the first cap, allowing only the medicine in the designated chamber to flow out. At the same time, the threaded engagement between the positioning ring and the first external threaded sleeve can lock the position of the control plate, preventing accidental contact and misalignment. The filling and sealing structure supports filling medicine from the bottom of the bottle. The bottom filling design improves sealing and convenience, and the medicine can be poured vertically into the corresponding chamber, avoiding spillage when filling medicine at the bottle opening in the traditional way. Attached Figure Description
[0013] Figure 1 This is a front view exploded structural diagram of a multi-cavity medicine bottle according to the present invention.
[0014] Figure 2 This is a front-view three-dimensional structural diagram of a multi-cavity medicine bottle according to the present invention.
[0015] Figure 3 This is a bottom-view perspective view of the multi-chamber medicine bottle described in this utility model.
[0016] In the diagram: 1. Central bottle body, 2. Partition plate, 3. Annular sleeve, 4. First cover body, 5. Medicine outlet, 6. Mounting ring, 7. Control plate, 8. Control hole, 9. First external threaded sleeve, 10. Positioning ring, 11. Second external threaded sleeve, 12. Connecting ring, 13. Sealing plate, 14. Actuating block, 15. Second cover body. Detailed Implementation
[0017] Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.
[0018] Example: Please refer to Figure 1-3A multi-chamber medicine bottle includes a central bottle body 1, four partitions 2 are evenly installed on the outside of the central bottle body 1, an annular sleeve 3 is installed on the outside of the four partitions 2, a first cover 4 is installed at the top of the annular sleeve 3, four medicine outlets 5 are evenly opened at the upper end of the first cover 4, a medicine dispensing control structure is installed on the upper outer side of the central bottle body 1, and a medicine filling and sealing structure is installed at the bottom of the annular sleeve 3.
[0019] The drug dispensing control structure includes: mounting ring 6, control plate 7, control hole 8, first external threaded sleeve 9, and positioning ring 10;
[0020] The mounting ring 6 is movably fitted onto the upper end of the central bottle body 1 and is located above the first cap body 4. The control plate 7 is installed on the outside of the mounting ring 6. The control hole 8 is opened on one side of the upper end of the control plate 7. The first external threaded sleeve 9 is fixedly fitted onto the upper end of the outer side of the central bottle body 1. The positioning ring 10 is movably fitted onto the outside of the first external threaded sleeve 9 and is located above the mounting ring 6.
[0021] In the specific implementation process, when storing multiple drugs separately, the staff first removes the filling and sealing structure, flips the central bottle 1 180 degrees, and due to the synergistic effect of the central bottle 1, the four partitions 2, and the annular sleeve 3, four completely isolated drug storage chambers are formed. Then, the multiple drugs are placed into the central bottle 1 and the four drug storage chambers respectively. Then, the filling and sealing structure is reset, and the lower ends of the central bottle 1, the four partitions 2, and the annular sleeve 3 are sealed. Then, the central bottle 1 is flipped back to its original position. When taking out the drug, the staff first twists the positioning ring 10 at the upper end of the first external threaded sleeve 9 to separate the positioning ring 10 from the mounting ring 6. Then, the control plate 7 is moved to make the mounting ring 6 rotate at the upper end of the central bottle 1 until the control hole 8 corresponds to the designated drug outlet 5 at the upper end of the first cover 4, and the drug in the designated drug storage chamber can be poured out.
[0022] In the specific implementation process, the filling and sealing structure includes: a second external threaded sleeve 11, a connecting ring 12, and a sealing plate 13;
[0023] The second external threaded sleeve 11 is fixedly fitted onto the lower outer side of the annular sleeve 3, the connecting ring 12 is movably fitted onto the outer side of the second external threaded sleeve 11, and the sealing plate 13 is fixedly installed on the lower end of the connecting ring 12 and contacts the central bottle 1, the four partitions 2 and the bottom end of the annular sleeve 3.
[0024] When adding the medicine, the operator twists the connecting ring 12 on the outside of the second external threaded sleeve 11. Under the meshing action of the internal thread in the connecting ring 12 and the second external threaded sleeve 11, the connecting ring 12 and the sealing plate 13 are removed. Then, the medicine bottle is inverted, and the medicine is injected into the designated medicine storage chamber and the central bottle 1. Finally, the connecting ring 12 is fitted onto the upper end of the second external threaded sleeve 11. The sealing plate 13 contacts the bottom end of the four partitions 2 and the annular sleeve 3 to seal the bottom end of the medicine storage chamber and the bottom end of the central bottle 1.
[0025] In the specific implementation process, the positioning ring 10 has an internal thread. By cooperating with the first external thread sleeve 9 through the internal thread, a stable connection of the positioning ring 10 can be achieved, and the clamping effect on the mounting ring 6 can be guaranteed.
[0026] In the specific implementation process, the connecting ring 12 is machined with internal threads. By cooperating with the second external thread sleeve 11 through the internal threads of the connecting ring 12, the connecting ring 12 can be stably installed, ensuring the contact strength between the sealing plate 13 and the bottom end of the annular sleeve 3.
[0027] In the specific implementation process, four toggle blocks 14 are machined on the upper end of the control board 7. The four toggle blocks 14 facilitate the operation of the control board 7 by personnel.
[0028] In the specific implementation process, a second cap 15 is fitted on the upper end of the central bottle 1. The second cap 15 can achieve a stable seal on the top of the central bottle 1.
[0029] Although embodiments of the present invention 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 to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A multi-chamber medicine bottle, comprising a central bottle body (1), characterized in that, Four partitions (2) are evenly installed on the outside of the central bottle (1). An annular sleeve (3) is installed on the outside of the four partitions (2). A first cover (4) is installed at the top of the annular sleeve (3). Four medicine outlets (5) are evenly opened at the upper end of the first cover (4). A medicine dispensing control structure is installed on the outer side of the upper end of the central bottle (1). A medicine filling and sealing structure is installed at the bottom of the annular sleeve (3). The drug dispensing control structure includes: a mounting ring (6), a control plate (7), a control hole (8), a first external threaded sleeve (9), and a positioning ring (10); The mounting ring (6) is movably fitted onto the upper end of the central bottle body (1) and located above the first cap body (4). The control plate (7) is installed on the outside of the mounting ring (6). The control hole (8) is opened on one side of the upper end of the control plate (7). The first external threaded sleeve (9) is fixedly fitted onto the upper end of the outer side of the central bottle body (1). The positioning ring (10) is movably fitted onto the outside of the first external threaded sleeve (9) and located above the mounting ring (6).
2. A multi-chamber medicine bottle according to claim 1, characterized in that, The filling and sealing structure includes: a second external threaded sleeve (11), a connecting ring (12), and a sealing plate (13); The second external threaded sleeve (11) is fixedly fitted on the lower outer side of the annular sleeve (3), the connecting ring (12) is movably fitted on the outer side of the second external threaded sleeve (11), and the sealing plate (13) is fixedly installed on the lower end of the connecting ring (12) and contacts the central bottle (1), the four partitions (2) and the bottom end of the annular sleeve (3).
3. A multi-chamber medicine bottle according to claim 1, characterized in that, The positioning ring (10) has internal threads machined inside.
4. A multi-chamber medicine bottle according to claim 2, characterized in that, The connecting ring (12) has internal threads machined inside.
5. A multi-chamber medicine bottle according to claim 1, characterized in that, The control panel (7) has four toggle blocks (14) machined on its upper end.
6. A multi-chamber medicine bottle according to claim 1, characterized in that, The upper end of the central bottle (1) is fitted with a second cap (15).