Rotary medicine shelf
By incorporating a rotatable drug placement component and a height-adjustable assembly/disassembly component on the drug rack, the problem of the inability to adjust the number of layers and spacing of the drug rack is solved, achieving flexibility and efficient use of drug placement.
Patent Information
- Application Number
- CN202520358653.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-04
- Publication Date
- 2026-03-06
- Estimated Expiration
- 2035-03-04
AI Technical Summary
The existing medicine racks have a fixed number and spacing of multi-layer medicine boxes, which cannot be flexibly adjusted, resulting in inconvenience in use.
A multi-layered drug placement assembly with horizontal rotation function is coaxially set around the support rod. A flat bearing body is installed on the bottom surface of the storage box. The flat bearing body drives the storage box to rotate, and the height can be adjusted by disassembling and assembling the assembly, so as to achieve flexible rotation and position adjustment.
The system enables flexible rotation and height adjustment of the drug placement component, improving the applicability of drug placement and facilitating the adjustment of spacing and quantity according to drug specifications, thus enabling efficient drug retrieval and placement.
Smart Images

Figure CN223968850U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of auxiliary components for temporary storage of medicines, specifically to a rotating medicine rack. Background Technology
[0002] The pharmacy department's business involves compiling drug plans based on the hospital's medical, research, and teaching needs and the basic drug list; researching and mastering drug technology and market information; and providing safe, effective, high-quality, and inexpensive drugs to the clinic. Therefore, pharmacies usually have shelves to temporarily store various drugs, making it convenient for pharmacists to retrieve and store them during daily dispensing.
[0003] Existing medicine racks are usually multi-layered, allowing for the convenient placement of various medicines using multiple layers of medicine boxes. However, in the current design of multi-layered medicine racks, the number of medicine boxes is fixed, and the spacing between each layer is also fixed and cannot be adjusted. This makes it inconvenient to add or remove the number of medicine boxes according to the actual situation, and it is also inconvenient to adjust the spacing between each layer of medicine boxes according to the actual situation, resulting in limited flexibility in the use of medicine racks. Utility Model Content
[0004] The purpose of this utility model is to provide a rotating medicine rack to solve the above problems. Multiple layers of medicine placement components with horizontal rotation function are coaxially arranged on the periphery of the support rod. At the same time, the bottom surface of the storage box of each medicine placement component is coaxially mounted with a plane bearing body. Then, the upper part of the plane bearing body drives the storage box to rotate, which can realize the horizontal rotation of the storage box. This makes it convenient to rotate the storage box flexibly during the process of taking out and putting out medicine. See the following description for details.
[0005] To achieve the above objectives, the present invention provides the following technical solution:
[0006] The present invention provides a rotating medicine rack, including a support rod and a stable base. The support rod is vertically arranged, and the stable base is coaxially fixed to the bottom end of the support rod. Multiple layers of medicine placement components with horizontal turnover function are coaxially arranged around the support rod.
[0007] The bottom of each drug placement component is coaxially assembled with a disassembly and assembly assembly having height adjustment function, and each drug placement component is detachably assembled to the periphery of the support rod through the corresponding disassembly and assembly assembly assembly.
[0008] Preferably, each of the drug placement components includes a storage box and a planar bearing body. The storage box is an open-top ring-shaped box, and each storage box is coaxially fitted around the support rod with a clearance fit. The top surface of each storage box is coaxially fixed with the planar bearing body, and the inner circumference of each planar bearing body is coaxially clearance fitted with the outer circumference of the support rod. Meanwhile, the bottom surface of each planar bearing body is coaxially assembled with the disassembly and assembly assembly.
[0009] Preferably, the interior of the storage box is fixed with multiple partitions extending vertically in the radial direction to divide the interior of the storage box into multiple independent storage spaces, and the multiple partitions are evenly distributed around the circumference.
[0010] Preferably, each of the disassembly and assembly components includes a mating guide sleeve and a clamping stud. The bottom surface of each planar bearing body is coaxially fixed with the mating guide sleeve, and the mating guide sleeve is sleeved on the periphery of the support rod in a coaxial sliding fit. The front part of each mating guide sleeve is provided with a mounting hole along the longitudinal direction. The mounting holes are all through holes, and the clamping stud is coaxially inserted into each mounting hole in a threaded fit.
[0011] Preferably, the rear end of each clamping stud is coaxially fixed with an elastic pressure block whose outer diameter is smaller than that of the mounting hole.
[0012] Preferably, the front end of each clamping stud is coaxially fixed with a handle for easy gripping.
[0013] Preferably, the front periphery of each support rod is provided with a vertical guide groove, the top of the guide groove is open, and the rear of each clamping stud is inserted into the corresponding guide groove in a longitudinal sliding fit.
[0014] Preferably, the storage box is fitted with multiple flexible wing plates that extend radially on the inner surface of the support rod, and the flexible wing plates are in contact with the outer surface of the support rod.
[0015] Preferably, the top end of each support rod is coaxially and detachably fitted with a cap.
[0016] Preferably, the flexible wing plates are all rectangular rubber sheets, the plug is a rubber cap, and the plug is coaxially and detachably assembled at the top of the support rod in a tension fit manner.
[0017] When using the aforementioned rotating medicine rack for temporary storage of medicines during the dispensing process in a pharmacy, the support rod is coaxially equipped with multiple layers of horizontally rotating medicine placement components. Simultaneously, the bottom surface of each storage box in the medicine placement components is coaxially mounted with a planar bearing body. The planar bearing body drives the storage box to rotate horizontally, facilitating flexible rotation of the storage box during medicine retrieval. This allows users to efficiently retrieve and place the required medicines for dispensing. Furthermore, since the bottom surface of each planar bearing body in the medicine placement components is coaxially assembled with a disassembly / assembly assembly, and these assemblies are height-adjustable, the height of the medicine placement components can be adjusted by sliding the guide sleeve of the disassembly / assembly assembly vertically along the support rod and tightening the clamping stud. This allows for adjustment based on the actual amount of medicine placed. The spacing between the drug placement components in each layer is adjusted according to specifications, improving the applicability of the drug placement components. After removing the cap at the top of the support rod, the drug placement components can be detachably and coaxially assembled on the outside of the support rod by sliding the guide sleeve of the assembly with the support rod axially and tightening the clamping stud. At the same time, by simply loosening the clamping stud, the guide sleeve can slide vertically along the support rod to disengage from the top, thereby removing the drug placement components from the outside of the support rod. The assembly and disassembly of the drug placement components on the outside of the support rod is simple and easy to implement. It is convenient to assemble the drug placement components on the outside of the support rod for temporary storage of drugs. It is also convenient to adapt the number of drug placement components according to actual use needs. Moreover, it is also convenient to thoroughly clean and maintain the drug placement components after disassembly.
[0018] The beneficial effects are as follows: 1. This utility model has a multi-layered drug placement component with horizontal rotation function coaxially arranged on the periphery of the support rod. At the same time, the bottom surface of the storage box of the drug placement component is coaxially mounted with a plane bearing body. Then, the storage box can be rotated horizontally by the upper part of the plane bearing body. This makes it convenient to rotate the storage box flexibly during the process of taking out and putting out medicine, and makes it convenient for users to efficiently take out and put out the required medicine for dispensing.
[0019] 2. The bottom surface of the flat bearing body of the drug placement assembly is coaxially assembled with disassembly and assembly components, and each disassembly and assembly component has a height adjustment function. Then, by the cooperation of the disassembly and assembly components, the guide sleeve slides vertically along the support rod and the position height of the drug placement assembly can be adjusted by tightening the clamping stud. This makes it easy to adapt and adjust the spacing between each layer of drug placement components according to the actual specifications of the drugs placed, thus improving the applicability of the drug placement assembly.
[0020] 3. After removing the cap at the top of the support rod, the drug placement component can be detachably and coaxially assembled on the outside of the support rod by sliding the guide sleeve of the assembly with the support rod axially and tightening the clamping stud. At the same time, by simply loosening the clamping stud, the guide sleeve can slide vertically along the support rod to detach from the top, thus removing the drug placement component from the outside of the support rod. The assembly and disassembly of the drug placement component on the outside of the support rod is simple and easy to implement. It is convenient to assemble the drug placement component on the outside of the support rod for temporary storage of drugs. It is also convenient to adapt the number of drug placement components according to actual use needs. Moreover, it is also convenient to thoroughly clean and maintain the drug placement component after it is disassembled. Attached Figure Description
[0021] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0022] Figure 1 This is an overall isometric schematic diagram of this utility model;
[0023] Figure 2 This is an overall isometric schematic diagram of this utility model;
[0024] Figure 3 This is a utility model Figure 1 Cross-section diagram Figure 1 ;
[0025] Figure 4 This is a utility model Figure 3 A magnified view of part A;
[0026] Figure 5 This is a utility model Figure 1 Cross-section diagram Figure 1 ;
[0027] Figure 6 This is a utility model Figure 5 A magnified view of section B;
[0028] Figure 7 This is a utility model Figure 1 Front view diagram;
[0029] Figure 8 This is a utility model Figure 1 A left-view diagram;
[0030] Figure 9 This is a utility model Figure 1 A top-down view.
[0031] The annotations in the attached figures are explained as follows:
[0032] 1. Support rod; 101. Cover; 102. Guide groove; 2. Drug placement assembly; 201. Storage box; 202. Partition; 203. Flexible wing plate; 204. Planar bearing body; 3. Stable base; 4. Assembly and disassembly assembly; 401. Matching guide sleeve; 402. Handle; 403. Elastic pressure block; 404. Clamping stud; 405. Mounting hole. Detailed Implementation
[0033] To make the objectives, technical solutions, and advantages of this utility model clearer, the technical solutions of this utility model will be described in detail below. Obviously, the described embodiments are only a part of the embodiments of this utility model, and not all of them. Based on the embodiments of this utility model, all other implementation methods obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.
[0034] See Figures 1-9 As shown, this utility model provides a rotating medicine rack, including a support rod 1 and a stable base 3. The support rod 1 is vertically arranged, and the stable base 3 is coaxially fixed to the bottom end of the support rod 1. Multiple layers of medicine placement components 2 with horizontal rotation function are coaxially arranged around the support rod 1. Specifically, each medicine placement component 2 includes a storage box 201 and a planar bearing body 204. The storage box 201 is an open-top ring-shaped box, and the storage box 201 is coaxially sleeved around the support rod 1 with a clearance fit. The top surface of each storage box 201 is coaxially fixed with a flat planar bearing body 204, and the inner circumference of the planar bearing body 204 is coaxially clearance-fitted with the outer circumference of the support rod 1. At the same time, the bottom surface of each planar bearing body 204 is coaxially assembled with a disassembly and assembly assembly 4. The purpose of this arrangement is to realize the horizontal rotation of the storage box 201 by driving the upper part of the planar bearing body 204 to rotate, so as to facilitate the flexible rotation of the storage box 201 during the process of taking out and putting out medicine.
[0035] See Figures 1-6As shown, the bottom of each drug placement assembly 2 is coaxially assembled with a disassembly and assembly assembly 4 having a height adjustment function. Each drug placement assembly 2 is detachably assembled to the periphery of the support rod 1 via a corresponding disassembly and assembly assembly 4. Specifically, each disassembly and assembly assembly 4 includes a mating guide sleeve 401 and a clamping stud 404. The bottom surface of each planar bearing body 204 is coaxially fixed with a mating guide sleeve 401, and the mating guide sleeve 401 is fitted onto the periphery of the support rod 1 in a coaxial sliding fit. The front part of each mating guide sleeve 401 has a longitudinally opened mounting hole 405. The mounting holes 405 are all through holes, and the clamping stud 404 is coaxially inserted into each mounting hole 405 in a threaded fit. The advantage of this setting is that, firstly, through the mating guide sleeve 401, the drug placement assembly 2 is detachably assembled to the periphery of the support rod 1 via a corresponding disassembly and assembly assembly 404. The guide sleeve 401 slides vertically along the support rod 1, and the position and height of the drug placement component 2 can be adjusted by tightening the clamping stud 404. This allows for easy adjustment of the spacing between each layer of drug placement components 2 according to the actual specifications of the drugs being placed. At the same time, by axially sliding the guide sleeve 401 of the assembly component 4 with the support rod 1 and tightening the clamping stud 404, the drug placement component 2 can be detachably and coaxially assembled on the outside of the support rod 1. By simply loosening the clamping stud 404, the guide sleeve 401 can slide vertically along the support rod 1 to detach from the top, thereby removing the drug placement component 2 from the outside of the support rod 1. The assembly and disassembly of the drug placement component 2 on the outside of the support rod 1 is simple and easy to implement.
[0036] See Figures 1-6 As shown, the following optimizations were made to the drug placement assembly 2 and the disassembly and assembly assembly 4. Specifically, multiple partitions 202 are fixedly and radially vertically inside the storage box 201 to divide the interior of the storage box 201 into multiple independent storage spaces. The multiple partitions 202 are evenly distributed circumferentially. This arrangement facilitates the classification and placement of multiple drugs when using the storage box 201 to store multiple drugs. Optionally, the rear end of each clamping stud 404 is coaxially fixed with an elastic pressure block 403 with an outer diameter smaller than the diameter of the mounting hole 405. This allows the elastic pressure block 403 to deform against the outer surface of the support rod 1, thereby improving the stability of the locking of the mating guide sleeve 401. Furthermore, the front end of each clamping stud 404 is coaxially fixed with a handle 402 for easy gripping, allowing the clamping stud 404 to be turned by applying force through the handle 402. More preferably, the front of the outer periphery of the support rod 1 is provided with a vertical guide groove 102, the top of the guide groove 102 is open, and the rear of the clamping stud 404 is inserted into the corresponding guide groove 102 in a longitudinal sliding fit. With this setting, the vertical lifting adjustment of the mating guide sleeve 401 can be guided and corrected by the vertical sliding of the clamping stud 404 along the guide groove 102. At the same time, it is also easy to prevent the mating guide sleeve 401 from being accidentally loosened after the storage box 201 is turned over during the turnover process.
[0037] See Figures 1-9 As shown, multiple flexible wing plates 203 are radially extended and fixed to the inner surface of the storage box 201, which is fitted around the support rod 1. These flexible wing plates 203 contact and abut against the outer surface of the support rod 1. This arrangement provides a damping effect during the rotation of the storage box 201 by contacting the outer surface of the support rod 1 with the flexible wing plates 203. This ensures that the storage box 201 can quickly stop rotating after use, and also prevents it from rotating spontaneously without force. Each support rod 1 has a coaxially detachable cap 101 at its top to prevent the guide sleeve 401 from accidentally detaching from the top of the support rod 1. Alternatively, the flexible wing plates 203 are all rectangular rubber sheets, and the cover 101 is a rubber cover. The cover 101 is coaxially and detachably assembled at the top of the support rod 1 in a tension fit manner. With this arrangement, the flexible wing plates 203 have good elastic deformation ability, ensuring that they can provide a certain amount of damping without affecting the rotation of the storage box 201 when force is applied. At the same time, the cover 101 can be quickly disassembled and assembled at the top of the support rod 1 by applying force to pull and press.
[0038] Using the above structure, when temporarily storing medicines during the dispensing process in the pharmacy department, the support rod 1 is coaxially equipped with multiple layers of horizontally rotating medicine placement components 2. Simultaneously, the bottom surface of each storage box 201 in the medicine placement components 2 is coaxially mounted with a planar bearing body 204. The planar bearing body 204 drives the storage box 201 to rotate, enabling horizontal rotation of the storage box 201. This facilitates flexible rotation of the storage box 201 during medicine retrieval, allowing users to efficiently retrieve and place the required medicines for dispensing. Furthermore, since the bottom surface of each planar bearing body 204 in the medicine placement components 2 is coaxially combined with a disassembly and assembly assembly 4, and each disassembly and assembly assembly 4 has a height adjustment function, the position and height of the medicine placement components 2 can be adjusted by sliding the guide sleeve 401 of the disassembly and assembly assembly 4 vertically along the support rod 1 and tightening the clamping stud 404. This allows for adjustment based on the medicine being placed. The spacing between each layer of drug placement components 2 is adjusted according to the actual specifications, improving the applicability of the drug placement components 2. After removing the cap 101 at the top of the support rod 1, the drug placement components 2 can be detachably coaxially assembled on the outside of the support rod 1 by axially sliding the guide sleeve 401 of the assembly component 4 with the support rod 1 and tightening the clamping stud 404. At the same time, by simply loosening the clamping stud 404, the guide sleeve 401 can slide vertically along the support rod 1 to detach from the top, thereby removing the drug placement components 2 from the outside of the support rod 1. The assembly and disassembly of the drug placement components 2 on the outside of the support rod 1 is simple and easy to implement. It is convenient to assemble the drug placement components 2 on the outside of the support rod 1 for temporary storage of drugs. It is also convenient to adapt the number of drug placement components 2 according to actual use needs. Moreover, it is also convenient to thoroughly clean and maintain the drug placement components 2 after disassembly.
[0039] The above description is merely a specific embodiment of this utility model, but the protection scope of this utility model is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in this utility model should be included within the protection scope of this utility model. Therefore, the protection scope of this utility model should be determined by the protection scope of the claims.
Claims
1. A rotating cartridge holder comprising a support rod (1) and a stable base (3), characterized in that: The support rod (1) is vertically arranged, the bottom end of the support rod (1) is coaxially fixed with the stable base (3), and the periphery of the support rod (1) is coaxially provided with a plurality of medicine placing assemblies (2) with horizontal rotation function. The bottom of the medicine placing assembly (2) is coaxially combined with a disassembly and assembly assembly (4) with height adjusting function, and the medicine placing assembly (2) is detachably combined on the periphery of the support rod (1) through the corresponding disassembly and assembly assembly (4). The medicine placing assembly (2) comprises a storage box (201) and a plane bearing body (204), the storage box (201) is an annular box body with an open top, the storage box (201) is coaxially sleeved on the periphery of the support rod (1) in a clearance fit manner, the top surface of the storage box (201) is coaxially fixed with the plane bearing body (204) arranged horizontally, the inner periphery of the plane bearing body (204) is coaxially clearance fitted with the periphery of the support rod (1), and the bottom surface of the plane bearing body (204) is coaxially combined with the disassembly and assembly assembly (4). The disassembly and assembly assembly (4) comprises a matching guide sleeve (401) and a compression stud (404), the bottom surface of the plane bearing body (204) is coaxially fixed with the matching guide sleeve (401), the matching guide sleeve (401) is sleeved on the periphery of the support rod (1) in a coaxial sliding fit manner, the front part of the matching guide sleeve (401) is longitudinally provided with a mounting hole (405), the mounting hole (405) is a through hole, and the compression stud (404) is coaxially inserted into the mounting hole (405) in a threaded fit manner. The inner surface of the storage box (201) is radially fixed with a plurality of flexible wing plates (203) sleeved on the periphery of the support rod (1), and the flexible wing plates (203) are in contact with the periphery of the support rod (1).
2. The rotating cartridge holder of claim 1, wherein: The inside of the storage box (201) is radially vertically fixed with a plurality of partition plates (202) for separating the inside of the storage box (201) into a plurality of independent storage spaces, and a plurality of the partition plates (202) are circumferentially arranged.
3. The rotating cartridge holder of claim 2, wherein: The rear end of the compression stud (404) is coaxially fixed with an elastic pressing block (403) with an outer diameter smaller than the hole diameter of the mounting hole (405).
4. The rotating cartridge holder of claim 3, wherein: The front end of the compression stud (404) is coaxially fixed with a handle (402) for convenient holding.
5. The rotating cartridge holder of claim 4 wherein: The periphery of the support rod (1) is vertically provided with a guide groove (102) at the front part, the top of the guide groove (102) is open, and the rear part of the compression stud (404) is inserted into the corresponding guide groove (102) in a longitudinal sliding fit manner.
6. The rotating medicine dispensing shelf according to any one of claims 2-5, wherein: The top end of the support rod (1) is coaxially detachably combined with a plug cover (101).
7. The rotating cartridge holder of claim 6, wherein: The flexible wing plate (203) is a rectangular rubber sheet, the plug cover (101) is a rubber cover, and the plug cover (101) is coaxially detachably combined on the top end of the support rod (1) in a tight fit manner.