Auxiliary storage device for disposable medical supplies in cabinet
The automatic conveying of medical supplies through the conveyor rack system solves the problem of cumbersome storage in the existing technology, realizes simplified operation and adaptive storage, and is suitable for cabinet auxiliary storage devices of disposable medical supplies.
Patent Information
- Application Number
- CN202422251226.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-13
- Publication Date
- 2025-09-23
- Estimated Expiration
- 2034-09-13
AI Technical Summary
In the prior art, the storage and retrieval of medical supplies requires manual movement, which increases the complexity and labor intensity of the operation. In particular, when storing new items, existing items need to be moved one by one, which is time-consuming and labor-intensive.
The conveyor rack system, including active rollers, driven rollers and conveyor belts, automatically transports medical supplies. Combined with support blocks, remote controls and sensors, it achieves automatic replenishment and retrieval, simplifying the operating process.
It realizes the automated storage and retrieval of medical supplies, reduces manual operation, adapts to different cabinet sizes, simplifies the storage process, and extends the length of the device through support block connection to simplify power supply.
Smart Images

Figure CN223365203U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of medical instruments, in particular to an auxiliary storage device in a cabinet for disposable medical supplies. Background Art
[0002] Medical supplies are usually classified and stored in corresponding cabinets. When needed, they are taken out of the cabinets. Since medical supplies have a shelf life, the principles of "first in, first out" and "left in, right out" should be followed when storing and taking them.
[0003] In the prior art, the storage and retrieval of medical supplies are all done manually, that is, medical staff strictly abide by the principles of retrieval and storage. However, when storing medical supplies, it is necessary to move the unused medical supplies in the cabinet to the right side of the cabinet one by one, and then put new medical supplies in order, which greatly increases the tediousness of storing medical supplies, is time-consuming and labor-intensive. Utility Model Content
[0004] The main purpose of the utility model is to overcome the shortcomings of the existing technology and provide an auxiliary storage device for disposable medical supplies in a cabinet, which can automatically arrange medical supplies through a conveyor rack, eliminating the arrangement steps for medical staff when storing medical supplies and simplifying the storage operation of medical supplies.
[0005] The utility model adopts the following technical solutions:
[0006] The invention comprises a plurality of conveying racks, wherein the conveying racks comprise active rollers, driven rollers and a plurality of conveying belts, the active rollers and the driven rollers are arranged in parallel and at intervals, the plurality of conveying belts are arranged in parallel and at intervals between the active rollers and the driven rollers, the active rollers and the driven rollers drive the conveying belts to rotate and transport the medical supplies from an initial position to a terminal position, the plurality of conveying racks are staggered so that the active rollers of the plurality of conveying racks are arranged in parallel and at intervals in sequence, and the driven rollers of the plurality of conveying racks are arranged in parallel and at intervals in sequence, the conveying belts of the plurality of conveying racks are arranged one by one and the plurality of conveying racks can slide against each other, a support block is provided on the active roller and the driven roller of each conveying rack, the lowest point of the conveying belt is higher than the bottom surface of the support block, and the highest point of the conveying belt is higher than the top surface of the support block.
[0007] Furthermore, the support block includes a first support block and a second support block, the first support block and the second support block are respectively arranged on the active roller and the driven roller, and the first support block can be connected to the second support block.
[0008] Furthermore, the first support block includes a first support portion and a first connecting portion, the first connecting portion is arranged on one side of the first support portion and the top surface of the first connecting portion is located in the same plane as the top surface of the first support portion, the second support block includes a second support portion and a second connecting portion, the second connecting portion is arranged on one side of the second support portion and the bottom surface of the second connecting portion is located in the same plane as the bottom surface of the second support portion, the bottom of the first connecting portion is provided with an insertion section extending downward, the top surface of the second connecting portion is provided with an insertion groove, the insertion section is inserted into the insertion groove so that the bottom surface of the first connecting portion is connected to the top surface of the second connecting portion, thereby connecting the first support block and the second support block.
[0009] Furthermore, a conductive contact is provided in the insertion slot, and a conductive slot adapted to the conductive contact is opened on the insertion section. When the insertion section is inserted into the insertion slot, the conductive contact is inserted into the conductive slot.
[0010] Furthermore, the support block also includes a third support block, the first support block and the second support block are respectively arranged on the active roller and the driven roller located at the outermost sides, and the third support block is arranged on the active roller and the driven roller located in the middle position.
[0011] Furthermore, a remote control is also included. The support block is provided with an embedding groove, a magnetic component is provided in the embedding groove, and a corresponding adsorption component is also provided on the north of the remote control. The remote control is detachably arranged in the embedding groove through the magnetic connection between the magnetic component and the adsorption component.
[0012] Furthermore, a charging protrusion is provided on the embedded slot, and a charging circular groove adapted to the charging protrusion is provided on the back of the remote control. When the remote control is set in the embedded slot, the charging protrusion presses against the charging circular groove to form a charging circuit.
[0013] Furthermore, a sensor is included, and the sensor is arranged at the end position of the conveying rack.
[0014] Furthermore, it includes a first conveyor frame and a second conveyor frame, the first conveyor frame and the second conveyor frame are staggered so that the active roller of the second conveyor frame is located between the active roller and the driven roller of the first conveyor frame, the driven roller of the first conveyor frame is located between the active roller and the driven roller of the second conveyor frame, and the conveyor belts of the first conveyor frame and the second conveyor frame are arranged one at a time.
[0015] Furthermore, the conveying frame also includes a guide rod, which is a hollow cylindrical structure. The guide rod is arranged between the active roller and the driven roller. A first guide hole is opened on the support block of the driven roller of the first conveying frame, and a second guide hole is opened on the support block of the active roller of the second conveying frame. The guide rod of the first conveying frame passes through the first guide hole to connect the active roller and the driven roller, and the guide rod of the second conveying frame passes through the second guide hole to connect the active roller and the driven roller.
[0016] From the above description of the present invention, it can be seen that compared with the prior art, the present invention has the following beneficial effects:
[0017] First, the conveyor belt is driven by the active roller and the driven roller on the conveyor rack to rotate, and the conveyor belt can automatically transport the medical supplies from the starting position to the end position. Even if the medical supplies are automatically replenished to the right, the medical staff does not need to move the original medical supplies in the cabinet when replenishing and storing medical supplies, which is convenient for the replenishment and storage of medical supplies. The conveyor rack is composed of multiple staggered arrangements, and the overall length can be extended by moving between the conveyor racks. It can be applied to cabinets of various sizes.
[0018] Second, multiple storage devices can be connected through a first support block and a second support block that can be connected to each other, which can further extend the overall length. At the same time, the conductive contacts on the first support block and the conductive grooves on the second support block enable current to be conducted after multiple devices are connected, and multiple devices can be powered by one power supply. Placing too many lines will cause clutter.
[0019] Third, the sensor can detect whether there are medical supplies at the end position. If there are no medical supplies at the end position, the conveyor belt will be driven to transport the medical supplies at the initial position. It can also be manually operated by a remote control. The remote control is magnetically set in the embedded slot for easy access, and is charged through the charging protrusion and charging circular slot to ensure the power supply of the remote control. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 It is a schematic diagram of the overall structure of a specific embodiment of the utility model;
[0021] Figure 2 It is a schematic diagram of the overall structure of a specific embodiment of the present utility model, showing a state where multiple conveying racks are fully deployed;
[0022] Figure 3 It is a schematic diagram of the overall structure of a specific embodiment of the utility model;
[0023] Figure 4 This is a simplified operation diagram of a specific embodiment of the present invention, in which the arrows indicate the direction of movement of the medical supplies;
[0024] Figure 5 It is a structural schematic diagram of a specific embodiment of the present utility model, showing a structure in which two devices are connected by a first supporting block and a second supporting block.
[0025] In the figure: 1. Conveyor rack, 1a. First conveyor rack, 1b. Second conveyor rack, 10. Active roller, 11. Driven roller, 12. Conveyor belt, 13. Guide rod, 2. Support block, 20. First support block, 200. First support portion, 201. First connecting portion, 202. Insertion section, 203. Conductive slot, 21. Second support block, 210. Second support portion, 211. Second connecting portion, 212. Insertion slot, 213. Conductive contact, 22. Third support block, 23. Embedded slot, 230. Charging protrusion, 3. Sensor, 4. Remote control. DETAILED DESCRIPTION
[0026] The present invention is further described below through specific implementation methods.
[0027] Reference Figures 1 to 5 The present invention provides an auxiliary storage device for disposable medical supplies in a cabinet, comprising multiple conveyor racks 1, support blocks 2, sensors 3, and remote controls 4. The conveyor racks 1 include active rollers 10, passive rollers 11, and multiple conveyor belts 12. The active rollers 10 and passive rollers 11 are arranged in parallel and spaced relation. The multiple conveyor belts 12 are arranged in parallel and spaced relation between the active rollers 10 and passive rollers 11. The active rollers 10 and passive rollers 11 drive the conveyor belts 12 to rotate and transport medical supplies from an initial position to a final position. The multiple conveyor racks 1 are staggered so that the active rollers of the multiple conveyor racks 1 are arranged in parallel and spaced relation. The passive rollers of the multiple conveyor racks 1 are arranged in parallel and spaced relation. The conveyor belts 12 of the multiple conveyor racks 1 are arranged one after another. A support block 2 is provided on the active roller 10 and passive roller 11 of each conveyor rack 1. The lowest point of the conveyor belt 12 is higher than the bottom surface of the support block 2, and the highest point of the conveyor belt 12 is higher than the top surface of the support block 2. The sensor 3 is provided at the final position of the conveyor rack 1.
[0028] The support block 2 includes a first support block 20, a second support block 21, and a third support block 22. The first support block 20 and the second support block 21 are respectively arranged on the active roller 10 and the driven roller 11, and the first support block 20 can be connected to the second support block 21. The first support block 20 and the second support block 21 are respectively arranged on the outermost active roller 10 and the driven roller 11, and the third support block 22 is arranged on the active roller 10 and the driven roller 11 located in the middle.
[0029] The first support block 20 includes a first support portion 200 and a first connecting portion 201. The first connecting portion 201 is arranged on one side of the first support portion 200 and the top surface of the first connecting portion 201 is located in the same plane as the top surface of the first support portion 200. The second support block 21 includes a second support portion 210 and a second connecting portion 211. The second connecting portion 211 is arranged on one side of the second support portion 210 and the bottom surface of the second connecting portion 211 is located in the same plane as the bottom surface of the second support portion 210. A downwardly extending insertion section 202 is provided at the bottom of the first connecting portion 201, and an insertion groove 212 is provided on the top surface of the second connecting portion 211. The insertion section 202 is inserted into the insertion groove 212 so that the bottom surface of the first connecting portion 201 is connected to the top surface of the second connecting portion 211, thereby connecting the first support block 20 and the second support block 21. A conductive contact 213 is provided in the insertion slot 212 , and a conductive slot 203 adapted to the conductive contact 213 is opened on the insertion section 202 . When the insertion section 202 is inserted into the insertion slot 212 , the conductive contact 213 is inserted into the conductive slot 203 .
[0030] The support block 2 is provided with an insertion slot 23, which is equipped with a magnetic element. A corresponding adsorption element is also provided on the north side of the remote control 4. The remote control 4 is removably mounted in the insertion slot 23 through the magnetic connection between the magnetic element and the adsorption element. The insertion slot 23 is provided with a charging protrusion 230, and the back of the remote control 4 is provided with a charging circular groove that matches the charging protrusion 230. When the remote control 4 is placed in the insertion slot 23, the charging protrusion 230 protrudes and abuts against the charging circular groove, forming a charging circuit.
[0031] It includes a first conveying frame 1a and a second conveying frame 1b. The first conveying frame 1a and the second conveying frame 1b are staggered so that the active roller 10 of the second conveying frame 1b is located between the active roller 10 and the driven roller 11 of the first conveying frame 1a, and the driven roller 11 of the first conveying frame 1a is located between the active roller 10 and the driven roller 11 of the second conveying frame 1b. The conveying belts 12 of the first conveying frame 1a and the second conveying frame 1b are arranged one after another. The conveying frame 1 also includes a guide rod 13, which is a hollow cylindrical structure. The interior of the guide rod 13 can be used for internal loop wiring of the storage device. The guide rod 13 is arranged between the active roller 10 and the driven roller 11. A first guide hole is opened on the support block 2 of the driven roller 11 of the first conveying frame 1a, and a second guide hole is opened on the support block 2 of the active roller 10 of the second conveying frame 1b. The guide rod 13 of the first conveying frame 1a passes through the first guide hole to connect the active roller 10 and the driven roller 11, and the guide rod 13 of the second conveying frame 1b passes through the second guide hole to connect the active roller 10 and the driven roller 11.
[0032] Continue to refer to Figures 1 to 5 When the utility model is used, the storage device is placed in the cabinet and connected to the power supply. According to the principle of "first in, first out", the first used medical supplies are placed at the end position of the storage device, that is, on the right side of the cabinet, and are placed in sequence towards the initial position until it is full. When medical staff take medical supplies, they are taken away in sequence starting from the end position. When the medical supplies at the end position are taken away, the sensor 3 detects that there are no medical supplies at the end position and starts the active roller 10. The active roller 10 rotates to drive the conveyor belt 12 and the driven roller 11 to rotate, and the medical supplies at the initial position are conveyed to the end position until the sensor 3 detects that there are medical supplies at the end position and controls the active roller 10 to stop.
[0033] Multiple conveyor racks 1 can be slidably arranged relative to each other, allowing the overall length of the storage device to be adjusted to accommodate cabinets of different sizes. If the length of a cabinet significantly exceeds the maximum length of a single storage device, multiple storage devices can be connected via the first support block 20 and the second support block 21. Specifically, the insertion section 202 on the first support block 20 of one storage device is inserted into the insertion slot 212 on the second support block 21 of another storage device, thereby lengthening the storage device to accommodate larger cabinets. Conductive contacts 213 provided within the insertion slot 212 are inserted into the conductive slot 203 on the insertion section 202 to form a circuit, allowing power to be supplied to all storage devices via a single power source, reducing the number of wires within the cabinet. A remote control 4 is also provided, allowing manual control of the start and stop of the active roller 10, facilitating adjustment. The remote control 4 is magnetically mounted within the insertion slot 23 for easy assembly and disassembly, and is powered by the charging protrusion 230 and the charging groove to ensure a sufficient charge level for the remote control 4. This allows the remote control 4 to be used directly within the insertion slot 23 or removed for use.
[0034] The above is only a specific implementation of the present invention, but the design concept of the present invention is not limited to this. Any non-substantial changes to the present invention using this concept shall be deemed as an infringement of the protection scope of the present invention.
Claims
1. An auxiliary storage device for disposable medical supplies in a cabinet, characterized by: The invention comprises a plurality of conveying racks, wherein the conveying racks comprise active rollers, driven rollers and a plurality of conveying belts, the active rollers and the driven rollers are arranged in parallel and at intervals, the plurality of conveying belts are arranged in parallel and at intervals between the active rollers and the driven rollers, the active rollers and the driven rollers drive the conveying belts to rotate and transport the medical supplies from an initial position to a terminal position, the plurality of conveying racks are staggered so that the active rollers of the plurality of conveying racks are arranged in parallel and at intervals in sequence, and the driven rollers of the plurality of conveying racks are arranged in parallel and at intervals in sequence, the conveying belts of the plurality of conveying racks are arranged one by one and the plurality of conveying racks can slide against each other, a support block is provided on the active roller and the driven roller of each conveying rack, the lowest point of the conveying belt is higher than the bottom surface of the support block, and the highest point of the conveying belt is higher than the top surface of the support block.
2. The auxiliary storage device for disposable medical supplies in a cabinet according to claim 1, characterized in that: The support block includes a first support block and a second support block, the first support block and the second support block are respectively arranged on the active roller and the driven roller, and the first support block can be connected to the second support block.
3. The auxiliary storage device for disposable medical supplies in a cabinet according to claim 2, characterized in that: The first support block includes a first support portion and a first connecting portion, the first connecting portion is arranged on one side of the first support portion and the top surface of the first connecting portion is located in the same plane as the top surface of the first support portion, the second support block includes a second support portion and a second connecting portion, the second connecting portion is arranged on one side of the second support portion and the bottom surface of the second connecting portion is located in the same plane as the bottom surface of the second support portion, the bottom of the first connecting portion is provided with an insertion section extending downward, the top surface of the second connecting portion is provided with an insertion groove, the insertion section is inserted into the insertion groove so that the bottom surface of the first connecting portion is connected to the top surface of the second connecting portion, thereby connecting the first support block and the second support block.
4. The auxiliary storage device for disposable medical supplies in a cabinet according to claim 3, characterized in that: A conductive contact is provided in the insertion slot, and a conductive slot adapted to the conductive contact is opened on the insertion section. When the insertion section is inserted into the insertion slot, the conductive contact is inserted into the conductive slot.
5. The auxiliary storage device for disposable medical supplies in a cabinet according to claim 2, characterized in that: The support block further includes a third support block. The first support block and the second support block are respectively arranged on the active roller and the driven roller located at the outermost sides. The third support block is arranged on the active roller and the driven roller located in the middle.
6. The auxiliary storage device for disposable medical supplies in a cabinet according to claim 1, characterized in that: It also includes a remote control, an embedding groove is provided on the support block, a magnetic part is provided in the embedding groove, and a corresponding adsorption part is also provided on the north of the remote control. The remote control can be detachably arranged in the embedding groove through the magnetic connection between the magnetic part and the adsorption part.
7. The auxiliary storage device for disposable medical supplies in a cabinet according to claim 6, characterized in that: The embedding groove is provided with a charging protrusion, and the back of the remote control is provided with a charging circular groove adapted to the charging protrusion. When the remote control is placed in the embedding groove, the charging protrusion abuts against and connects to the charging circular groove to form a charging circuit.
8. The auxiliary storage device for disposable medical supplies in a cabinet according to claim 1, characterized in that: A sensor is also included, and the sensor is arranged at the end position of the conveying rack.
9. The auxiliary storage device for disposable medical supplies in a cabinet according to claim 1, characterized in that: It includes a first conveyor frame and a second conveyor frame, the first conveyor frame and the second conveyor frame are staggered so that the active roller of the second conveyor frame is located between the active roller and the driven roller of the first conveyor frame, the driven roller of the first conveyor frame is located between the active roller and the driven roller of the second conveyor frame, and the conveyor belts of the first conveyor frame and the second conveyor frame are arranged one at a time.
10. The auxiliary storage device for disposable medical supplies in a cabinet according to claim 9, characterized in that: The conveying frame also includes a guide rod, which is a hollow cylindrical structure. The guide rod is arranged between the active roller and the driven roller. A first guide hole is opened on the support block of the driven roller of the first conveying frame, and a second guide hole is opened on the support block of the active roller of the second conveying frame. The guide rod of the first conveying frame passes through the first guide hole to connect the active roller and the driven roller, and the guide rod of the second conveying frame passes through the second guide hole to connect the active roller and the driven roller.