Rotary multi-lattice anesthetic tray

Through the design of lifting components, rotating components and adjustment components, the work burden and inconvenience caused by the simple structure of the anesthetic disc is solved, and the orderly classification and stable connection of drugs are achieved, which improves the convenience of the use of the anesthetic disc.

CN223041618UActive Publication Date: 2025-07-01HAINAN WESTERN CENT HOSPITAL (DANZHOU FIRST PEOPLES HOSPITAL HAINAN WESTERN REGIONAL MEDICAL CENT)
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Patent Information

Application Number
CN202421808359.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-29
Publication Date
2025-07-01
Estimated Expiration
2034-07-29

AI Technical Summary

Technical Problem

The existing anesthetic disc has a simple structure and the anesthetic bottle is placed in a mess, which leads to a large work burden, inconvenient access, low efficiency, and affects the convenience of use.

Method used

A rotating multi-grid anesthetic tray is designed, which includes lifting components, rotating components and adjustment components. The height is adjusted by lifting components, and the rotating components are classified into drugs. The adjustment components are stabilized to ensure that the drugs are placed in an orderly manner and easy to use.

Benefits of technology

It improves the convenience of using anesthetic trays, orderly classification of drugs, clearly marked with label slots, stable connection of box lids, and temporary groove storage, significantly improving operation efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of anesthetic trays, in particular to a rotary multi-grid anesthetic tray. The technical problems that in the using process of an anesthetic tray, due to the fact that most of the anesthetic trays are simple in structure, various anesthetic bottles are placed on a tray body in a scattered mode, the workload is large, a rotating structure is not arranged, taking is inconvenient, and the efficiency is low are solved. According to the technical scheme, the rotary multi-lattice anesthetic tray comprises a fixed box body and further comprises a lifting assembly, a rotating assembly and an adjusting assembly. The lifting assembly is arranged, the lifting rod ascends to drive the height of the rotating assembly to be adjusted, then the anesthetic can be divided through the rotating assembly according to types, purposes or other characteristics of the anesthetic, it is ensured that the anesthetic is placed in order, the rotating disc is rotated to be easily taken and used, and then the box cover is moved by manually pulling the handle through the adjusting assembly. The clamping connection enables the movement to be more stable, and the phenomena of deviation and falling off are prevented.
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Description

Technical Field

[0001] The utility model relates to the field of anesthetic trays, in particular to a rotary multi-grid anesthetic tray. Background Art

[0002] Before surgery, patients need to be anesthetized to relieve their pain during the operation. Anesthetics refer to drugs that can temporarily and reversibly make the whole body or a local part of the body lose consciousness and pain sensation. According to their scope of action, anesthetics can be divided into general anesthetics and local anesthetics. General anesthetics and local anesthetics can be further divided into inhalation anesthetics and intravenous anesthetics according to their action characteristics and administration methods. General anesthetics inhibit the cerebral cortex from shallow to deep, causing loss of consciousness. Local anesthetics stabilize the membrane potential of nerves or reduce the membrane permeability to sodium ions, blocking the conduction of nerve impulses and playing a local anesthetic role. Usually, a variety of anesthetic drug varieties are needed and need to be injected in a certain order, so an anesthetic tray is required. However, most of the existing anesthetic trays have a simple structure, and various anesthetic bottles are scattered on the tray body. During the anesthetic operation, anesthesiologists often need to spend time carefully identifying the types of anesthetics required in that order, resulting in a large workload. They also do not have a rotating structure, which is inconvenient to take, leading to low efficiency and thus extremely affecting the usability of the entire anesthetic tray. Content of the Utility Model

[0003] In order to overcome the problems that during the use of an anesthetic tray, due to its mostly simple structure, various anesthetic bottles are scattered on the tray body, resulting in a large workload, and it also does not have a rotating structure, which is inconvenient to take and leads to low efficiency.

[0004] The technical solution of the utility model is: a rotary multi-grid anesthetic tray, which includes a fixed box body, and also includes a lifting component, a rotating component, a first placement groove, a limit slot, a limit plug board, a first limit sliding groove, a second limit sliding groove, an adjusting component, a second placement groove, and a storage drawer. The lifting component is arranged at the rear end of the fixed box body, the rotating component is installed at the top of the lifting component, the first placement groove is opened at the upper end inside the fixed box body, the first limit sliding groove is opened at the upper front side of the fixed box body, the second limit sliding grooves are opened on the left and right sides of the upper rear side of the fixed box body, the adjusting component is arranged at the upper end of the fixed box body, the second placement groove is opened at the lower end inside the fixed box body, and the storage drawer is snap-connected inside the second placement groove.

[0005] Preferably, by setting up a lifting component, the lifting rod is raised to drive the height adjustment of the rotating component. Then, through the rotating component, it can be divided according to the type, use or other characteristics of the anesthetic drugs to ensure the orderly placement of the drugs. The rotating disk is rotated for easy access. The label slots clearly identify information such as the name, dosage, and expiration date of the stored drugs, so that medical staff can quickly find the required drugs. Then, through the adjustment component, manually pull the handle to move the box cover, and the snap connection makes the movement more stable, preventing the phenomena of deviation and detachment. Grooves are provided on the upper end surfaces of both groups of box covers, which can temporarily place drugs and instruments during use, thereby greatly improving the convenience of use of the entire anesthetic medicine tray.

[0006] Preferably, the lifting component includes a fixed sleeve, a lifting rod, a connecting plate, a driving motor, and a threaded screw rod. The upper end inside the fixed sleeve is snap-connected with the lifting rod. The front end of the top of the lifting rod is provided with a connecting plate. The driving motor is installed at the bottom end inside the fixed sleeve. The top output end of the driving motor is connected with the threaded screw rod. The outer side wall of the threaded screw rod is threadedly connected with the lower end inside the lifting rod. By starting the driving motor to drive the rotation of the threaded screw rod, the lifting rod is raised to drive the height adjustment of the rotating component, improving the applicability of use.

[0007] Preferably, the rotating component includes a fixed disk, a through groove, a rotating disk, medicine storage grids, and label slots. A through groove is provided at the front end of the fixed disk. The rotating disk is rotatably connected inside the fixed disk. The upper end surface of the rotating disk is divided into four equal parts centered on the center of the circle. Three of them are provided with medicine storage grids, which can be divided according to the type, use or other characteristics of the anesthetic drugs to ensure the orderly placement of the drugs, and the rotating disk is rotated for easy access.

[0008] Preferably, label slots are provided on the top of the rotating disk and inside the three medicine storage grids, clearly identifying information such as the name, dosage, and expiration date of the stored drugs, so that medical staff can quickly find the required drugs.

[0009] Preferably, two groups of limit slots are provided at the left and right ends of the inner side wall of the first placement groove, and a limit insertion plate is snap-connected between the left and right corresponding limit slots, facilitating the adjustment of the limit insertion plate according to needs for classified storage.

[0010] Preferably, the adjustment component includes box covers, handles, first limit sliders, second limit sliders, and grooves. There are two box covers. Handles are installed at the outer ends of the tops of the two box covers. First limit sliders are installed inside the front ends of the bottoms of the two box covers. The first limit sliders are snap-connected with the inside of the first limit chute. Second limit sliders are provided at the rear ends of the bottoms of the two box covers. The second limit sliders are snap-connected with the inside of the second limit chute. The box covers can be manually pulled by the handles to move, and the snap connection makes the movement more stable, preventing the phenomena of deviation and detachment.

[0011] Preferably, grooves are provided on the upper end surfaces of both groups of box lids, which can temporarily place drugs and instruments during use, improving the operation convenience.

[0012] Advantages of the present utility model:

[0013] 1. By setting up a composite structure of a lifting component, a rotating component and an adjusting component to replace the original single structure, the height of the rotating component can be adjusted, improving the applicability of use. It can also be divided according to the types, uses or other characteristics of anesthetic drugs to ensure the orderly placement of drugs. The rotating turntable is rotated for easy access. The snap connection of the box lid makes the movement more stable. The groove can temporarily place drugs and instruments during use, and thus the use convenience of the entire anesthetic medicine tray can be improved to a certain extent;

[0014] 2. Through the lifting component, the driving motor is started to drive the rotation of the threaded lead screw, so that the lifting rod rises to drive the height adjustment of the rotating component, improving the applicability of use;

[0015] 3. Through the rotating component, it can be divided according to the types, uses or other characteristics of anesthetic drugs to ensure the orderly placement of drugs. The rotating turntable is rotated for easy access. The label slot clearly identifies information such as the name, dosage, and expiration date of the stored drugs, so that medical staff can quickly find the required drugs;

[0016] 4. Through the adjusting component, manually hold the handle to move the box lid. The snap connection makes the movement more stable, preventing the occurrence of deviation and falling off. The groove can temporarily place drugs and instruments during use, improving the operation convenience. Description of the drawings

[0017] Figure 1 Shown is a three-dimensional structural schematic diagram of the present utility model;

[0018] Figure 2 Shown is a three-dimensional structural schematic diagram of the lifting component of the present utility model rising;

[0019] Figure 3 Shown is a three-dimensional structural exploded schematic diagram of the rotating component of the present utility model;

[0020] Figure 4 Shown is a three-dimensional structural unfolded schematic diagram of the adjusting component of the present utility model;

[0021] Figure 5 Shown is a three-dimensional structural exploded schematic diagram of the adjusting component of the present utility model.

[0022] Description of reference numerals: 1 - fixed box body, 2 - lifting assembly, 3 - rotating assembly, 4 - first placement groove, 5 - limit slot, 6 - limit insertion plate, 7 - first limit sliding groove, 8 - second limit sliding groove, 9 - adjustment assembly, 10 - second placement groove, 11 - storage drawer, 201 - fixed sleeve, 202 - lifting rod, 203 - connecting plate, 204 - driving motor, 205 - threaded lead screw, 301 - fixed disk, 302 - through slot, 303 - rotating disk, 304 - medicine storage grid, 305 - label slot, 901 - box cover, 902 - handle, 903 - first limit slider, 904 - second limit slider, 905 - groove. Detailed implementation manners

[0023] The present utility model will be further described below in conjunction with the accompanying drawings and embodiments.

[0024] Please refer to Figures 1-3 , the present utility model provides an embodiment: a rotary multi - grid anesthetic medicine tray, including a fixed box body 1, and further including a lifting assembly 2, a rotating assembly 3, a first placement groove 4, a limit slot 5, a limit insertion plate 6, a first limit sliding groove 7, a second limit sliding groove 8, an adjustment assembly 9, a second placement groove 10 and a storage drawer 11. A lifting assembly 2 is provided at the rear end of the fixed box body 1. The lifting assembly 2 includes a fixed sleeve 201, a lifting rod 202, a connecting plate 203, a driving motor 204 and a threaded lead screw 205. The upper end inside the fixed sleeve 201 is snap - connected with the lifting rod 202. The front end of the top of the lifting rod 202 is provided with a connecting plate 203. The driving motor 204 is installed at the bottom end inside the fixed sleeve 201. The top output end of the driving motor 204 is connected with the threaded lead screw 205. The outer side wall of the threaded lead screw 205 is threadedly connected with the lower end inside the lifting rod 202. By starting the driving motor 204 to drive the rotation of the threaded lead screw 205, the lifting rod 202 is lifted to drive the height adjustment of the rotating assembly 3, improving the applicability of use. The rotating assembly 3 is installed at the top of the lifting assembly 2. The rotating assembly 3 includes a fixed disk 301, a through slot 302, a rotating disk 303, a medicine storage grid 304 and a label slot 305. A through slot 302 is opened at the front end of the fixed disk 301. The rotating disk 303 is rotatably connected inside the fixed disk 301. The upper end surface of the rotating disk 303 is divided into four equal parts centered on the center of the circle. Three of them are provided with medicine storage grids 304, which can be divided according to the types, uses or other characteristics of anesthetic drugs to ensure the orderly placement of drugs, and it is easy to access by rotating the rotating disk 303. Label slots 305 are provided on the top of the rotating disk 303 and inside the three medicine storage grids 304, clearly marking information such as the name, dosage, and expiration date of the stored drugs, so that medical staff can quickly find the required drugs.

[0025] Please refer to Figures 4-5, in this embodiment, a first placement groove 4 is provided at the upper end inside the fixed box body 1. Two groups of limit slots 5 are provided at both the left and right ends of the inner side wall of the first placement groove 4. A limit insertion plate 6 is snap-connected between the correspondingly positioned left and right limit slots 5, which is convenient for adjusting the limit insertion plate 6 as needed for classified storage. A first limit sliding groove 7 is provided at the upper end of the front side of the fixed box body 1, and second limit sliding grooves 8 are provided on both the left and right sides of the upper end of the rear side of the fixed box body 1. An adjustment assembly 9 is provided at the upper end of the fixed box body 1. The adjustment assembly 9 includes a box cover 901, a handle 902, a first limit slider 903, a second limit slider 904, and a groove 905. The box cover 901 is provided in two groups. Handles 902 are installed at the outer ends of the tops of the two groups of box covers 901. First limit sliders 903 are installed on the inner sides of the front ends of the bottoms of the two groups of box covers 901. The first limit slider 903 is snap-connected to the inside of the first limit sliding groove 7. Second limit sliders 904 are provided at the rear ends of the bottoms of the two groups of box covers 901. The second limit slider 904 is snap-connected to the inside of the second limit sliding groove 8. The box cover 901 can be manually pulled by the handle 902 for movement. The snap connection makes the movement more stable and prevents the phenomena of deviation and detachment. Grooves 905 are provided on the upper end surfaces of the two groups of box covers 901, which can temporarily place drugs and instruments during use, improving the operation convenience. A second placement groove 10 is provided at the lower end inside the fixed box body 1, and a storage drawer 11 is snap-connected to the inside of the second placement groove 10.

[0026] When the anesthetic medicine tray is working, first, through the lifting assembly 2, the driving motor 204 is started to drive the rotation of the threaded lead screw 205, so that the lifting rod 202 rises to drive the height adjustment of the rotating assembly 3, improving the applicability of use. Then, through the rotating assembly 3, it can be divided according to the types, uses, or other characteristics of anesthetic drugs to ensure the orderly placement of drugs, and the rotating disk 303 is rotated for easy access. Label slots 305 are provided at the top of the rotating disk 303 and inside the three medicine storage grids 304, clearly marking information such as the name, dosage, and expiration date of the stored drugs, so that medical staff can quickly find the required drugs;

[0027] Then, two groups of limit slots 5 are provided at both the left and right ends of the inner side wall of the first placement groove 4, and a limit insertion plate 6 is snap-connected between the correspondingly positioned left and right limit slots 5, which is convenient for adjusting the limit insertion plate 6 as needed for classified storage;

[0028] Then, by adjusting the adjusting component 9, first limiting sliders 903 are installed on the inner sides of the front ends of the bottoms of the two box lids 901. The first limiting sliders 903 are engaged with the inside of the first limiting sliding grooves 7. Second limiting sliders 904 are arranged at the rear ends of the bottoms of the two box lids 901. The second limiting sliders 904 are engaged with the inside of the second limiting sliding grooves 8. The box lids 901 can be manually pulled by holding the handles 902 to move. The engagement connection makes the movement more stable and prevents the phenomena of deviation and detachment. Grooves 905 are formed on the upper end surfaces of the two box lids 901, which can temporarily place drugs and instruments during use and improve the operation convenience.

[0029] Through the above steps, start the driving motor 204 to drive the rotation of the threaded lead screw 205, so that the lifting rod 202 rises to drive the height adjustment of the rotating component 3. Then, through the rotating component 3, it can be divided according to the types, uses or other characteristics of anesthetic drugs to ensure the orderly placement of drugs. The rotating disc 303 is rotated for easy access. The label slots 305 clearly identify information such as the name, dosage, and expiration date of the stored drugs, so that medical staff can quickly find the required drugs. Then, the box lids 901 are manually pulled by holding the handles 902 to move. The engagement connection makes the movement more stable and prevents the phenomena of deviation and detachment. Grooves 905 are formed on the upper end surfaces of the two box lids 901, which can temporarily place drugs and instruments during use, and thus can greatly improve the use convenience of the entire anesthetic medicine tray.

[0030] The embodiments of the present invention have been described in detail above with reference to the drawings. However, the present invention is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the purpose of the present invention.

Claims

1. A rotating multi-grid anesthetic tray, comprising a fixed box body (1); characterized in that: The invention also comprises a lifting component (2), a rotating component (3), a first placement groove (4), a limiting slot (5), a limiting plug plate (6), a first limiting slide groove (7), a second limiting slide groove (8), an adjusting component (9), a second placement groove (10) and a storage drawer (11). The rear end of the fixed box body (1) is provided with a lifting component (2), the top of the lifting component (2) is installed with a rotating component (3), the upper end of the interior of the fixed box body (1) is provided with a first placement groove (4), the upper end of the front side of the fixed box body (1) is provided with a first limiting slide groove (7), the left and right sides of the upper end of the rear side of the fixed box body (1) are provided with second limiting slide grooves (8), the upper end of the fixed box body (1) is provided with an adjusting component (9), the lower end of the interior of the fixed box body (1) is provided with a second placement groove (10), and the interior of the second placement groove (10) is connected with a storage drawer (11) in a snap-fit ​​manner.

2. A rotating multi-compartment anesthetic tray according to claim 1, characterized in that: The lifting assembly (2) comprises a fixed sleeve (201), a lifting rod (202), a connecting plate (203), a driving motor (204) and a threaded screw (205); the internal upper end of the fixed sleeve (201) is snap-connected with the lifting rod (202); the top front end of the lifting rod (202) is provided with a connecting plate (203); the internal bottom end of the fixed sleeve (201) is installed with the driving motor (204); the top output end of the driving motor (204) is connected with the threaded screw (205); and the outer wall of the threaded screw (205) is threadedly connected with the internal lower end of the lifting rod (202).

3. The rotating multi-compartment anesthetic tray according to claim 1, characterized in that: The rotating assembly (3) comprises a fixed disk (301), a through slot (302), a rotating disk (303), a medicine storage grid (304) and a label slot (305). The front end of the fixed disk (301) is provided with a through slot (302). The interior of the fixed disk (301) is rotatably connected to the rotating disk (303). The upper end surface of the rotating disk (303) is divided into four equal parts with the center of the circle as the center, and the medicine storage grid (304) is provided in three of the four parts.

4. The rotating multi-compartment anesthetic tray according to claim 3, characterized in that: Label slots (305) are arranged on the top of the rotating disk (303) and on the inner sides of the three groups of medicine storage grids (304).

5. The rotating multi-compartment anesthetic tray according to claim 1, characterized in that: Two groups of limit slots (5) are provided at both left and right ends of the inner side wall of the first placement slot (4), and a limit plug plate (6) is engaged and connected between the left and right corresponding limit slots (5).

6. The rotating multi-compartment anesthetic tray according to claim 1, characterized in that: The adjustment component (9) comprises a box cover (901), a handle (902), a first limiting slider (903), a second limiting slider (904) and a groove (905). The box cover (901) is arranged in two groups. The top outer ends of the two groups of box covers (901) are both provided with a handle (902). The inner sides of the bottom front ends of the two groups of box covers (901) are both provided with a first limiting slider (903). The first limiting slider (903) is connected to the inside of the first limiting slide groove (7) by snap-fitting. The bottom rear ends of the two groups of box covers (901) are provided with a second limiting slider (904). The second limiting slider (904) is connected to the inside of the second limiting slide groove (8) by snap-fitting.

7. The rotating multi-compartment anesthetic tray according to claim 6, characterized in that: The upper end surfaces of the two sets of box covers (901) are both provided with grooves (905).