A movable injection tray

By setting a combination of clamps, baffles and silicone partitions on the inner wall of the movable injection tray, the problems of difficult partitioning and inconvenient placement of items are solved, achieving flexible partitioning and stable placement.

CN224584991UActive Publication Date: 2026-08-04MEI HOSPITAL UNIV OF CHINESE ACAD OF SCI
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
MEI HOSPITAL UNIV OF CHINESE ACAD OF SCI
Filing Date
2025-06-20
Publication Date
2026-08-04

AI Technical Summary

Technical Problem

The existing movable injection trays have fixed partitions, making it difficult to flexibly adjust the size and layout of the partitions. Furthermore, the tray depth is unreasonable, making it easy for taller items to tip over or for items at the bottom to be inconvenient to retrieve.

Method used

The inner wall of the disc is equipped with a snap-on clamp and a movable insertable baffle, which, together with the silicone partition, allows the partition to be tilted and stretched to expand or change the size of the mesh partition, adapting to the needs of medical items of different sizes and quantities.

Benefits of technology

It enables flexible adjustment of the injection tray partitions, improves space utilization, enhances the stability of item placement and ease of operation, and avoids items tipping over and being inconvenient to retrieve.

✦ Generated by Eureka AI based on patent content.

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Abstract

This utility model relates to the field of medical technology, specifically to a movable injection tray. It includes a tray body with symmetrically arranged clamps and snaps on the inner wall. A baffle is provided between the gaps of the two clamps, and a partition is provided between the baffle and the inner wall of the tray. The partition is generally mesh-like and made of silicone. The mesh layer of the partition is used to fix medical items, and the partition can be stretched to expand the size of the internal mesh layer. The partition can tilt and stretch as the baffle moves; thus, the internal mesh of the partition can be adjusted according to the size and quantity of the actual medical items. By using a silicone mesh partition, utilizing its good elasticity, after placing medical items, the mesh wall will deform due to the pressure of the items, forming a clamping and fixing effect on the items. At the same time, the partition can tilt and stretch as the baffle moves, and the mesh will present different heights accordingly. This linkage change can adapt to the placement of items of different heights.
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Description

Technical Field

[0001] This utility model relates to the field of medical technology, and more specifically, to a movable injection tray. Background Technology

[0002] Injection trays are highly practical instruments in medical settings. They are typically made of durable and easy-to-clean materials and have multiple compartments for storing syringes, medications, disinfectants, and other injection-related items. They are equipped with casters at the bottom for easy movement in different locations such as wards and treatment rooms. Some trays also have height adjustment functions, which helps medical staff to perform injection procedures conveniently, efficiently, and in a standardized manner, maintain a sterile environment, and provide better medical services to patients.

[0003] In existing portable injection trays, the partitions are often fixed. This makes it difficult to flexibly adjust the size and layout of the partitions according to the specific quantity and size requirements of various types and specifications of syringes, medicine bottles of different shapes and sizes, and various auxiliary supplies of different sizes in actual medical operations. Moreover, if the tray is too shallow, it is easy to tip over when placing taller items such as larger infusion bottles or longer syringes. If it is too deep, it will be inconvenient for medical staff to reach the bottom items, requiring them to bend over or reach with difficulty, which increases the inconvenience and potential risks in medical work.

[0004] To address this, we propose a movable injection tray. Utility Model Content

[0005] This utility model provides a movable injection tray, which solves the problems mentioned in the background art by incorporating a clamp with snaps, a baffle that can be movably inserted into the gap of the clamp, and a mesh-like silicone partition on the inner wall of the tray. The partition can be tilted and stretched in cooperation with the baffle to expand the size of the internal mesh layer. Furthermore, the different sizes of the internal mesh within the partition are used to fix medical items of different sizes, thereby solving the problems mentioned in the background art.

[0006] The fixed partitions of the movable injection tray make it difficult to flexibly adjust the size and layout of the partitions, and the unreasonable depth of the tray makes it easy to tip over when placing tall items or make it inconvenient to retrieve items at the bottom.

[0007] To achieve the above objectives, this utility model provides the following technical solution:

[0008] A movable injection tray includes a tray body, wherein clamps and snaps are symmetrically arranged on the inner wall of the tray body, a baffle is provided between the gaps of the two clamps, and a partition is provided between the baffle and the inner wall of the tray body;

[0009] The partition is generally mesh-shaped and made of silicone. The mesh partition is used to fix medical items, and the partition can be stretched to expand the size of the internal mesh partition.

[0010] Based on this, the partition is fixedly connected to the inner wall of the disc body on the side opposite to the baffle, and there are gaps between the two sides of the partition and the two sides of the inner wall of the disc body. The partition can tilt and stretch as the baffle moves.

[0011] Preferably, the internal grid of the partition decreases in size from large to small, and the multiple grids of different sizes of the partition are used to fix medical items of different sizes.

[0012] Preferably, the clamping plate has an overall T-shaped structure, the clamping plate has a gap inside, a baffle is movably inserted between the gaps of the two clamping plates, and a snap fastener is provided between the clamping plate and the inner wall of the disc.

[0013] Preferably, the snap fastener includes a female snap and a female snap, the female snap being disposed inside the clamping plate, and a plurality of female snaps being evenly disposed on the inner walls of both sides of the disc body, the female snaps being connected to the female snap.

[0014] Preferably, anti-slip pads are fixedly connected to all four outer walls of the disc body, the anti-slip pads extend along the outer wall of the disc body to the bottom, the anti-slip pads are made of silicone, and the outer wall of the anti-slip pads has multiple protrusions.

[0015] Preferably, the outer wall of the disc is provided with two hooks, the two hooks are in a parallel position, and the bottom of the hooks is provided with a slider.

[0016] Compared with the prior art, the beneficial effects of this utility model are:

[0017] 1. In a movable injection tray, symmetrical T-shaped clamps with internal gaps are set on the inner wall of the tray. Baffles are movably inserted between the gaps. The clamps are connected to the inner wall of the tray by snap fasteners consisting of female and male buckles. In addition, silicone mesh partitions are fixedly connected to the inner wall of the tray on the opposite side of the baffle, with gaps between the partitions and the inner walls of the tray on both sides. The partitions can tilt and stretch as the baffles move. In this way, the size of the internal mesh of the partitions can be changed according to the size and quantity of the actual medical items. This solves the problem that the fixed partitions of existing movable injection trays are difficult to adjust inflexibly in terms of size and layout. It allows medical staff to flexibly allocate space as needed, improve space utilization, and avoid crowded or wasted space.

[0018] 2. In a movable injection tray, a silicone mesh partition is used. Utilizing its excellent elasticity, the mesh wall deforms under pressure after medical items are placed inside, clamping and securing them. Simultaneously, the partition can tilt and stretch as the baffle moves, causing the mesh to vary in height. This coordinated change accommodates items of different heights, ensuring that both taller items (such as large infusion bottles) and shorter items (such as syringes) can be placed appropriately. This effectively solves the problem of taller items easily tipping over or items at the bottom being difficult to retrieve due to an unreasonable tray depth, enhancing the stability of item placement and improving operational convenience and safety. Attached Figure Description

[0019] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0020] Figure 2 This is a side view of the planar tensile structure of this utility model;

[0021] Figure 3 This is a side view of the inclined plane stretching structure of this utility model;

[0022] Figure 4 This is a schematic diagram of the fixing structure of this utility model;

[0023] Figure 5 This is a schematic diagram of the snap fastener structure of this utility model;

[0024] Figure 6 This is a schematic diagram of the hook telescopic structure of this utility model.

[0025] The components represented by each number in the attached diagram are listed below: 1. Disc body; 11. Anti-slip pad; 12. Clamping plate; 13. Snap fastener; 131. Female snap fastener; 132. Female snap fastener; 14. Baffle; 15. Divider; 16. Hook; 160. Slider. Detailed Implementation

[0026] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model. Example

[0027] Currently, the fixed partitions of the removable injection tray make it difficult to flexibly adjust the partition size and layout, and the unreasonable depth of tray 1 causes issues such as easy tipping over when tall items are placed on it or inconvenience in retrieving items from the bottom; please refer to Figure 1 - Figure 3A movable injection tray is shown, including a tray body 1. The inner wall of the tray body 1 is symmetrically provided with clamping plates 12 and snap buttons 13. A baffle 14 is provided between the gaps of the two clamping plates 12. A partition 15 is provided between the baffle 14 and the inner wall of the tray body 1.

[0028] The partition 15 is generally grid-shaped and made of silicone. The grid layer of the partition 15 is used to fix medical items. The partition 15 can be stretched to expand the size of the internal grid layer.

[0029] The partition 15 is fixedly connected to the inner wall of the disc body 1 on the side opposite to the baffle 14. There are gaps between the two sides of the partition 15 and the inner walls of the two sides of the disc body 1. The partition 15 can be tilted and stretched as the baffle 14 moves.

[0030] The internal grid of the partition 15 decreases in size from large to small, and the multiple grids of different sizes in the partition 15 are used to fix medical items of different sizes.

[0031] By setting a specific structure on the inner wall of the tray 1, the function of flexible partitioning and adaptation to the placement of different items is realized. Since the partition 15 is grid-shaped, its function is to divide the internal space of the tray 1 into multiple relatively independent compartments. The purpose is to classify and fix various medical items, avoid mutual compression and confusion between items, and facilitate medical staff to quickly and accurately find the required items. The partition 15 is made of silicone. With the good elasticity and flexibility of silicone, when medical items are placed, the items will cause a certain deformation of the grid wall. Then, the grid will form an effective clamping and fixing effect on the items by its own elasticity, ensuring that the items remain stable during the movement of the injection tray and are not easy to shift or tip over.

[0032] When medical staff need to adjust the position of the baffle 14 according to the actual size and quantity of the items, the partition 15 will tilt and stretch accordingly, changing the shape and size of its grid. This allows for the placement of larger items by pushing the baffle 14 to stretch the partition 15, thereby expanding the size of the grid compartments in the corresponding area and flexibly adjusting to create a suitable space to accommodate the items. Moreover, the tilting of the partition 15 will create grid areas of different heights, allowing items of different heights, such as taller infusion bottles and shorter syringes, to have suitable placement positions, effectively solving the placement inconvenience caused by the fixed depth of the tray 1.

[0033] Furthermore, the internal grid of the partition 15 decreases in size from large to small, making it better suited for medical items of different sizes. Larger grids can be used to place larger medicine bottles and larger packages of infusion supplies, while smaller grids are suitable for placing relatively small items such as syringes and small-dose medicine bottles. This makes full use of the space of the partition 15, enabling the orderly fixation and reasonable storage of various medical items, and further improving the utilization efficiency of the internal space of the injection tray as well as the rationality and stability of item placement.

[0034] Additionally, see Figure 4 and Figure 5 As shown, the clamp 12 has a T-shaped structure and a gap inside. A baffle 14 is inserted between the gaps of the two clamps 12. A snap fastener 13 is provided between the clamp 12 and the inner wall of the disc body 1. The clamp 12, snap fastener 13 and baffle 14 are designed to be detachable, so that they can be separated and disinfected independently.

[0035] The snap fastener 13 includes a female snap fastener 131 and a female snap fastener 132. The female snap fastener 131 is located inside the clamping plate 12. Multiple female snap fasteners 132 are evenly arranged on the inner walls of both sides of the disc body 1. The female snap fasteners 132 are connected to the female snap fastener 131. The connection between the female snap fastener 131 and the female snap fastener 132 of the snap fastener 13 has a smooth, dead-angle-free curved surface to avoid contaminant residue. At the same time, the female snap fastener 131 and the female snap fastener 132 are made of medical-grade polypropylene (PP) material, with a smooth, non-porous surface that can withstand repeated sterilization operations.

[0036] The clamping plate 12 has a T-shaped structure with gaps inside, providing a suitable insertion space and movement track for the baffle 14, allowing the baffle 14 to be flexibly inserted and smoothly moved between the gaps of the two clamping plates 12. Since the two clamping plates 12 are symmetrically arranged on the inner wall of the disc body 1, after inserting the baffle 14 between them, an adjustable frame structure is constructed, laying the foundation for the flexible adjustment of the subsequent partition 15.

[0037] The snap fastener 13, which is provided between the clamp 12 and the inner wall of the disc body 1, can securely fix the clamp 12 to the inner wall of the disc body 1, ensuring the stability of the entire structure and preventing the clamp 12 from shaking or shifting at will, thus providing a reliable support frame for the movement of the baffle 14. On the other hand, the snap fastener 13 connection facilitates disassembly and installation. When it is necessary to clean or repair the inside of the injection disc, or to adjust or replace the clamp 12, baffle 14, and other structures according to actual use, it can be easily operated, making it convenient for medical staff to perform corresponding maintenance work.

[0038] When medical staff operate the baffle 14 to adjust the partition 15, the clamp 12 structure connected by the snap 13 can stably support the movement of the baffle 14, ensuring that the movement of the baffle 14 in the gap is smooth and orderly, thereby driving the partition 15 to achieve corresponding changes such as tilting and stretching. In this way, the partition 15 can be used to flexibly change the partition layout inside the tray 1 to adapt to the placement needs of medical items of different sizes and quantities, and finally realize the functions of flexible partitioning, reasonable placement of items, and convenient use and maintenance of the entire movable injection tray.

[0039] See Figure 1 and Figure 6As shown, the outer wall of the disc body 1 is provided with two hooks 16, which are in a parallel position. The bottom of the hooks 16 is provided with a slider 160. The slider 160 can move up and down inside the disc body. In the initial state, when the slider 160 is close to the bottom inside the disc body 1, the hooks 16 will retract inside the disc body 1 to prevent the hooks 16 from extending arbitrarily when not in use, and to prevent them from interfering with the surrounding environment or accidentally snagging on other objects.

[0040] When hook 16 is needed, medical staff can pull hook 160 upwards to pull it out of the disc 1 along slider 160. Since slider 160 is circular, after hook 16 is pulled out, slider 160 can rotate inside the disc 1 by rotating hook 16, so that the hanging direction of hook 16 can be flexibly adjusted. This makes it convenient to hang hook 16 on railings, crossbars and other supports at different angles and in different directions, thus adapting to various different usage scenarios.

[0041] Meanwhile, the slider 160 also plays an important role in positioning the height of the hook 16. It can limit the degree to which the hook 16 can be pulled out, preventing the hook 16 from completely detaching from the disc body 1, ensuring that the hook 16 always remains connected to the disc body 1, and maintaining the integrity of the entire structure. When the hook 16 is hung on a railing or other object, the weight of the injection disc itself will pull it downward, keeping the hook 16 in a stretched state, thus firmly hanging it on the support, ensuring the stability of the injection disc suspension, and facilitating medical operations in the corresponding position. When it is not needed, the hook 16 loses the tension generated by the weight of the injection disc, and can retract back into the disc body 1 with the help of the slider 160, returning to its initial storage state. This does not occupy extra space and is convenient for the next use. The whole process, through the coordinated cooperation of the slider 160 and the hook 16, improves the convenience and flexibility of using the hook 16 and the practicality of the injection disc in different placement methods.

[0042] The anti-slip pads 11, which are fixedly connected to the four outer walls of the disc body 1, are designed to cover the surface of the disc body 1 in contact with the outside in all directions, so as to maximize the anti-slip effect. The use of silicone material takes advantage of the good friction and softness of silicone itself. When the injection disc is placed on various tabletops, desktops and other supporting surfaces, the silicone anti-slip pads 11 can fit tightly with the contact surface, increasing the coefficient of friction between the two.

[0043] Additionally, see Figure 1As shown, by setting multiple protrusions on the outer wall of the anti-slip pad 11, the microscopic contact area between the anti-slip pad 11 and the contact surface is further increased, which further enhances the friction. Whether the injection tray is placed in a static state or when medical staff push or move the injection tray, it can effectively prevent the tray 1 from easily sliding or shifting due to accidental force, ensuring the relative fixation of the injection tray's position during operation and avoiding interference with the ongoing medical operation caused by the sliding of the tray 1. For example, it can prevent items from falling or being overturned when the tray 1 moves.

[0044] In addition, both the silicone partition 15 and the anti-slip pad 11 are resistant to high temperature and high pressure (above 121℃) and chemical disinfectants (such as chlorine-containing disinfectant and alcohol). Through the detachable design of the snap 13 and the disinfection-resistant materials of the partition 15 and the anti-slip pad 11, the injection tray can be directly sterilized by high temperature and high pressure or chemical disinfection, which meets the requirements of hospital infection control.

[0045] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements, but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus.

[0046] 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 movable injection tray, comprising a tray body (1), characterized in that: The inner wall of the disc body (1) is symmetrically provided with clamps (12) and snaps (13), and a baffle (14) is provided between the gaps of the two clamps (12). A partition (15) is provided between the baffle (14) and the inner wall of the disc body (1). The partition (15) is generally grid-shaped and made of silicone. The grid layer of the partition (15) is used to fix medical items. The partition (15) can be stretched to expand the size of the internal grid layer.

2. The movable injection tray according to claim 1, characterized in that: The partition (15) is fixedly connected to the inner wall of the disc (1) on the side opposite to the baffle (14). There are gaps between the two sides of the partition (15) and the two sides of the inner wall of the disc (1). The partition (15) can be tilted and stretched as the baffle (14) moves.

3. The movable injection tray according to claim 1, characterized in that: The internal grid of the partition (15) decreases in size from large to small, and the multiple grids of different sizes of the partition (15) are used to fix medical items of different sizes.

4. The movable injection tray according to claim 1, characterized in that: The clamp (12) is T-shaped in general. There is a gap inside the clamp (12). A baffle (14) is inserted between the gaps of the two clamps (12). A snap (13) is provided between the clamp (12) and the inner wall of the disc (1).

5. The movable injection tray according to claim 4, characterized in that: The snap fastener (13) includes a female snap fastener (131) and a female snap fastener (132). The female snap fastener (131) is located inside the clamping plate (12). Multiple female snap fasteners (132) are evenly arranged on the inner walls of both sides of the disc body (1). The female snap fasteners (132) are connected to the female snap fastener (131).

6. The movable injection tray according to claim 1, characterized in that: The four outer walls of the disc (1) are fixedly connected with anti-slip pads (11). The anti-slip pads (11) extend along the outer wall of the disc (1) to the bottom. The anti-slip pads (11) are made of silicone. The outer wall of the anti-slip pads (11) has multiple protrusions.

7. The movable injection tray according to claim 1, characterized in that: The inner wall of the disc body (1) is provided with two hooks (16), the two hooks (16) are in a parallel position, and the bottom of the hooks (16) is provided with a slider (160).