Improved tray for placing medical syringes and medicine bottles

By designing the reasonable placement of components and disinfection components in the pallet, the problems of unreasonable classification and incomplete disinfection of syringes in traditional pallets are solved, operating efficiency and safety are improved, and the cleaning and stability of the inside of the pallet are ensured.

CN120227531APending Publication Date: 2025-07-01THE THIRD AFFILIATED HOSPITAL OF PLA NAVAL MEDICAL UNIVERSITY
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Patent Information

Application Number
CN202510511999.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-23
Publication Date
2025-07-01

AI Technical Summary

Technical Problem

The design of traditional medical syringes and drug bottles is unreasonable, there is a lack of syringe classification areas, incomplete disinfection, poor sealing performance, insufficient anti-slip performance, which affects operating efficiency and safety.

Method used

The properly designed placement components include the medicine bottle grid, the use grid and the needle grid. The ultraviolet disinfection lamp and the mirror reflector plate are used, and the sealing strips and anti-slip rubber pads are used to ensure classified placement and comprehensive disinfection to prevent dust and bacteria from entering.

Benefits of technology

The rational classification and fixation of the syringe is achieved, the operation efficiency is improved, the cleaning and stability of the inside of the tray is ensured, bacterial growth is reduced, and the safety of medical items is ensured.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an improved medical syringe and medicine bottle placement tray which comprises a box body, a box cover, a placement assembly, an expansion assembly and a disinfection assembly, the box cover is rotatably arranged on one side of the box body, and the box cover is made of a transparent material; the placing assembly is arranged at one end in the box body and is used for placing medicine bottles, needle tubes and needle tubes which are in use and are inserted into the medicine bottles; the expansion assembly is arranged at the other end in the box body and used for containing needle tubes and other medical products. The disinfection assembly is arranged at the bottom of the box body and used for disinfecting the interior of the box body. Therefore, medicine bottle grids, use grids and needle tube grids of the placing assembly are reasonably classified, elastic separation strips are matched with medicine bottles, needle tubes are fixed by the needle tube grids, a chute is convenient to take, the disinfection assembly is comprehensively disinfected by an ultraviolet lamp and a reflecting plate, a sealing rubber strip is used for preventing dust, a non-slip mat is used for keeping stability, and sanitation and operation efficiency are guaranteed.
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Description

Technical Field

[0001] This application relates to the technical field of medical devices, and particularly relates to an improved medical syringe and a drug bottle placement tray. Background Art

[0002] In medical work, the placement and management of syringes and drug bottles are crucial. Traditional medical syringes and drug bottle placement trays have many deficiencies.

[0003] On the one hand, the design of their placement areas is not reasonable enough. Usually, there is a lack of a dedicated placement area for the syringe needles inserted into the drug bottles that are in use. During the operation, doctors often need to temporarily find a suitable position to place such needles, which not only wastes time but may also cause needle contamination or damage due to improper placement. Moreover, for drug bottles of different specifications and various types of syringes, traditional trays cannot classify and place them well and adapt to them, easily causing the drug bottles and syringes to be placed in a mess, increasing the difficulty for doctors to retrieve them and the probability of errors.

[0004] In addition, traditional trays lack effective disinfection measures. In a medical environment, bacteria are prone to grow inside the trays. If disinfection cannot be carried out in a timely and effective manner, it will contaminate the syringes and drug bottles placed therein, thus affecting medical safety. Moreover, some existing disinfection methods may not be able to disinfect all corners inside the trays comprehensively, resulting in disinfection dead corners.

[0005] At the same time, traditional trays also have obvious defects in terms of sealing performance, anti-slip performance, and convenience for medical staff to operate. For example, poor sealing is likely to allow external dust and bacteria to enter the inside of the trays; there is a lack of anti-slip design when placing items, and the items are prone to slide and collide and get damaged during the movement of the trays; there is no convenient structure for taking and carrying, increasing the work burden of medical staff.

[0006] In summary, there is an urgent need for an improved medical syringe and a drug bottle placement tray to solve the above problems. Summary of the Invention

[0007] This application aims to solve at least one of the technical problems in the related art to some extent.

[0008] To this end, the first object of this application is to provide an improved medical syringe and a drug bottle placement tray. The settings of the drug bottle grid, the using grid, and the syringe grid in the placement assembly can reasonably classify and place drug bottles, the combination of syringes in use, and different types of syringes. The elastic partition strips can adjust the size of the placement area of the drug bottle grid to adapt to drug bottles of different specifications. The sponge cushion and grooves in the syringe grid can effectively fix the syringes, avoiding collision and damage. The inclined groove design facilitates doctors to easily take items, improving the operation efficiency.

[0009] The second objective of this application is to provide an improved medical syringe and a medicine bottle placement tray. The disinfection component uses an ultraviolet disinfection lamp and a mirror reflector in cooperation, which can reflect ultraviolet rays to all corners inside the box body, achieve comprehensive disinfection, effectively reduce the growth of bacteria, and ensure the safety of the placed items.

[0010] The third objective of this application is to provide an improved medical syringe and a medicine bottle placement tray. The sealing rubber strip between the box cover and the box body can prevent external dust and bacteria from entering, and the anti-slip rubber pads at the bottoms of the grids of the expansion component can prevent items from sliding, ensuring the stability and hygiene during the use of the tray.

[0011] To achieve the above objectives, an embodiment of the first aspect of this application proposes an improved medical syringe and a medicine bottle placement tray, which includes a box body, a box cover, a placement component, an expansion component, and a disinfection component. Among them, the box cover is rotatably arranged on one side of the box body, and the box cover is made of a transparent material; the placement component is arranged at one end inside the box body and is used for placing medicine bottles, syringes, and the syringes inserted into the medicine bottles that are in use; the expansion component is arranged at the other end inside the box body and is used for placing syringes and other medical products; the disinfection component is arranged at the bottom of the box body and is used for disinfecting the inside of the box body.

[0012] For the improved medical syringe and medicine bottle placement tray according to the embodiment of this application, the medicine bottle grid, the use grid, and the syringe grid of the placement component are reasonably classified. The elastic partition strips are adapted to the medicine bottles, the syringe grid fixes the syringes, and the inclined slots are convenient for taking. The disinfection component uses an ultraviolet lamp and a reflector for comprehensive disinfection, the sealing rubber strip prevents dust, and the anti-slip pads ensure stability, guaranteeing hygiene and operation efficiency.

[0013] In addition, the improved medical syringe and medicine bottle placement tray proposed above according to this application may also have the following additional technical features:

[0014] In an embodiment of this application, the placement component includes a medicine bottle grid, a use grid, a syringe grid, and inclined slots. Among them, the medicine bottle grid is arranged on one side inside the box body and is used for placing various medicine bottles; the use grid is connected to the medicine bottle grid and is used for placing the combination of the syringe inserted into the medicine bottle that is in use; the syringe grid is arranged on the other side inside the box body and is connected to the use grid and is used for placing different models of syringes used during the dressing change process; the inclined slots are respectively arranged on the side edges of the use grid and the syringe grid. When it is convenient for a doctor to take, the fingers can be inserted into the inclined slots to easily take out the items from the grid.

[0015] In one embodiment of the present application, the expansion component includes square grids, blank spaces, long grids, and partition plates. Among them, the square grids are arranged on one side of the other end inside the box body; the blank spaces are connected to the square grids and are used together with the square grids to place other medical products; the long grids are connected to the blank spaces and are used to place other unused syringes; the partition plates are arranged between the placement component and the expansion component.

[0016] In one embodiment of the present application, the disinfection component includes a plurality of ultraviolet disinfection lamps and a plurality of reflector plates. Among them, the plurality of ultraviolet disinfection lamps are respectively arranged at the bottom of the box body; the plurality of reflector plates are respectively arranged at the top inside the box body and one side of the box cover.

[0017] In one embodiment of the present application, a plurality of elastic partition strips are arranged in the medicine bottle grid. The elastic partition strips divide the medicine bottle grid into a plurality of placement areas with adjustable sizes to adapt to the placement of medicine bottles of different specifications.

[0018] In one embodiment of the present application, a sponge cushion layer is arranged at the bottom of the syringe grid. A plurality of grooves adapted to the syringes are formed on the sponge cushion layer for fixing the syringes to prevent the syringes from colliding and being damaged during the movement of the tray.

[0019] In one embodiment of the present application, anti-slip rubber pads are arranged at the bottoms of the square grids, the blank spaces, and the long grids to prevent the items placed therein from sliding.

[0020] In one embodiment of the present application, the surface of the reflector plate is a mirror structure. When the ultraviolet disinfection lamp is turned on to emit ultraviolet rays, the reflector plate with the mirror structure can reflect the ultraviolet rays to the corners and areas inside the box body that cannot be directly irradiated by the ultraviolet rays, thereby achieving comprehensive disinfection of the inside of the box body.

[0021] In one embodiment of the present application, a sealing rubber strip is arranged between the box cover and the box body. When the box cover is closed, the sealing rubber strip can prevent external dust and bacteria from entering the inside of the box body.

[0022] The advantages of the present application compared with the existing technology are as follows:

[0023] (1) The settings of the medicine bottle grid, the using grid, and the syringe grid in the placement component can reasonably classify and place medicine bottles, the combination of syringes in use, and syringes of different models. The elastic partition strips can adjust the size of the placement area of the medicine bottle grid to adapt to medicine bottles of different specifications. The sponge cushion layer and grooves of the syringe grid can effectively fix the syringes to avoid collision damage. The inclined groove design facilitates doctors to easily take items, improving the operation efficiency.

[0024] (2) The disinfection component uses an ultraviolet disinfection lamp in cooperation with a mirror reflector, which can reflect ultraviolet rays to all corners inside the box body, achieving comprehensive disinfection, effectively reducing the growth of bacteria, and ensuring the safety of the placed items.

[0025] (3) The sealing rubber strip between the box cover and the box body can prevent external dust and bacteria from entering. The anti-slip rubber pads at the bottoms of the grids of the expansion component can prevent items from sliding, ensuring the stability and hygiene during the use of the tray.

[0026] The additional aspects and advantages of the present application will be partially given in the following description, partially become apparent from the following description, or be understood through the practice of the present application. Brief Description of the Drawings

[0027] The above-mentioned and / or additional aspects and advantages of the present application will become apparent and easy to understand from the following description of the embodiments in conjunction with the drawings, where:

[0028] Figure 1 is a perspective view of an improved medical syringe and a drug bottle placement tray according to an embodiment of the present application;

[0029] Figure 2 is a schematic structural view of an improved medical syringe and a drug bottle placement tray according to an embodiment of the present application;

[0030] Figure 3 is a wireframe view of an improved medical syringe and a drug bottle placement tray according to an embodiment of the present application;

[0031] Figure 4 is a schematic structural view of the placement component and the expansion component of an improved medical syringe and a drug bottle placement tray according to an embodiment of the present application.

[0032] As shown in the figure: 1. Box body; 2. Box cover; 3. Placement component; 4. Expansion component; 5. Disinfection component; 6. Sealing rubber strip; 31. Medicine bottle grid; 32. Use grid; 33. Syringe barrel grid; 34. Inclined groove; 41. Square grid; 42. Empty grid; 43. Long grid; 44. Partition board; 51. Ultraviolet disinfection lamp; 52. Reflector; 311. Elastic partition strip; 331. Sponge cushion; 45. Anti-slip rubber pad. Detailed Description of the Embodiments

[0033] Embodiments of the present application will be described in detail below. Examples of the embodiments are shown in the accompanying drawings, where the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below by referring to the drawings are exemplary and are intended to explain the present application, and should not be construed as a limitation of the present application. On the contrary, the embodiments of the present application include all variations, modifications, and equivalents that fall within the spirit and scope of the appended claims.

[0034] An improved medical syringe and a drug bottle placement tray according to an embodiment of the present application will be described below with reference to the accompanying drawings.

[0035] As Figures 1-4 shown, an improved medical syringe and a drug bottle placement tray according to an embodiment of the present application mainly consist of a box body 1, a box cover 2, a placement component 3, an expansion component 4, and a disinfection component 5. The working process thereof will be described in detail below.

[0036] It can be understood that the box body 1 serves as the main structure of the entire tray, providing a space for installing and placing other components. The box cover 2 is rotatably arranged on one side of the box body 1. When in use, medical staff can easily open or close the box body 1 by rotating the box cover 2. Since the box cover 2 is made of a transparent material, medical staff can clearly observe the placement of items inside the box body 1 without opening the box cover 2, facilitating quickly determining the location of the required items.

[0037] The placement component 3 is located at one end inside the box body 1 and is an area for placing medicine bottles, syringes, and the syringes inserted into the medicine bottles during use. In actual medical operations, medical staff place different types of medicine bottles and spare syringes here. The combination of a syringe inserted into a medicine bottle during use can also be reasonably placed in the placement component 3, facilitating access and operation at any time.

[0038] The expansion component 4 is arranged at the other end inside the box body 1 for placing other medical products, such as bandages, hemostatic cotton, etc., and for carrying syringes of other models, preventing medical staff from making multiple round trips.

[0039] The disinfection component 5 is installed at the bottom of the box body 1. To ensure the sanitary environment inside the box body 1 and prevent bacteria from growing and contaminating the placed items, the disinfection component 5 is regularly activated. After the disinfection component 5 is started, it will disinfect the inside of the box body 1 to ensure that the entire tray interior remains clean and sterile, guaranteeing the safety of items such as medicine bottles and syringes placed therein.

[0040] In an embodiment of the present application, as Figures 1-4As shown, the placement component 3 in the improved medical syringe and drug bottle placement tray undertakes the important functions of classifying and placing items and facilitating access. It is composed of a medicine bottle grid 31, a use grid 32, a syringe grid 33, and an inclined slot 34. The following details its working process.

[0041] It can be understood that the medicine bottle grid 31 is arranged on one side inside the box body 1. During the preparation stage of medical work, medical staff will neatly place various medicine bottles of different specifications and types in the medicine bottle grid 31. The medicine bottle grid 31 provides a relatively fixed storage area for the medicine bottles, preventing the medicine bottles from rolling or colliding randomly inside the box body 1 and ensuring the integrity and safety of the medicine bottles.

[0042] The use grid 32 is connected to the medicine bottle grid 31. When medical staff start medical operations and insert the syringe into the medicine bottle to draw liquid medicine, etc., the combination of the syringe being used and the medicine bottle inserted will be placed in the use grid 32 at this time. The use grid 32 is adjacent to the medicine bottle grid 31, facilitating medical staff to pick up a new medicine bottle from the medicine bottle grid 31 at any time during the operation, and at the same time, it can also place the combination in use in an orderly manner to avoid chaos.

[0043] The syringe grid 33 is arranged on the other side inside the box body 1 and is connected to the use grid 32. During the dressing change process, according to different medication requirements, medical staff need to use syringes of different models. These syringes will be pre-classified and placed in the syringe grid 33. The design of connecting the syringe grid 33 to the use grid 32 enables medical staff to conveniently select the appropriate syringe from the syringe grid 33 during the operation and quickly apply it to the medicine bottle combination in use, improving the efficiency of the dressing change operation.

[0044] The inclined slots 34 are respectively arranged on the side edges of the use grid 32 and the syringe grid 33. When medical staff need to take out the combination of the syringe being used and inserted into the medicine bottle from the use grid 32, or take out the required model syringe from the syringe grid 33, they only need to insert their fingers into the inclined slots 34. The inclined slots 34 provide a space convenient for applying force, allowing medical staff to easily take out the items from the grid, avoiding the problem of difficult access due to the items being placed too deep or the grid walls being smooth, and further improving the convenience of the operation.

[0045] In an embodiment of the present application, as Figures 1-4 shown, the expansion component 4 in the improved medical syringe and drug bottle placement tray is mainly responsible for the extended carrying of medical supplies. It is composed of a square grid 41, a blank grid 42, a long grid 43, and a partition 44. The following details its working process.

[0046] It is understandable that the square grid 41 is arranged on one side at the other end inside the box body 1. During daily care and dressing change operations, medical staff often use various small items, such as small medical device accessories like common forceps and scissors, as well as drugs such as small packages of iodophor cotton balls and alcohol wipes. These can all be placed in the square grid 41.

[0047] The blank space 42 is connected to the square grid 41, and the two complement each other. In the nursing or dressing change process, items such as special-shaped wound dressings and small spray medicine bottles are placed in the blank space 42, greatly improving the flexibility of placing medical products.

[0048] The long grid 43 is connected to the blank space 42 and is specifically used for placing syringes of other models. In medical work, various models of syringes are used for different treatment needs. The design of the long grid 43 perfectly adapts to the characteristic that the syringes are relatively long. Placing different models of syringes in it can not only prevent the syringes from bending and being damaged, ensuring their usability, but also enable medical staff to clearly see the quantity and model of the syringes at a glance. This means that when performing relevant operations, medical staff do not need to make multiple round trips to find the appropriate model of syringe and can directly obtain it quickly from the long grid 43, greatly improving work convenience.

[0049] The partition board 44 is arranged between the placement component 3 and the expansion component 4. Its core function is to clearly separate the placement component 3 from the expansion component 4, preventing the medical products placed on both sides from being confused and interfering with each other. In this way, in the actual use scenario, medical staff can find various items and different models of syringes required during nursing and dressing change more quickly and accurately. At the same time, it helps to maintain the cleanliness and order inside the box body 1, comprehensively improving the practicality and reliability of the entire medical product storage device and providing strong support for efficient medical work.

[0050] In an embodiment of the present application, as Figures 1-4 shown, the disinfection component 5 plays a crucial disinfection role in the improved medical syringe and drug bottle placement tray. It is composed of a plurality of ultraviolet disinfection lamps 51 and a plurality of reflector plates 52. The following elaborates on its working process in detail.

[0051] It is understandable that a plurality of ultraviolet disinfection lamps 51 are respectively arranged at the bottom of the box body 1. When it is necessary to disinfect the inside of the box body 1, medical staff turn on the power switch of the ultraviolet disinfection lamps 51 (using the internal storage battery in the case of not having a power connection). The ultraviolet disinfection lamps 51 start to work and emit ultraviolet rays with bactericidal and disinfection effects. Since the ultraviolet disinfection lamps 51 are located at the bottom of the box body 1, the ultraviolet rays emitted by them can directly irradiate upward to some areas inside the box body 1, performing a preliminary disinfection treatment on some surfaces inside the tray.

[0052] A plurality of reflectors 52 are respectively arranged on the inner top of the box body 1 and one side of the box cover 2. When the ultraviolet rays emitted by the ultraviolet disinfection lamp 51 irradiate upward, a part of the ultraviolet rays will irradiate onto the reflector 52. The reflector 52 has special reflection performance and can reflect the ultraviolet rays irradiating on its surface to the corners and areas in the box body 1 that are not directly irradiated by the ultraviolet rays originally. For example, in some edge positions in the box body 1, certain gaps where the placement component 3 and the expansion component 4 are placed, etc., through the reflection of the reflector 52, the ultraviolet rays can reach these hidden areas to achieve comprehensive disinfection of the inside of the box body 1.

[0053] During the disinfection process, medical staff need to ensure that the box cover 2 is in a closed state, which can avoid harm to surrounding personnel caused by ultraviolet ray leakage, and at the same time ensure that a relatively enclosed space is formed inside the box body 1, so that the ultraviolet rays can be fully reflected and propagated inside the box to improve the disinfection effect. After the disinfection is completed, turn off the power switch of the ultraviolet disinfection lamp 51. At this time, the entire inside of the box body 1 has been irradiated by ultraviolet rays comprehensively, effectively reducing the growth of microorganisms such as bacteria and viruses, and ensuring the hygienic safety of items such as medicine bottles and syringes placed in the tray.

[0054] It should be noted that this device can be disinfected by plugging in the power supply, and at the same time, a storage battery is provided inside. Through the provided storage battery, it can be used without being connected to the power supply.

[0055] In an embodiment of the present application, as Figures 1-4 shown, the elastic partition strips 311 in the medicine bottle grid 31 play an important role in flexibly adapting to the placement of medicine bottles of different specifications in the improved medical syringe and medicine bottle placement tray. The following details its working process.

[0056] It can be understood that during the medical work preparation stage, medical staff need to place various medicine bottles into the medicine bottle grid 31. Since the medicine bottles have different specifications, such as different sizes and shapes, in order to enable the medicine bottles to be stably and reasonably placed in the medicine bottle grid 31, the elastic partition strips 311 play a key role.

[0057] The elastic partition strips 311 have elastic properties. Medical staff can manually adjust the positions of the elastic partition strips 311 according to the actual specifications of the medicine bottles to be placed. For example, when a larger - sized medicine bottle needs to be placed, medical staff can pull the adjacent elastic partition strips 311 apart to both sides, expanding the distance between them, so as to form a relatively large placement area, enabling the larger - sized medicine bottle to be smoothly placed and placed stably, and avoiding the medicine bottle from shaking or toppling in the medicine bottle grid 31.

[0058] On the contrary, when placing smaller-sized medicine bottles, medical staff can move adjacent elastic partition strips 311 closer to each other, reducing the spacing between them to create a smaller placement area suitable for the smaller-sized medicine bottles. This allows the small medicine bottles to also have a proper place within the medicine bottle grid 31, ensuring the neatness and stability of the placed medicine bottles.

[0059] The multiple elastic partition strips 311 work together to divide the medicine bottle grid 31 into multiple placement areas with adjustable sizes. These areas can be flexibly adjusted according to the specifications of different medicine bottles, enabling the medicine bottle grid 31 to adapt to the placement requirements of various medicine bottles. Whether it is a large-sized infusion bottle or a small-capacity ampoule bottle, a suitable placement position can be found within the medicine bottle grid 31, improving the flexibility of medicine bottle placement and the versatility of the tray.

[0060] In one embodiment of the present application, as Figures 1-4 shown, in the improved medical syringe and medicine bottle placement tray, the sponge cushion layer 331 at the bottom of the syringe grid 33 and the grooves formed therein play an important role in protecting the syringe. The following details its working process.

[0061] It can be understood that during the medical preparation stage, medical staff need to place syringes of different models into the syringe grid 33. The sponge cushion layer 331 provided at the bottom of the syringe grid 33 is soft in texture and has certain buffering properties. When medical staff place the syringe into the syringe grid 33, the sponge cushion layer 331 can provide a relatively soft support surface for the syringe, preventing the syringe from directly contacting the hard bottom of the syringe grid 33 and reducing the damage caused to the syringe by the impact force that may be generated during the placement action.

[0062] Multiple grooves adapted to the syringe are formed on the sponge cushion layer 331. The sizes and shapes of these grooves are specifically designed according to the specifications of common syringes. When medical staff place the syringe, they only need to place the syringe into the appropriate groove. The inner wall of the groove can closely fit the outer wall of the syringe, providing a stable support for the syringe from the side. This fitting design enables the syringe to be in a relatively fixed position within the groove and is not prone to left-right shaking or rolling.

[0063] During the use of the tray, it is inevitable that the tray will move, such as when medical staff transfer the tray from one room to another or slightly move the tray during the operation process. Since the syringe is firmly fixed in the groove of the sponge cushion layer 331, even if the tray moves, the syringe will not slide randomly within the syringe grid 33. This effectively prevents the syringes from colliding with each other and avoids situations where the syringe is damaged due to collision, such as the needle tip being bent or the syringe tube being broken, ensuring the integrity and usability of the syringe and providing guarantee for the smooth progress of medical operations.

[0064] In one embodiment of the present application, asFigures 1-4 As shown, in the improved medical syringe and medicine bottle placement tray, anti-slip rubber pads 45 are provided at the bottoms of the squares 41, spaces 42, and long grids 43 in the expansion component 4.

[0065] It can be understood that the anti-slip rubber pads 45 at the bottoms of the squares 41, spaces 42, and long grids 43 effectively prevent the placed items from sliding under various circumstances by increasing the friction force, greatly improving the stability of the expansion component 4 for storing medical items, and thus enhancing the practicability and reliability of the entire improved medical syringe and medicine bottle placement tray.

[0066] In an embodiment of the present application, as Figures 1-4 shown, in the improved medical syringe and medicine bottle placement tray, the reflector 52 and the ultraviolet disinfection lamp 51 in the disinfection component 5 work together to achieve comprehensive disinfection of the interior of the box body 1. The following details the working process.

[0067] It can be understood that when disinfecting the interior of the box body 1, medical staff first ensure that the box cover 2 is in a closed state to avoid ultraviolet leakage from harming surrounding personnel and to create a relatively enclosed environment for the disinfection process. Then, the ultraviolet disinfection lamp 51 provided at the bottom of the box body 1 is turned on.

[0068] After the ultraviolet disinfection lamp 51 is turned on, it emits ultraviolet light with a bactericidal and disinfecting effect. Since the position of the ultraviolet disinfection lamp 51 is fixed at the bottom of the box body 1, the ultraviolet light it emits can only directly irradiate some areas inside the box body 1, such as the area near the bottom of the box body 1 and some spaces that can be directly irradiated by the light in a straight line. However, there are some corners and areas inside the box body 1 where the ultraviolet light cannot directly irradiate due to structural obstruction and other reasons.

[0069] At this time, the reflector 52 provided at the top inside the box body 1 and on one side of the box cover 2 starts to play a role. The surface of the reflector 52 is a mirror structure. When the ultraviolet light irradiates on the mirror surface of the reflector 52, according to the principle of light reflection, the ultraviolet light will be reflected in other directions.

[0070] When installing the reflector 52, medical staff will adjust the angle of the reflector 52 according to the internal structure of the box body 1 and the position of the ultraviolet disinfection lamp 51. In this way, the reflector 52 can accurately reflect the ultraviolet light to the corners and areas inside the box body 1 that cannot be directly irradiated by the ultraviolet light, such as the gap between the placement component 3 and the expansion component 4, and the narrow space at the edge of the box body 1.

[0071] As the ultraviolet rays continuously reflect and propagate within the box body 1, the entire interior of the box body 1 can be covered by the ultraviolet rays, thereby achieving comprehensive disinfection of the interior of the box body 1. After a period of irradiation, the ultraviolet rays can effectively kill bacteria, viruses and other microorganisms within the box body 1, ensuring the hygienic safety of items such as medicine bottles and syringes placed within the box body 1.

[0072] After the disinfection is completed, the medical staff turn off the ultraviolet disinfection lamp 51. Through the collaborative work of the reflector 52 and the ultraviolet disinfection lamp 51, the tray can comprehensively and efficiently disinfect the interior, providing a clean and safe environment for the storage of medical items.

[0073] In an embodiment of the present application, as Figures 1-4 shown, in the improved medical syringe and medicine bottle placement tray, the sealing strip 6 between the box cover 2 and the box body 1 plays an important role in ensuring the hygienic environment inside the box body 1. The following details its working process.

[0074] It can be understood that in the daily medical use scenario, the medical staff will open or close the box cover 2 according to the operation requirements. When the items such as medicine bottles and syringes placed in the tray are not needed, the medical staff will close the box cover 2.

[0075] A sealing strip 6 is provided between the box cover 2 and the box body 1. The sealing strip 6 is usually arranged around the contact edge between the box cover 2 and the box body 1. When the medical staff rotate the box cover 2 towards the box body 1 and gradually close it, the sealing strip 6 first comes into contact with the edge of the box body 1.

[0076] As the box cover 2 is further closed, the box cover 2 will exert a certain pressure on the sealing strip 6. The sealing strip 6 is elastic and will deform under pressure, tightly filling the gap between the box cover 2 and the box body 1. This tightly fitting state forms an effective sealing barrier.

[0077] When the tray is in the closed state, dust and bacteria existing in the external environment are difficult to penetrate through the sealing barrier formed by the sealing strip 6 and enter the interior of the box body 1. This provides a relatively enclosed and clean storage environment for items such as medicine bottles and syringes placed within the box body 1, reduces the impact of external pollution on these medical items, reduces the risk of the items being contaminated, and ensures the hygiene and safety of the medical items.

[0078] Specifically, in the actual medical scenario, the process of the medical staff using the improved medical syringe and medicine bottle placement tray is as follows:

[0079] First, the medical staff approaches and places the tray. Since the lid 2 of the box is made of transparent material, even if it is not opened, the items inside the box body 1 can be clearly seen. If the medical staff needs to take an item, they rotate the lid 2, and the lid 2 rotates and opens around the side connected to the box body 1.

[0080] Enter the preparation stage. At the placement component 3, the medical staff neatly places medicine bottles of different specifications and types in the medicine bottle grid 31. According to the size of the medicine bottles, they manually adjust the distance between the elastic partition strips 311 to stably place the medicine bottles. At the same time, they classify and place syringes of different models in the syringe grid 33, and the bottom of the syringe is embedded in the matching groove on the sponge cushion layer 331.

[0081] When performing a medical operation, if it is necessary to draw out the liquid medicine, the medical staff takes a suitable syringe from the syringe grid 33, puts their finger into the inclined groove 34 to assist in taking it, inserts the syringe into the medicine bottle, and then places this combination in the use grid 32. The use grid 32 is adjacent to the medicine bottle grid 31, which is convenient for subsequent operations. If other medical supplies are needed, such as small medical device accessories, small packages of iodophor cotton balls, etc., they can be found in the square grid 41 of the expansion component 4; special-shaped wound dressings, small spray medicine bottles, etc. are in the empty grid 42. If syringes of other models are needed, they are clearly placed in the long grid 43 and can be taken by reaching out. The anti-slip rubber pads 45 at the bottoms of the square grid 41, the empty grid 42, and the long grid 43 ensure that the items will not slide randomly.

[0082] After the operation is completed, to ensure the hygiene inside the tray, the medical staff closes the lid 2. The sealing rubber strip 6 between the lid 2 and the box body 1 is deformed under pressure, tightly filling the gap and blocking the entry of external dust and bacteria. Then, the disinfection component 5 is turned on, and multiple ultraviolet disinfection lamps 51 arranged at the bottom of the box body 1 light up and emit ultraviolet rays. Some of the light directly irradiates some areas inside the box body 1. The reflector 52 arranged at the top inside the box body 1 and on one side of the lid 2 reflects the ultraviolet rays to the corners, gaps, and other places where the light cannot directly reach inside the box body 1, comprehensively killing bacteria, viruses, and other microorganisms. After the disinfection is completed, the ultraviolet disinfection lamps 51 are turned off, and thus a complete round of use and maintenance process is completed.

[0083] In summary, for an improved medical syringe and drug bottle placement tray according to the embodiment of the present application, the medicine bottle grid, the use grid, and the syringe grid of the placement component are reasonably classified. The elastic partition strips are adapted to the medicine bottles, the syringe grid fixes the syringes, the inclined groove facilitates taking, the disinfection component uses ultraviolet lamps and reflectors for comprehensive disinfection, the sealing rubber strip prevents dust, and the anti-slip pads ensure stability, guaranteeing hygiene and operation efficiency.

[0084] In the description of this specification, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, features defined with "first" and "second" may explicitly or implicitly include at least one of such features. In the description of this application, "a plurality" means at least two, such as two, three, etc., unless otherwise specifically defined.

[0085] In the description of this specification, descriptions with reference to terms such as "one embodiment", "some embodiments", "examples", "specific examples", or "some examples", etc. mean that the specific features, structures, materials, or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of this application. In this specification, the schematic descriptions of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described can be combined in a suitable manner in any one or more embodiments or examples. In addition, without contradiction, those skilled in the art can combine and combine the different embodiments or examples described in this specification and the features of different embodiments or examples.

[0086] Although the embodiments of this application have been shown and described above, it can be understood that the above embodiments are exemplary and should not be construed as limiting this application. Those of ordinary skill in the art can make changes, modifications, substitutions, and variations to the above embodiments within the scope of this application.

Claims

1. An improved tray for placing medical syringes and medicine bottles, characterized in that: It comprises a box body (1), a box cover (2), a placement component (3), an expansion component (4) and a disinfection component (5), wherein: The box cover (2) is rotatably arranged on one side of the box body (1), and the box cover (2) is made of a transparent material; The placement component (3) is arranged at one end inside the box (1) and is used to place medicine bottles, needle tubes, and needle tubes inserted into medicine bottles in use; The expansion component (4) is arranged at the other end of the box (1) and is used to place needles and other medical products; The disinfection component (5) is arranged at the bottom of the box (1) and is used to disinfect the interior of the box (1).

2. An improved medical syringe and medicine bottle placement tray according to claim 1, characterized in that: The placement component (3) comprises a medicine bottle grid (31), a use grid (32), a syringe grid (33) and a chute (34), wherein: The medicine bottle rack (31) is arranged on one side of the box body (1) and is used to place various medicine bottles; The use grid (32) is connected to the medicine bottle grid (31) and is used to place a combination of a needle tube being used and inserted into a medicine bottle; The needle tube grid (33) is arranged on the other side of the box (1), connected to the use grid (32), and is used to place needle tubes of different models used in the dressing change process; The inclined grooves (34) are respectively arranged on the side edges of the use grid (32) and the needle tube grid (33), so that when a doctor takes out an object, he or she can easily take the object out of the grid by inserting his or her fingers into the inclined grooves (34).

3. An improved medical syringe and medicine bottle placement tray according to claim 1, characterized in that: The expansion component (4) includes a square grid (41), a space (42), a long grid (43) and a partition plate (44), wherein: The grid (41) is arranged on one side of the other end of the box body (1); The space (42) is connected to the square (41) and is used together with the square (41) to place other medical products; The long grid (43) is connected to the empty grid (42) and is used to place other unused needle tubes; The partition plate (44) is arranged between the placement component (3) and the expansion component (4).

4. An improved medical syringe and medicine bottle placement tray according to claim 1, characterized in that: The disinfection assembly (5) comprises a plurality of ultraviolet disinfection lamps (51) and a plurality of reflection plates (52), wherein: A plurality of ultraviolet disinfection lamps (51) are respectively arranged at the bottom of the box (1); The plurality of reflection plates (52) are respectively arranged on the top of the box body (1) and on one side of the box cover (2).

5. An improved medical syringe and medicine bottle placement tray according to claim 2, characterized in that: A plurality of elastic partition strips (311) are arranged in the medicine bottle grid (31), and the elastic partition strips (311) divide the medicine bottle grid (31) into a plurality of placement areas with adjustable sizes to accommodate the placement of medicine bottles of different specifications.

6. An improved medical syringe and medicine bottle placement tray according to claim 2, characterized in that: A sponge cushion layer (331) is provided at the bottom of the needle tube grid (33), and a plurality of grooves adapted to the needle tubes are provided on the sponge cushion layer (331) for fixing the needle tubes to prevent the needle tubes from colliding with each other and being damaged during the movement of the tray.

7. An improved medical syringe and medicine bottle placement tray according to claim 3, characterized in that: The bottoms of the square grid (41), the empty grid (42) and the long grid (43) are all provided with anti-skid rubber pads (45) for preventing objects placed therein from sliding.

8. An improved medical syringe and medicine bottle placement tray according to claim 4, characterized in that: The surface of the reflective plate (52) is a mirror structure. When the ultraviolet disinfection lamp (51) is turned on to emit ultraviolet rays, the reflective plate (52) with a mirror structure can reflect the ultraviolet rays to corners and areas in the box (1) that are not directly irradiated by the ultraviolet rays, thereby achieving comprehensive disinfection of the interior of the box (1).

9. An improved medical syringe and medicine bottle placement tray according to claim 1, characterized in that: A sealing strip (6) is provided between the box cover (2) and the box body (1); when the box cover (2) is closed, the sealing strip (6) can prevent external dust and bacteria from entering the interior of the box body (1).