Spliced detection kit

The test kit, with its modular design, solves the problem of the inconvenience of carrying multiple kits, and enables stable storage and convenient carrying of multiple test tubes.

CN223878445UActive Publication Date: 2026-02-06ANHUI TONGZHI BIOLOGICAL ENG CO LTD
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Patent Information

Application Number
CN202520187103.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-06
Publication Date
2026-02-06
Estimated Expiration
2035-02-06

AI Technical Summary

Technical Problem

Existing reagent kits require multiple boxes when multiple reagents need to be placed, making them inconvenient to carry.

Method used

A modular test kit is designed, which uses multiple boxes stacked vertically and detachable installation via splicing blocks and control components, thereby improving portability.

Benefits of technology

This technology enables stable storage and convenient carrying of multiple test tubes, improving the portability of the reagent kit.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a splicing type detection kit which comprises a box body with a base arranged at the bottom end, splicing blocks mounted at the top end of the box body in a splicing manner through a mounting mechanism, and handles arranged at the top ends of the splicing blocks, a rotating groove is formed in the end face of the top end of the box body, and a containing groove for containing a reagent tube is formed in the bottom wall of the rotating groove. Four connecting grooves are formed in the top end face of the box body in a rectangular array mode, and a clamping groove is formed in the groove wall of each connecting groove. The mounting mechanism comprises connecting blocks which are arranged on the end faces of the bottom ends of the splicing blocks and can penetrate through the four connecting grooves, clamping blocks which movably penetrate through telescopic grooves formed in the side faces of the connecting blocks, and control assemblies which are arranged on the splicing blocks and can control the clamping blocks to penetrate through the telescopic grooves. When the plurality of box bodies are overlapped in the vertical direction, the adjacent box bodies are detachably mounted through the splicing blocks; according to the kit, a plurality of reagent tubes can be conveniently stored and carried by splicing a plurality of kits, so that the portability of the kit is improved.
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Description

Technical Field

[0001] This utility model relates to the field of test kit technology, specifically a splicing test kit. Background Technology

[0002] A test kit is a box used to hold chemical reagents for detecting chemical components, drug residues, virus types, etc. It is commonly used in hospitals and laboratories. Test kits were developed to free laboratory personnel from the tedious process of reagent preparation and optimization. Beforehand, corresponding checks and preparations should be carried out, and the test kit should be used in accordance with the corresponding instructions to obtain a satisfactory user experience and facilitate experiments. Respiratory test kits are used to detect the types of viruses that infect the respiratory tract.

[0003] Existing reagent kits all use a single box to hold the reagents. However, when there are too many reagents to hold, multiple kits are needed to hold the reagent tubes, which is inconvenient for carrying the kits. Utility Model Content

[0004] To address the aforementioned technical problems, this utility model provides a modular test kit, which facilitates the storage and carrying of multiple reagent tubes by splicing multiple kits together, thereby improving the portability of the kit.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a splicing test kit, comprising a box body with a base at the bottom end, a splicing block spliced ​​and mounted on the top of the box body via an installation mechanism, and a handle on the top of the splicing block. A rotating groove is provided on the top end face of the box body, and a placement groove for placing reagent tubes is opened on the bottom wall of the rotating groove. Four connecting grooves are arranged in a rectangular array on the top end face of the box body, and a slot is opened on the groove wall of each connecting groove. The installation mechanism includes a connecting block disposed on the bottom end face of the splicing block and capable of passing through the four connecting grooves, a slot that is movably passed through a telescopic groove opened on the side of the connecting block, and a control component disposed on the splicing block and capable of controlling the slot to pass through the telescopic groove.

[0006] When multiple boxes are stacked vertically, adjacent boxes can be detached and installed using splicing blocks.

[0007] Preferably, a rotating plate is rotatably provided at the opening position of the rotating slot. When the rotating plate rotates and passes through the opening position of the rotating slot, the first magnet provided on the bottom end face of the rotating plate and the second magnet provided on the bottom wall of the rotating slot are positioned opposite each other, and the magnetic poles of the first magnet and the second magnet are opposite at their adjacent ends.

[0008] Preferably, a telescopic groove is provided on the side of the connecting block near the handle.

[0009] Preferably, the control assembly comprises two fixed rods arranged symmetrically on both sides of the handle, and a control member arranged on the joint block and controlling the two fixed rods to move away from each other, each fixed rod is located above the two joint blocks, and the bottom side of the two ends of the fixed rod is connected to the top side of the clamping block through the connecting rod.

[0010] Preferably, the control member comprises a control rod arranged between the two fixed rods and penetrating the control slot opening arranged on the side of the joint block, a control block arranged in the joint block and arranged on the end of the fixed rod, a linkage rod arranged symmetrically on both sides of the control block and located between the fixed rod and the control block, and an elastic structure for arranging the control rod on the bottom wall of the control slot, the two ends of the linkage rod are rotatably connected to the middle of the fixed rod and the end of the control block.

[0011] Preferably, the elastic structure comprises a telescopic rod penetrating the bottom wall of the control slot at one end and connected to the control rod at the other end, and a limiting spring movably sleeved on the telescopic rod and connected to the bottom wall of the control slot and the end of the telescopic rod at both ends, when the limiting spring is in a normal elongation state, the control rod penetrates the opening of the control slot.

[0012] The utility model discloses a beneficial effect: a plurality of reagent tubes are placed in the placing groove, and a plurality of box bodies are stacked in the vertical direction, the box body with the joint block at the bottom is placed above another box body through the joint block, the connecting block arranged at the bottom of the joint block penetrates the connecting slot, and the clamping block arranged in the telescopic slot is driven to penetrate the clamping slot through the control assembly, so that the position between the box body and the box body is fixed, and the box body is installed above the box body through the joint block, and the stability of the reagent tube penetrating the placing groove is also convenient to guarantee, a plurality of reagent boxes are conveniently spliced to store and carry a plurality of reagent tubes, and the portability of the reagent box is improved. BRIEF DESCRIPTION OF DRAWINGS

[0013] The drawings are used to provide further understanding of the utility model and constitute a part of the specification, are used to explain the utility model together with the embodiments of the utility model, and do not constitute the limitation to the utility model, in the drawings:

[0014] Figure 1 It is the joint type detection reagent box stacking structure schematic diagram that the utility model proposes.

[0015] Figure 2 It is the joint type detection reagent box structure schematic diagram that the utility model proposes.

[0016] Figure 3 It is the box body structure schematic diagram of the utility model.

[0017] Figure 4 It is the installation mechanism structure schematic diagram of the utility model.

[0018] Figure 5 The control assembly structure schematic view of the utility model.

[0019] In the figure: 1, base; 2, box body; 3, splicing block; 4, control groove; 5, control rod; 6, handle; 7, rotating groove; 8, placing groove; 9, rotating plate; 10, connecting groove; 11, clamping groove; 12, connecting block; 13, telescopic groove; 14, clamping block; 15, fixed rod; 16, control block; 17, linkage rod; 18, telescopic rod; 19, limiting spring. DETAILED DESCRIPTION

[0020] In order to make the technical means, creation features, purposes and effects realized by the utility model easy to understand, the utility model is further described below in combination with specific embodiments and drawings, but the following embodiments are only preferred embodiments of the utility model, not all. Based on the embodiments in the embodiments, other embodiments obtained by those skilled in the art without creative labor belong to the protection scope of the utility model.

[0021] Please refer to Figures 1-5 A splicing type detection kit, comprising a box body 2 provided with a base 1 at the bottom end, a splicing block 3 splicingly installed on the top end of the box body 2 through a mounting mechanism, and a handle 6 provided on the top end of the splicing block 3, a rotating groove 7 is provided on the top end surface of the box body 2, a placing groove 8 for placing a reagent tube is formed in the bottom wall of the rotating groove 7, four connecting grooves 10 are formed in a rectangular array on the top end surface of the box body 2, and a clamping groove 11 is formed in the groove wall of each connecting groove 10, the mounting mechanism comprises a connecting block 12 provided on the bottom end surface of the splicing block 3 and capable of being penetrated into the four connecting grooves 10, a clamping block 14 movably penetrated into the telescopic groove 13 formed in the side surface of the connecting block 12, and a control assembly provided on the splicing block 3 and capable of controlling the clamping block 14 to penetrate into the telescopic groove 13.

[0022] When the plurality of box bodies 2 are stacked in the vertical direction, the adjacent box bodies 2 are detachably installed through the splicing block 3.

[0023] As Figures 1-5As shown, when the reagent tubes are placed for storage, a plurality of reagent tubes are placed in the plurality of placing grooves 8 opened in the box body 2, and when the box body 2 is stacked on the box body 2 on the base 1 after the reagent tubes are placed in the placing grooves 8, the box body 2 is placed on the top end face of the box body 2 through the splicing block 3 arranged at the bottom end. At this time, the connecting block 12 arranged at the bottom end face of the splicing block 3 is penetrated in the connecting groove 10 arranged at the top end of the box body 2 on the base 1, and before the connecting block 12 is penetrated in the connecting groove 10, the clamping block 14 is first penetrated in the telescopic groove 13 by controlling the assembly, and after the connecting block 12 is penetrated in the connecting groove 10, the control assembly is then released. At this time, the clamping block 14 penetrates out of the connecting block 12 and is penetrated in the clamping groove 11, so that the position between the splicing block 3 and the box body 2 arranged on the base 1 is fixed, facilitating the splicing between the box body 2 and the box body 2, facilitating the storage and transportation of more reagent tubes through the plurality of box bodies 2, facilitating the splicing between the plurality of box bodies 2, facilitating the storage and carrying of the plurality of reagent tubes, and improving the portability of the reagent box.

[0024] The rotating groove 7 is provided with a rotating plate 9 at the opening position. When the rotating plate 9 is penetrated in the opening position of the rotating groove 7, the first magnet arranged on the bottom end face of the rotating plate 9 is opposite to the second magnet arranged on the bottom wall of the rotating groove 7, and the adjacent poles of the first magnet and the second magnet are opposite.

[0025] As shown, Figure 3 After the plurality of reagent tubes are placed in the plurality of placing grooves 8, the rotating plate 9 is controlled to rotate to the opening position of the rotating groove 7, facilitating the stable placement of the plurality of reagent tubes in the placing grooves 8, and ensuring the stable storage and transportation of the reagent tubes.

[0026] The connecting block 12 is provided with a telescopic groove 13 on the side face adjacent to the handle 6.

[0027] The control assembly comprises two fixed rods 15 arranged on both sides and symmetrical to the handle 6, and a control member arranged on the splicing block 3 and controlling the two fixed rods 15 away from each other. Each fixed rod 15 is located above the two connecting blocks 12, and the bottom side faces of the two ends of the fixed rod 15 are respectively connected to the top side faces of the clamping blocks 14 through connecting rods.

[0028] As shown, Figures 1-5As shown, when the control block 14 is inserted into the telescopic groove 13, the control component drives the two fixing rods 15 to move away from each other. At this time, the four blocks 14 driven by the connecting rod on the fixing rod 15 are inserted into the telescopic groove 13. Then, the control connecting block 12 is inserted into the connecting groove 10. At this time, the control component drives the four blocks 14 to pass out of the telescopic groove 13 into the slot 11, which makes it easy to fix the splicing block 3 to the position above the box 2. Multiple boxes 2 can be stacked and carried in the vertical direction. By splicing multiple reagent kits together, it is easy to store and carry multiple reagent tubes, which improves the portability of the reagent kit.

[0029] The control components include a control rod 5, which is parallel to two fixed rods 15 and passes through the control groove 4 opening on the side of the splicing block 3; a control block 16, which is set inside the splicing block 3 and on the end of the fixed rod 15; a linkage rod 17, which is symmetrical about the control block 16 and is located between the fixed rod 15 and the control block 16 respectively; and an elastic structure that sets the control rod 5 on the bottom wall of the control groove 4. The two ends of the linkage rod 17 are rotatably connected to the middle of the fixed rod 15 and the end of the control block 16 respectively.

[0030] The elastic structure includes a telescopic rod 18 with one end inserted through the bottom wall of the control groove 4 and the other end connected to the control rod 5, and a limiting spring 19 movably sleeved on the telescopic rod 18 and connected at both ends to the bottom wall of the control groove 4 and the end of the telescopic rod 18, respectively. When the limiting spring 19 is in the normal extended state, the control rod 5 is inserted through the opening of the control groove 4.

[0031] like Figures 2-5 As shown, when the control block 14 needs to be inserted into the telescopic groove 13, press the control rod 5 to move it into the control groove 4. At this time, the limiting spring 19 on the telescopic rod 18 is compressed, and the two fixed rods 15 are moved away from each other by the two linkage rods 17. At this time, the connecting rod on the fixed rod 15 drives the block 14 to be inserted into the telescopic groove 13. At this time, the connecting block 12 can be inserted into the connecting groove 10. Then release the control rod 5. When the limiting spring 19 on the telescopic rod 18 returns to its normal extension state, the elastic force generated pushes the control rod 5 to the opening position of the control groove 4. At this time, with the help of the linkage rod 17, the block 14 is inserted from the telescopic groove 13 into the slot 11, which makes it easy to fix the position between the splicing block 3 and the box 2. This can realize the stable stacking and fixing of multiple boxes 2. By splicing multiple reagent kits together, it is easy to store and carry multiple reagent tubes, which improves the portability of the reagent kit.

[0032] The basic principle, main features and advantages of the present application are shown and described above. It should be understood by those skilled in the art that the present application is not limited by the above examples, and the above examples and descriptions in the specification are only preferred examples of the present application and are not intended to limit the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the claimed present application. The scope of protection of the present application is defined by the appended claims and their equivalents.

Claims

1. A spliced test kit, comprising a box body (2) provided with a base (1) at the bottom end, a splicing block (3) spliced and mounted on the top end of the box body (2) through a mounting mechanism, and a handle (6) provided on the top end of the splicing block (3), wherein a rotating groove (7) is provided on the top end face of the box body (2), and a placing groove (8) for placing a reagent tube is formed in the bottom wall of the rotating groove (7). The four connecting grooves (10) are provided with clamping grooves (11) on the groove walls. The plurality of box bodies (2) are stacked in the vertical direction, and the adjacent box bodies (2) are detachably installed through the splicing blocks (3).

2. The kit of claim 1, wherein: The rotating plate (9) is rotatably arranged at the opening position of the rotating groove (7), and when the rotating plate (9) is rotatably arranged at the opening position of the rotating groove (7), the first magnet arranged on the bottom end surface of the rotating plate (9) is opposite to the second magnet arranged on the bottom wall of the rotating groove (7), and the adjacent ends of the first magnet and the second magnet have opposite magnetic poles.

3. The kit of claim 2, wherein: The connecting block (12) is provided with a telescopic groove (13) on the side surface adjacent to the handle (6).

4. The kit of claim 3, wherein: The control assembly comprises two fixed rods (15) arranged in parallel and symmetrically with respect to the handle (6) on both sides, and a control member arranged on the splicing block (3) and controlling the two fixed rods (15) to move away from each other, each fixed rod (15) is located above the two connecting blocks (12), and the bottom side surfaces of the two ends of the fixed rod (15) are connected to the top side surfaces of the clamping blocks (14) through connecting rods.

5. The kit of claim 4, wherein: The control member comprises a control rod (5) arranged in parallel between the two fixed rods (15) and arranged in the opening of the control groove (4) provided on the side surface of the splicing block (3), a control block (16) arranged in the splicing block (3) and arranged on the end of the fixed rod (15), a linkage rod (17) symmetrically arranged on both sides with respect to the control block (16) and located between the fixed rod (15) and the control block (16), and an elastic structure for arranging the control rod (5) on the bottom wall of the control groove (4), the two ends of the linkage rod (17) are rotatably connected to the middle part of the rod body of the fixed rod (15) and the end part of the control block (16).

6. The kit of claim 5, wherein: The elastic structure comprises a telescopic rod (18) arranged at one end in the bottom wall of the control groove (4) and connected at the other end to the control rod (5), and a limiting spring (19) movably sleeved on the rod body of the telescopic rod (18) and connected at both ends to the bottom wall of the control groove (4) and the end part of the telescopic rod (18), when the limiting spring (19) is in the normal elongation state, the control rod (5) is arranged in the opening position of the control groove (4).