Multi-specification adjustable kit

By designing a multi-size adjustable reagent kit and utilizing a support ring and mounting rod structure, the problem of existing reagent kits being unable to stably store reagents of different sizes has been solved, achieving flexible storage and stable fixation of reagents of different sizes.

CN223591351UActive Publication Date: 2025-11-25XIAN AIWEIDI BIOTECHNOLOGY CO LTD
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Patent Information

Application Number
CN202423284371.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-30
Publication Date
2025-11-25
Estimated Expiration
2034-12-30

AI Technical Summary

Technical Problem

The current kits have fixed well sizes, which cannot stably store reagents of different sizes, thus requiring the replacement with kits of different sizes.

Method used

A multi-size adjustable reagent kit was designed. By setting a detachable support ring and mounting rod inside the box, combined with a fixing tube and clamping assembly, it is possible to flexibly store reagent tubes of different sizes.

Benefits of technology

It achieves stable storage of reagent tubes of different sizes, improves the applicability of storage space, and prevents the storage box from shaking through the cushioning pad.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a multi-specification adjustable kit, which relates to the technical field of kits, comprises a kit body, and is characterized in that a support ring and a mounting rod are sequentially arranged in the inner cavity of the kit body along the vertical direction; the supporting ring and the box body are detachably connected, and a positioning groove is formed between the two opposite side walls of the supporting ring. The multiple mounting rods are arranged in the long edge direction of the positioning groove, and the mounting rods are detachably connected with the box body; a plurality of fixing pipes are arranged between every two adjacent mounting rods in the axis direction, so that a plurality of containing cavities are formed in the box body, and the fixing pipes slide along the mounting rods; a clamping assembly is arranged in each containing cavity and comprises two sets of fixing rods, and the two opposite ends of the two sets of fixing rods are elastically connected with fixing pipes through third springs; the locking plate is mounted on one side, far away from the third spring, of the fixing rod and is used for clamping the reagent tube placed in the accommodating cavity. The kit containing box is reasonable in design structure and capable of containing kits of different sizes, and the containing effect is improved.
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Description

Technical Field

[0001] This utility model relates to the technical field of reagent kits, specifically a multi-specification adjustable reagent kit. Background Technology

[0002] Reagent kits are widely used to contain boxed reagents and related items in various fields, including biology, chemistry, and medicine. Reagent kits typically contain uniformly sized compartments, each of which is designed to hold one boxed reagent.

[0003] In the prior art, the reagent kit has a partition with multiple through holes arranged in an array on the partition. The through holes vertically penetrate the partition, and each through hole is used to accommodate a reagent storage box, which facilitates the operator to put in and take out the relevant reagents and perform subsequent related operations.

[0004] In existing technologies, the size of the through-holes in the same reagent kit is fixed, resulting in a fixed storage space. This means that only reagents of the corresponding size can be stored. When encountering reagents of different sizes, it is impossible to provide stable storage, and it is necessary to replace the reagent kit with one of different sizes and accommodate the reagents accordingly. Utility Model Content

[0005] 1) Technical problems to be solved

[0006] The purpose of this invention is to overcome the shortcomings of the existing technology and provide a multi-specification adjustable reagent kit.

[0007] (ii) Technical Solution

[0008] To achieve the above objectives, the present invention provides the following technical solution: a multi-specification adjustable reagent kit, comprising a box body, characterized in that a support ring and a mounting rod are sequentially arranged in the vertical direction within the inner cavity of the box body;

[0009] The support ring and the box body are detachably connected, and a positioning groove is provided between the opposite side walls of the support ring;

[0010] Multiple mounting rods are provided along the long side of the positioning groove, and the mounting rods and the box body are detachably connected;

[0011] Multiple fixing tubes are provided between two adjacent mounting rods along the axial direction to form multiple receiving cavities inside the box, and the fixing tubes slide along the mounting rods;

[0012] Each of the aforementioned receiving cavities is provided with a clamping assembly, the clamping assembly comprising:

[0013] Two sets of fixing rods, with the opposite ends of the two sets of fixing rods elastically connected by a third spring and the fixing tube respectively;

[0014] A locking plate is installed on the side of the fixing rod away from the third spring, and is used to clamp the reagent tube placed in the receiving cavity.

[0015] Furthermore, a buffer pad is provided on the end face of the locking plate away from the third spring.

[0016] Furthermore, an abutment block is provided on the inner wall of the fixing tube and in the middle of each of the receiving cavities, and an elastic pressing member is provided on the top of the abutment block through the fixing tube;

[0017] The abutment block has abutment rods at both ends, and the end of the abutment rod away from the abutment block extends to connect with the mounting rod;

[0018] The contact surface between the abutment block and the abutment rod is set as an inclined surface, so that when the elastic pressing member presses the abutment block downward, the abutment rod can move to the side closer to the abutment block to adjust the size of the receiving cavity.

[0019] Furthermore, the abutment block is an isosceles triangular block, with the small end of the abutment block facing upwards;

[0020] The abutment block is elastically connected to the fixing tube by the second spring, and the abutment rods on both sides abut against the side wall of the abutment block.

[0021] Furthermore, the abutment rod is equipped with a second spring, the two ends of which are fixedly connected to the abutment rod and the fixing tube, respectively.

[0022] Furthermore, a load-bearing plate is provided below the support ring, and the load-bearing plate and the support ring are fixedly connected.

[0023] Furthermore, the top wall of the load-bearing plate is provided with multiple fixing grooves, which penetrate the load-bearing plate horizontally, and the side wall of the fixing groove is provided with receiving grooves.

[0024] The fixing groove is provided with a support rod, which can slide along the axis of the fixing groove and rotate along the axis of the fixing groove.

[0025] A positioning block is fixedly connected to the side wall of the support rod, and the receiving groove is used to receive the positioning block.

[0026] (iii) Beneficial effects:

[0027] Compared with existing technologies, this multi-specification adjustable reagent kit has the following advantages:

[0028] I. This utility model can change the placement effect of reagent tubes of different sizes by adjusting the position of the mounting rod and the fixing tube, thereby enabling the storage of reagent tubes of different sizes and improving the storage effect.

[0029] Second, by setting a buffer pad, this utility model can better store the reagent tubes and prevent the storage box from shaking. Attached Figure Description

[0030] Figure 1 This is a three-dimensional structural diagram of the present invention;

[0031] Figure 2 This is a schematic diagram of the locking device structure in this utility model;

[0032] Figure 3 This is a schematic diagram of the fixing component structure in this utility model;

[0033] Figure 4 This is a cross-sectional schematic diagram of the separator in this utility model.

[0034] In the diagram: 1. Fixed box; 11. Box body; 12. Box lid; 13. Locking assembly; 131. Fixed part; 132. Rotating part; 2. Dividing device; 21. Dividing assembly; 211. Load-bearing plate; 212. Support ring; 213. Fixed groove; 214. Receiving groove; 22. Fixed assembly; 221. Support rod; 222. Positioning block; 223. Flexible pad; 23. Positioning groove; 24. Dividing plate; 241. Mounting rod; 242. Fixed plate; 25. Dividing element; 251. Fixed tube; 252. Pressing block; 253. Abutting block; 254. First spring; 26. Abutting element; 261. Abutting rod; 262. Second spring; 263. Limiting block; 3. Locking device; 31. Mounting block; 32. Third spring; 33. Fixed rod; 34. Locking plate; 35. Buffer pad. Detailed Implementation

[0035] 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.

[0036] like Figure 1-4 As shown, this utility model provides a technical solution: a multi-specification adjustable reagent kit, including a fixing box 1, a separating device 2 and a locking device 3.

[0037] Reference Figure 1The fixing box 1 includes a box body 11. In this embodiment, the box body 11 is preferably a hollow rectangular box body 11, and the top of the box body 11 is open. The inner cavity of the box body 11 forms a receiving cavity. The bottom wall of the box body 11 is provided with an anti-slip pad, which is fixedly connected to the box body 11 by screws.

[0038] Reference Figure 1 The box body 11 is equipped with a lid 12. One end of the lid 12 is rotatably connected to the box body 11 via a hinge, and the other end is equipped with a locking assembly 13. The locking assembly 13 includes a fixing part 131 and a rotating part 132. The fixing part 131 is fixedly connected to the lid 12 by screws and has a through hole perpendicular to the plane. The rotating part 132 is rotatably connected to the box body 11 via a rotating shaft. The rotating part 132 can be rotated to a suitable angle so that it can pass through the through hole. After passing through the through hole, the rotating part 132 can rotate at any angle, but the rotation angle cannot be 180° or any integer multiple thereof. The rotating part 132 can be engaged with the end face of the fixing part 131 away from the lid 12. At this time, the lid 12 covers the top of the box body 11.

[0039] The operator can place the relevant reagent kits inside the box 11 and close the lid 12. Then, by rotating the rotating part 132, the fixing part 131 can engage with the rotating part 132, thereby completing the connection between the box 11 and the lid 12, sealing the box 11 and preventing the box 11 from opening and causing the reagent kits to spill.

[0040] Reference Figure 1 , Figure 2 and Figure 3 The partition device 2 is located in the inner cavity of the box body 11. The partition device 2 includes multiple partition components 21, which are arranged in sequence along the vertical direction. Each partition component 21 includes a load-bearing plate 211 and a support ring 212. The top wall of the load-bearing plate 211 is provided with multiple positioning posts at intervals along the edge. The positioning posts are vertically arranged and are fixedly connected to the load-bearing plate 211 by screws. The outer wall of the support ring 212 is attached to the inner wall of the box body 11 and is fixedly connected to the positioning posts by screws.

[0041] Reference Figure 1 and Figure 3 The top wall of the load-bearing plate 211 is provided with a fixing groove 213 and a receiving groove 214 at each side wall. The long side of the fixing groove 213 is perpendicular to the side wall of the box body 11, and a through hole is provided through the side wall of the fixing groove 213 near the box body 11. The long side of the receiving groove 214 is perpendicular to the long side of the fixing groove 213.

[0042] Reference Figure 1 and Figure 3Each fixing groove 213 is equipped with a fixing component 22, which includes a support rod 221 and a positioning block 222. The support rod 221 passes through the through hole and the fixing groove 213 in sequence, and can slide and rotate along the axis of the through hole and the fixing groove 213. The positioning block 222 is fixedly connected to the support rod 221 by screws. The receiving groove 214 is used to receive the positioning block 222. A flexible pad 223 is provided at one end of the support rod 221 near the through groove. The flexible pad 223 is fixedly connected to the support rod 221 by screws.

[0043] The load-bearing plate 211 provides support for the reagent kit, while the support ring 212 supports the load-bearing plate 211 near the opening of the box 11, allowing for support of more reagent kits. The operator can also adjust the position of the support rod 221 using the positioning block 222 to further position the load-bearing plate 211.

[0044] Reference Figure 1 and Figure 2 The two inner walls of the support ring 212, which are far apart from each other, are provided with positioning grooves 23 along the long side.

[0045] Reference Figure 1 and Figure 2 The separating device 2 also includes multiple separating plates 24, which are arranged sequentially along the long side of the positioning groove 23. Each separating plate 24 includes a mounting rod 241 and a fixing plate 242. The mounting rod 241 is horizontally positioned, with both ends located in two positioning grooves 23, and can slide along the long side of the positioning groove 23. Positioning plates are provided at both ends of the mounting rod 241, and each positioning plate is equipped with a set screw. The set screw is threadedly connected to the positioning plate and abuts against the inner wall of the support ring 212 after passing through the positioning plate. The fixing plate 242 is vertically positioned, with its long side parallel to the long side of the mounting rod 241. The fixing plate 242 is fixedly connected to the mounting rod 241 by screws.

[0046] Reference Figure 1 , Figure 2 and Figure 4A separator 25 is provided between two adjacent mounting rods 241. The separator 25 includes a fixing tube 251. In this embodiment, the fixing tube 251 is preferably a hollow rectangular tube. The fixing tube 251 is horizontally arranged, and the long side of the fixing tube 251 is perpendicular to the long side of the positioning groove 23. The top wall of the fixing tube 251 has a through groove along the vertical direction. A pressing block 252, an abutting block 253, and a first spring 254 are provided in the through groove. The pressing block 252, the abutting block 253, and the first spring 254 are arranged sequentially along the axis of the through groove. The pressing block 252 passes through the through groove and can slide along the axis of the through groove. In this embodiment, the abutting block 253 is preferably an equilateral triangle. The small end of the abutting block 253 is attached to the pressing block 252, and the two inclined surfaces correspond to the two ends of the fixing tube 251, respectively. The two ends of the first spring 254 are fixedly connected to the fixing tube 251 and the abutting block 253, respectively.

[0047] Reference Figure 1 , Figure 2 and Figure 4 Each end of the fixed tube 251 is provided with a clamping member 26. The clamping member 26 includes a clamping rod 261, a second spring 262, and a limiting block 263. The side wall of the fixed tube 251 is provided with a limiting groove. The long side of the limiting groove is connected to the inner cavity of the fixed tube 251. The clamping rod 261 passes through the inner cavity of the fixed tube 251 and can slide along the axial direction of the fixed tube 251. The end of the clamping rod 261 abuts against the clamping block 253. The second spring 262 and the limiting block 263 are located in the limiting groove. The extension and retraction direction of the second spring 262 is parallel to the long side of the limiting groove. The two ends of the second spring 262 are fixedly connected to the fixed tube 251 and the limiting block 263, respectively. The limiting block 263 and the clamping rod 261 are fixedly connected.

[0048] The operator adjusts the position of the mounting rod 241 according to the size of the reagent kit, thus accommodating reagent kits of different sizes. The operator places the fixing tube 251 between two adjacent mounting rods 241, and then presses the pressing block 252, which allows the two abutting rods 261 to slide closer together, making it easier for the operator to change the position of the fixing tube 251. Then, the operator releases the pressing block 252, allowing the abutting rods 261 to slide further apart and abut against the mounting rod 241, completing the separation of the reagent kit.

[0049] Reference Figure 1 , Figure 2 and Figure 4The middle of both sides of the fixed tube 251 is provided with a mounting groove for accommodating the locking device 3. The locking device 3 includes a mounting block 31, a third spring 32 and a fixing rod 33. The mounting block 31 is detachably connected to the fixed tube 251 by screws. The third spring 32 is horizontally arranged and its extension direction is perpendicular to the axis of the fixed tube 251. The two ends of the third spring 32 are fixedly connected to the mounting block 31 and the fixing rod 33 respectively. In this embodiment, the horizontal interface of the fixing rod 33 is preferably semi-circular, and the plane of the fixing rod 33 is in contact with the third spring 32. The fixing rod 33 is vertically arranged.

[0050] Reference Figure 1 , Figure 2 and Figure 4 The fixing rod 33 is equipped with two locking plates 34. The two locking plates 34 are symmetrically arranged along the axis of the fixing rod 33. The locking plates 34 are rotatably connected to the fixing rod 33 by means of torsion spring connection. The end face of the locking plate 34 away from the mounting block 31 is provided with a buffer pad 35. The buffer pad 35 is fixedly connected to the locking plate 34 by means of screw fixing.

[0051] The operator first adjusts the length of the third spring 32 so that the fixing rod 33 can abut against the side wall of the reagent kit. Then the locking plate 34 rotates along the reagent kit to lock the reagent kit and finally lock the reagent kit to prevent it from shaking.

[0052] The implementation principle of a multi-specification adjustable reagent kit is as follows: When the operator stores the reagent kit, he first slides and rotates the support rod 221 to make the positioning block 222 located in the receiving groove 214, thereby fixing the load-bearing plate 211 and effectively preventing the load-bearing plate 211 from shifting.

[0053] The operator then adjusts the position of the fixing plate 242 by sliding the mounting rod 241, and then presses the mounting block 31 to make the abutment block 253 slide vertically, while the abutment rod 261 slides towards each other, thus facilitating the operator to adjust the position of the mounting tube. Then the operator releases the pressing block 252, so that the abutment rod 261 abuts against the mounting rod 241.

[0054] Then, the locking device 3 is installed. The operator inserts the reagent kit downwards, and the reagent kit abuts against the abutment plate. At the same time, the fixing rod 33 is squeezed, causing the locking plate 34 to rotate in a direction away from each other, thereby limiting the position of the reagent kit.

Claims

1. A multi-specification adjustable reagent kit, comprising a housing (11), characterized in that, The inner cavity of the box (11) is provided with a support ring (212) and a mounting rod (241) in sequence along the vertical direction; The support ring (212) and the box body (11) are detachably connected, and a positioning groove (23) is provided between the opposite side walls of the support ring (212); Multiple mounting rods (241) are provided along the long side of the positioning groove (23), and the mounting rods (241) and the box (11) are detachably connected; Multiple fixing tubes (251) are provided between two adjacent mounting rods (241) along the axial direction to form multiple accommodating cavities inside the box (11), and the fixing tubes (251) slide along the mounting rods (241); Each of the aforementioned receiving cavities is provided with a clamping assembly, the clamping assembly comprising: Two sets of fixing rods (33), the opposite ends of the two sets of fixing rods (33) are elastically connected by a third spring (32) and the fixing tube (251); A locking plate (34) is installed on the side of the fixing rod (33) away from the third spring (32) for clamping the reagent tube placed in the receiving cavity.

2. The multi-specification adjustable reagent kit according to claim 1, characterized in that, A buffer pad (35) is provided on the end face of the locking plate (34) away from the third spring (32).

3. The multi-specification adjustable reagent kit according to claim 1, characterized in that, An abutment block (253) is provided on the inner wall of the fixed tube (251) and in the middle of each of the accommodating cavities. An elastic pressing member is provided on the top of the abutment block (253) through the fixed tube (251). The abutment block (253) is provided with abutment rods (261) at both ends, and the abutment rod (261) extends away from the abutment block (253) to connect with the mounting rod (241); The contact surface between the abutment block (253) and the abutment rod (261) is set as an inclined surface, so that when the elastic pressing member presses the abutment block (253) downward, the abutment rod (261) can move to the side closer to the abutment block (253) to adjust the size of the accommodating cavity.

4. The multi-specification adjustable reagent kit according to claim 3, characterized in that, The abutment block (253) is an isosceles triangular block, with the small end of the abutment block (253) facing upwards; The abutment block (253) is elastically connected to the fixing tube (251) by the second spring (262), and the abutment rods (261) on both sides abut against the side wall of the abutment block (253).

5. The multi-specification adjustable reagent kit according to claim 3, characterized in that, The abutment rod (261) is equipped with a second spring (262), and the two ends of the second spring (262) are fixedly connected to the abutment rod (261) and the fixing tube (251) respectively.

6. The multi-specification adjustable reagent kit according to claim 1, characterized in that, A load-bearing plate (211) is provided below the support ring (212), and the load-bearing plate (211) and the support ring (212) are fixedly connected.

7. A multi-specification adjustable reagent kit according to claim 6, characterized in that, The top wall of the load-bearing plate (211) is provided with a plurality of fixing grooves (213), the fixing grooves (213) penetrate the load-bearing plate (211) in the horizontal direction, and the side wall of the fixing grooves (213) is provided with receiving grooves (214). The fixing groove (213) is provided with a support rod (221), which can slide along the axis of the fixing groove (213) and rotate along the axis of the fixing groove (213). The side wall of the support rod (221) is fixedly connected to a positioning block (222), and the receiving groove (214) is used to receive the positioning block (222).