Portable storage box for protease detection

By designing a portable storage box for protease detection with freely combinable card and label components, the problem of chaotic sample storage was solved, enabling classified management and sealed protection of samples, and improving detection efficiency.

CN224257263UActive Publication Date: 2026-05-19TIANJIN HUAXIN KANGDA TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
TIANJIN HUAXIN KANGDA TECH CO LTD
Filing Date
2025-06-11
Publication Date
2026-05-19

AI Technical Summary

Technical Problem

The existing storage boxes for protease detection have an unreasonable internal space layout, resulting in chaotic storage of different types or batches of samples. This makes sample management inconvenient and affects the smooth progress of the detection work.

Method used

A portable storage box for protease detection was designed, which uses a freely combinable first and second card plate to separate independent sample storage chambers, and is labeled with a label component to ensure sample classification and management.

Benefits of technology

It enables the classification, storage, and management of samples, facilitating identification, avoiding sample confusion, improving detection efficiency, and protecting sample activity through excellent sealing.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224257263U_ABST
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Abstract

The utility model relates to the technical field of protease detection, in particular to a portable storage box for protease detection, which comprises a heat preservation box body and a sealing cover, a first placing cavity and a second placing cavity are respectively arranged in the heat preservation box body, a plurality of groups of first clamping plates and a plurality of groups of second clamping plates are vertically clamped and connected, and the first clamping plates and the second clamping plates are arranged on the heat preservation box body. A plurality of groups of first clamping plates and second clamping plates jointly divide a plurality of groups of relatively independent sample storage cavities in the first placing cavity and the second placing cavity. The first clamping plate and the second clamping plate can be freely combined and installed, multiple groups of relatively independent sample storage cavities can be flexibly separated according to protease samples of different numbers and sizes, mutual collision and confusion of the samples are avoided, and classified storage and management of the different samples are facilitated; through the arrangement of the label assembly, a corresponding label plate is arranged above each sample storage cavity, relevant information of the samples can be clearly marked through the label plates, and protease detection samples in the heat preservation box body can be conveniently managed.
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Description

Technical Field

[0001] This utility model relates to the field of protease detection technology, specifically to a portable storage box for protease detection. Background Technology

[0002] Proteases are widely found in animal viscera, plant stems and leaves, fruits, and microorganisms. Microbial proteases are mainly produced by molds and bacteria, and secondarily by yeasts and actinomycetes. Proteases exhibit strict selectivity towards their reaction substrates; a protease can only act on certain peptide bonds in a protein molecule, such as trypsin catalyzing the hydrolysis of peptide bonds formed by basic amino acids. Proteases are widely distributed, mainly found in the digestive tracts of humans and animals, and are abundant in plants and microorganisms.

[0003] The existing storage boxes for protease detection have an unreasonable internal space layout, which leads to the chaotic storage of different types or batches of protease samples, easily causing sample confusion or mis-selection and affecting the smooth progress of the detection work; in addition, the existing storage boxes for protease detection lack labeling, which is not conducive to the management of protease detection samples.

[0004] Therefore, we propose a portable storage box for protease detection. Utility Model Content

[0005] The main objective of this invention is to provide a portable storage box for protease detection. The first and second plates can be freely combined and installed, which can flexibly divide the protease samples of different quantities and sizes into multiple relatively independent sample storage chambers, avoiding collisions and confusion between samples, and facilitating the classification, storage and management of different samples. Through the setting of the label component, each sample storage chamber has a corresponding label, which can clearly mark the relevant information of the sample. This can effectively solve the problems in the background art.

[0006] To achieve the above objectives, the technical solution adopted by this utility model is as follows:

[0007] A portable protease detection storage box includes an insulated box body, a sealing lid, and a handle. The insulated box body is a horizontally arranged rectangular structure. The sealing lid is rotatably connected to one side of the top of the insulated box body. The insulated box body is provided with a first placement cavity and a second placement cavity. The inner walls on both sides of the first placement cavity and the second placement cavity are provided with first slots for installing a first card plate. The inner walls at both ends of the first placement cavity and the second placement cavity are provided with second slots for installing a second card plate. The first card plate and the second card plate are vertically engaged. Multiple sets of the first card plate and the second card plate are provided. The multiple sets of the first card plate and the second card plate together divide the first placement cavity and the second placement cavity into multiple sets of relatively independent sample storage cavities.

[0008] The upper surface of the insulated box is provided with a first sealing groove for installing a sealing plate. The sealing plate is located above the first placement cavity and the second placement cavity. The upper surface of the sealing plate is provided with a groove. Multiple equidistant first transparent plates are fixedly embedded in the inner wall of the bottom end of the groove. Label components are provided at both ends of the inner wall of the bottom end of the groove and the first transparent plates.

[0009] The label assembly is provided in multiple sets and is located above the sample storage cavity. The label assembly includes a label box, a label cover, and a label plate.

[0010] Specifically, the upper part of the insulated box body away from the sealing cover is provided with a support block, and the end of the sealing cover near the insulated box body is provided with a positioning plate, which is fixedly connected to the support block by bolts.

[0011] Specifically, handles are installed on the upper part of both ends of the insulated box, and the handles are rotatably connected to both ends of the insulated box.

[0012] Specifically, the inner walls at both ends of the groove are provided with snap grooves.

[0013] Specifically, the label box has a placement groove on the upper surface for placing labels, and a second sealing groove for installing label covers is provided on both sides of the upper surface of the label box.

[0014] Specifically, a second transparent plate is fixedly embedded in the center of the upper surface of the label cover, and the second transparent plate is located above the label.

[0015] The beneficial effects of this utility model are as follows: The portable protease detection storage box of this utility model has a first card plate and a second card plate that can be freely combined and installed. It can flexibly divide multiple relatively independent sample storage chambers according to different quantities and sizes of protease samples, avoiding collisions and confusion between samples, and facilitating the classification, storage and management of different samples. Through the setting of the label component, each sample storage chamber has a corresponding label, which can clearly mark the relevant information of the sample, making it convenient to manage the protease detection samples in the insulated box.

[0016] The sealing cap and the insulated box are connected by bolts to the positioning plate and the support block, and the sealing plate and the first sealing groove cooperate to ensure the good sealing performance of the storage box. This can effectively prevent the entry of external air and moisture, maintain the stability of the internal environment, and protect the activity and quality of the protease sample. The first transparent plate on the sealing plate and the second transparent plate on the label cover allow the sample condition and label information to be observed without opening the sealing plate at the top of the insulated box. This is convenient and quick, and reduces unnecessary exposure of the sample, thus reducing the risk of sample contamination. Attached Figure Description

[0017] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0018] Figure 1 This is a schematic diagram of the structure of this utility model;

[0019] Figure 2 For the present utility model Figure 1 Enlarged view of point A in the middle;

[0020] Figure 3 This is a perspective view of the insulated box body of this utility model;

[0021] In the diagram: 1. Insulated box body; 2. Sealing cover; 3. Support block; 4. Positioning plate; 5. Handle; 6. First sealing groove; 7. Sealing plate; 8. Groove; 9. Buckle groove; 10. First transparent plate; 11. Label assembly; 12. First slot; 13. First placement cavity; 14. Second placement cavity; 15. First card plate; 16. Second card plate; 17. Label box; 18. Label cover; 19. Placement groove; 20. Label tag; 21. Second transparent plate. Detailed Implementation

[0022] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.

[0023] As one embodiment of this utility model, such as Figures 1-3 As shown, the portable protease detection storage box of this utility model includes an insulated box body 1, a sealing cover 2, and a handle 5. The insulated box body 1 is a horizontally arranged rectangular structure. The sealing cover 2 is rotatably connected to one side of the top of the insulated box body 1. The insulated box body 1 is provided with a first placement cavity 13 and a second placement cavity 14. The inner walls on both sides of the first placement cavity 13 and the second placement cavity 14 are provided with first slots 12 for installing a first card plate 15. The inner walls at both ends of the first placement cavity 13 and the second placement cavity 14 are provided with second slots for installing a second card plate 16. The first card plate 15 and the second card plate 16 are vertically engaged. There are multiple sets of the first card plate 15 and the second card plate 16. The multiple sets of the first card plate 15 and the second card plate 16 together divide the first placement cavity 13 and the second placement cavity 14 into multiple relatively independent sample storage cavities.

[0024] The upper surface of the insulated box 1 is provided with a first sealing groove 6 for installing a sealing plate 7. The sealing plate 7 is located above the first placement cavity 13 and the second placement cavity 14. The upper surface of the sealing plate 7 is provided with a groove 8. Multiple first transparent plates 10 are fixedly embedded in the inner wall of the bottom end of the groove 8. Label components 11 are provided at both ends of the first transparent plates 10 on the inner wall of the bottom end of the groove 8.

[0025] The label assembly 11 is provided in multiple sets and is located above the sample storage cavity. The label assembly 11 includes a label box 17, a label cover 18, and a label plate 20.

[0026] In use, according to the quantity and specifications of the protease samples to be stored, multiple sets of first card plates 15 are inserted into the first slots 12 on both sides of the inner walls of the first placement cavity 13 and the second placement cavity 14, while the second card plates 16 are inserted into the second slots on both ends of the inner walls, so that the first card plates 15 and the second card plates 16 are vertically engaged, thereby separating multiple relatively independent sample storage cavities in the first placement cavity 13 and the second placement cavity 14; then, the protease detection samples are placed in the corresponding sample storage cavities respectively; then, the corresponding labels 20 are placed in the placement slots 19 of the label box 17, and the label caps 18 are closed, so that they fit tightly with the second sealing slots on both sides of the upper end face of the label box 17; the label assembly 11 is located above the sample storage cavities, and the samples in the corresponding sample storage cavities can be marked by the labels 20.

[0027] The present invention also includes a support block 3 on the upper part of the side of the heat preservation box 1 away from the sealing cover 2, and a positioning plate 4 on the end of the sealing cover 2 near the side of the heat preservation box 1. The positioning plate 4 is fixedly connected to the support block 3 by bolts.

[0028] This utility model also includes a handle 5 installed on the upper part of both ends of the heat preservation box 1, and the handle 5 is rotatably connected to both ends of the heat preservation box 1.

[0029] This utility model also includes that the inner walls at both ends of the groove 8 are provided with buckle grooves 9.

[0030] The present invention also includes a placement groove 19 for placing the label 20 on the upper surface of the label box 17, and a second sealing groove for installing the label cover 18 on both sides of the upper surface of the label box 17.

[0031] The present invention also includes a second transparent plate 21 fixedly embedded at the center of the upper surface of the label cover 18, the second transparent plate 21 being located above the label 20.

[0032] In use, according to the quantity and specifications of the protease samples to be stored, multiple sets of first card plates 15 are inserted into the first slots 12 on both sides of the inner walls of the first placement cavity 13 and the second placement cavity 14, while the second card plates 16 are inserted into the second slots on both ends of the inner walls, so that the first card plates 15 and the second card plates 16 are perpendicularly engaged, thereby separating multiple relatively independent sample storage cavities in the first placement cavity 13 and the second placement cavity 14; then, the protease detection samples are placed in the corresponding sample storage cavities respectively.

[0033] Then, place the corresponding label 20 into the placement slot 19 of the label box 17, and cover it with the label cover 18 so that it fits tightly with the second sealing grooves on both sides of the upper end face of the label box 17; the label assembly 11 is located above the sample storage cavity, and the sample in the corresponding sample storage cavity can be marked by the label 20; next, embed the sealing plate 7 into the first sealing groove 6 on the upper end face of the heat preservation box 1, and the first transparent plate 10 on the sealing plate 7 can be used to easily observe the sample in the sample storage cavity below, and the buckle grooves 9 on the inner walls of both ends of the groove 8 make it easy to take out the sealing plate 7; rotate the sealing cover 2 to cover the heat preservation box 1, and the heat preservation box 1 can be easily lifted and carried by the handles 5 that are rotated and connected to both ends of the heat preservation box 1.

[0034] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The descriptions of the above embodiments and specifications are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of protection claimed by this utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.

Claims

1. A portable storage box for protease detection, characterized in that, The device includes an insulated box body (1), a sealing cover (2), and a handle (5). The insulated box body (1) is a horizontally arranged rectangular structure. The sealing cover (2) is rotatably connected to one side of the top of the insulated box body (1). The insulated box body (1) is provided with a first placement cavity (13) and a second placement cavity (14). The inner walls on both sides of the first placement cavity (13) and the second placement cavity (14) are provided with a first slot (12) for installing a first card plate (15). The inner walls at both ends of the first placement cavity (13) and the second placement cavity (14) are provided with a second slot for installing a second card plate (16). The first card plate (15) and the second card plate (16) are vertically connected. The first card plate (15) and the second card plate (16) are provided with multiple sets. The multiple sets of the first card plate (15) and the second card plate (16) are used to divide the first placement cavity (13) and the second placement cavity (14) into multiple relatively independent sample storage cavities. The upper surface of the insulated box (1) is provided with a first sealing groove (6) for installing a sealing plate (7). The sealing plate (7) is located above the first placement cavity (13) and the second placement cavity (14). The upper surface of the sealing plate (7) is provided with a groove (8). Multiple first transparent plates (10) are fixedly embedded in the inner wall of the bottom end of the groove (8). Label components (11) are provided at both ends of the inner wall of the bottom end of the groove (8) at the first transparent plates (10). The label assembly (11) is provided in multiple sets and is located above the sample storage cavity. The label assembly (11) includes a label box (17), a label cover (18), and a label plate (20).

2. The portable protease detection storage box according to claim 1, characterized in that, The insulation box (1) has a support block (3) on the upper part of the side away from the sealing cover (2), and the sealing cover (2) has a positioning plate (4) on the side close to the insulation box (1). The positioning plate (4) is fixedly connected to the support block (3) by bolts.

3. The portable protease detection storage box according to claim 1, characterized in that, The upper part of both ends of the insulated box (1) is equipped with handles (5), which are rotatably connected to both ends of the insulated box (1).

4. The portable protease detection storage box according to claim 1, characterized in that, The inner walls at both ends of the groove (8) are provided with snap grooves (9).

5. A portable storage box for protease detection according to claim 1, characterized in that, The label box (17) has a placement groove (19) for placing the label (20) on its upper surface, and a second sealing groove for installing the label cover (18) is also provided on both sides of the upper surface of the label box (17).

6. A portable storage box for protease detection according to claim 5, characterized in that, A second transparent plate (21) is fixedly embedded in the center of the upper surface of the label cover (18), and the second transparent plate (21) is located above the label (20).