Biological kit protection device
Patent Information
- Application Number
- CN202522438466.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-18
- Publication Date
- 2026-09-18
- Estimated Expiration
- 2035-11-18
AI Technical Summary
生物试剂盒一般成批运输,而当进行使用时,将一批生物试剂盒拆分,每个人或者组再拿取一部分生物试剂盒进行使用,而拆分后的生物试剂盒数量不定,运输过程中容易出现晃动等情况,严重的会影响生物试剂盒的使用效果,而现在的生物试剂盒,不能够再拆分后保证运输时的稳定性
[0014] The beneficial effects of this utility model of a protective device for biological reagent kits are: it can assemble protective structures for different numbers of biological reagent kits to achieve protection for different numbers of biological reagent kits; it can also enhance the pressure resistance of multiple biological reagent kits by assembling multiple protective frames; and it enhances the overall stability of the transportation of multiple biological reagent kits.
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Figure CN224767451U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of reagent kit protection, and more specifically to a biological reagent kit protection device. Background Technology
[0002] Biological reagent kits are standardized tools used for biological experiments and detection. They typically contain various reagents, buffers, test tubes, and other laboratory supplies, and are widely used in scientific research, clinical diagnostics, and molecular biology. Biological reagent kits are generally shipped in batches. However, when needed, a batch is broken down, with each individual or group taking a portion. The quantity of these broken kits varies, and they are prone to shaking during transport, which can severely affect their effectiveness. Current biological reagent kits cannot guarantee stability during transport after being broken down. Summary of the Invention
[0003] To overcome the shortcomings of the prior art, this utility model provides a protective device for biological reagent kits, which can assemble protective structures to protect different numbers of biological reagent kits.
[0004] The technical solution adopted by this utility model to solve its technical problem is: A protective device for a biological reagent kit includes multiple protective frames that are fitted over the upper and lower sides of the biological reagent kit. The upper protective frame has its upper end face higher than the upper end face of the biological reagent kit, and the lower protective frame has its lower end face lower than the lower end face of the biological reagent kit. Adjacent protective frames are secured together by locking blocks.
[0005] Furthermore, protective ridges are formed at the corners of the outermost corners of the plurality of protective frames, corresponding to the upper and lower corners of the protective frames.
[0006] Furthermore, multiple limiting plates are provided on one side of the upper and lower ends of the protective frame.
[0007] Furthermore, the card block is provided with a cross groove, and adjacent protective frames are connected by being secured to the edge through the cross groove on the card block.
[0008] Furthermore, the protective frame is made of rigid plastic.
[0009] Furthermore, the card block is made of rigid plastic.
[0010] Furthermore, the card block and the corresponding protective frame are interference fit.
[0011] Furthermore, the depth of the cross groove on the card block is less than half the height of the protective frame.
[0012] Furthermore, the card block is rectangular, and the cross groove on the card block is parallel to the edge of the card block.
[0013] Furthermore, the protective ridge is L-shaped.
[0014] The beneficial effects of this utility model of a protective device for biological reagent kits are: it can assemble protective structures for different numbers of biological reagent kits to achieve protection for different numbers of biological reagent kits; it can also enhance the pressure resistance of multiple biological reagent kits by assembling multiple protective frames; and it enhances the overall stability of the transportation of multiple biological reagent kits. Attached Figure Description
[0015] The present invention will now be described in further detail with reference to the accompanying drawings and specific implementation methods.
[0016] Figure 1 This is a schematic diagram of the protective device for a biological reagent kit. Figure 2 This is a schematic diagram of the protective frame structure; Figure 3 This is a schematic diagram of the limiting plate. Figure 4 This is a diagram illustrating the dog-like behavior of the card block. Figure 5 for Figure 4 Bottom view of the structure shown; Figure 6 This is a schematic diagram of the protective ridge structure.
[0017] Illustration: Protective frame 11; locking block 12; cross groove 13; protective ridge 14; limiting plate 15. Detailed Implementation
[0018] refer to Figure 1 , 2 Examples 4 and 5 detail examples of protecting the exterior of multiple biological reagent kits after assembly: A protective device for biological reagent kits includes multiple protective frames 11 that fit over the upper and lower sides of the biological reagent kit. The upper end face of the upper protective frame 11 is higher than the upper end face of the biological reagent kit, and the lower end face of the lower protective frame 11 is lower than the lower end face of the biological reagent kit. Adjacent protective frames 11 are secured by locking blocks 12. The upper and lower protective frames 11 support the upper and lower parts of the biological reagent kit, thereby protecting the upper and lower ends and edges of the biological reagent kit. The locking blocks 12 can secure the edges and corners of adjacent protective frames 11. The multiple protective frames 11 can be adjusted and arranged according to the number of biological reagent kits, so that multiple biological reagent kits can be arranged into a rectangle. This allows for easy adjustment and combination of the number of protective frames 11, thus protecting multiple biological reagent kits during transportation. By assembling multiple biological reagent kits into a whole and transporting them in a container, the device ensures the stability of the multiple biological reagent kits and enhances their safety features.
[0019] refer to Figure 1 , 2 Examples 4 and 5 detail examples of protecting the exterior of multiple biological reagent kits after assembly: A protective device for biological reagent kits includes multiple protective frames 11 that fit over the upper and lower sides of the biological reagent kit. The upper end face of the upper protective frame 11 is higher than the upper end face of the biological reagent kit, and the lower end face of the lower protective frame 11 is lower than the lower end face of the biological reagent kit. Adjacent protective frames 11 are secured by locking blocks 12. The upper and lower protective frames 11 support the upper and lower parts of the biological reagent kit, thereby protecting the upper and lower ends and edges of the biological reagent kit. The locking blocks 12 can secure the edges and corners of adjacent protective frames 11. The multiple protective frames 11 can be adjusted and arranged according to the number of biological reagent kits, so that multiple biological reagent kits can be arranged into a rectangle. This allows for easy adjustment and combination of the number of protective frames 11, thus protecting multiple biological reagent kits during transportation. By assembling multiple biological reagent kits into a whole and transporting them in a container, the device ensures the stability of the multiple biological reagent kits and enhances their safety features.
[0020] refer to Figure 1 and 6 Detailed examples of protecting the vertical edges at the corners of biological reagent kits arranged in a rectangle: The outermost corner of the plurality of protective frames 11 has a protective ridge 14 formed at the corner of the corresponding upper and lower protective frames 11. This allows the vertical edges of the corners of the plurality of biological reagent kits arranged in a rectangle to be protected by the protective ridge 14, thereby increasing the compression resistance of the corners during the transportation of the plurality of biological reagent kits and preventing damage to the contents of the biological reagent kits when squeezed.
[0021] refer to Figure 3 Detailed description of an embodiment where the protective frame 11 is fitted over the biological reagent kit, ensuring that it can be secured using the locking block 12: Multiple limiting plates 15 are provided on one side of the upper and lower end faces of the protective frame 11. The end faces of the limiting plates 15 coincide with the end faces of the protective frame 11, thereby ensuring that the biological reagent kit is limited by the limiting plates 15, preventing the protective frame 11 from being fitted onto the biological reagent kit without any protruding parts, which would make it impossible to connect multiple protective frames 11 using the locking blocks 12.
[0022] refer to Figure 4 and 5 The following is a detailed description of an embodiment in which the card block 12 connects adjacent protective frames 11: The locking block 12 is provided with a cross groove 13, and adjacent protective frames 11 are connected by locking onto the edges through the cross groove 13 on the locking block 12. The cross groove 13 can lock the corners of four adjacent protective frames 11 together to fix the four protective frames 11, and can also lock the edges of two adjacent protective frames 11 through a straight groove in the cross groove 13. Thus, by adjusting the position and number of locking blocks 12 on the protective frames 11, the stability of multiple protective frames 11 connected together can be adjusted, thereby ensuring the stability of multiple biological reagent kits during transportation and providing sufficient protection for multiple transported biological reagent kits.
[0023] refer to Figure 2 Detailed examples of protecting the exterior of biological reagent kits: The protective frame 11 is made of rigid plastic. Therefore, the rigidity of the protective frame 11 is greater than that of the biological reagent kit. Multiple protective frames 11 are fitted over the outside of the biological reagent kit to further enhance its resistance to compression and protect it.
[0024] refer to Figure 4 and 5 A detailed description of an embodiment of a robust connection of multiple protective frames 11: The locking block 12 is made of rigid plastic. Therefore, when connecting multiple protective frames 11, the locking block 12 can be securely locked onto the corresponding protective frame 11, working together with the multiple protective frames 11 to achieve an overall anti-compression effect, thus providing sufficient protection for the biological reagent kit.
[0025] refer to Figure 1 and 5 A detailed description of an embodiment in which multiple protective frames 11 are securely connected: The locking block 12 and the corresponding protective frame 11 are interference-fitted. This interference fit securely engages the protective frame 11, preventing the connected protective frames 11 from becoming loose and causing an unstable connection between multiple protective frames 11, thus failing to stably protect the biological reagent kit.
[0026] refer to Figure 4 Detailed examples of adequately protective biological reagent kits: The depth of the cross groove 13 on the locking block 12 is less than half the height of the protective frame 11. This ensures that the locking block 12 can securely connect multiple protective frames 11 together, preventing the protective frames 11 from overlapping too little with the biological reagent kit, which would cause the biological reagent kit to easily separate from the protective frame 11 and fail to provide stable protection.
[0027] refer to Figure 4 and 5 Detailed description of an embodiment for easy use of card block 12: The locking block 12 is rectangular, and the groove of the cross groove 13 on the locking block 12 is parallel to the edge of the locking block 12. Therefore, when installing and removing the locking block 12, the locking block 12 can be installed on the protective frame 11 by clamping the parallel edge of the locking block 12, or it can be carefully removed from the protective frame 11 by pinching it parallel to the edge. This prevents uneven force when clamping the locking block 12, which could make it difficult to remove the locking block 12.
[0028] refer to Figure 6 Detailed examples of the vertical edges of the protective ridge 14 biological reagent kit: The protective ridge 14 is L-shaped. This allows the L-shaped protective ridge 14 to fit snugly against the edge of the biological reagent kit, providing protection from the outside. This increases the strength of the upper and lower protective frames 11 of the biological reagent kit, while also protecting the edges of the biological reagent kit at corners. (Reference) Figure 1 and 6 Detailed examples of protecting the vertical edges at the corners of biological reagent kits arranged in a rectangle: The outermost corner of the plurality of protective frames 11 has a protective ridge 14 formed at the corner of the corresponding upper and lower protective frames 11. This allows the vertical edges of the corners of the plurality of biological reagent kits arranged in a rectangle to be protected by the protective ridge 14, thereby increasing the compression resistance of the corners during the transportation of the plurality of biological reagent kits and preventing damage to the contents of the biological reagent kits when squeezed.
[0029] refer to Figure 3 Detailed description of an embodiment where the protective frame 11 is fitted over the biological reagent kit, ensuring that it can be secured using the locking block 12: Multiple limiting plates 15 are provided on one side of the upper and lower end faces of the protective frame 11. The end faces of the limiting plates 15 coincide with the end faces of the protective frame 11, thereby ensuring that the biological reagent kit is limited by the limiting plates 15, preventing the protective frame 11 from being fitted onto the biological reagent kit without any protruding parts, which would make it impossible to connect multiple protective frames 11 using the locking blocks 12.
[0030] refer to Figure 4 and 5 The following is a detailed description of an embodiment in which the card block 12 connects adjacent protective frames 11: The locking block 12 is provided with a cross groove 13, and adjacent protective frames 11 are connected by locking onto the edges through the cross groove 13 on the locking block 12. The cross groove 13 can lock the corners of four adjacent protective frames 11 together to fix the four protective frames 11, and can also lock the edges of two adjacent protective frames 11 through a straight groove in the cross groove 13. Thus, by adjusting the position and number of locking blocks 12 on the protective frames 11, the stability of multiple protective frames 11 connected together can be adjusted, thereby ensuring the stability of multiple biological reagent kits during transportation and providing sufficient protection for multiple transported biological reagent kits.
[0031] refer to Figure 2 Detailed examples of protecting the exterior of biological reagent kits: The protective frame 11 is made of rigid plastic. Therefore, the rigidity of the protective frame 11 is greater than that of the biological reagent kit. Multiple protective frames 11 are fitted over the outside of the biological reagent kit to further enhance its resistance to compression and protect it.
[0032] refer to Figure 4 and 5 A detailed description of an embodiment of a robust connection of multiple protective frames 11: The locking block 12 is made of rigid plastic. Therefore, when connecting multiple protective frames 11, the locking block 12 can be securely locked onto the corresponding protective frame 11, working together with the multiple protective frames 11 to achieve an overall anti-compression effect, thus providing sufficient protection for the biological reagent kit.
[0033] refer to Figure 1 and 5 A detailed description of an embodiment in which multiple protective frames 11 are securely connected: The locking block 12 and the corresponding protective frame 11 are interference-fitted. This interference fit securely engages the protective frame 11, preventing the connected protective frames 11 from becoming loose and causing an unstable connection between multiple protective frames 11, thus failing to stably protect the biological reagent kit.
[0034] refer to Figure 4 Detailed examples of adequately protective biological reagent kits: The depth of the cross groove 13 on the locking block 12 is less than half the height of the protective frame 11. This ensures that the locking block 12 can securely connect multiple protective frames 11 together, preventing the protective frames 11 from overlapping too little with the biological reagent kit, which would cause the biological reagent kit to easily separate from the protective frame 11 and fail to provide stable protection.
[0035] refer to Figure 4 and5 Detailed description of an embodiment for easy use of card block 12: The locking block 12 is rectangular, and the groove of the cross groove 13 on the locking block 12 is parallel to the edge of the locking block 12. Therefore, when installing and removing the locking block 12, the locking block 12 can be installed on the protective frame 11 by clamping the parallel edge of the locking block 12, or it can be carefully removed from the protective frame 11 by pinching it parallel to the edge. This prevents uneven force when clamping the locking block 12, which could make it difficult to remove the locking block 12.
[0036] refer to Figure 6 Detailed examples of the vertical edges of the protective ridge 14 biological reagent kit: The protective ridge 14 is L-shaped. This allows the L-shaped protective ridge 14 to fit snugly against the edge of the biological reagent kit, thus providing protection from the outside of the edge. This increases the strength of the upper and lower protective frames 11 of the biological reagent kit, while also protecting the edge of the biological reagent kit at the corner.
Claims
1. A biological kit protection device, characterized by: It includes multiple protective frames (11) on the upper and lower sides of the biological reagent kit. The upper surface of the upper protective frame (11) is higher than the upper surface of the biological reagent kit, and the lower surface of the lower protective frame (11) is lower than the lower surface of the biological reagent kit. Adjacent protective frames (11) are secured by a locking block (12).
2. The biological kit protection device according to claim 1, wherein: The outermost corner of the plurality of protective frames (11) has a protective ridge (14) formed at the corner of the corresponding upper and lower protective frames (11).
3. The biological kit protection device according to claim 1, wherein: Multiple limiting plates (15) are provided on one side of the upper and lower ends of the protective frame (11).
4. The biological kit protection device according to claim 1, wherein: The card block (12) is provided with a cross groove (13), and the adjacent protective frame (11) is connected by being locked on the edge through the cross groove (13) on the card block (12).
5. The biological kit protection device according to claim 1, wherein: The protective frame (11) is a rigid plastic product.
6. The biological kit protection device according to claim 1, wherein: The card block (12) is a rigid plastic product.
7. The biological kit protection device according to claim 1, wherein: The card block (12) and the corresponding protective frame (11) are interference fit.
8. The biological kit protection device according to claim 4, wherein: The depth of the cross groove (13) on the card block (12) is less than half the height of the protective frame (11).
9. The biological kit protection device according to claim 4, wherein: The card block (12) is rectangular, and the groove of the cross groove (13) on the card block (12) is parallel to the edge of the card block (12).
10. The biological kit protection device according to claim 2, wherein: The protective ridge (14) is L-shaped.