A storage chip storage box

By using precise positioning and locking mechanisms for components such as plug-in rods and plug-in sleeves, the problems of misalignment and poor stability during the stacking of chip storage boxes are solved, achieving precise alignment and stable connection of chips, improving work efficiency and safety, and reducing the risk of damage.

CN224529337UActive Publication Date: 2026-07-21BEIJING SICUN COMM TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
BEIJING SICUN COMM TECH CO LTD
Filing Date
2025-07-17
Publication Date
2026-07-21

AI Technical Summary

Technical Problem

Existing chip storage boxes are prone to misalignment and displacement during stacking, resulting in poor stability, affecting aesthetics and work efficiency, posing safety hazards, and easily tilting or collapsing during transportation, leading to chip damage and economic losses.

Method used

A precise positioning and locking mechanism is designed, comprising components such as plug rods, plug sleeves, guide sleeves, guide grooves, and connecting blocks. The mechanism achieves precise alignment and secure fixing between enclosures through the cooperation of plug blocks and slots, and provides independent protection when combined with a detachable enclosure cover and internal partitions.

Benefits of technology

It achieves precise alignment and stable connection of chip storage boxes, improves work efficiency, reduces the risk of misoperation and safety hazards, protects chip security, and reduces storage and logistics costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a kind of storage chip storage boxes, including box, box outside is equipped with plug-in rod, plug-in rod one end is detachably equipped with plug-in sleeve, plug-in sleeve outside is slidably equipped with guide sleeve, guide sleeve is equipped with guide slot in, guide block is slidably equipped in guide slot, guide block one side is connected and is equipped with connecting block, connecting block, connecting block one side is fixedly equipped with plug-in block, plug-in rod outside is equipped with movable slot, plug-in plate is equipped in movable slot, plug-in plate two sides are symmetrically equipped with pivot, plug-in plate is rotatably installed in movable slot by pivot, plug-in plate one side is connected and is equipped with movable spring, movable spring other end is connected with movable slot inner wall, plug-in sleeve one side movably is equipped with movable plate, movable plate one side is connected and is equipped with elastic plate, elastic plate one side is fixedly equipped with movable block, the utility model realizes the accurate positioning when the box is stacked, and realizes the convenient fixing between box and box cover, guarantee the structural stability when stacking, prevent easy collapse.
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Description

Technical Field

[0001] This utility model relates to the field of chip storage technology, and more specifically, it relates to a storage chip storage box. Background Technology

[0002] In existing technologies, chip storage boxes suffer from several design flaws and limitations in use. These issues severely impact the practicality and security of the products in real-world applications. Specifically, existing storage boxes generally employ a simple stacking method for placement and storage, completely lacking an effective positioning mechanism and alignment system. This design deficiency leads to the inability to precisely align multiple storage boxes during stacking, easily resulting in misalignment, offset, or imbalance. When storage boxes are stacked to a certain height, this misalignment becomes more pronounced, affecting not only the overall aesthetics and space utilization efficiency but also increasing the difficulty for staff to retrieve chips. Especially in warehouse environments where specific storage boxes need to be retrieved, misaligned stacking significantly reduces work efficiency, increases the risk of misoperation, and may even damage valuable chip products.

[0003] An even more serious problem is that the existing storage box design completely lacks a fixed connection mechanism between the boxes. This defect means that the stacked storage boxes rely solely on gravity and friction to maintain their relative positions, resulting in extremely poor stability. During daily stacking, any slight collision or vibration can cause the upper storage box to slide or shift. In a transportation environment, normal driving actions such as starting, braking, or turning of a vehicle generate sufficient inertial forces, causing the stacked storage boxes to easily tilt or collapse. This instability not only causes damage and economic losses to the valuable chip products inside the storage boxes, but also poses safety hazards to surrounding equipment and personnel, increasing storage and logistics costs. In the modern electronics manufacturing environment where production lines and warehouse space are limited, the negative impact of this design defect is particularly significant, severely restricting the company's production efficiency and operational flexibility. Utility Model Content

[0004] (a) Technical problems to be solved

[0005] In view of the problems existing in the prior art, this utility model provides a storage chip storage box to solve the technical problems mentioned in the background art.

[0006] (II) Technical Solution

[0007] To achieve the above objectives, this utility model provides the following technical solution: a storage chip storage box, including a box body, a plug-in rod provided on the outer side of the box body, a plug-in sleeve detachably fitted at one end of the plug-in rod, a guide sleeve slidably fitted on the outer side of the plug-in sleeve, a guide groove provided in the guide sleeve, a guide block slidably provided in the guide groove, a connecting block connected to one side of the guide block, a plug-in block fixedly provided on one side of the connecting block, a movable groove provided on the outer side of the plug-in rod, a plug-in plate provided in the movable groove, rotating shafts symmetrically provided on both sides of the plug-in plate, the plug-in plate being rotatably mounted in the movable groove via the rotating shafts, a movable spring connected to one side of the plug-in plate, the other end of the movable spring being connected to the inner wall of the movable groove, a movable plate movably provided on one side of the plug-in sleeve, an elastic plate connected to one side of the movable plate, and a movable block fixedly provided on one side of the elastic plate.

[0008] The present invention is further configured such that a mating plate and an adapter plate are fixedly connected to the outer side of the box body, and a box cover is detachably provided at the top of the box body. A fixing plate is fixedly connected to the outer side of the box cover. This design provides a stable installation foundation for the lateral connection between the boxes, and the detachable box cover design facilitates the storage and retrieval of the chip.

[0009] The present invention is further configured such that the bottom of the box body and the box cover are fixedly provided with insert blocks, and the top of the box body is provided with a slot, which is adapted to the insert blocks. This design forms a precise vertical positioning system, ensuring that multiple boxes can be precisely aligned during stacking, thus eliminating the problem of easy misalignment when stacking traditional storage boxes.

[0010] The present invention is further configured such that multiple partitions are detachably provided inside the housing. This design provides independent protection and isolation for the stored chips, preventing them from colliding and being damaged during storage and transportation, and significantly improving the storage security of the chips.

[0011] The present invention is further configured such that a guide groove is provided on the outer side of the plug rod, and a guide rail is fixedly provided inside the plug sleeve. The guide groove is adapted to the guide rail. This design enables the plug rod and the plug sleeve to slide precisely along a predetermined trajectory during the connection process, ensuring the smoothness of the assembly process and the accuracy of the position, and effectively improving the assembly efficiency and connection reliability.

[0012] The present invention is further configured such that a connecting plate is fixedly provided on the outer side of the plug sleeve, and a connecting spring is movably sleeved on the outer side of the plug sleeve. The two ends of the connecting spring are respectively connected to the connecting plate and the guide sleeve. This elastic connecting mechanism ensures that the guide sleeve can automatically reset after operation without manual adjustment, thereby improving the overall system's ease of operation.

[0013] The present invention is further configured such that an end plate is fixedly provided on the outer side of the plug sleeve, and the elastic plate slides through the end plate. This design forms a reliable guiding mechanism to ensure that the elastic plate moves along the correct path during operation.

[0014] The present invention is further provided with a guide slope fixed at the top of the inside of the plug sleeve. This inclined design allows the plug plate to rotate smoothly during the connection process, ensuring precise control of the plug plate.

[0015] (III) Beneficial Effects

[0016] Compared with the prior art, the present invention provides a storage box for memory chips, which has the following advantages:

[0017] 1. This utility model designs a precision positioning system consisting of a housing, inserts, and slots. By setting inserts at the bottom of the housing and opening slots at the top of the housing to match the inserts, a precision alignment mechanism between the housings is formed. When multiple housings are stacked, the inserts at the bottom of the upper housing will precisely embed into the slots at the top of the lower housing, ensuring precise positioning between the housings. At the same time, the bottom of the housing cover at the top of the housing also has inserts of the same design, which can perfectly match the slots of the uppermost housing, achieving complete closure of the entire storage system. This design solves the problems of misalignment, offset, or imbalance that easily occur during the stacking of traditional storage boxes, reducing the difficulty of operation for staff when picking up and putting down chips. Especially in the case of warehousing environments where specific storage boxes need to be retrieved, the precise alignment stacking method greatly improves work efficiency, reduces the risk of misoperation, and effectively protects valuable chip products from damage. In addition, multiple removable partitions inside the housing provide partition protection for the chips, further improving the storage security of the chips.

[0018] 2. This utility model achieves a secure fixation between housings through an innovatively designed plug-in connection system. This system comprises a plug-in rod, plug-in sleeve, guide sleeve, guide groove, guide block, connecting block, and plug-in block, forming a complete locking mechanism. The mating plate and adapter plate on the outer side of the housing provide the connection foundation, while the precise fit between the plug-in rod and plug-in sleeve provides the core structure for the connection. The sliding fit between the guide groove on the outer side of the guide sleeve and the guide block, along with the internal guide rail and guide groove system, ensures precise guidance and locking during the connection process. The plug-in plate, through the rotational design of the pivot in the movable groove, combined with the elastic connection of the movable spring, and the plug-in block and... The guide ramp design provides a reliable locking mechanism, which completely solves the problem of poor stability of traditional storage boxes that rely solely on gravity and friction to maintain their relative position. Even when encountering inertial forces generated by normal driving actions such as vehicle starting, braking, or turning during transportation, the stacked storage boxes will not easily tilt or collapse. This design not only effectively prevents damage and economic losses to valuable chip products inside the storage boxes, but also eliminates safety hazards to surrounding equipment and personnel, significantly reducing storage and logistics costs. In the modern electronic manufacturing environment where production lines and warehouse space are limited, it greatly improves the production efficiency and operational flexibility of enterprises. Attached Figure Description

[0019] Figure 1 This is a schematic diagram of the overall structure of a storage chip storage box according to the present invention;

[0020] Figure 2 This is a schematic diagram of the dispersed structure of the box body and box cover in this utility model;

[0021] Figure 3 This is a schematic diagram of the structure of the plug-in sleeve, plug-in rod, guide sleeve and movable plate in this utility model;

[0022] Figure 4 This is a cross-sectional view of the insert sleeve, insert rod, guide sleeve, and movable plate in this utility model.

[0023] Figure 5 This is a cross-sectional schematic diagram of the plug-in sleeve, plug-in rod, guide sleeve, and movable plate in this utility model.

[0024] In the diagram: 1. Housing; 2. Connecting rod; 3. Connecting sleeve; 4. Guide sleeve; 5. Guide groove; 6. Guide block; 7. Connecting block; 8. Connecting block; 9. Movable groove; 10. Connecting plate; 11. Rotating shaft; 12. Movable spring; 13. Movable plate; 14. Elastic plate; 15. Movable block; 16. Mating plate; 17. Adaptor plate; 18. Housing cover; 19. Fixing plate; 20. Connecting block; 21. Slot; 22. Partition; 23. Guide groove; 24. Guide rail; 25. Connecting plate; 26. Connecting spring; 27. End plate; 28. Guide slope. Detailed Implementation

[0025] It should be noted that, unless otherwise specified, the embodiments and features described in this application can be combined with each other. The present invention will now be described in detail with reference to the accompanying drawings and embodiments.

[0026] It should be noted that, unless otherwise specified, all technical and scientific terms used in this application have the same meaning as commonly understood by one of ordinary skill in the art to which this application pertains.

[0027] In this utility model, unless otherwise stated, the orientations used, such as "up" and "down", usually refer to the direction shown in the accompanying drawings, or to the vertical, perpendicular, or gravitational direction; similarly, for ease of understanding and description, "left" and "right" usually refer to the left and right shown in the accompanying drawings; "inner" and "outer" refer to the inner and outer contours of each component itself, but the above directional terms are not used to limit this utility model.

[0028] Please see Figures 1-5 A storage chip storage box includes a box body 1. A plug-in rod 2 is provided on the outside of the box body 1. A plug-in sleeve 3 is detachably fitted on one end of the plug-in rod 2. A guide sleeve 4 is slidably fitted on the outside of the plug-in sleeve 3. A guide groove 5 is opened in the guide sleeve 4. A guide block 6 is slidably provided in the guide groove 5. A connecting block 7 is connected to one side of the guide block 6. A plug-in block 8 is fixedly provided on one side of the connecting block 7. A movable groove 9 is opened on the outside of the plug-in rod 2. A plug-in plate 10 is provided in the movable groove 9. A rotating shaft 11 is symmetrically provided on both sides of the plug-in plate 10. The plug-in plate 10 is rotatably installed in the movable groove 9 through the rotating shaft 11. A movable spring 12 is connected to one side of the plug-in plate 10. The other end of the movable spring 12 is connected to the inner wall of the movable groove 9. A movable plate 13 is movably provided on one side of the plug-in sleeve 3. An elastic plate 14 is connected to one side of the movable plate 13. A movable block 15 is fixedly provided on one side of the elastic plate 14.

[0029] The outer side of the box body 1 is fixedly connected with a mating plate 16 and an adapter plate 17. The top of the box body 1 is detachably provided with a box cover 18, and the outer side of the box cover 18 is fixedly connected with a fixing plate 19.

[0030] Both the bottom of the box body 1 and the box cover 18 are fixed with insert blocks 20, and the top of the box body 1 is provided with a slot 21, which is adapted to the insert block 20.

[0031] The interior of the box 1 is equipped with multiple removable partitions 22.

[0032] In this embodiment, when the device is needed to store chips, the chips are first placed in the housing 1 and separated by the partition 22. Foam or other fillers can be placed on both sides of the chips to protect them. When stacking, another housing 1 is placed directly on top of this housing 1, and the insert 20 at the bottom of the upper housing 1 is inserted into the slot 21 at the top of the lower housing 1. Then, the stacking and storage can be carried out according to the above steps. Finally, the housing cover 18 is installed on the top of the uppermost housing 1, and the insert 20 at the bottom of the housing cover 18 is inserted into the slot 21 at the top of the uppermost housing 1.

[0033] Please see Figures 3-5 As a further implementation of the overall equipment: a guide groove 23 is provided on the outer side of the plug rod 2, and a guide rail 24 is fixedly provided inside the plug sleeve 3, with the guide groove 23 and the guide rail 24 being adapted to each other.

[0034] A connecting plate 25 is fixedly provided on the outside of the plug sleeve 3, and a connecting spring 26 is movably sleeved on the outside of the plug sleeve 3. The two ends of the connecting spring 26 are connected to the connecting plate 25 and the guide sleeve 4, respectively.

[0035] An end plate 27 is fixedly provided on the outside of the plug sleeve 3, and the elastic plate 14 slides through the end plate 27.

[0036] The top of the plug sleeve 3 is fixed with a guide slope 28.

[0037] More specifically, when it is necessary to disassemble multiple boxes 1 or remove the box cover 18 from the top of the box 1, first pull the guide sleeve 4 to one side, so that the guide sleeve 4 and the connecting plate 25 cooperate to compress the connecting spring 26. The guide sleeve 4 will drive the inner inclined guide groove 5 to slide, so that the guide block 6 slides along the guide groove 5. The guide block 6 drives the plug-in block 8 to slide outward through the connecting block 7, so that the plug-in block 8 no longer limits one end of the plug-in plate 10. Then, the rounded corner on one side of the guide sleeve 4 will push the movable block 15 outward, so that the movable block 15 drives the elastic plate 14 to tilt outward. Then, the guide sleeve 4 and the plug-in sleeve 3 are pulled outward, and the plug-in rod 2 is pulled to the other side, so that the plug-in sleeve 3 drives the inner guide rail 24 from the guide groove 2. 3. Slide out, and then the outer wall of the plug plate 10 is no longer limited by the inner wall of the guide slope 28. Since the movable spring 12 is a tension spring structure, the tension spring will pull the plug plate 10, causing the plug plate 10 to rotate and reset along the rotating shaft 11, so that one end of the plug plate 10 is put into the movable groove 9. Then the plug sleeve 3 and the plug rod 2 can be completely removed. Then the movable plate 13 is pulled to one side, so that the movable plate 13 drives the elastic plate 14 to slide along the groove opened in the end plate 27, and the elastic plate 14 will drive the movable block 15 to move to one side of the guide sleeve 4. Then the elastic plate 14 will drive the movable block 15 to return to the center. Then the guide sleeve 4 is released, the connecting spring 26 pushes the guide sleeve 4 to slide and reset, and the guide sleeve 4 will push the movable block 15 on one side, so that the movable block 1... 5. The movable plate 13 is moved by the elastic plate 14, and the guide sleeve 4 drives the guide groove 5 with its inner inclined opening to slide and reset. Then, the guide block 6 drives the plug-in block 8 to slide and reset inward through the connecting block 7. After the connecting spring 26 is completely reset, the movable block 15 is between the guide sleeve 4 and the end plate 27. Then, following the above steps, the other plug-in sleeves 3 and plug-in rods 2 are removed one by one. Then, the box body 1 and the box cover 18 can be separated. When it is necessary to connect the box body 1 together and fix it, or to fix the box cover 18 to the top of the box body 1, first assemble the box body 1 and the box cover 18 together, and make the mounting holes of the mating plate 16 and the adapter plate 17 concentric, or make the mounting holes of the mating plate 16 and the fixing plate 19 concentric. Then, the plug rod 2 is passed through the mounting hole from one side, and the plug sleeve 3 is fitted onto the outside of the plug rod 2 from the other side, causing the inner guide rail 24 of the plug sleeve 3 to slide again into the guide groove 23 opened on the outside of the plug rod 2. Then, one side of the movable plate 13 first contacts the mounting surface, so that the movable plate 13, the elastic plate 14, and the movable block 15 no longer move. Then, the movable block 15 pushes the guide sleeve 4 to stop moving, and the guide sleeve 4 will drive the guide groove 5 to slide relative to each other. The guide sleeve 4 will also cooperate with the connecting plate 25 again to compress the connecting spring 26. Then, the guide block 6 will drive the plug block 8 to move outward again through the connecting block 7. Then, the outer wall of one end of the plug plate 10 is gradually limited by the inner wall of the guide slope 28, so that the plug plate 10 rotates in the opposite direction along the rotating shaft 11.This causes the other side of the plug-in plate 10 to gradually rotate out of the movable slot 9, pulling the movable spring 12 outward. When the plug-in sleeve 3 is fully fitted onto the outside of the plug-in rod 2, one side of the end plate 27 is again in contact with the movable plate 13. At this time, the thrust of the connecting spring 26 is greater than the force applied by the elastic plate 14. Then, the connecting spring 26 pushes the guide sleeve 4 to slide back to its original position. Then, the rounded corner structure on the other side of the guide sleeve 4 pushes the movable block 15 outward, causing the movable block 15 to tilt the elastic plate 14 outward. The guide sleeve 4 then drives the inner guide groove 5 to slide back to its original position. Then, the guide block 6 drives the plug-in block 8 to slide back to its original position through the connecting block 7, causing the plug-in block 8 to abut against one end of the plug-in plate 10 again. At this time, the guide sleeve 4 is fully reset and located inside the elastic plate 14. Then, the elastic plate 14 drives the movable block 15 to return to its original position. At this time, the connecting spring 26 has been fully reset, thus achieving convenient fixing between the box body 1 and the box cover 18 or between the boxes 1.

[0038] In summary, when using or operating the device: when it is necessary to use the device to store chips, first place the chips into the housing 1 and separate them with the partition 22. The sides of the chips can be filled with foam or other fillers to protect them. When stacking, place another housing 1 directly on top of this housing 1, so that the insert 20 at the bottom of the upper housing 1 is inserted into the slot 21 at the top of the lower housing 1. Then, stacking and storage can be carried out by referring to the above steps. Finally, install the housing cover 18 on the top of the uppermost housing 1, so that the insert 20 at the bottom of the housing cover 18 is inserted into the slot 21 at the top of the uppermost housing 1.

[0039] When it is necessary to disassemble multiple boxes 1 or remove the box cover 18 from the top of the box 1, first pull the guide sleeve 4 to one side, so that the guide sleeve 4 and the connecting plate 25 cooperate to compress the connecting spring 26. The guide sleeve 4 will drive the inner inclined guide groove 5 to slide, so that the guide block 6 slides along the guide groove 5. The guide block 6 drives the plug-in block 8 to slide outward through the connecting block 7, so that the plug-in block 8 no longer limits one end of the plug-in plate 10. Then, the rounded corner on one side of the guide sleeve 4 will push the movable block 15 outward, so that the movable block 15 drives the elastic plate 14 to tilt outward. Then, the guide sleeve 4 and the plug-in sleeve 3 are pulled outward, and the plug-in rod 2 is pulled to the other side, so that the plug-in sleeve 3 drives the inner guide rail 24 to slide out of the guide groove 23. Then, the outer wall of the plug plate 10 is no longer limited by the inner wall of the guide slope 28. Since the movable spring 12 is a tension spring structure, the tension spring will pull the plug plate 10, causing the plug plate 10 to rotate and reset along the rotating shaft 11, so that one end of the plug plate 10 is put into the movable groove 9. Then the plug sleeve 3 and plug rod 2 can be completely removed. Then the movable plate 13 is pulled to one side, so that the movable plate 13 drives the elastic plate 14 to slide along the groove opened in the end plate 27, and the elastic plate 14 will drive the movable block 15 to move to one side of the guide sleeve 4. Then the elastic plate 14 will drive the movable block 15 to return to the center. Then the guide sleeve 4 is released, the connecting spring 26 pushes the guide sleeve 4 to slide and reset, and the guide sleeve 4 will push the movable block 15 on one side, so that the movable block 15 can pass through. The elastic plate 14 drives the movable plate 13 to move, and at the same time, the guide sleeve 4 drives the guide groove 5, which is inclined on the inner side, to slide and reset. Then, the guide block 6 drives the plug-in block 8 to slide and reset inward through the connecting block 7. After the connecting spring 26 is completely reset, the movable block 15 is between the guide sleeve 4 and the end plate 27. Then, following the above steps, remove the other plug-in sleeves 3 and plug-in rods 2 one by one. Then, the box body 1 and the box cover 18 can be separated. When it is necessary to connect the box body 1 together and fix it, or to fix the box cover 18 to the top of the box body 1, first assemble the box body 1 and the box cover 18 together, and make the mounting holes of the mating plate 16 and the adapter plate 17 concentric, or make the mounting holes of the mating plate 16 and the fixing plate 19 concentric. Then, the plug rod 2 is passed through the mounting hole from one side, and the plug sleeve 3 is fitted onto the outside of the plug rod 2 from the other side. The inner guide rail 24 of the plug sleeve 3 slides into the guide groove 23 on the outside of the plug rod 2. Then, one side of the movable plate 13 first contacts the mounting surface, so that the movable plate 13, the elastic plate 14, and the movable block 15 no longer move. Then, the movable block 15 pushes the guide sleeve 4 to stop moving. The guide sleeve 4 will drive the guide groove 5 to slide relative to each other, and the guide sleeve 4 will cooperate with the connecting plate 25 again to compress the connecting spring 26. Then, the guide block 6 will drive the plug block 8 to move outward again through the connecting block 7. Then, the outer wall of one end of the plug plate 10 is gradually limited by the inner wall of the guide slope 28, so that the plug plate 10 rotates in the opposite direction along the rotating shaft 11.This causes the other side of the plug-in plate 10 to gradually rotate out of the movable slot 9, pulling the movable spring 12 outward. When the plug-in sleeve 3 is fully fitted onto the outside of the plug-in rod 2, one side of the end plate 27 is again in contact with the movable plate 13. At this time, the thrust of the connecting spring 26 is greater than the force applied by the elastic plate 14. Then, the connecting spring 26 pushes the guide sleeve 4 to slide back to its original position. Then, the rounded corner structure on the other side of the guide sleeve 4 pushes the movable block 15 outward, causing the movable block 15 to tilt the elastic plate 14 outward. The guide sleeve 4 then drives the inner guide groove 5 to slide back to its original position. Then, the guide block 6 drives the plug-in block 8 to slide back to its original position through the connecting block 7, causing the plug-in block 8 to abut against one end of the plug-in plate 10 again. At this time, the guide sleeve 4 is fully reset and located inside the elastic plate 14. Then, the elastic plate 14 drives the movable block 15 to return to its original position. At this time, the connecting spring 26 has been fully reset, thus achieving convenient fixing between the box body 1 and the box cover 18 or between the boxes 1.

[0040] Of all the solutions mentioned above, those involving the connection between two components can be selected according to the actual situation, such as welding, bolt and nut connection, bolt or screw connection, or other known connection methods, which will not be elaborated here. For all the fixed connections mentioned above, welding is preferred. Although embodiments of this utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of this utility model. The scope of this utility model is defined by the appended claims and their equivalents.

Claims

1. A storage box for memory chips, comprising a box body (1), characterized in that: The outer side of the housing (1) is provided with a plug rod (2), one end of which is detachably fitted with a plug sleeve (3). A guide sleeve (4) is slidably fitted on the outer side of the plug sleeve (3). A guide groove (5) is provided in the guide sleeve (4). A guide block (6) is slidably provided in the guide groove (5). A connecting block (7) is connected to one side of the guide block (6). A plug block (8) is fixedly provided on one side of the connecting block (7). A movable groove (9) is provided on the outer side of the plug rod (2). 9) is provided with a plug plate (10), and the plug plate (10) is symmetrically provided with rotating shafts (11) on both sides. The plug plate (10) is rotatably installed in the movable groove (9) through the rotating shafts (11). A movable spring (12) is connected to one side of the plug plate (10), and the other end of the movable spring (12) is connected to the inner wall of the movable groove (9). A movable plate (13) is movably provided on one side of the plug sleeve (3), and an elastic plate (14) is connected to one side of the movable plate (13). A movable block (15) is fixed on one side of the elastic plate (14).

2. The memory chip storage box according to claim 1, characterized in that: The outer side of the box (1) is fixedly connected with a mating plate (16) and an adapter plate (17). The top of the box (1) is detachably provided with a box cover (18). The outer side of the box cover (18) is fixedly connected with a fixing plate (19).

3. A storage box for memory chips according to claim 2, characterized in that: Both the bottom of the box body (1) and the box cover (18) are fixed with inserts (20), and the top of the box body (1) is provided with a slot (21), which is adapted to the inserts (20).

4. A storage box for memory chips according to claim 3, characterized in that: The box (1) is equipped with multiple detachable partitions (22).

5. A memory chip storage box according to any one of claims 1-3, characterized in that: The plug rod (2) has a guide groove (23) on its outer side, and the plug sleeve (3) has a guide rail (24) fixed inside. The guide groove (23) is adapted to the guide rail (24).

6. A memory chip storage box according to claim 1, characterized in that: A connecting plate (25) is fixedly provided on the outside of the plug sleeve (3), and a connecting spring (26) is movably sleeved on the outside of the plug sleeve (3). The two ends of the connecting spring (26) are connected to the connecting plate (25) and the guide sleeve (4) respectively.

7. A memory chip storage box according to claim 6, characterized in that: An end plate (27) is fixedly provided on the outside of the plug sleeve (3), and the elastic plate (14) slides through the end plate (27).

8. A memory chip storage box according to claim 5, characterized in that: The top of the plug sleeve (3) is fixedly provided with a guide slope (28).