Electronic component turnover box
Through the design of modular loading components and limiting card slot card blocks, combined with buffer rubber gaskets and dampers, the damage caused by vibration or impact of electronic components during transportation is solved, and efficient and safe component protection and convenient loading and unloading operations are achieved.
Patent Information
- Application Number
- CN202422484984.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-15
- Publication Date
- 2025-07-18
- Estimated Expiration
- 2034-10-15
AI Technical Summary
The existing electronic component turnover devices lack limit structure during transportation, resulting in components being easily bumped up and down or jumped out of the slot under vibration or impact, causing damage or loss. The existing designs have shortcomings in environmental protection and buffering performance.
An electronic component turnover box is designed, using modular loading components, including a loading tray, foam inner liner and cushioning rubber gasket. It combines the limiting slot and cushioning block to provide shock protection, and limits the components through the cushioning rubber gasket. The impact force is absorbed by the damper, and the lateral cushioning plate provides additional cushioning.
It effectively reduces the risk of damage to components during transportation, improves the convenience of loading and unloading, enhances space utilization and safety, and ensures the stability and integrity of components during transportation.
Smart Images

Figure CN223117148U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of electronic component transportation, and particularly relates to a turnover box for electronic components. Background Art
[0002] There are a wide variety of electronic components, including but not limited to resistors, capacitors, inductors, integrated circuits, diodes, triodes, etc. These components often have a high degree of precision and sensitivity, and are very sensitive to changes in environmental factors such as temperature, humidity, vibration, shock, and static electricity. Any improper handling may lead to a decline in component performance or even damage. As the core component in the production of electronic products, the quality and reliability of electronic components directly affect the performance and stability of the final product. Therefore, in the process of transporting electronic components, it is crucial to ensure the safe, damage-free and efficient flow of components.
[0003] When some existing electronic component turnover devices are in use, there is no limiting structure of any form at the top of the placement groove for installing electronic components. When the turnover device is subjected to large vibrations or impacts, the electronic components may jolt up and down in the placement groove or even jump out of the groove, causing damage or loss.
[0004] For example, a disclosed electronic component turnover box with the publication number CN221024883U. When the lid of the electronic component turnover box of this patent is opened, the electronic components are placed into the interior of the placement groove, and then the lid is closed. When the box body vibrates during transportation, the movement of the plug-in board in the slot hole and the expansion and contraction of the first spring and the second spring facilitate reducing the vibration force generated by the box body, thereby reducing the impact force received by the electronic components, protecting the integrity of the electronic components, preventing the electronic components from being damaged, providing a good protection effect for the electronic components, improving the stability during use, and solving the problem that the existing electronic component turnover box cannot provide a good protection effect for the electronic components during handling, has a simple structure, poor protection ability, and is extremely prone to damage due to vibration during transportation, thus reducing the practicality.
[0005] For the above-mentioned electronic component turnover box, although the design of the placement groove on it considers using EPP material to improve environmental protection, compressive buffering and heat insulation performance, there is no limiting structure of any form (such as an elastic pressing plate, a card slot or a fixing clip, etc.) at the top. This means that during transportation, if the box body is subjected to large vibrations or impacts, the electronic components may jolt up and down in the placement groove or even jump out of the groove, causing damage or loss.
[0006] Therefore, it is very necessary to invent an electronic component turnover box to solve the above problems. Summary of the Utility Model
[0007] The purpose of the present utility model is to provide a turnover box for electronic components to solve the problems in the above technology.
[0008] To achieve the above object, the present utility model provides the following technical solution: A turnover box for electronic components, including a turnover box body, wherein a plurality of stacked loading components are arranged inside the turnover box body. The loading component includes a loading tray, and loading grooves are formed on the surface of the loading tray. A foam plastic inner liner is installed inside the loading grooves. A sealing plate is hinged at the top of the loading tray, and a buffer rubber gasket is installed at the bottom of the sealing plate. The buffer rubber gasket is matched with the foam plastic inner liner. A first limiting card slot is formed at the bottom of the loading tray, and a first limiting card block is installed at the top of the sealing plate. The first limiting card blocks on two adjacent loading components are clamped with the first limiting card slots. A second limiting card slot is formed on the inner top surface of the turnover box body, and the first limiting card block on the uppermost loading component is clamped with the second limiting card slot. A second limiting card block is installed on the inner bottom surface of the turnover box body, and the second limiting card block is clamped with the first limiting card slot on the lowermost loading component.
[0009] Through the combination of the buffer rubber gasket and the foam plastic inner liner, good shock protection is provided for electronic components, reducing the damage risk during transportation; the modular design of the loading components makes the loading and unloading of electronic components more convenient, and at the same time improves the space utilization rate of the turnover box.
[0010] Preferably, an opening is formed on the front surface of the turnover box body, and a downward-opening box door is hinged at the opening.
[0011] The design of the downward-opening box door makes it more convenient to open and close the turnover box, improving the operation efficiency.
[0012] Preferably, a buckle fixing part is installed on the top of the turnover box body, and a buckle moving part is installed on the surface of the downward-opening box door. The buckle moving part is buckled with the buckle fixing part.
[0013] The combination of the buckle fixing part and the buckle moving part ensures the stability of the box door in the closed state, improving the safety of the turnover box.
[0014] Preferably, gaps are left between both sides of the inner wall of the turnover box body and the loading components, and lateral buffer plates are arranged at the gaps.
[0015] The gaps between both sides of the inner wall of the turnover box body and the loading components facilitate the pushing and pulling of the loading components 2.
[0016] Preferably, one side of the lateral buffer plate abuts against the loading component, and a damper is installed on the other side of the lateral buffer plate. The damper is fixedly connected to the inner wall of the turnover box body.
[0017] When the box body sways laterally and causes the loading component to squeeze the lateral buffer plate, the damper can absorb and consume the impact force, thus playing a buffering role.
[0018] Preferably, a carrying handle is hingedly arranged at the top of the turnover box body, and an anti-slip sleeve is sleeved on the surface of the carrying handle.
[0019] The design of the carrying handle makes it easier to carry the turnover box, improving work efficiency; the addition of the anti-slip sleeve increases the stability during carrying and prevents accidents caused by slipping.
[0020] Preferably, four support feet are installed at the bottom of the turnover box body, and the four support feet are respectively arranged at the four corners of the bottom of the turnover box body.
[0021] The design of the four support feet makes the turnover box more stable when placed and not easily toppled. The support feet can also effectively protect the ground from wear or scratches caused by direct contact with the turnover box.
[0022] Preferably, a label slot is installed on one side of the turnover box body, and the label slot is made of transparent plastic material.
[0023] Insert an identification label into the label slot to indicate the types, quantities, and important information of the electronic components in the box, which is convenient for management and identification.
[0024] In the above technical solution, the technical effects and advantages provided by the present utility model are as follows:
[0025] 1. By designing a packaging board on the top of the loading tray and installing a buffer rubber gasket at the bottom of the packaging board, the buffer rubber gasket is used to squeeze and limit the electronic components inside the foam plastic inner liner, providing anti-vibration protection for the electronic components placed therein, avoiding the up and down jolting of the electronic components in the foam plastic inner liner due to the vibration of the box body, thereby greatly reducing the risk of damage to the electronic components;
[0026] 2. Adopt a modular design of the loading component. The adjacent two loading components are firmly connected through the first limiting card slot 7 and the first limiting block. This design makes the assembly and disassembly of the loading component very convenient and fast. The simultaneous use of multiple loading components is convenient for large-scale and standardized loading of electronic components, meeting the requirements of large-scale production and transportation. Description of the Drawings
[0027] Figure 1 is a schematic diagram of the overall structure of the first perspective of the present utility model;
[0028] Figure 2 is a schematic diagram of the overall structure of the second perspective of the present utility model;
[0029] Figure 3 This is a schematic diagram of the overall structure when the downward-opening box door of the present utility model is opened;
[0030] Figure 4 This is a schematic diagram of the structure of the turnover box body when the downward-opening box door of the present utility model is opened;
[0031] Figure 5 This is a schematic diagram of the structure when the loading component of the present utility model is closed;
[0032] Figure 6 This is a schematic diagram of the structure when the loading component of the present utility model is opened.
[0033] Explanation of reference numerals:
[0034] 1. Turnover box body; 2. Loading component; 3. Loading tray; 4. Foam plastic inner liner; 5. Encapsulation board; 6. Buffer rubber gasket; 7. First limit card slot; 8. First limit card block; 9. Second limit card slot; 10. Second limit card block; 11. Downward-opening box door; 12. Lock fixing part; 13. Lock movable part; 14. Lateral buffer board; 15. Damper; 16. Carrying handle; 17. Support foot; 18. Label slot. Specific embodiments
[0035] In order to enable those skilled in the art to better understand the technical solution of the present utility model, the present utility model will be further introduced in detail below with reference to the accompanying drawings.
[0036] The present utility model provides an electronic component turnover box as shown in Figure 1-6 which includes a turnover box body 1. Inside the turnover box body 1, a plurality of loading components 2 stacked up and down are arranged. The loading component 2 includes a loading tray 3. Loading grooves are formed on the surface of the loading tray 3. A foam plastic inner liner 4 is installed inside the loading grooves. The top of the loading tray 3 is hinged with an encapsulation board 5. A buffer rubber gasket 6 is installed at the bottom of the encapsulation board 5. The buffer rubber gasket 6 is matched with the foam plastic inner liner 4. A first limit card slot 7 is formed at the bottom of the loading tray 3. A first limit card block 8 is installed at the top of the encapsulation board 5. The first limit card blocks 8 on two adjacent loading components 2 are engaged with the first limit card slots 7. A second limit card slot 9 is formed on the inner top surface of the turnover box body 1. The first limit card block 8 on the uppermost loading component 2 is engaged with the second limit card slot 9. A second limit card block 10 is installed on the inner bottom surface of the turnover box body 1. The second limit card block 10 is engaged with the first limit card slot 7 on the lowermost loading component 2.
[0037] In one aspect of this embodiment, an opening is provided on the front of the turnover box body 1. A downward-opening box door 11 is hingedly arranged at the opening. A buckle fixing member 12 is installed at the top of the turnover box body 1. A buckle movable member 13 is installed on the surface of the downward-opening box door 11. The buckle movable member 13 is buckled with the buckle fixing member 12. There are gaps between both sides of the inner wall of the turnover box body 1 and the loading assembly 2. Lateral buffer plates 14 are arranged at the gaps. One side of the lateral buffer plate 14 abuts against the loading assembly 2. A damper 15 is installed on the other side of the lateral buffer plate 14. The damper 15 is fixedly connected to the inner wall of the turnover box body 1. A carrying handle 16 is hingedly arranged at the top of the turnover box body 1. An anti-slip sleeve is sleeved on the surface of the carrying handle 16. Four support feet 17 are installed at the bottom of the turnover box body 1. The four support feet 17 are respectively arranged at the four corners of the bottom of the turnover box body 1. A label slot 18 is installed on one side of the turnover box body 1. The label slot 18 is made of transparent plastic material.
[0038] The working principle of the present utility model:
[0039] Refer to the attached Figure 1-6 drawings. When using the present utility model, first place the electronic components to be transported in the foam plastic inner liner 4 on the loading tray 3. The design of the foam plastic inner liner 4 can effectively protect the electronic components from physical damage. Subsequently, cover the encapsulation board 5 on the top of the loading tray 3 to ensure that the buffer rubber gasket 6 is closely attached to the foam plastic inner liner 4, and squeeze and limit the electronic components to prevent them from being damaged due to jolting up and down in the foam plastic inner liner 4 during transportation due to vibration;
[0040] Stack multiple loaded loading assemblies 2 on top of each other in sequence. During the stacking process, use the first limiting card slot 7 at the bottom of the loading tray 3 to be engaged with the first limiting card block 8 at the top of the encapsulation board 5 of the upper loading assembly 2 to achieve a stable connection between the loading assemblies and ensure that all loading assemblies are correctly assembled together to form a stable whole;
[0041] Slowly push the assembled loading assembly as a whole into the box body through the opening of the turnover box body 1. When the loading assembly is pushed into the box body, the first limiting card block 8 on the uppermost loading assembly 2 will automatically be engaged with the second limiting card slot 9 on the inner top surface of the turnover box body 1, and at the same time, the second limiting card block 10 on the inner bottom surface of the turnover box body 1 will also be engaged with the first limiting card slot 7 on the lowermost loading assembly 2, thereby achieving a quick and stable assembly between the loading assembly and the box body;
[0042] Finally, turn the downward-opening box door 11 on the front of the turnover box body 1 upward until it is completely closed, and use the buckle movable member 13 to be buckled with the buckle fixing member 12 at the top of the turnover box body 1 to ensure that the box door is tightly closed and not easily opened, improving safety.
Claims
1. An electronic component turnover box, comprising a turnover box body (1), characterized in that: Inside the turnover box body (1), a plurality of loading components (2) stacked up and down are arranged. The loading component (2) includes a loading tray (3). Loading grooves are formed on the surface of the loading tray (3). A foam plastic inner liner (4) is installed inside the loading grooves. A sealing plate (5) is hingedly arranged on the top of the loading tray (3). A buffer rubber gasket (6) is installed at the bottom of the sealing plate (5). The buffer rubber gasket (6) is matched with the foam plastic inner liner (4). A first limiting card slot (7) is formed at the bottom of the loading tray (3). A first limiting card block (8) is installed on the top of the sealing plate (5). The first limiting card blocks (8) on two adjacent loading components (2) are clamped with the first limiting card slots (7). A second limiting card slot (9) is formed on the inner top surface of the turnover box body (1). The first limiting card block (8) on the uppermost loading component (2) is clamped with the second limiting card slot (9). A second limiting card block (10) is installed on the inner bottom surface of the turnover box body (1). The second limiting card block (10) is clamped with the first limiting card slot (7) on the lowermost loading component (2).
2. The turnover box for electronic components according to claim 1, wherein: An opening is formed on the front surface of the turnover box body (1). A downward-opening box door (11) is hingedly arranged at the opening.
3. The turnover box for electronic components according to claim 2, wherein: A buckle fixing part (12) is installed on the top of the turnover box body (1). A buckle movable part (13) is installed on the surface of the downward-opening box door (11). The buckle movable part (13) is buckled with the buckle fixing part (12).
4. The turnover box for electronic components according to claim 1, characterized in that: Gaps are left between both sides of the inner wall of the turnover box body (1) and the loading component (2). Lateral buffer plates (14) are arranged at the gaps.
5. The turnover box for electronic components according to claim 4, wherein: One side of the lateral buffer plate (14) abuts against the loading component (2). A damper (15) is installed on the other side of the lateral buffer plate (14). The damper (15) is fixedly connected to the inner wall of the turnover box body (1).
6. The turnover box for electronic components according to claim 1, wherein: A lifting handle (16) is hingedly arranged on the top of the turnover box body (1). An anti-slip sleeve is sleeved on the surface of the lifting handle (16).
7. An electronic component turnover box according to claim 1, characterized in that: Four support feet (17) are installed at the bottom of the turnover box body (1). The four support feet (17) are respectively arranged at the four corners of the bottom of the turnover box body (1).
8. An electronic component turnover box according to claim 1, characterized in that: A label slot (18) is installed on one side of the turnover box body (1). The label slot (18) is made of transparent plastic material.
Citation Information
Patent Citations
A turnover box for electronic components
CN221024883U