Damping electronic electrician tool box
By setting up multi-layer protective components on the toolbox, the problem of deformation and tool damage caused by external impact is solved, and the toolbox is efficient and safely used.
Patent Information
- Application Number
- CN202422694322.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-05
- Publication Date
- 2025-08-29
- Estimated Expiration
- 2034-11-05
AI Technical Summary
The existing electronic electrical tool box has a simple structure and is prone to deformation and damage to internal tools due to external impacts.
The external anti-collision protection component, the first shock absorbing buffer component, the second shock absorbing buffer component and the edge pressure-resistant protection component are adopted, including thickened outer box, external support pressure splitter, buffer cavity, pressure-bearing base plate, lower support plate, reinforced support block, upper support plate, reinforced load-bearing plate, fitting shock absorbing plate, V-shaped pressure-sharing support bar, buffer extrusion strip, pressure-bearing fixed partition plate, limit sleeve, shock-absorbing spring, pressure-resistant buffering bullet plate, arc-shaped extrusion block, pressure-resistant shock-absorbing inner plate, edge protection arc plate and other components to form a multi-layer protective structure.
Effectively prevent the toolbox from deforming under external impact, protect the internal tools from damage, improve anti-collision performance, and achieve efficient and safe use.
Smart Images

Figure CN223277965U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of electronic and electrical tool boxes, in particular to a shock-absorbing electronic and electrical tool box. Background Art
[0002] The electronic and electrical tool boxes used on the market have a relatively simple structure, and most of them only have a single shell structure. Tool boxes that need to store electronic and electrical precision training tools in schools are generally placed directly on the table or on the ground, which are easily affected by external impacts and deformation, thereby causing unnecessary damage to the tools inside the tool box. Therefore, there is an urgent need to set up an electronic and electrical tool box that can provide dual pressure and shock absorption protection to meet the needs of efficient and safe use of electronic and electrical tool boxes. Utility Model Content
[0003] In order to overcome the problem that most electronic and electrical tool boxes are only equipped with a single shell structure during use, tool boxes that need to store electronic and electrical precision training tools in schools are generally placed directly on the table or on the ground, which are easily deformed by external impacts, thereby causing unnecessary damage to the tools inside the tool box.
[0004] The technical solution of the utility model is: a shock-absorbing electronic and electrical tool box, comprising a tool box body, an anti-collision tool box cover, an external anti-collision protection component, a first shock-absorbing buffer component, a second shock-absorbing buffer component, and an edge anti-compression protection component; the upper end of the tool box body is hingedly connected to the anti-collision tool box cover; the external anti-collision protection component is installed on the outside of the tool box body; the first shock-absorbing buffer component is installed on the outer wall of the tool box body; the second shock-absorbing buffer component is installed on the outside of the first shock-absorbing buffer component; and the edge anti-compression protection components are installed at the four corners of the outside of the tool box body.
[0005] Preferably, the use of an external anti-collision protection component can provide a certain anti-collision protection effect for the toolbox body, and the use of the first shock-absorbing buffer component and the second shock-absorbing buffer component can improve the anti-collision performance of the toolbox body. At the same time, the use of the edge pressure protection component can provide a certain protection for the four corners of the toolbox body, so that when the toolbox body is subjected to external impact, the tools inside it will not be easily damaged.
[0006] Preferably, the external anti-collision protection component includes a thickened outer box body, an external support dividing strip, a buffer cavity, a pressure-bearing bottom plate, a lower support plate, a reinforced support block, an upper support plate and a reinforced load-bearing plate; a thickened outer box body is installed on the outside of the toolbox body; an external support dividing strip is fixedly connected to the outer wall of the thickened outer box body; a buffer cavity is opened inside the thickened outer box body, and the thickened outer box body and the external support dividing strip can play a role in thickening anti-collision protection.
[0007] Preferably, the bottom end of the buffer cavity is fixedly connected to a pressure-bearing base plate; the upper end of the pressure-bearing base plate is fixedly connected to a lower support plate; the upper end of the lower support plate is fixedly connected to a reinforcement support block; the upper end of the reinforcement support block is fixedly connected to an upper support plate; the upper end of the upper support plate is fixedly connected to a reinforced load-bearing plate. The pressure-bearing base plate can provide a certain pressure-resistant protection for the bottom of the toolbox body, and at the same time, the lower support plate, reinforcement support block, upper support plate and reinforced load-bearing plate can achieve a double pressure-bearing and shock-absorbing effect.
[0008] Preferably, the first shock-absorbing and buffering assembly includes a fitted shock-absorbing plate, a V-shaped pressure-dividing support strip, a buffer extrusion strip and a pressure-bearing fixed partition; a fitted shock-absorbing plate is fixedly connected to the outer wall of the toolbox body; a V-shaped pressure-dividing support strip is installed on the outer side of the fitted shock-absorbing plate; a buffer extrusion strip is installed on the side end of the V-shaped pressure-dividing support strip; a pressure-bearing fixed partition is installed on the outer side of the V-shaped pressure-dividing support strip and the buffer extrusion strip, and the fitted shock-absorbing plate, V-shaped pressure-dividing support strip and buffer extrusion strip are used to enable the pressure-bearing fixed partition to play a certain buffering and pressure-resistant role on the outer wall of the toolbox body.
[0009] Preferably, the second shock-absorbing and buffering assembly includes a limiting sleeve, a shock-absorbing spring, a pressure-resistant buffer plate, an arc-shaped extrusion block and a pressure-resistant and shock-absorbing inner plate; a limiting sleeve is installed on the outside of the pressure-bearing fixed partition; a shock-absorbing spring is installed inside the limiting sleeve; a damper is installed on the outside of the shock-absorbing spring. When the outer wall of the toolbox body is subjected to impact force, the shock-absorbing spring can achieve a certain purpose of shock absorption and pressure distribution.
[0010] Preferably, a pressure-resistant buffer spring plate is installed on the outside of the shock-absorbing spring; an arc-shaped extrusion block is installed on the outside of the pressure-resistant buffer spring plate; and a pressure-resistant shock-absorbing inner plate is installed on the outside of the arc-shaped extrusion block. The use of the pressure-resistant buffer spring plate, the arc-shaped extrusion block and the pressure-resistant shock-absorbing inner plate can achieve the effect of double shock-absorbing protection.
[0011] Preferably, the edge compression protection component includes an edge protection arc plate, a shock-absorbing cavity and a filling squeeze ball; the edge protection arc plate is installed at the four corners of the outside of the tool box body; a shock-absorbing cavity is opened inside the edge protection arc plate; a filling squeeze ball is installed inside the shock-absorbing cavity, and the edge protection arc plate can provide certain protection for the four corners of the tool box body.
[0012] Beneficial effects of the utility model:
[0013] 1. The external anti-collision protection component can provide a certain anti-collision protection effect for the toolbox body, and the first shock-absorbing buffer component and the second shock-absorbing buffer component can improve the anti-collision performance of the toolbox body. At the same time, the edge pressure protection component can provide a certain degree of protection for the four corners of the toolbox body, so that when the toolbox body is subjected to external impact, the tools inside will not be easily damaged. Compared with the existing electronic and electrical toolbox with a relatively simple structure, most of which only have a single shell structure, the toolbox used in school for electronic and electrical precision training tools is generally placed directly on the table or on the ground, which is easily deformed by external impact. The electronic and electrical toolbox can achieve the effect of efficient and safe use;
[0014] 2. The thickened outer box and outer support strips can provide thickened anti-collision protection. At the same time, the lower support plate, reinforced support block, upper support plate and reinforced load-bearing plate can achieve double pressure-bearing and shock-absorbing effects.
[0015] 3. The use of fitted shock-absorbing plates, V-shaped pressure-dividing support strips and buffer extrusion strips enables the pressure-bearing fixed partitions to play a certain role in buffering and resisting pressure on the outer wall of the toolbox body. When the outer wall of the toolbox body is subjected to impact force, the shock-absorbing springs can achieve a certain purpose of shock absorption and pressure division. The pressure-resistant buffer spring plates, arc-shaped extrusion blocks and pressure-resistant shock-absorbing inner plates can achieve a double shock-absorbing protection effect. At the same time, the edge protection arc plates can provide certain protection for the four corners of the toolbox body. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 Shown is a three-dimensional structural diagram of the electronic and electrical tool box of the present invention;
[0017] Figure 2 Shown is a schematic diagram of the structure of the second shock-absorbing and buffering component of the electronic and electrical tool box of the present invention;
[0018] Figure 3 Shown is a schematic diagram of the three-dimensional structure of the external anti-collision protection component of the electronic and electrical tool box of the present invention;
[0019] Figure 4 Shown is a schematic diagram of the three-dimensional structure of the first shock-absorbing and buffering component of the electronic and electrical tool box of the present invention;
[0020] Figure 5 The electronic and electrical tool box of the present invention is shown Figure 2 Enlarged schematic diagram of the three-dimensional structure at point A in the middle.
[0021] Explanation of the accompanying drawings: 1. Toolbox body; 2. Anti-collision toolbox cover; 3. External anti-collision protection component; 4. First shock-absorbing and buffering component; 5. Second shock-absorbing and buffering component; 6. Edge pressure-resistant protection component; 301. Thickened outer box body; 302. External support pressure dividing strip; 303. Buffer cavity; 304. Pressure-bearing bottom plate; 305. Lower support plate; 306. Reinforced support block; 307. Upper support plate; 308. Reinforced load-bearing plate; 401. Fitted shock-absorbing plate; 402. V-shaped pressure-dividing support strip; 403. Buffer extrusion strip; 404. Pressure-bearing fixed partition; 501. Limiting sleeve; 502. Shock-absorbing spring; 503. Pressure-resistant buffer spring plate; 504. Arc-shaped extrusion block; 505. Pressure-resistant and shock-absorbing inner plate; 601. Edge protection arc plate; 602. Shock-absorbing cavity; 603. Filling extrusion ball. DETAILED DESCRIPTION
[0022] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0023] See also Figure 1-2 , the utility model provides an embodiment: a shock-absorbing electronic and electrical tool box, comprising a tool box body 1, an anti-collision tool box cover 2, an external anti-collision protection component 3, a first shock-absorbing buffer component 4, a second shock-absorbing buffer component 5, and an edge anti-compression protection component 6; the upper end of the tool box body 1 is hingedly connected to the anti-collision tool box cover 2; the external anti-collision protection component 3 is installed on the outside of the tool box body 1; the first shock-absorbing buffer component 4 is installed on the outer wall of the tool box body 1; the second shock-absorbing buffer component 5 is installed on the outside of the first shock-absorbing buffer component 4; the edge anti-compression protection components 6 are installed at the four corners of the outer side of the tool box body 1, the external anti-collision protection component 3 can provide a certain anti-collision protection effect for the tool box body 1, and the use of the first shock-absorbing buffer component 4 and the second shock-absorbing buffer component 5 can improve the anti-collision performance of the tool box body 1, and at the same time, the edge anti-compression protection component 6 can provide a certain protection for the four corners of the tool box body 1, so that when the tool box body 1 is subjected to external impact, the tools inside it will not be easily damaged.
[0024] See also Figure 3In this embodiment, the external anti-collision protection component 3 includes a thickened outer box body 301, an external support dividing strip 302, a buffer cavity 303, a pressure-bearing bottom plate 304, a lower support plate 305, a reinforced support block 306, an upper support plate 307 and a reinforced load-bearing plate 308; a thickened outer box body 301 is installed on the outside of the tool box body 1; an external support dividing strip 302 is fixedly connected to the outer wall of the thickened outer box body 301; a buffer cavity 303 is opened inside the thickened outer box body 301, and the thickened outer box body 301 and the external support dividing strip 302 can play a role in thickening anti-collision protection, and the buffer cavity The bottom end of 303 is fixedly connected to a pressure-bearing base plate 304; the upper end of the pressure-bearing base plate 304 is fixedly connected to a lower support plate 305; the upper end of the lower support plate 305 is fixedly connected to a reinforcement support block 306; the upper end of the reinforcement support block 306 is fixedly connected to an upper support plate 307; the upper end of the upper support plate 307 is fixedly connected to a reinforcement load-bearing plate 308. The pressure-bearing base plate 304 can provide a certain pressure-resistant protection for the bottom of the toolbox body 1, and at the same time, the lower support plate 305, the reinforcement support block 306, the upper support plate 307 and the reinforcement load-bearing plate 308 can achieve a double pressure-bearing and shock-absorbing effect.
[0025] See also Figure 4-5In this embodiment, the first shock-absorbing and buffering assembly 4 includes a fitted shock-absorbing plate 401, a V-shaped pressure-dividing support strip 402, a buffer extrusion strip 403 and a pressure-bearing fixed partition 404; the outer wall of the toolbox body 1 is fixedly connected with a fitted shock-absorbing plate 401; a V-shaped pressure-dividing support strip 402 is installed on the outer side of the shock-absorbing plate 401; a buffer extrusion strip 403 is installed on the side end of the V-shaped pressure-dividing support strip 402; a pressure-bearing fixed partition 404 is installed on the outer side of the V-shaped pressure-dividing support strip 402 and the buffer extrusion strip 403 The fixed partition 404 is made of a bonded shock-absorbing plate 401, a V-shaped pressure-dividing support strip 402 and a buffer extrusion strip 403 so that the pressure-bearing fixed partition 404 can play a certain role in buffering and resisting pressure on the outer wall of the toolbox body 1. The second shock-absorbing and buffering assembly 5 includes a limiting sleeve 501, a shock-absorbing spring 502, a pressure-resistant buffer spring plate 503, an arc-shaped extrusion block 504 and a pressure-resistant and shock-absorbing inner plate 505; a limiting sleeve 501 is installed on the outer side of the pressure-bearing fixed partition 404; the inner side of the limiting sleeve 501 A shock-absorbing spring 502 is installed; a damper is installed on the outside of the shock-absorbing spring 502. When the outer wall of the tool box body 1 is subjected to impact force, the shock-absorbing spring 502 can achieve a certain purpose of shock absorption and pressure division. A pressure-resistant buffer spring plate 503 is installed on the outside of the shock-absorbing spring 502; an arc-shaped extrusion block 504 is installed on the outside of the pressure-resistant buffer spring plate 503; a pressure-resistant shock-absorbing inner plate 505 is installed on the outside of the arc-shaped extrusion block 504. The pressure-resistant buffer spring plate 503, the arc-shaped extrusion block 504 and the pressure-resistant shock-absorbing inner plate 505 are used. The inner plate 505 can play a double shock-absorbing protection role. The edge compression protection component 6 includes an edge protection arc plate 601, a shock-absorbing cavity 602 and a filling squeeze ball 603; the edge protection arc plate 601 is installed at the four corners of the outer side of the tool box body 1; a shock-absorbing cavity 602 is opened inside the edge protection arc plate 601; and a filling squeeze ball 603 is installed inside the shock-absorbing cavity 602. The edge protection arc plate 601 can provide certain protection for the four corners of the tool box body 1.
[0026] During operation, the thickened outer box 301 and the outer support dividing strip 302 can play a role in thickening and anti-collision protection. At the same time, the lower support plate 305, the reinforced support block 306, the upper support plate 307 and the reinforced load-bearing plate 308 can play a dual pressure-bearing and shock-absorbing role.
[0027] Then, by laminating the shock-absorbing plate 401, the V-shaped pressure-dividing support strip 402 and the buffer extrusion strip 403, the pressure-bearing fixed partition 404 can play a certain role in buffering and resisting pressure on the outer wall of the tool box body 1;
[0028] When the outer wall of the toolbox body 1 is subjected to impact force, the shock-absorbing spring 502 can achieve a certain purpose of shock absorption and pressure distribution. The pressure-resistant buffer spring plate 503, the arc-shaped extrusion block 504 and the pressure-resistant shock-absorbing inner plate 505 can achieve a double shock-absorbing protection effect. At the same time, the edge protection arc plate 601 can provide a certain degree of protection for the four corners of the toolbox body 1.
[0029] Through the above steps, the set external anti-collision protection component 3 can provide a certain anti-collision protection effect for the toolbox body 1, and the use of the first shock-absorbing buffer component 4 and the second shock-absorbing buffer component 5 can improve the anti-collision performance of the toolbox body 1. At the same time, the use of the edge pressure protection component 6 can provide a certain protection for the four corners of the toolbox body 1, so as to solve the problem that in the process of using electronic and electrical toolboxes, most of them only have a single shell structure. Toolboxes that need to store electronic and electrical precision training tools in schools are generally placed directly on the table or on the ground, which are easily affected by external impacts and deformed, thereby causing unnecessary damage to the tools inside the toolbox.
[0030] The embodiments of the present invention are described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Various changes can be made within the scope of knowledge possessed by those skilled in the art without departing from the purpose of the present invention.
Claims
1. A shock-absorbing electronic and electrical tool box, comprising a tool box body (1); characterized in that: The tool box also includes an anti-collision tool box cover (2), an external anti-collision protection component (3), a first shock-absorbing and buffering component (4), a second shock-absorbing and buffering component (5), and an edge pressure-resistant protection component (6); the upper end of the tool box body (1) is hingedly connected to the anti-collision tool box cover (2); the external anti-collision protection component (3) is installed on the outside of the tool box body (1); the first shock-absorbing and buffering component (4) is installed on the outer wall of the tool box body (1); the second shock-absorbing and buffering component (5) is installed on the outer side of the first shock-absorbing and buffering component (4); and the edge pressure-resistant protection components (6) are installed at the four corners of the outer side of the tool box body (1).
2. The shock-absorbing electronic and electrical tool box according to claim 1, characterized in that: The external anti-collision protection component (3) comprises a thickened outer box (301), an external support dividing strip (302), a buffer cavity (303), a pressure-bearing bottom plate (304), a lower support plate (305), a reinforced support block (306), an upper support plate (307) and a reinforced load-bearing plate (308); the thickened outer box (301) is installed on the outside of the tool box body (1); the external support dividing strip (302) is fixedly connected to the outer wall of the thickened outer box (301); and the buffer cavity (303) is opened inside the thickened outer box (301).
3. The shock-absorbing electronic and electrical tool box according to claim 2, characterized in that: The bottom end of the buffer cavity (303) is fixedly connected to a pressure-bearing bottom plate (304); the upper end of the pressure-bearing bottom plate (304) is fixedly connected to a lower support plate (305); the upper end of the lower support plate (305) is fixedly connected to a reinforcement support block (306); the upper end of the reinforcement support block (306) is fixedly connected to an upper support plate (307); and the upper end of the upper support plate (307) is fixedly connected to a reinforcement load-bearing plate (308).
4. The shock-absorbing electronic and electrical tool box according to claim 1, characterized in that: The first shock-absorbing and buffering assembly (4) comprises a fitted shock-absorbing plate (401), a V-shaped pressure-dividing support strip (402), a buffer extrusion strip (403) and a pressure-bearing fixed partition (404); the fitted shock-absorbing plate (401) is fixedly connected to the outer wall of the toolbox body (1); the V-shaped pressure-dividing support strip (402) is installed on the outer side of the fitted shock-absorbing plate (401); the buffer extrusion strip (403) is installed on the side end of the V-shaped pressure-dividing support strip (402); and the pressure-bearing fixed partition (404) is installed on the outer side of the V-shaped pressure-dividing support strip (402) and the buffer extrusion strip (403).
5. The shock-absorbing electronic and electrical tool box according to claim 4, characterized in that: The second shock-absorbing and buffering assembly (5) comprises a limiting sleeve (501), a shock-absorbing spring (502), a pressure-resistant buffer spring plate (503), an arc-shaped extrusion block (504), and a pressure-resistant and shock-absorbing inner plate (505); the limiting sleeve (501) is installed on the outside of the pressure-bearing fixed partition (404); the shock-absorbing spring (502) is installed inside the limiting sleeve (501); and a damper is installed on the outside of the shock-absorbing spring (502).
6. The shock-absorbing electronic and electrical tool box according to claim 5, characterized in that: A compression-resistant buffer spring plate (503) is installed on the outer side of the shock-absorbing spring (502); an arc-shaped extrusion block (504) is installed on the outer side of the shock-absorbing spring plate (503); and a compression-resistant shock-absorbing inner plate (505) is installed on the outer side of the arc-shaped extrusion block (504).
7. The shock-absorbing electronic and electrical tool box according to claim 1, characterized in that: The edge pressure-resistant protection component (6) comprises an edge protection arc plate (601), a shock-absorbing cavity (602) and a filling squeeze ball (603); the edge protection arc plate (601) is installed at each of the four corners outside the tool box body (1); a shock-absorbing cavity (602) is provided inside the edge protection arc plate (601); and a filling squeeze ball (603) is installed inside the shock-absorbing cavity (602).