Three-dimensional laser point cloud acquisition shockproof device

By designing the base and top cover components of the shockproof box, combined with the structure of lower and upper shockproof cotton, the problem of the unprotected top of the equipment is solved, achieving all-round sealing and improving the stability of the equipment. It is suitable for the transportation and storage of 3D laser point cloud acquisition devices.

CN223622105UActive Publication Date: 2025-12-02YUNNAN HANGYAO SPACE TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422173245.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-05
Publication Date
2025-12-02
Estimated Expiration
2034-09-05

AI Technical Summary

Technical Problem

The existing 3D laser point cloud acquisition devices are not effectively protected at the top during transportation and storage, resulting in limited overall protection of the device.

Method used

A shockproof box comprising a base assembly and a top cover assembly was designed. The base assembly contains lower and upper shock-absorbing cotton, which are connected by a pull rope. The top cover assembly is sealable. The box contains casters and a parts bag, achieving all-round sealing and improving equipment stability.

Benefits of technology

It achieves comprehensive sealing protection for the equipment, improves safety and stability during transportation, and facilitates disassembly of the equipment and centralized collection of parts.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a three-dimensional laser point cloud acquisition shockproof device, and belongs to the field of shockproof devices.The shockproof device mainly comprises a base assembly, a top cover assembly for sealing the base assembly is hinged to the base assembly, the top cover assembly comprises a cover plate and upper shockproof cotton, the upper shockproof cotton is placed on lower shockproof cotton, and the cover plate is hinged to the top cover assembly. The three-dimensional laser point cloud collection shockproof device comprises upper shockproof cotton and lower shockproof cotton, the upper shockproof cotton and the lower shockproof cotton are made of the same material, the upper shockproof cotton and the lower shockproof cotton have elasticity, and pull ropes are fixedly installed at the two ends of the lower shockproof cotton. According to the anti-vibration box, the two groups of structures are arranged, so that the collection equipment can be wrapped by the two groups of structures in all directions, the use safety can be greatly improved when the anti-vibration box is used, and meanwhile, the bumps can be matched with the damping grooves, so that large-amplitude shaking can be avoided when the upper anti-vibration cotton and the lower anti-vibration cotton are in butt joint.
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Description

Technical Field

[0001] This application relates to the field of shock absorption device technology, specifically a three-dimensional laser point cloud acquisition shock absorption device. Background Technology

[0002] A 3D laser point cloud acquisition device, commonly known as a laser scanner, is used to acquire detailed 3D data of an object or environment. It measures distances to the object's surface using a laser beam, generating a large amount of point cloud data. This data can be used to create high-precision 3D models. Laser scanners are typically equipped with shock-absorbing structures or designs to improve measurement accuracy and equipment stability, especially during transportation and storage. These include shockproof cases for storing the laser scanner.

[0003] However, the shockproof boxes we currently use contain cushioning materials such as foam and rubber pads to protect the equipment from vibration, impact, and environmental factors. But these cushioning materials can only reach the bottom of the equipment when protecting it, and the top of the equipment is usually exposed to the outside of the cushioning materials. As a result, the protection of the testing equipment is affected to some extent.

[0004] Therefore, it is necessary to provide a shockproof device for 3D laser point cloud acquisition to solve the above problems. Utility Model Content

[0005] Based on the aforementioned problems in the existing technology, the problem to be solved by this application is to provide a three-dimensional laser point cloud acquisition shockproof device that achieves the effect of all-round sealing of the equipment.

[0006] The technical solution adopted by this application to solve its technical problem is: a three-dimensional laser point cloud acquisition shockproof device, wherein the three-dimensional laser point cloud acquisition includes a laser scanner device, the shockproof device of the laser scanner device includes a shockproof box, the shockproof box includes a base assembly, a top cover assembly for sealing the base assembly is hinged to the base assembly, the top cover assembly includes a cover plate, and the base assembly includes:

[0007] The box body is hinged to the cover plate, and the inside of the box body is filled with shock-absorbing cotton.

[0008] A placement slot is provided on the lower shock-absorbing cotton, and the laser scanner device can be placed on the placement slot.

[0009] Upper shock-absorbing cotton is placed on top of lower shock-absorbing cotton. The upper and lower shock-absorbing cotton are made of the same material and are elastic. Both ends of the lower shock-absorbing cotton are fixedly installed with pull ropes.

[0010] A fixing plate is fixedly installed on the top inner side of the housing.

[0011] Furthermore, the two sets of pull ropes are elastic, the ends of the two sets of pull ropes can be bonded together, and the two sets of pull ropes can extend onto the upper shock-absorbing cotton.

[0012] Furthermore, the lower shock-absorbing cotton is provided with several sets of shock-absorbing grooves to improve the cushioning effect.

[0013] Furthermore, several sets of protrusions are fixedly installed at the bottom of the upper shock-absorbing cotton, and the protrusions can contact and combine with the shock-absorbing groove.

[0014] Furthermore, the upper shock-absorbing cotton is provided with several sets of part slots, on which parts can be placed, and a handle b is fixedly installed on the upper shock-absorbing cotton.

[0015] Furthermore, the box is equipped with a handle a, and the bottom of the box is equipped with several sets of casters that can contact the ground.

[0016] Furthermore, a fixing plate is fixedly installed inside the cover plate, and a parts bag is fixedly installed on the fixing plate, which is used to support the parts bag.

[0017] Furthermore, a limiting block is fixedly installed near the fixed plate, a rotating rod is rotatably connected to the fixed plate, a limiting block is fixedly installed on the cover plate, the limiting block is used to limit the fixed plate, a groove is opened on the fixed plate, the rotating rod can pass through the groove, and the width of the rotating rod is wider than the groove.

[0018] The beneficial effects of this application are:

[0019] This application provides a three-dimensional laser point cloud acquisition shockproof device. Through the cooperation between the upper and lower shockproof cotton, the acquisition device can be fully wrapped by the two sets of structures, which greatly improves the safety of use. At the same time, the protrusions can cooperate with the shock-absorbing grooves to prevent large-scale shaking when the upper and lower shockproof cotton are connected. Furthermore, the lower shockproof cotton can be quickly removed from inside the box by pulling the rope, thereby improving the disassembly and replacement efficiency of the lower shockproof cotton.

[0020] This application provides a shockproof device for three-dimensional laser point cloud acquisition. The shockproof box is movable by means of casters. At the same time, the combination of a fixing plate and a parts bag allows various parts to be placed inside the shockproof box, so that the parts on the acquisition device can be collected in a centralized manner. Attached Figure Description

[0021] The accompanying drawings, which form part of this application, are used to provide a further understanding of this application. The illustrative embodiments and descriptions of this application are used to explain this application and do not constitute an undue limitation of this application. In the drawings:

[0022] Figure 1 This is an overall schematic diagram of a three-dimensional laser point cloud acquisition anti-vibration device according to this application;

[0023] Figure 2 This is a schematic diagram of the base component in section 1;

[0024] Figure 3 A schematic diagram of the pull rope operation for the base assembly in section 2;

[0025] Figure 4 This is a schematic diagram of the top cover assembly in section 1;

[0026] Figure 5 A schematic diagram of the parts bag for the four top cover components;

[0027] The following are the labeling elements in the figure:

[0028] 10. Base assembly; 11. Housing; 12. Handle a; 13. Casters; 15. Upper shock-absorbing cotton; 16. Parts slot; 17. Handle b; 18. Lower shock-absorbing cotton; 19. Shock-absorbing groove; 110. Protrusion; 111. Pull cord; 112. Placement slot;

[0029] 20. Top cover assembly; 21. Cover plate; 22. Fixing plate; 23. Parts bag; 24. Fixing piece; 25. Limiting block; 26. Rotating rod. Detailed Implementation

[0030] It should be noted that, unless otherwise specified, the embodiments and features described in this application can be combined with each other. This application will now be described in detail with reference to the accompanying drawings and embodiments.

[0031] To enable those skilled in the art to better understand the present application, the technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present application, and not all embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative effort should fall within the scope of protection of the present application.

[0032] like Figure 1As shown, this application provides a shockproof device for three-dimensional laser point cloud acquisition. The three-dimensional laser point cloud acquisition can be a laser scanner device, and the shockproof device for the laser scanner includes a shockproof box. The shockproof box includes a base assembly 10 and a top cover assembly 20 hinged to the base assembly 10. The base assembly 10 is used to place the device and can seal and shockproof the placed device, thereby ensuring that the device can be protected during transportation. The top cover assembly 20 is used to seal and cover the base assembly 10, and can place various parts of the device on the top cover assembly 20, so that the parts on the device can be collected in a centralized manner.

[0033] The base assembly 10 includes a housing 11, which can be made of high-strength plastic, aluminum alloy, or composite materials. These materials are impact-resistant, corrosion-resistant, and resistant to high and low temperatures, effectively protecting the internal equipment from vibration, impact, and environmental factors.

[0034] Meanwhile, the box body 11 is equipped with a handle a12, so that the shockproof box can be moved and operated through the handle a12. The bottom of the box body 11 is equipped with several sets of moving wheels 13, which can contact the ground. The moving wheels 13 can move the shockproof box as a whole, and can also support the shockproof box as a whole. Thus, the box body 11 can have a certain distance from the ground through the moving wheels 13, so that the shockproof box can rub against the ground and improve its service life.

[0035] like Figure 1 and Figure 2 As shown, the lower shock-absorbing cotton 18 is snapped into the inside of the housing 11. The lower shock-absorbing cotton 18 has a placement groove 112, which can be adapted to the size of the equipment, so that the equipment can be installed on the lower shock-absorbing cotton 18 without significant shaking. The lower shock-absorbing cotton 18 is elastic, so it can provide shock absorption protection after the equipment is placed inside the placement groove 112. The lower shock-absorbing cotton 18 also has several sets of shock-absorbing grooves 19, so that the lower shock-absorbing cotton 18 can improve the cushioning effect when used through the shock-absorbing grooves 19. The shock-absorbing grooves 19 can disperse the impact force and reduce the direct impact of vibration on the equipment, thereby improving the protection performance.

[0036] Meanwhile, an upper shock-absorbing cotton 15 is placed on the lower shock-absorbing cotton 18. The upper shock-absorbing cotton 15 and the lower shock-absorbing cotton 18 are of the same shape and material structure, and the upper shock-absorbing cotton 15 can cover the top of the equipment on which the lower shock-absorbing cotton 18 is placed. After the upper shock-absorbing cotton 15 and the lower shock-absorbing cotton 18 are combined, the equipment can be fully wrapped by the two sets of structures, thereby greatly improving the safety of use when the shockproof box is used.

[0037] The bottom of the upper shock-absorbing cotton 15 is fixedly equipped with several sets of protrusions 110. The protrusions 110 can contact and combine with the shock-absorbing groove 19. Thus, after the upper shock-absorbing cotton 15 and the lower shock-absorbing cotton 18 are combined, the upper shock-absorbing cotton 15 and the lower shock-absorbing cotton 18 can be further improved in stability by contacting the shock-absorbing groove 19 with the protrusions 110.

[0038] Furthermore, the upper shock-absorbing cotton 15 is provided with several sets of parts slots 16, which can hold some parts, so that the parts can be concentrated. At the same time, the upper shock-absorbing cotton 15 is fixedly installed with a handle b17, so that the staff can quickly lift the upper shock-absorbing cotton 15 through the handle b17, thereby facilitating the placement or removal of the equipment.

[0039] like Figure 3 As shown, pull ropes 111 are fixedly installed at both ends of the lower shock-absorbing cotton 18. The pull ropes 111 are elastic. When the lower shock-absorbing cotton 18 needs to be disassembled later, the pull ropes 111 can be pulled upwards, so that the lower shock-absorbing cotton 18 can be easily removed from the box 11. At the same time, when the upper shock-absorbing cotton 15 and the lower shock-absorbing cotton 18 are combined, the two sets of pull ropes 111 can be pulled closer to each other. The ends of the pull ropes 111 are similar to the Velcro principle, so that the two sets of pull ropes 111 can be glued together, thereby improving the fixing effect between the upper shock-absorbing cotton 15 and the lower shock-absorbing cotton 18.

[0040] like Figure 4 and Figure 5 As shown, the top cover assembly 20 includes a cover plate 21, which is hinged to the box body 11. The box body 11 can be sealed at the top by the cover plate 21. At the same time, a fixing plate 22 is fixedly installed inside the cover plate 21, and a parts bag 23 is fixedly installed on the fixing plate 22. The fixing plate 22 is used to support the parts bag 23, so that the shockproof box can place parts through the parts bag 23, thereby enabling the parts to be collected in a centralized manner and preventing the parts from being scattered everywhere.

[0041] Meanwhile, a limit block 25 is fixedly installed on the fixed plate 22 near the handle a12, and a rotating rod 26 is rotatably connected to the fixed plate 22. At the same time, a limit block 25 is fixedly installed on the cover plate 21. The limit block 25 is used to limit the fixed plate 22. The fixed piece 24 has a groove, and the rotating rod 26 can pass through the groove. The width of the rotating rod 26 is wider than the groove. By rotating the rotating rod 26 in the groove, the rotating rod 26 can block the fixed piece 24, so that the fixed plate 22 can be locked onto the cover plate 21. Similarly, rotating the rotating rod 26 can disengage it in the groove, so that the fixed plate 22 can be removed from the cover plate 21, which facilitates the later cleaning or maintenance of the fixed plate 22.

[0042] The above description is merely a preferred embodiment of this application and is not intended to limit this application. Various modifications and variations can be made to this application by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the protection scope of this application.

Claims

1. A shockproof device for three-dimensional laser point cloud acquisition, wherein the three-dimensional laser point cloud acquisition includes a laser scanner device, and the shockproof device for the laser scanner device includes a shockproof box, wherein the shockproof box includes a base assembly (10), characterized in that: A top cover assembly (20) for sealing the base assembly (10) is hinged to the base assembly (10), the top cover assembly (20) including a cover plate (21), and the base assembly (10) including: Box (11), the box (11) and the cover plate (21) are hinged to each other, and the box (11) is filled with shock-absorbing cotton (18). Placement slot (112), the placement slot (112) is opened on the lower shock-absorbing cotton (18), and the laser scanner device can be placed on the placement slot (112); Upper shock absorber (15) is placed on lower shock absorber (18). The upper shock absorber (15) and lower shock absorber (18) are made of the same material. The upper shock absorber (15) and lower shock absorber (18) are elastic. Both ends of the lower shock absorber (18) are fixedly installed with pull ropes (111). Fixing piece (24), which is fixedly installed on the top inner side of the housing (11).

2. The anti-vibration device for three-dimensional laser point cloud acquisition according to claim 1, characterized in that: The two sets of pull ropes (111) are elastic, the ends of the two sets of pull ropes (111) can be bonded together, and the two sets of pull ropes (111) can extend to the upper shock-absorbing cotton (15).

3. The anti-vibration device for three-dimensional laser point cloud acquisition according to claim 1, characterized in that: The lower shock-absorbing cotton (18) is provided with several sets of shock-absorbing grooves (19) to improve the buffering effect.

4. The anti-vibration device for three-dimensional laser point cloud acquisition according to claim 3, characterized in that: The bottom of the upper shock-absorbing cotton (15) is fixedly installed with several sets of protrusions (110), which can contact and combine with the shock-absorbing groove (19).

5. The anti-vibration device for three-dimensional laser point cloud acquisition according to claim 4, characterized in that: The upper shock-absorbing cotton (15) has several sets of parts slots (16), and parts can be placed in the parts slots (16). A handle b (17) is fixedly installed on the upper shock-absorbing cotton (15).

6. The anti-vibration device for three-dimensional laser point cloud acquisition according to claim 1, characterized in that: The box (11) is provided with a handle a (12), and the bottom of the box (11) is provided with several sets of casters (13), which can contact the ground.

7. The anti-vibration device for three-dimensional laser point cloud acquisition according to claim 1, characterized in that: A fixing plate (22) is fixedly installed inside the cover plate (21), and a parts bag (23) is fixedly installed on the fixing plate (22). The fixing plate (22) is used to support the parts bag (23).

8. The anti-vibration device for three-dimensional laser point cloud acquisition according to claim 6, characterized in that: The handle a (12) is fixedly installed with a limiting block (25) near the fixing plate (22). A rotating rod (26) is rotatably connected to the fixing plate (22). The limiting block (25) is fixedly installed on the cover plate (21). The limiting block (25) is used to limit the fixing plate (22). A groove is provided on the fixing piece (24). The rotating rod (26) can pass through the groove. The width of the rotating rod (26) is wider than the groove.