Surface spraying device for explosion-proof tank production

By designing a spraying device that drives the lifting and rotating clamping mechanism, multi-angle rotation and movement spraying of explosion-proof cans was achieved, solving the problem of complex spraying operations in the production of explosion-proof cans and improving processing efficiency.

CN223915668UActive Publication Date: 2026-02-17LIAONING HONGZHEN NEW MATERIAL TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422802849.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-15
Publication Date
2026-02-17
Estimated Expiration
2034-11-15

AI Technical Summary

Technical Problem

In the production process of explosion-proof cans, spraying requires complex operations involving multiple angles and movement, which increases the workload of workers, and existing equipment cannot simplify the process.

Method used

A spraying device including a drive lifting mechanism and a rotating clamping mechanism was designed. By driving the gear and threaded rod through the linkage of the motor, the explosion-proof canister can be rotated and moved for spraying at multiple angles, simplifying the operation process.

Benefits of technology

It enables multi-angle movement and spraying of explosion-proof canisters, reducing worker operation procedures and improving spraying efficiency and convenience.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a surface spraying device for explosion-proof tank production, which comprises a first box body, a driving lifting mechanism is arranged in the first box body, a second box body is arranged at the upper end of the first box body, and a first space and a second space are respectively arranged in the second box body. A lifting adjusting mechanism is installed in the first space and the second space, a top plate is installed at the upper end of the lifting adjusting mechanism, a rotary clamping mechanism is installed on a first plate body, a fourth motor is started, and a first rod body moves in a C-shaped sliding groove and a C-shaped through hole through linkage of a second gear and a first gear; the anti-explosion tank is fixed through a rubber pad, at the moment, a second motor is rotated reversely to achieve lifting of the anti-explosion tank, at the moment, equipment is moved to one side of spraying equipment, a third motor is started to complete rotation of the anti-explosion tank, comprehensive spraying of the anti-explosion tank is achieved, and therefore multi-angle movement and multi-angle spraying during spraying of the anti-explosion tank are achieved.
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Description

Technical Field

[0001] This utility model relates to the field of spraying equipment technology, specifically a surface spraying device for the production of explosion-proof cans. Background Technology

[0002] An explosion-proof container is a device used to prevent and mitigate damage to surrounding personnel and property in the event of an explosion. It typically comes in two types: cylindrical and spherical. The working principle of an explosion-proof container is primarily to prevent the spread of fragments and energy generated by an explosion through its thick metal shell, thereby protecting surrounding personnel and property. Its structure usually includes an outer container, an inner container, and a buffer layer, and its service life is typically five years. When using it, it is important to place the container at least 6 meters above the surrounding space, avoiding proximity to load-bearing beams, chandeliers, or other objects that may generate flying debris, and maintaining a safe distance in the event of a close-range explosion or an indoor explosion.

[0003] During the production of explosion-proof cans, spraying and painting are required. Since the spraying process of explosion-proof cans requires multi-angle spraying and movement, in order to reduce the operation process of workers, reduce the workload, and make the spraying of explosion-proof cans convenient and simple, a mobile and multi-angle rotating spraying device has been designed to simplify the processing process and make the processing convenient. Therefore, the use of this surface spraying device for explosion-proof can production is required. Utility Model Content

[0004] To address the shortcomings of existing technologies, this utility model provides a surface spraying device for the production of explosion-proof cans, which solves the technical problems mentioned in the background section.

[0005] To achieve the above objectives, this utility model is implemented through the following technical solution: a surface spraying device for the production of explosion-proof cans, comprising a first box, a drive lifting mechanism installed inside the first box, a second box installed at the upper end of the first box, a first space and a second space respectively opened inside the second box, a lifting adjustment mechanism installed inside the first space and the second space, a top plate installed at the upper end of the lifting adjustment mechanism, and a rotating clamping mechanism installed on the top plate;

[0006] The rotating clamping mechanism includes a third motor mounted on the top plate wall. A concave plate is mounted on the lower wall of the third motor drive end. A first gear is rotatably mounted on the lower wall of the concave plate. A second plate is mounted on the side wall of the concave plate. A fourth motor is mounted on the side wall of the concave plate. A first rectangular through hole is formed on the side wall of the concave plate near the fourth motor. The fourth motor drive end is rotatably mounted on the lower wall of the second plate. A second gear is fitted on the fourth motor drive end. The second gear is located inside the first rectangular through hole and meshes with the first gear. Three C-shaped through holes are formed on the first gear. Three C-shaped sliding grooves are formed on the lower wall of the concave plate. A first rod is installed inside each of the three C-shaped sliding grooves, and the three first rods are respectively located inside the three C-shaped through holes.

[0007] Preferably, the lifting and adjusting mechanism includes a second motor, which is installed inside the first space. A pair of first sliding grooves are provided inside the second space. A slider is installed inside each pair of first sliding grooves. A second threaded rod sleeve is installed on each pair of sliders. The second threaded rod sleeve is installed on the lower wall of the top plate. A second threaded rod is installed on the drive end of the second motor. The second threaded rod meshes with the internal thread of the second threaded rod sleeve.

[0008] Preferably, the driving lifting mechanism includes a first motor, which is mounted on the lower wall of the first housing. A first threaded rod is mounted on the driving end of the first motor. The upper end of the first threaded rod is rotatably mounted on the upper wall inside the first housing. A first threaded sleeve is threaded onto the first threaded rod. A first plate is mounted on the outer wall of the first threaded sleeve. Two pairs of first sleeves are inserted into the lower wall of the first housing. A support column is movably inserted into each pair of first sleeves. Both pairs of support columns are mounted on the lower wall of the first plate.

[0009] Preferably, two pairs of casters are installed on the lower wall of the first housing, and a counterweight is installed on the upper wall of the first housing.

[0010] Preferably, rubber pads are installed on the sidewalls of the three first rods.

[0011] Beneficial effects

[0012] This utility model provides a surface spraying device for the production of explosion-proof cans. When spraying is required, the explosion-proof can is placed at the lower end of the first gear. At this time, the second motor is started, and the top plate moves up and down through the linkage of the second threaded rod and the second threaded rod sleeve and the sliding block limit assist. At this time, the first rod and the rubber pad are moved into the explosion-proof can. Then, the fourth motor is started, and the first gear moves the first rod inside the C-shaped groove and C-shaped through hole through the linkage of the second gear and the first gear, thereby fixing the explosion-proof can with the rubber pad. Then, the second motor is reversed to lift the explosion-proof can. The device is then moved to one side of the spraying equipment. At this time, the third motor is started to rotate the explosion-proof can, thereby achieving full spraying of the explosion-proof can. This realizes multi-angle movement and multi-angle spraying during explosion-proof can spraying. Attached Figure Description

[0013] Fig. 1 This is a schematic diagram of the main view structure of the surface spraying device for the production of explosion-proof cans according to the present invention.

[0014] Fig. 2 This is a schematic diagram of the first gear structure of the surface spraying device for the production of explosion-proof cans according to the present invention.

[0015] In the diagram: 1. First housing; 2. First motor; 3. First threaded rod; 4. Counterweight; 5. First threaded sleeve; 6. First plate; 7. Caster wheel; 8. Support column; 9. First sleeve; 10. Second housing; 11. Second motor; 12. Second threaded rod; 13. Second threaded rod sleeve; 14. Slider; 15. Third motor; 16. Top plate; 17. Concave plate; 18. First gear; 19. Fourth motor; 20. Second gear; 21. Second plate; 22. First rod; 23. Rubber pad. Detailed Implementation

[0016] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0017] Please see Figs. 1-2This utility model provides a technical solution: a surface spraying device for the production of explosion-proof cans, including a first box 1, a drive lifting mechanism installed inside the first box 1, a second box 10 installed on the upper end of the first box 1, a first space and a second space respectively opened inside the second box 10, a lifting adjustment mechanism installed inside the first space and the second space, a top plate 16 installed on the upper end of the lifting adjustment mechanism, and a rotating clamping mechanism installed on the top plate 16;

[0018] The rotating clamping mechanism includes a third motor 15, which is mounted on the upper wall of the top plate 16. A concave plate 17 is mounted on the lower wall of the driving end of the third motor 15. A first gear 18 is rotatably mounted on the lower wall of the concave plate 17. A second plate 21 is mounted on the side wall of the concave plate 17. A fourth motor 19 is mounted on the side wall of the concave plate 17 near the fourth motor 19. A first rectangular through hole is opened on the side wall of the concave plate 17 near the fourth motor 19. The driving end of the fourth motor 19 is rotatably mounted on the lower wall of the second plate 21. A second gear 20 is fitted on the driving end of the fourth motor 19. The second gear 20 is located inside the first rectangular through hole and meshes with the first gear 18. Three C-shaped through holes are opened on the first gear 18. Three C-shaped sliding grooves are opened on the lower wall of the concave plate 17. A first rod 22 is installed inside each of the three C-shaped sliding grooves, and the three first rods 22 are respectively located inside the three C-shaped through holes.

[0019] When producing explosion-proof cans, a spraying device is needed to spray the surface of the explosion-proof cans. At this time, the first motor 2 is started, and the first plate 6 is moved up and down through the threaded linkage between the first threaded sleeve 5 and the first threaded rod 3, thereby retracting the support column 8 at the lower end of the first box 1 and releasing the limit. At this time, the equipment can be moved by the caster 7, thus realizing convenient movement of the equipment.

[0020] When spraying is required, the explosion-proof can is placed at the lower end of the first gear 18. At this time, the second motor 11 is started. Through the linkage between the second threaded rod 12 and the second threaded rod sleeve 13, and with the limit assistance of the slider 14, the top plate 16 is moved up and down. At this time, the first rod 22 and the rubber pad 23 are moved into the explosion-proof can. Then, the fourth motor 19 is started. Through the linkage between the second gear 20 and the first gear 18, the first rod 22 is moved inside the C-shaped groove and the C-shaped through hole, thereby fixing the explosion-proof can with the rubber pad 23. Then, the second motor 11 is reversed to lift the explosion-proof can. The equipment is then moved to one side of the spraying equipment. At this time, the third motor 15 is started to rotate the explosion-proof can, thereby achieving full spraying of the explosion-proof can. This enables multi-angle movement and multi-angle spraying during explosion-proof can spraying.

[0021] In this embodiment, the lifting and adjusting mechanism includes a second motor 11, which is installed inside the first space. A pair of first sliding grooves are provided inside the second space. A slider 14 is installed inside each pair of first sliding grooves. A second threaded rod sleeve 13 is installed on each pair of sliders 14. The second threaded rod sleeve 13 is installed on the lower wall of the top plate 16. A second threaded rod 12 is installed at the drive end of the second motor 11. The second threaded rod 12 meshes with the internal thread of the second threaded rod sleeve 13.

[0022] During the production of explosion-proof cans, a spraying device is required to spray the surface of the cans. At this time, the first motor 2 is started, and the first threaded sleeve 5 and the first threaded rod 3 work together to move the first plate 6 up and down, thereby retracting the support column 8 to the lower end of the first housing 1 and releasing the limit switch. The equipment can then be moved easily using the casters 7.

[0023] In this embodiment, the driving lifting mechanism includes a first motor 2, which is mounted on the lower wall of the first housing 1. A first threaded rod 3 is mounted on the driving end of the first motor 2. The upper end of the first threaded rod 3 is rotatably mounted on the upper wall inside the first housing 1. A first threaded sleeve 5 is threaded onto the first threaded rod 3. A first plate 6 is mounted on the outer wall of the first threaded sleeve 5. Two pairs of first sleeves 9 are inserted into the lower wall of the first housing 1. A support column 8 is movably inserted into each pair of first sleeves 9. Both pairs of support columns 8 are mounted on the lower wall of the first plate 6.

[0024] The explosion-proof can is placed at the lower end of the first gear 18. At this time, the second motor 11 is started. Through the linkage between the second threaded rod 12 and the second threaded rod sleeve 13, and with the limit assistance of the slider 14, the top plate 16 is moved up and down. At this time, the first rod 22 and the rubber pad 23 are moved into the explosion-proof can. Then, the fourth motor 19 is started. Through the linkage between the second gear 20 and the first gear 18, the first rod 22 is moved inside the C-shaped groove and the C-shaped through hole, thereby fixing the explosion-proof can through the rubber pad 23.

[0025] In this embodiment, two pairs of casters 7 are installed on the lower wall of the first housing 1, and a counterweight 4 is installed on the upper wall of the first housing 1.

[0026] In this embodiment, rubber pads 23 are installed on the side walls of the three first rods 22.

[0027] Its detailed connection method is a well-known technology in this field. The following mainly introduces the working principle and process, and the specific work is as follows.

[0028] Example: When producing explosion-proof cans, a spraying device is needed to spray the surface of the explosion-proof cans. At this time, the first motor 2 is started, and the first plate 6 is moved up and down through the threaded linkage between the first threaded sleeve 5 and the first threaded rod 3, thereby retracting the support column 8 at the lower end of the first box 1 and releasing the limit. At this time, the equipment can be moved by the caster 7, thus realizing convenient movement of the equipment.

[0029] When spraying is required, the explosion-proof can is placed at the lower end of the first gear 18. At this time, the second motor 11 is started. Through the linkage between the second threaded rod 12 and the second threaded rod sleeve 13, and with the limit assistance of the slider 14, the top plate 16 is moved up and down. At this time, the first rod 22 and the rubber pad 23 are moved into the explosion-proof can. Then, the fourth motor 19 is started. Through the linkage between the second gear 20 and the first gear 18, the first rod 22 is moved inside the C-shaped groove and the C-shaped through hole, thereby fixing the explosion-proof can with the rubber pad 23. Then, the second motor 11 is reversed to lift the explosion-proof can. The equipment is then moved to one side of the spraying equipment. At this time, the third motor 15 is started to rotate the explosion-proof can, thereby achieving full spraying of the explosion-proof can. This enables multi-angle movement and multi-angle spraying during explosion-proof can spraying.

[0030] It should be noted that in this paper, relational terms such as first and second are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations.

Claims

1. A surface coating device for the production of explosion-proof cans, comprising a first housing (1), characterized in that, The first box (1) is equipped with a drive lifting mechanism. The first box (1) is equipped with a second box (10) at the top. The second box (10) is provided with a first space and a second space. The first space and the second space are equipped with lifting adjustment mechanisms. The lifting adjustment mechanism is equipped with a top plate (16) at the top. The top plate (16) is equipped with a rotating clamping mechanism. The rotating clamping mechanism includes a third motor (15), which is mounted on the upper wall of the top plate (16). A concave plate (17) is mounted on the lower wall of the drive end of the third motor (15). A first gear (18) is rotatably mounted on the lower wall of the concave plate (17). A second plate (21) is mounted on the side wall of the concave plate (17). A fourth motor (19) is mounted on the side wall of the concave plate (17). A first rectangular through hole is opened on the side wall of the concave plate (17) near the fourth motor (19). The drive end of the fourth motor (19) is rotatably mounted on the lower wall of the second plate (21). The drive end of the fourth motor (19) is fitted with a second gear (20). The second gear (20) is located inside the first rectangular through hole and meshes with the first gear (18). The first gear (18) has three C-shaped through holes. The lower wall of the concave plate (17) has three C-shaped sliding grooves. The three C-shaped sliding grooves are each fitted with a first rod (22), and the three first rods (22) are located inside the three C-shaped through holes respectively.

2. The surface spraying device for producing explosion-proof cans according to claim 1, characterized in that, The lifting and adjusting mechanism includes a second motor (11), which is installed inside the first space. A pair of first sliding grooves are provided inside the second space. A slider (14) is installed inside each pair of first sliding grooves. A second threaded rod sleeve (13) is installed on the pair of sliders (14). The second threaded rod sleeve (13) is installed on the lower wall of the top plate (16). A second threaded rod (12) is installed at the drive end of the second motor (11). The second threaded rod (12) meshes with the internal thread of the second threaded rod sleeve (13).

3. The surface spraying device for producing explosion-proof cans according to claim 1, characterized in that, The driving lifting mechanism includes a first motor (2), which is installed on the lower wall of the first housing (1). The first motor (2) has a first threaded rod (3) installed on its driving end. The upper end of the first threaded rod (3) is rotatably installed on the upper wall inside the first housing (1). A first threaded sleeve (5) is threaded onto the first threaded rod (3). A first plate (6) is fitted onto the outer wall of the first threaded sleeve (5). Two pairs of first sleeves (9) are inserted into the lower wall of the first housing (1). Support columns (8) are movably inserted into the two pairs of first sleeves (9). The two pairs of support columns (8) are installed on the lower wall of the first plate (6).

4. The surface spraying device for producing explosion-proof cans according to claim 1, characterized in that, Two pairs of casters (7) are installed on the lower wall of the first box (1), and a counterweight (4) is installed on the upper wall of the first box (1).

5. The surface spraying device for producing explosion-proof cans according to claim 1, characterized in that, Rubber pads (23) are installed on the side walls of the three first rods (22).