Automatic welding device for new energy heat dissipation support

By combining guide rails, sliders, racks, gears, and rotating plates, the problems of workpiece angle inability to be adjusted and slag accumulation in the automated welding device for new energy heat dissipation brackets are solved. This enables flexible adjustment of workpiece angle and automatic cleaning of slag, improving welding efficiency and table cleanliness.

CN224088330UActive Publication Date: 2026-04-07大连泷田金属制品有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-12
Publication Date
2026-04-07

AI Technical Summary

Technical Problem

The existing automated welding equipment for new energy heat dissipation brackets lacks a flipping structure, which makes it impossible to adjust the angle of the workpiece, restricts the welding operation, and makes it impossible to automatically clean up the weld slag, thus affecting efficiency.

Method used

A structure including a guide rail, a slider, a rack, a gear, a cylinder, and a rotating plate was designed. The cylinder drives the rack to move and rotate the gear to adjust the workpiece angle. Ash collection holes are set on the rotating plate to automatically clean the welding slag.

Benefits of technology

It enables flexible adjustment of workpiece angle and automatic cleaning of welding slag, improving welding efficiency and table cleanliness, and reducing operational limitations.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224088330U_ABST
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Abstract

The utility model relates to the field of heat dissipation support welding, in particular to a new energy heat dissipation support automatic welding device which comprises a workbench. The device further comprises a guide rail, a sliding block, a rack, a first bearing seat, a transmission shaft, a first connecting flange, a gear, a first air cylinder, a protective shell and a rotating plate. By arranging the first air cylinder, the rack can be pushed to move front and back during operation, the rack can drive the sliding block to slide on the outer surface of the guide rail when moving, the guide rail can limit the moving direction of the sliding block, and therefore the stability of the rack during moving is improved; movement of the rack can drive a gear meshed with the rack to rotate, so that a transmission shaft is driven to rotate in a first bearing seat, a first connecting flange and a rotating plate are driven to rotate, the angle of a workpiece is adjusted, meanwhile, when the rotating plate rotates, welding slag on the surface of the rotating plate slides off from the surface of the rotating plate under the action of gravity, and the welding quality is improved. And the table top is kept clean.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of heat dissipation support welding, especially to a new energy heat dissipation support automatic welding device. BACKGROUND

[0002] The heat dissipation support welding automatic welding device is a device for automatically welding heat dissipation supports, commonly used in the fields of electronics, automobiles, and industrial manufacturing. It realizes efficient and precise welding operation through the automatic welding technology of mechanical arms, improving production efficiency and product quality.

[0003] The existing new energy heat dissipation support automatic welding device does not have a turnover structure for the work surface, which cannot adjust the angle of the workpiece during welding, and is limited during welding. It also lacks a turnover structure, and the welding slag on the surface of the work surface will always remain on the work surface, which cannot be automatically poured out.

[0004] Therefore, in view of the above problems of the existing new energy heat dissipation support automatic welding device, such as the lack of a turnover structure, which cannot adjust the angle of the workpiece during welding, is limited in operation, and the welding slag cannot be automatically cleaned, affecting efficiency, a new type of new energy heat dissipation support automatic welding device needs to be designed. SUMMARY

[0005] In order to overcome the problems of the existing new energy heat dissipation support automatic welding device, such as the lack of a turnover structure, which cannot adjust the angle of the workpiece during welding, is limited in operation, and the welding slag cannot be automatically cleaned, affecting efficiency.

[0006] The technical scheme of the utility model is as follows: a new energy heat dissipation support automatic welding device, comprising a workbench, a guide rail, a sliding block, a rack, a first bearing seat, a transmission shaft, a first connecting flange, a gear, a first cylinder, a protective shell, and a rotating plate. The upper surface of the workbench is installed with a guide rail on the left side, and the upper surface of the guide rail is connected with two sliding blocks. The upper surface of the sliding block is installed with a rack. The upper surface of the workbench is installed with a first bearing seat on the right side of the guide rail. The bearing inner surface of the first bearing seat is connected with a transmission shaft. The right end of the transmission shaft is connected with a first connecting flange. The left end of the transmission shaft is connected with a gear. The gear is engaged with the rack. The upper surface of the workbench is provided with a first cylinder behind the rack. The output end of the first cylinder is connected with the rear end of the rack. The upper surface of the workbench is provided with a protective shell outside the first cylinder. The right side of the first connecting flange is connected with a rotating plate.

[0007] Preferably, by setting the first air cylinder, the rack can be pushed to move forward and backward during operation, the rack can drive the sliding block to slide on the outer surface of the guide rail during movement, and the guide rail can limit the movement direction of the sliding block, thereby improving the stability of the rack during movement, the movement of the rack can drive the gear meshing with it to rotate, thereby driving the transmission shaft to rotate inside the first bearing seat, thereby driving the first connecting flange and the rotating plate to rotate, thereby adjusting the angle of the workpiece, and at the same time, the welding slag on the surface of the rotating plate can slide off the surface of the rotating plate under the action of gravity during rotation of the rotating plate, thereby keeping the work surface clean, thereby solving the problem that the existing new energy heat dissipation support automatic welding device does not have a turnover structure for the working surface during use, the workpiece cannot be adjusted in angle during welding, and the workpiece is limited during welding, and the turnover structure is lacking, and the welding slag on the surface of the working surface can always remain on the working surface and cannot be automatically poured.

[0008] Preferably, a plurality of ash falling holes are formed through the upper surface of the rotating plate, and a pad is arranged at the center position of the upper surface of the rotating plate.

[0009] Preferably, the upper surface of the rotating plate is provided with a mounting frame on the left side of the pad, and a double-thread screw is rotatably connected to the inner surface of the mounting frame on the front and rear sides.

[0010] Preferably, the front end of the double-thread screw is connected with a knob through the front side wall of the mounting frame.

[0011] Preferably, the upper surface of the rotating plate is provided with a mounting table on the left and right sides of the pad.

[0012] Preferably, the upper surface of the workbench is provided with a second bearing seat on the right side, the left side of the second bearing seat is connected with a second connecting flange through a rotating shaft, and the left surface of the second connecting flange is provided with a butt joint plate.

[0013] Preferably, the rear ground position of the workbench is provided with a fixed seat, and the upper surface of the fixed seat is provided with a mechanical welding arm.

[0014] The utility model discloses the beneficial effects of:

[0015] 1. By setting the first cylinder, the telescopic end can push the rack to move forward and backward, the rack drives the slider to slide on the outer surface of the guide rail, the guide rail limits the moving direction of the slider, thereby improving the stability of the rack when moving, the rack can drive the gear meshing with it to rotate when moving, thereby driving the transmission shaft to rotate under the cooperation of the first bearing seat, so as to drive the first connecting flange and the rotating plate to rotate, thereby realizing the adjustment of the angle of the workpiece, and at the same time, the welding slag on the surface of the rotating plate will slide off the surface of the rotating plate under the action of gravity when the rotating plate rotates, keeping the table clean, thereby solving the problem that the existing new energy heat dissipation support automatic welding device does not have a turnover structure for the working surface when in use, the workpiece cannot adjust the angle when welding, and there are many restrictions when welding, and the turnover structure is lacking, and the welding slag on the surface of the working surface will always remain on the working surface, which cannot be automatically poured. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 A three-dimensional structure schematic view of the new energy heat dissipation support automatic welding device is shown.

[0017] Figure 2 A three-dimensional structure schematic view of the workbench of the new energy heat dissipation support automatic welding device is shown.

[0018] Figure 3 A three-dimensional structure schematic view of the rack of the new energy heat dissipation support automatic welding device is shown.

[0019] Figure 4 A three-dimensional structure schematic view of the clamping jaw of the new energy heat dissipation support automatic welding device is shown.

[0020] BRIEF DESCRIPTION OF DRAWINGS: 1, workbench; 2, guide rail; 3, slider; 4, rack; 5, first bearing seat; 6, transmission shaft; 7, first connecting flange; 8, gear; 9, first cylinder; 10, protective shell; 11, rotating plate; 12, ash falling hole; 13, pad; 14, mounting frame; 15, bidirectional screw; 16, moving seat; 17, clamping jaw; 18, knob; 19, mounting table; 20, second cylinder; 21, second bearing seat; 22, second connecting flange; 23, butt joint plate; 24, fixed seat; 25, mechanical welding arm. DETAILED DESCRIPTION

[0021] The utility model will be further explained in combination with the drawings and examples.

[0022] Please refer to Figures 1-4The utility model provides a kind of embodiment: a new energy heat dissipation support automatic welding device, including workbench 1;Still including guide rail 2, sliding block 3, rack 4, first bearing seat 5, transmission shaft 6, first connecting flange 7, gear 8, first cylinder 9, protective shell 10 and rotating plate 11, the upper surface left side position of workbench 1 is installed with guide rail 2, the upper surface of guide rail 2 is slidably connected with two sliding blocks 3, the upper surface of sliding block 3 is installed with rack 4, the upper surface of workbench 1 is installed with first bearing seat 5 in the right side of guide rail 2, the bearing inner surface of first bearing seat 5 is connected with transmission shaft 6, the right end of transmission shaft 6 is connected with first connecting flange 7, the left end of transmission shaft 6 is connected with gear 8, gear 8 is engaged with rack 4, the upper surface of workbench 1 is provided with first cylinder 9 in the back of rack 4, the output end of first cylinder 9 is connected with the back end of rack 4, the upper surface of workbench 1 is provided with protective shell 10 in the outside of first cylinder 9, rotating plate 11 is connected to the right side of first connecting flange 7, by setting first cylinder 9, it can promote rack 4 to move back and forth when working, rack 4 can drive sliding block 3 to slide on the outer surface of guide rail 2 when moving, guide rail 2 can limit the moving direction of sliding block 3, to improve the stability of rack 4 when moving, the movement of rack 4 can drive the rotation of gear 8 engaged with it, to drive transmission shaft 6 to rotate inside first bearing seat 5, to drive first connecting flange 7 and rotating plate 11 to rotate, to realize the adjustment of workpiece angle, while rotating plate 11 rotates, the welding slag on its surface will slide off from the surface of rotating plate 11 under the action of gravity, keep the cleanliness of platform.

[0023] Please refer to Figures 2-4 In the embodiment, a plurality of ash falling holes 12 are provided through the upper surface of rotating plate 11, a pad 13 is provided at the center position of the upper surface of rotating plate 11, by setting ash falling holes 12, part of welding slag generated during welding can directly fall off from the surface of rotating plate 11 through ash falling holes 12, to improve the cleanliness of platform, a mounting frame 14 is provided at the left side of pad 13 on the upper surface of rotating plate 11, a bidirectional screw rod 15 is rotatably connected to the inner surface of mounting frame 14 at the front and back sides, a moving seat 16 is threadedly connected to the outer surface of bidirectional screw rod 15, a clamping jaw 17 is installed on the top surface of moving seat 16, by setting bidirectional screw rod 15, two moving seats 16 can be synchronously moved in opposite directions during rotation, so that clamping jaw 17 can clamp heat dissipation support, a knob 18 is connected to the front side wall of mounting frame 14 at the front end of bidirectional screw rod 15, by setting knob 18, it is convenient for staff to rotate bidirectional screw rod 15, to improve the operation convenience.

[0024] Please refer to Figures 1-4In the embodiment, the upper surface of the rotating plate 11 is provided with a mounting table 19 on both sides of the front and back and the right side of the cushion table 13. The top surface of the mounting table 19 is provided with a second cylinder 20. The output end of the second cylinder 20 is sleeved with a rubber pad. After the clamping jaw 17 clamps the part, the second cylinder 20 is started. The extension end can drive the rubber pad to assist in positioning the side edge of the heat dissipation support, thereby improving the positioning accuracy. The upper surface of the workbench 1 is provided with a second bearing seat 21 on the right side. The left side of the second bearing seat 21 is connected with a second connecting flange 22 through a rotating shaft. The left surface of the second connecting flange 22 is provided with a butt joint plate 23. The bottom surface of the butt joint plate 23 is connected with the upper surface of the rotating plate 11. The second bearing seat 21 can assist the right side of the rotating plate 11 to rotate, thereby improving the stability of the rotating plate 11 after rotating and mounting. The rear ground position of the workbench 1 is provided with a fixing seat 24. The upper surface of the fixing seat 24 is provided with a mechanical welding arm 25. The mechanical welding arm 25 can automatically perform high-precision welding work, thereby improving the welding efficiency.

[0025] When working, the welding slag generated during welding can directly fall from the surface of the rotating plate 11 through the ash falling hole 12, thereby improving the cleanliness of the table top. The bidirectional screw rod 15 can drive the two moving seats 16 to move synchronously in opposite directions during rotation, so that the clamping jaw 17 can clamp the heat dissipation support. The knob 18 is convenient for the operator to rotate the bidirectional screw rod 15, thereby improving the operation convenience. The second cylinder 20 is provided. The output end of the second cylinder 20 is sleeved with a rubber pad. After the clamping jaw 17 clamps the part, the second cylinder 20 is started. The extension end can drive the rubber pad to assist in positioning the side edge of the heat dissipation support, thereby improving the positioning accuracy. The second bearing seat 21 can assist the right side of the rotating plate 11 to rotate, thereby improving the stability of the rotating plate 11 after rotating and mounting. The mechanical welding arm 25 can automatically perform high-precision welding work, thereby improving the welding efficiency.

[0026] Through the above steps, by setting the first cylinder 9, the telescopic end can push the rack 4 to move forward and backward, the rack 4 drives the sliding block 3 to slide on the outer surface of the guide rail 2, the guide rail 2 limits the movement direction of the sliding block 3, thereby improving the stability of the rack 4 during movement, the rack 4 can drive the gear 8 engaged with it to rotate, thereby driving the transmission shaft 6 to rotate under the cooperation of the first bearing seat 5, thereby driving the first connecting flange 7 and the rotating plate 11 to rotate, thereby realizing the adjustment of the angle of the workpiece, at the same time, when the rotating plate 11 rotates, the welding slag on the surface of the rotating plate 11 will slide off under the action of gravity, keeping the work surface clean, thereby solving the problem that the existing new energy heat dissipation support automatic welding device does not have a turnover structure for the working surface during use, the workpiece cannot adjust the angle during welding, the welding is limited, and the turnover structure is lacking, the welding slag on the surface of the working surface will always remain on the working surface, and cannot be automatically poured.

Claims

1. An automated welding device for a new energy heat dissipation bracket, comprising a workbench (1); characterized in that: It also includes a guide rail (2), a slider (3), a rack (4), a first bearing seat (5), a drive shaft (6), a first connecting flange (7), a gear (8), a first cylinder (9), a protective shell (10), and a rotating plate (11). The guide rail (2) is installed on the left side of the upper surface of the worktable (1). Two sliders (3) are slidably connected to the upper surface of the guide rail (2). A rack (4) is installed on the upper surface of the sliders (3). The first bearing seat (5) is installed on the upper surface of the worktable (1) to the right of the guide rail (2). A drive shaft (6) is connected to the inner surface of the bearing. A first connecting flange (7) is connected to the right end of the drive shaft (6). A gear (8) is connected to the left end of the drive shaft (6). The gear (8) meshes with the rack (4). A first cylinder (9) is provided on the upper surface of the worktable (1) behind the rack (4). The output end of the first cylinder (9) is connected to the rear end of the rack (4). A protective shell (10) is provided on the upper surface of the worktable (1) outside the first cylinder (9). A rotating plate (11) is connected to the right side of the first connecting flange (7).

2. The automated welding device for a new energy heat dissipation bracket according to claim 1, characterized in that: The upper surface of the rotating plate (11) is provided with several dust collection holes (12), and a pad (13) is provided at the center of the upper surface of the rotating plate (11).

3. The automated welding device for a new energy heat dissipation bracket according to claim 1, characterized in that: The upper surface of the rotating plate (11) is provided with a mounting frame (14) located on the left side of the pad (13). The inner surface of the mounting frame (14) is rotatably connected to the front and rear sides with a double-acting screw (15). The outer surface of the double-acting screw (15) is threadedly connected to a movable seat (16). The top surface of the movable seat (16) is equipped with a gripper (17).

4. The automated welding device for a new energy heat dissipation bracket according to claim 3, characterized in that: The front end of the bidirectional lead screw (15) passes through the front side wall of the mounting frame (14) and is connected to a knob (18).

5. The automated welding device for a new energy heat dissipation bracket according to claim 2, characterized in that: The upper surface of the rotating plate (11) is provided with mounting platforms (19) on the front, rear and right sides of the pad (13), and a second cylinder (20) is provided on the top surface of the mounting platform (19).

6. The automated welding device for a new energy heat dissipation bracket according to claim 1, characterized in that: A second bearing seat (21) is provided on the right side of the upper surface of the workbench (1). A second connecting flange (22) is connected to the left side of the second bearing seat (21) via a rotating shaft. A mating plate (23) is installed on the left side surface of the second connecting flange (22). The bottom surface of the mating plate (23) is connected to the upper surface of the rotating plate (11).

7. The automated welding device for a new energy heat dissipation bracket according to claim 1, characterized in that: A fixed seat (24) is provided on the ground behind the workbench (1), and a mechanical welding arm (25) is installed on the upper surface of the fixed seat (24).