Gas shield automatic surfacing welding machine

By introducing positioning slide rails and rotating components into the gas-friendly automatic welding machine, combined with a multi-axis adjustment system, the problem of product offset during processing is solved, efficient and accurate welding operations are achieved, and the flexibility and welding quality of the equipment are improved.

CN223250745UActive Publication Date: 2025-08-22RUIAN HUAYAN WELDING AUTOMATION TECH CO LTD
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Patent Information

Application Number
CN202422258642.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-13
Publication Date
2025-08-22
Estimated Expiration
2034-09-13

AI Technical Summary

Technical Problem

The existing gas-friendly automatic welding machines lack effective positioning structure during processing, which leads to the product being easily deviated and affects the processing accuracy and efficiency.

Method used

An air-friendly automatic welding machine including a chuck is designed. A positioning slide rail is installed between the chuck base and the disk body. The positioning plate can slide axially along the slide rail. It combines a rotating component to automatically clamp and loosen the workpiece. The position of the welding gun is accurately adjusted through the Z-axis, Y-axis, and X-axis adjustment components. It is equipped with a light-shading mirror and a rotating control panel to improve operational convenience.

Benefits of technology

The stable clamping and precise position adjustment of the workpiece are achieved, manual intervention is reduced, production continuity and efficiency is improved, labor intensity is reduced, processing accuracy and equipment flexibility is ensured, welding quality and equipment reliability are improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a gas shield automatic surfacing welding machine which comprises a machine frame, a chuck and a welding gun, the welding gun is arranged at the upper end of the machine frame, the chuck is arranged on one side of the machine frame, the chuck comprises a chuck body for installation of clamping jaws, a plurality of installation grooves are formed in the chuck body, and the clamping jaws are arranged in the installation grooves. The chuck body can be manually rotated to drive the clamping jaws to axially move in the mounting grooves so as to clamp a product, a chuck base is fixedly mounted at the bottom of the chuck body, a positioning sliding rail is axially mounted between the chuck base and the chuck body, a positioning plate is perpendicularly arranged on the positioning sliding rail, and the positioning plate can axially slide along the positioning sliding rail. A rotating assembly for driving the chuck to rotate is further arranged at the bottom of the chuck base, and the positioning plate can axially slide along the sliding rails, so that the position of the whole chuck assembly can be conveniently adjusted, and meanwhile it can be guaranteed that products cannot move in the machining process, so that deviation in the machining process is avoided.
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Description

Technical Field

[0001] The utility model relates to the technical field of automatic surfacing welding equipment, in particular to a gas shielded automatic surfacing welding machine. Background Art

[0002] The gas shielded automatic overlay welding machine is an efficient, stable and widely used welding equipment, mainly used for the connection and repair of metal materials. It prevents the weld from contacting with air by providing a shielding gas in the welding area, thereby reducing oxidation, hydrogen absorption and nitrogen pollution, and improving welding quality. This type of equipment is widely used in a variety of industrial fields such as aerospace, shipbuilding, automobiles, and containers.

[0003] Publication number: CN210115644U discloses a getter welding machine for the bottom cover of a thermos cup, comprising a machine body and a workbench, wherein the workbench is provided with a turntable that can rotate intermittently, and four bases are evenly distributed on the turntable in an annular manner, and above the four bases are respectively provided a getter feeding assembly, a bottom cover feeding assembly, an energy storage welding machine assembly, and a finished product output assembly. The getter feeding assembly sucks the getter into the base through a suction nozzle, and the bottom cover feeding assembly sucks the bottom cover into a position on a plate placed in a vacuum suction cup. On the getter in the base, the energy storage welder assembly performs instantaneous welding on the bottom cover and the getter, and the finished product output assembly picks up the product from the base through the vacuum suction cup. While the turntable rotates intermittently, the getter feeding assembly, the bottom cover feeding assembly, the energy storage welder assembly, and the finished product output assembly operate synchronously. However, this technology has no positioning structure for the chuck, and the product is prone to offset during processing, causing deviations during processing. Therefore, this technology still has room for modification. Summary of the Invention

[0004] The technical problem to be solved by the utility model is to provide a gas shielded automatic cladding welding machine in view of the deficiencies of the above-mentioned prior art.

[0005] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: a gas-shielded automatic cladding welding machine, comprising a frame, a chuck, and a welding gun, the welding gun being arranged at the upper end of the frame, and the chuck being arranged at one side of the frame, characterized in that: the chuck comprises a disc body for mounting claws, the disc body being provided with a plurality of mounting grooves, the claws being placed in the mounting grooves, and the rotation of the disc body can drive the claws located in the mounting grooves to move axially to clamp the product, a chuck base being fixedly mounted at the bottom of the disc body, a positioning slide being axially mounted between the chuck base and the disc body, a positioning plate being vertically provided on the positioning slide rail, the positioning plate being able to slide axially along the positioning slide rail, and a rotating assembly for driving the chuck to rotate being also provided at the bottom of the chuck base.

[0006] Using the above technical solution, the rotating assembly at the bottom of the chuck is responsible for driving the chuck to rotate, thereby automatically clamping and releasing the workpiece. This automated design significantly reduces manual intervention and labor intensity, while improving production continuity and efficiency. Since positioning slides are axially installed between the chuck base and the disc body, and the positioning plates can slide axially along these slides, the entire chuck assembly can be easily adjusted in position, and at the same time, it can ensure that the product will not be displaced during processing, thereby causing deviations during processing. This design not only simplifies the operation process, but also allows the operator to quickly reposition the chuck according to different welding requirements, greatly improving the flexibility and application range of the equipment.

[0007] The above-mentioned gas shielded automatic cladding machine can be further configured as follows: the rotating assembly includes a drive shaft support seat fixedly connected to the chuck base, a drive member mounting frame is installed at the bottom of the drive shaft support seat, a first drive member is installed in the mounting frame, the first drive member includes a drive shaft, and the drive shaft extends to the drive shaft support seat so that the first drive member can drive the drive shaft support seat and the disk body to rotate.

[0008] By adopting the above technical solution, the stability and rigidity of the drive shaft are ensured by fixing the simple drive shaft support seat and the chuck base, so that the first drive member can accurately transmit power to the disk body when driving the drive shaft to rotate, thereby ensuring the stability and precision of the disk body during rotation. The design of the mounting frame provides a solid foundation for the first drive member, which reduces vibration and offset of the drive member during operation, not only improving the durability of the overall equipment, but also reducing wear and failure rate caused by long-term use, thereby improving the reliability of the equipment and reducing maintenance costs.

[0009] The above-mentioned gas shielded automatic cladding welding machine can be further configured as follows: a Z-axis adjustment assembly is provided above the frame, a Y-axis adjustment assembly is provided at the upper end of the Z-axis adjustment assembly, and the welding gun is provided at one end of the Y-axis adjustment assembly.

[0010] Using this technical solution, the welding gun can be precisely adjusted in both vertical and horizontal directions using the Z- and Y-axis adjustment components. This design allows the operator to fine-tune the position of the welding gun based on the specific welding task, ensuring the optimal distance and angle between the welding gun and the weld point.

[0011] The above-mentioned gas-shielded automatic cladding machine can be further configured as follows: the Z-axis adjustment component includes a Z-axis slide bar symmetrically arranged at both ends of the frame, and a mounting seat for mounting the Y-axis adjustment component is installed on the Z-axis slide bar. A first slider is provided between the mounting seat and the Z-axis slide bar, and the first slider is slidably connected to the Z-axis slide bar to enable the mounting seat to slide along the Z-axis.

[0012] Using the above technical solution, the Z-axis adjustment assembly includes Z-axis slide bars symmetrically arranged at both ends of the frame. This design enables the mounting base to slide along the Z-axis, thereby allowing the Y-axis adjustment assembly and the welding gun thereon to be precisely adjusted in the Z-axis direction. Through the Z-axis adjustment assembly, the height of the welding gun can be easily adjusted to accommodate workpieces of different thicknesses or shapes.

[0013] The above-mentioned gas shielded automatic cladding machine can be further configured as follows: the Y-axis adjustment assembly includes a Y-axis adjustment rod, the Y-axis adjustment rod is vertically installed on the mounting seat, a Y-axis slide rod is provided on one side of the Y-axis adjustment rod, and a mounting structure for installing a welding gun is vertically installed on the Y-axis slide rod.

[0014] By adopting the above technical solution, the Y-axis adjustment assembly realizes the precise movement of the mounting structure along the Y-axis through the design of the Y-axis adjustment rod and the Y-axis slide rod, so that the welding gun can be quickly and accurately adjusted to a position suitable for welding, reducing the downtime caused by manual adjustment. The design of the Y-axis adjustment assembly enables the automatic cladding machine to adapt to workpieces of different thicknesses and shapes, as well as different welding process requirements.

[0015] The above-mentioned gas shielded automatic cladding welding machine can be further configured as follows: the mounting structure includes a frame rod axially mounted on the Y-axis adjusting rod, the frame rod is slidably connected to the Y-axis adjusting rod, a fixed seat is axially mounted on one end of the frame rod toward the chuck, a Y-axis adjusting plate is provided on one side of the fixed seat, the Y-axis adjusting plate is installed with a first adjusting block that can be adjusted along the Y-axis, the first adjusting block is vertically installed with a Z-axis adjusting plate, an adjusting shaft that can be adjusted along the Z-axis is installed on one side of the Z-axis adjusting plate, a rotating block that can be rotatably adjusted is sleeved on the adjusting shaft, a mounting shaft is passed through one side of the rotating block, a clamping piece for clamping and mounting the welding gun is installed on the end of the mounting shaft, and the clamping piece can manually adjust the welding gun up and down by loosening or tightening.

[0016] With the above technical solution, the design of the first adjustment block and the Z-axis adjustment plate allows the operator to finely adjust the position of the welding gun according to the specific welding task requirements, ensuring the optimal distance and angle between the welding gun and the welding point.

[0017] The above-mentioned gas shielded automatic cladding machine can be further configured as follows: a first slide rail is provided on the side of the frame rod facing the Y-axis adjustment rod, and the Y-axis adjustment rod is provided with a second slider. The second slider is slidably connected to the first slide rail to enable the frame rod to slide along the Z-axis direction. A limit plate is provided on the end of the frame rod away from the fixed seat, which can abut against the Y-axis adjustment rod to limit the sliding of the frame rod.

[0018] By adopting the above technical solution, through the cooperation of the first slide rail and the second slider, the rack rod can slide smoothly along the Z-axis direction, thereby realizing rapid adjustment of the welding gun in the left and right distances, ensuring the consistency of the distance between the welding gun and the workpiece, avoiding weld defects caused by inconsistent heights, and thus improving the overall welding quality.

[0019] The above-mentioned gas shielded automatic cladding machine can be further configured as follows: an X-axis slide rail is symmetrically provided on the top of the mounting seat, a sliding seat is provided between the Y-axis adjustment rod and the X-axis slide rail, the sliding seat is slidably connected to the X-axis slide rail, and the sliding seat and the Y-axis adjustment rod bracket are also provided with a rotating disk that can drive the Y-axis adjustment rod to rotate.

[0020] By adopting the above technical solution, the Y-axis adjustment rod can slide smoothly along the X-axis direction through the cooperation of the X-axis slide rail and the sliding seat. At the same time, the design of the rotating disk allows the Y-axis adjustment rod to rotate around its own axis, further increasing the positioning flexibility of the welding gun.

[0021] The above-mentioned gas shielded automatic cladding machine can be further configured as follows: a second slide rail is provided on one side of the frame, the second slide rail is slidably connected to a baffle, a light-shielding mirror is installed on the baffle, sliding handles are symmetrically provided on both sides of the baffle, and a first control panel is provided on the baffle at the light-shielding mirror.

[0022] By adopting the above technical solution, the sunshade can effectively reduce the impact of the strong light generated during the welding process on the operator's vision, allowing the operator to observe the welding process more clearly, thereby performing more precise welding operations and improving welding quality. The sunshade can be adjusted to different positions through the second slide rail according to the specific needs of the welding operation to adapt to different working environments and welding requirements. Sliding handles are symmetrically provided on both sides of the baffle, so that the operator can easily operate the sunshade no matter which side of the equipment he is on, thereby improving the convenience of operation.

[0023] The above-mentioned gas shielded automatic cladding machine can be further configured as follows: a connecting bracket is hingedly connected to the end of the frame away from the chuck, and the connecting bracket includes a hinged end with the fixed frame and a connecting end perpendicular to the hinged end, and the end of the connecting end is rotatably connected to a rotating bracket, and the rotating bracket is fixedly connected to a second control panel.

[0024] By adopting the above technical solution, through the design of connecting the bracket and the rotating bracket, the control panel can be easily moved to the position required by the operator, making the operation more convenient. The control panel is integrated into the rotating bracket so that the operator can operate without moving a large distance, reducing the operation time and improving work efficiency.

[0025] The beneficial effects of the present invention are as follows: positioning slide rails are axially installed between the chuck base and the chuck, and the positioning plate can slide axially along these slide rails, which makes it easy to adjust the position of the entire chuck assembly. At the same time, it can ensure that the product will not be displaced during the processing process, thereby causing deviations during processing, and also allows the operator to quickly reposition the chuck according to different welding requirements. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] Figure 1 It is a structural diagram of the utility model;

[0027] Figure 2 This is a structural diagram of the adjustment component of the utility model;

[0028] Figure 3 This is a diagram of the internal structure of the chuck of the present utility model;

[0029] Figure 4 This is a rear view of the structure of the present utility model;

[0030] Label Notes: 1-Frame, 2-Chuck, 3-Welding Gun, 4-Claw, 5-Chuck Base, 6-Positioning Slide, 7-Positioning Plate, 8-Drive Shaft Support, 9-Mounting Frame, 10-First Drive Component, 11-Drive Shaft, 12-Z-Axis Adjustment Assembly, 13-Y-Axis Adjustment Assembly, 14-Frame Rod, 15-Fixed Seat, 16-Y-Axis Adjustment Plate, 17-First Adjustment Block, 18-Z-Axis Adjustment Plate, 19-Adjustment Shaft, 20-Rotation Block, 21-Mounting Shaft, 22-Clamping Part, 23-First Control Panel, 24- Z-axis slide bar, 25-mounting seat, 26-first slider, 27-first slide rail, 28-second slider, 29-limiting plate, 30-X-axis slide rail, 31-sliding seat, 32-rotating disk, 33-second slide rail, 34-baffle, 35-light shielding mirror, 36-sliding handle, 37-connecting bracket, 38-rotating bracket, 39-second control panel, 201-disk body, 202-mounting slot, 1301-Y-axis adjustment rod, 1302-Y-axis slide bar, 3701-hinge end, 3702-connecting end. DETAILED DESCRIPTION

[0031] This specific embodiment is merely an explanation of the present invention and is not a limitation of the present invention. After reading this specification, those skilled in the art may make non-creative modifications to the present embodiment as needed. However, as long as they are within the scope of the claims of the present invention, they are protected by patent law.

[0032] like Figure 1-2The utility model shown in the figure provides the following technical solutions, a gas shielded automatic cladding machine, including a frame 1, a chuck 2, a welding gun 3, the welding gun 3 is arranged at the upper end of the frame 1, the chuck 2 is arranged on one side of the frame 1, the chuck 2 includes a disc body 201 for mounting the claw 4, the disc body 201 is provided with a plurality of mounting grooves 202, the claw 4 is placed in the mounting groove 202, the manual rotation disc 32 can drive the claw 4 to move axially in the mounting groove 202 to clamp the product, the disc body 201 is fixedly installed with a chuck base 4, the chuck base 4 and the disc body 201 are axially installed with a positioning slide 6, the positioning slide 6 is vertically provided with The positioning plate 7 can slide axially along the positioning slide rail 6. The bottom of the chuck base 4 is also provided with a rotating component that drives the chuck 2 to rotate. The rotating component at the bottom of the chuck 2 is responsible for driving the chuck 2 to rotate, thereby realizing automatic clamping and loosening of the workpiece. This automated design significantly reduces manual intervention and reduces labor intensity, while improving production continuity and efficiency. Since the chuck base 4 and the disc body 201 are axially installed with positioning slide rails 6, and the positioning plate 7 can slide axially along these slide rails, the entire chuck 2 assembly can be easily adjusted in position, and can be accurately positioned during the processing. To ensure that the product will not be displaced and thus cause deviation during processing, this design not only simplifies the operation process, but also allows the operator to quickly reposition the chuck 2 according to different welding requirements, greatly improving the flexibility and application range of the equipment. The rotating assembly includes a drive shaft 11 support seat 8 fixedly connected to the chuck base 4, a drive member mounting frame 9 is installed at the bottom of the drive shaft 11 support seat 8, and a first drive member 10 is installed in the mounting frame 9. The first drive member 10 includes a drive shaft 11, and the drive shaft 11 extends to the drive shaft 11 support seat 8 so that the first drive member 10 can drive the drive shaft 11 support seat 8 and the disk body 20 1 rotation, by fixing the simple drive shaft 11 support base 8 and the chuck base 4, the stability and rigidity of the drive shaft 11 are ensured, so that the first drive member 10 can accurately transmit power to the disk body 201 when driving the drive shaft 11 to rotate, thereby ensuring the stability and accuracy of the disk body 201 during the rotation process. The design of the mounting frame 9 provides a solid foundation for the first drive member 10, reducing vibration and deviation of the drive member during operation, not only improving the durability of the overall equipment, but also reducing wear and failure rate caused by long-term use, thereby improving the reliability of the equipment and reducing maintenance costs.

[0033] like Figure 2-4The present invention provides the following technical solutions: a gas shielded automatic cladding machine, wherein a Z-axis adjustment assembly 12 is provided above the frame 1, a Y-axis adjustment assembly 13 is provided at the upper end of the Z-axis adjustment assembly 12, and a welding gun 3 is provided at one end of the Y-axis adjustment assembly 13. Through the Z-axis and Y-axis adjustment assemblies 13, the welding gun 3 can be precisely adjusted in the vertical and horizontal directions. This design allows the operator to finely adjust the position of the welding gun 3 according to the specific welding task requirements to ensure the optimal distance and angle between the welding gun 3 and the welding point. The Z-axis adjustment assembly 12 includes Z-axis slide bars 24 symmetrically arranged at both ends of the frame 1, and a mounting seat 25 for mounting the Y-axis adjustment assembly 13 is installed on the Z-axis slide bar 24. A first slider 26 is provided between the mounting seat 25 and the Z-axis slide bar 24. The first slider 26 is slidably connected to the Z-axis slide bar 24 to enable the mounting seat 25 to slide along the Z-axis. The Z-axis adjustment assembly 12 includes Z-axis slide bars 24 symmetrically arranged at both ends of the frame 1. This design enables the mounting seat 25 to slide along the Z-axis, thereby The Y-axis adjustment component 13 and the welding gun 3 thereon are allowed to perform precise position adjustment in the Z-axis direction. Through the Z-axis adjustment component 12, the height of the welding gun 3 can be easily adjusted to adapt to workpieces of different thicknesses or shapes. The Y-axis adjustment component 13 includes a Y-axis adjustment rod 1301, which is vertically mounted on the mounting base 25. A Y-axis slide bar 1302 is provided on one side of the Y-axis adjustment rod 1301, and a mounting structure for mounting the welding gun 3 is vertically mounted on the Y-axis slide bar 1302. The Y-axis adjustment component 13 realizes the precise movement of the mounting structure along the Y-axis through the design of the Y-axis adjustment rod 1301 and the Y-axis slide bar 1302, so that the welding gun 3 can be quickly adjusted. The Y-axis adjustment assembly 13 is designed to quickly and accurately adjust to a position suitable for welding, reducing downtime caused by manual adjustment. The design of the Y-axis adjustment assembly 13 enables the automatic surfacing machine to adapt to workpieces of different thicknesses and shapes, as well as different welding process requirements. The mounting structure includes a rack rod 14 axially mounted on the Y-axis adjustment rod 1301, the rack rod 14 is slidably connected to the Y-axis adjustment rod 1301, the rack rod 14 is axially mounted with a fixed seat 15 at one end toward the chuck 2, a Y-axis adjustment plate 16 is provided on one side of the fixed seat 15, the Y-axis adjustment plate 16 is installed with a first adjustment block 17 that can be adjusted along the Y-axis, the first adjustment block 17 is vertically mounted with a Z-axis adjustment plate 18, and one side of the Z-axis adjustment plate 18 An adjustment shaft 19 that can be adjusted along the Z axis is installed, and a rotating block 20 that can be rotatably adjusted is sleeved on the adjustment shaft 19. A mounting shaft 21 is passed through one side of the rotating block, and a clamping piece 22 for clamping and installing the welding gun 3 is installed at the end of the mounting shaft 21. The clamping piece 22 can manually adjust the welding gun 3 up and down by loosening or tightening. The design of the first adjustment block 17 and the Z-axis adjustment plate 18 allows the operator to finely adjust the position of the welding gun 3 according to the specific welding task requirements to ensure the optimal distance and angle between the welding gun 3 and the welding point. A first slide rail 27 is provided on the side of the frame rod 14 facing the Y-axis adjustment rod 1301, and the Y-axis adjustment rod 1301 is provided with a second slider 28.The second slider 28 is slidably connected to the first slide rail 27 to enable the frame rod 14 to slide along the Z-axis direction. A limit plate is provided at one end of the frame rod 14 away from the fixed seat 15, which can abut against the Y-axis adjustment rod 1301 to limit the sliding of the frame rod 14. Through the cooperation of the first slide rail 27 and the second slider 28, the frame rod 14 can slide smoothly along the Z-axis direction, thereby realizing the rapid adjustment of the distance between the welding gun 3 and the workpiece, ensuring the consistency of the distance between the welding gun 3 and the workpiece, avoiding weld defects caused by inconsistent heights, and thus improving the overall welding quality. The top of the mounting seat 25 is symmetrically provided with an X-axis slide rail 30 and a Y-axis adjustment rod 130 1 and the X-axis slide rail 30 are provided with a sliding seat 31, the sliding seat 31 is slidably connected to the X-axis slide rail 30, and the sliding seat 31 and the Y-axis adjustment rod 1301 bracket are also provided with a rotating disk 32 that can drive the Y-axis adjustment rod 1301 to rotate. The Y-axis adjustment rod 1301 can slide smoothly along the X-axis direction. At the same time, the design of the rotating disk 32 allows the Y-axis adjustment rod 1301 to rotate around its own axis, further increasing the positioning flexibility of the welding gun 3. A second slide rail 33 is provided on one side of the frame 1. The second slide rail 33 is slidably connected to a baffle 34. A light shielding mirror 35 is installed on the baffle 34. Sliding handles 36 are symmetrically provided on both sides of the baffle 34. , the baffle 34 is provided with a first control panel 23 at the shading mirror 35, the shading mirror 35 can effectively reduce the influence of the strong light generated during the welding process on the operator's sight, so that the operator can observe the welding process more clearly, thereby performing more accurate welding operations and improving welding quality. The shading mirror 35 can be adjusted to different positions through the second slide rail 33 according to the specific needs of the welding operation to adapt to different working environments and welding requirements. Sliding handles 36 are symmetrically provided on both sides of the baffle 34, so that the operator can easily operate the shading mirror 35 no matter which side of the equipment he is on, thereby improving the convenience of operation. A connecting bracket 37 is hingedly connected to the end away from the chuck. Connecting bracket 37 includes a hinged end 3701 connected to the fixed frame and a connecting end 3702 perpendicular to the hinged end 3701. The end of connecting end 3702 is rotatably connected to a rotating bracket 38. Rotating bracket 38 is fixedly connected to a second control panel 39. The design of connecting bracket 37 and rotating bracket 38 allows the control panel to be easily moved to the position required by the operator, making operation more convenient. Integrating the control panel on the rotating bracket 38 allows the operator to operate without moving a large distance, reducing operation time and improving work efficiency.

[0034] The beneficial effects of the present invention are as follows: positioning rails 6 are axially installed between the chuck base 4 and the chuck 2, and the positioning plate 7 can slide axially along these rails, which makes it possible to conveniently adjust the position of the entire chuck 2 assembly, while ensuring that the product will not be displaced during processing, thereby causing deviations during processing, and also allowing the operator to quickly reposition the chuck 2 according to different welding requirements.

Claims

1. A gas shielded automatic cladding welding machine, comprising a frame, a chuck, and a welding gun, wherein the welding gun is arranged at the upper end of the frame and the chuck is arranged at one side of the frame, characterized in that: The chuck includes a disc body for mounting the claws, the disc body is provided with a plurality of mounting grooves, the claws are placed in the mounting grooves, and the rotation of the disc body can drive the claws to move axially in the mounting grooves to clamp the product. A chuck base is fixedly mounted on the bottom of the disc body, and a positioning slide is axially mounted between the chuck base and the disc body. A positioning plate is vertically provided on the positioning slide, and the positioning plate can slide axially along the positioning slide. A rotating component that drives the chuck to rotate is also provided at the bottom of the chuck base.

2. The gas shielded automatic cladding machine according to claim 1, characterized in that: The rotating assembly includes a drive shaft support seat fixedly connected to the chuck base, a drive member mounting frame is installed at the bottom of the drive shaft support seat, a first drive member is installed in the mounting frame, the first drive member includes a drive shaft, and the drive shaft extends to the drive shaft support seat so that the first drive member can drive the drive shaft support seat and the disk body to rotate.

3. The gas shielded automatic cladding machine according to claim 1, characterized in that: A Z-axis adjustment component is provided above the frame, a Y-axis adjustment component is provided on the upper end of the Z-axis adjustment component, and the welding gun is provided at one end of the Y-axis adjustment component.

4. The gas shielded automatic cladding machine according to claim 3, characterized in that: The Z-axis adjustment assembly includes a Z-axis slide bar symmetrically arranged at both ends of the frame, and a mounting seat for mounting the Y-axis adjustment assembly is installed on the Z-axis slide bar. A first slider is provided between the mounting seat and the Z-axis slide bar, and the first slider is slidably connected to the Z-axis slide bar to enable the mounting seat to slide along the Z-axis.

5. The gas shielded automatic cladding machine according to claim 3, characterized in that: The Y-axis adjustment assembly includes a Y-axis adjustment rod, which is vertically mounted on the mounting seat. A Y-axis slide rod is provided on one side of the Y-axis adjustment rod, and a mounting structure for mounting a welding gun is vertically mounted on the Y-axis slide rod.

6. The gas shielded automatic cladding machine according to claim 5, characterized in that: The mounting structure includes a frame rod axially mounted on the Y-axis adjustment rod, the frame rod being slidably connected to the Y-axis adjustment rod, a fixed seat being axially mounted on one end of the frame rod toward the chuck, a Y-axis adjustment plate being provided on one side of the fixed seat, the Y-axis adjustment plate being installed with a first adjustment block that can be adjusted along the Y-axis, the first adjustment block being vertically mounted with a Z-axis adjustment plate, an adjustment shaft that can be adjusted along the Z-axis being installed on one side of the Z-axis adjustment plate, a rotating block that can be rotatably adjusted being sleeved on the adjusting shaft, a mounting shaft being passed through one side of the rotating block, a clamping piece for clamping and mounting a welding gun being installed on the end of the mounting shaft, the clamping piece being able to manually adjust the welding gun up and down by loosening or tightening.

7. The gas shielded automatic cladding machine according to claim 6, characterized in that: The rack rod is provided with a first slide rail on the side facing the Y-axis adjustment rod, and the Y-axis adjustment rod is provided with a second slider. The second slider is slidably connected to the first slide rail to enable the rack rod to slide along the Z-axis direction. The rack rod is provided with a limit plate on the end away from the fixed seat, which can abut against the Y-axis adjustment rod to limit the sliding of the rack rod.

8. The gas shielded automatic cladding machine according to any one of claims 5 to 7, characterized in that: An X-axis slide rail is symmetrically provided on the top of the mounting seat, a sliding seat is provided between the Y-axis adjustment rod and the X-axis slide rail, the sliding seat is slidably connected to the X-axis slide rail, and the sliding seat and the Y-axis adjustment rod bracket are also provided with a rotating disk that can drive the Y-axis adjustment rod to rotate.

9. The gas shielded automatic cladding machine according to claim 1, characterized in that: A second slide rail is provided on one side of the frame, the second slide rail is slidably connected to a baffle, a sunshade mirror is installed on the baffle, sliding handles are symmetrically provided on both sides of the baffle, and a first control panel is provided on the baffle at the sunshade mirror.

10. The gas shielded automatic cladding machine according to claim 9, characterized in that: The end of the frame away from the chuck is hinged with a connecting bracket, and the connecting bracket includes a hinged end with the fixed frame and a connecting end perpendicular to the hinged end. The end of the connecting end is rotatably connected to the rotating bracket, and the rotating bracket is fixedly connected to the second control panel.

Citation Information

Patent Citations

  • Getter welding machine for bottom cover of vacuum cup

    CN210115644U