A welding device for finish machining of a hoop

Through the design of rotating discs and fixing components, rapid fixing and welding of multiple sizes of clamping hoops is achieved, solving the problem that existing equipment cannot quickly adapt to clamping hoops of different sizes, and improving welding efficiency and quality.

CN120055653BActive Publication Date: 2025-08-05HEBEI DONGLI ELECTRIC CO LTD

Patent Information

Application Number
CN202510337746.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-03-21
Publication Date
2025-08-05
Estimated Expiration
2045-03-21

AI Technical Summary

Technical Problem

Existing welding equipment cannot quickly adapt to multiple sizes of clamping hoops, resulting in inefficient welding and the inability to quickly fix and weld clamping hoops of different sizes.

Method used

The rotating disc and fixing components are adopted, including positioning plates, press-fitting blocks, limiting blocks and abutment rods. Through sliding connections and rotatable connections, the fast fixing of the clamping hoops is achieved; the driving mechanism of the welding frame and welding components allows the adjustment of the position of the welding gun, and realizes the simultaneous welding of clamping hoops and reinforcement sheets of different sizes.

Benefits of technology

It realizes rapid fixing and welding of multiple sizes of clamping hoops, improves welding efficiency, and is welded simultaneously to adapt to clamping hoops and reinforcement plates of different sizes, improving workpiece quality and welding efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a welding device for finish machining of a hoop, relating to the technical field of a welding device for finish machining of a hoop. It includes: a frame; a rotating disc is arranged on the frame and rotates on the frame; a fixing assembly is arranged on the rotating disc, and there are two fixing assemblies which are symmetrically arranged on the rotating disc; the welding frame includes a vertical frame and a horizontal frame, the vertical frame is vertically arranged on the frame, and the horizontal frame is arranged on the vertical frame and horizontally arranged above the rotating disc; a welding assembly slides on the horizontal frame, the welding assembly is arranged above the rotating disc, and a welding gun is arranged on the welding assembly. By providing a positioning plate, a pressing block, a limiting block and a butting rod, the present invention can achieve rapid fixation of the hoop. By providing that the pressing block is slidably connected to the positioning plate and the rotating disc, the limiting block is slidably connected to the rotating disc, and the butting rod is rotatably connected to the rotating disc, it can rapidly adapt to hoops of different sizes and fix hoops and rib plates of various sizes.
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Description

Technical Field

[0001] The present invention relates to the technical field of processing equipment for electric power iron accessories, and more specifically, to a welding equipment for fine machining of hoop fasteners. Background Art

[0002] A hoop fastener is a component that holds or clamps another material with a certain material, and it is one of the most common iron accessory products in the power system. After the hoop fastener is formed, in order to enhance the strength of the hoop fastener, many hoop fastener designs require welding a special-shaped rib plate at the arc bending part of the hoop fastener.

[0003] Due to the large variety of sizes, arc bending radii and types of rib plates of existing hoop fasteners, and the low machining accuracy and large dimensional deviation of hoop fasteners, different sizes are required for clamping and fixing. Existing welding equipment can often only weld hoop fasteners of fixed sizes. When it is necessary to weld hoop fasteners of other sizes, the parts used to fix the hoop fasteners on the workbench need to be disassembled, and then reinstalled according to the size of the hoop fastener. The parts used to fix the hoop fastener and the rib plate in the prior art are often directly welded to the workbench. That is to say, the welding equipment in the prior art can only weld hoop fasteners of the same size and cannot quickly adapt to and weld the sizes of other hoop fasteners, which affects the welding efficiency.

[0004] Therefore, how to provide a welding equipment for fine machining of hoop fasteners that can quickly adapt to hoop fasteners of various sizes and can quickly fix and quickly weld hoop fasteners of various sizes is an urgent problem to be solved by those skilled in the art. Summary of the Invention

[0005] In view of this, the present invention provides a welding equipment for fine machining of hoop fasteners, aiming to solve the problems in the above background art and achieve quickly adapting to hoop fasteners of various sizes and being able to quickly fix and quickly weld hoop fasteners of various sizes.

[0006] In order to achieve the above object, the present invention adopts the following technical solutions:

[0007] A welding equipment for fine machining of hoop fasteners, comprising:

[0008] A frame;

[0009] A rotating disk, which is arranged on the frame and rotates on the frame;

[0010] A fixing component, which is arranged on the rotating disk, and there are two fixing components and they are symmetrically arranged on the rotating disk;

[0011] The fixing component includes a positioning plate, a press-fitting block, a limiting block and an abutting rod. The positioning plate is in contact with the surface of the rotating disk. The side wall of the press-fitting block is in contact with and slides on the positioning plate. The bottom of the press-fitting block is slidably connected to the surface of the rotating disk. A limiting tube is provided on the positioning plate, and the press-fitting block slides in the limiting tube. The press-fitting blocks are arranged in pairs at both ends of the hoop. The limiting block slides on the rotating disk. One end of the limiting block abuts against the outer wall of the arc side of the hoop. A hydraulic cylinder is provided at the other end of the limiting block, and the hydraulic cylinder is fixedly connected to the rotating disk. The hydraulic cylinder drives the limiting block. One end of the hoop away from the limiting block abuts against the positioning plate. There are two abutting rods. One end of each abutting rod abuts against the rib plate to be welded on the hoop, and the middle of the abutting rod is rotatably connected to the rotating disk;

[0012] A welding frame, which includes a vertical frame and a horizontal frame. The vertical frame is vertically arranged on the machine frame, and the horizontal frame is arranged on the vertical frame and horizontally above the rotating disk;

[0013] A welding component, which slides on the horizontal frame. The welding component is arranged above the rotating disk. A welding gun is provided on the welding component. There are two welding guns and they are respectively arranged corresponding to the positions of the two rib plates of the hoop.

[0014] Further, the welding component includes a lifting rod, a mounting table, a horizontal sliding rod, a sliding table and a rotating sleeve. A first sliding tube is provided at the top of the lifting rod, and the first sliding tube slides on the horizontal frame. The bottom end of the lifting rod is fixedly connected to the mounting table. The horizontal sliding rod is horizontally arranged on the mounting table, and both ends of the horizontal sliding rod extend out of the mounting table. There are two sliding tables and they slide on both sides of the horizontal sliding rod respectively. A vertical hole is provided on the sliding table, and the rotating sleeve is arranged in the vertical hole and rotates in the vertical hole. The rotating sleeve is sleeved on the welding gun;

[0015] The welding component further includes a first driving mechanism, a second driving mechanism and a third driving mechanism. The first driving mechanism is arranged on the vertical frame, and the first driving mechanism drives the first sliding tube to slide on the horizontal frame. The second driving mechanism is arranged on the mounting table, and the second driving mechanism drives the sliding table to slide. The third driving mechanism is arranged on the sliding table, and the third driving mechanism drives the rotating sleeve to rotate.

[0016] Further, a blower is provided on the mounting table, and an air outlet pipe is provided on the sliding table. The air outlet of the air outlet pipe points to the rib plate, and the air outlet pipe is communicated with the air outlet hole of the blower.

[0017] Furthermore, the limiting block includes a U-shaped frame and a metal mesh. The open end of the U-shaped frame faces the hoop. The two ends of the metal mesh are respectively connected to the two ends of the U-shaped frame. The metal mesh is in contact with the surface of the hoop. The end of the U-shaped frame far from the metal mesh is connected to the hydraulic cylinder.

[0018] Furthermore, the U-shaped frame includes a left plate, a right plate and a cross plate. One end of the left plate is connected to the metal mesh. The other end of the left plate is connected to the cross plate. The other end of the cross plate is connected to the right plate. The other end of the right plate is connected to the metal mesh. The left plate and the right plate are parallel to each other. The cross plate is connected to the hydraulic cylinder.

[0019] Furthermore, net sleeves are provided on the sides of the left plate far from the right plate and the right plate far from the left plate. The metal mesh is inserted into the net sleeves. Adjusting holes are provided on the net sleeves. Adjusting nails are threadedly connected in the adjusting holes. The adjusting nails penetrate through the net sleeves and abut against the metal mesh.

[0020] Furthermore, a rotating groove is provided on the frame. The rotating groove is semi-circular. The side wall of the rotating groove is slidably connected to the side wall of the rotating disk. Hemispherical positioning grooves are respectively provided on the inner walls at both ends of the rotating groove. Two positioning holes are respectively provided on the side wall of the rotating disk along the diameter direction of the rotating disk. Springs are provided in the positioning holes. One end of each spring is connected to the positioning hole. The other end of each spring is connected to a positioning ball. The positioning balls cooperate with the hemispherical positioning grooves.

[0021] Furthermore, a rotating shaft is provided in the middle of the abutting rod. The abutting rod penetrates through the rotating shaft and is threadedly connected to the rotating shaft. The rotating shaft is vertically provided on the rotating disk and is rotatably connected to the rotating disk.

[0022] As can be seen from the above technical solutions, compared with the prior art, the present invention discloses a welding device for the fine machining of hoops. By providing a positioning plate, a pressing block, a limiting block and an abutting rod, the hoop can be quickly fixed. By providing that the pressing block is slidably connected to the positioning plate and the rotating disk, the limiting block is slidably connected to the rotating disk, and the abutting rod is rotatably connected to the rotating disk, the positions of the pressing block, the limiting block and the abutting rod on the rotating disk can be quickly adjusted, so as to quickly adapt to hoops of different sizes and fix hoops and rib plates of various sizes. By providing a welding frame and a welding component, the position of the welding gun can be adjusted, and by providing two welding guns, the welding of hoops of different sizes and two rib plates can be achieved simultaneously. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for the description of the embodiments or the prior art. Obviously, the drawings in the following description are only the embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on the provided drawings.

[0024] Figure 1 The overall structure diagram of a welding device for the fine machining of a hoop provided by the present invention;

[0025] Figure 2 Provided by the present invention Figure 1 The enlarged view of part A;

[0026] Figure 3 Provided by the present invention Figure 1 The enlarged view of part B.

[0027] Among them: 1 is the frame; 2 is the rotating disk; 201 is the positioning ball; 3 is the fixing component; 31 is the positioning plate; 32 is the pressing block; 33 is the limiting block; 331 is the U-shaped frame; 3311 is the left plate; 3312 is the right plate; 3313 is the cross plate; 332 is the metal mesh; 34 is the abutting rod; 301 is the limiting tube; 302 is the hydraulic cylinder; 303 is the mesh sleeve; 304 is the adjusting nail; 305 is the rotating shaft; 4 is the welding frame; 41 is the vertical frame; 42 is the horizontal frame; 5 is the welding component; 51 is the lifting rod; 52 is the mounting table; 53 is the horizontal sliding rod; 54 is the sliding table; 55 is the rotating sleeve; 501 is the first sliding tube; 502 is the first driving mechanism; 503 is the second driving mechanism; 504 is the third driving mechanism; 6 is the welding gun; 7 is the fan; 701 is the air outlet pipe; 8 is the hoop; 9 is the rib plate. Specific embodiments

[0028] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the scope of protection of the present invention.

[0029] See Figures 1-3 , the embodiments of the present invention disclose a welding device for the fine machining of a hoop, including:

[0030] The frame 1; In this embodiment, the frame 1 is of a cuboid structure, the rotating disk 2 is arranged on the upper surface of the frame 1, and a wheel set for movement can be arranged at the bottom of the frame 1.

[0031] Rotating disk 2 is arranged on the frame 1 and rotates on the frame 1; fixing component 3 is arranged on the rotating disk 2, and there are two fixing components 3 which are symmetrically arranged on the rotating disk 2; in this embodiment, the rotating disk 2 is of a circular structure, and the fixing components 3 are respectively arranged on both sides of the rotating disk 2. The two fixing components 3 are axially symmetric about the diameter of the rotating disk 2 on the surface of the rotating disk 2 and are also centrosymmetric about the axis of the rotating disk 2. During use, the cross frame 42 is arranged above one fixing component 3. A support column is arranged in the middle of the frame 1. The rotating disk 2 is sleeved on the support column and is rotatably connected to the support column. The top end of the support column is fixedly connected to the end of the cross frame 42 far from the vertical frame 41.

[0032] The fixing component 3 includes a positioning plate 31, a pressing block 32, a limiting block 33 and an abutting rod 34. The positioning plate 31 is fitted to the surface of the rotating disk 2. The side wall of the pressing block 32 is abutted to the positioning plate 31 and slides on the positioning plate 31. The bottom of the pressing block 32 is slidably connected to the surface of the rotating disk 2. A limiting tube 301 is arranged on the positioning plate 31, and the pressing block 32 slides in the limiting tube 301. The pressing blocks 32 are arranged in pairs at both ends of the hoop 8. The limiting block 33 slides on the rotating disk 2. One end of the limiting block 33 abuts against the outer wall of the arc-shaped side of the hoop 8. The other end of the limiting block 33 is provided with a hydraulic cylinder 302, and the hydraulic cylinder 302 is fixedly connected to the rotating disk 2. The hydraulic cylinder 302 drives the limiting block 33. The end of the hoop 8 far from the limiting block 33 abuts against the positioning plate 31. There are two abutting rods 34. One end of the abutting rod 34 abuts against the rib plate 9 to be welded on the hoop 8. The middle of the abutting rod 34 is rotatably connected to the rotating disk 2;

[0033] In this embodiment, a limiting hole is arranged on the side wall of the limiting tube 301, and a limiting rod is threadedly connected in the limiting hole. One end of the limiting rod penetrates through the side wall of the limiting tube 301 and abuts against the pressing block 32. An inclined surface is arranged at one end of the pressing block 32 close to the hoop 8. By arranging the inclined surface, it can be ensured that the hoop 8 enters between the two pressing blocks 32 more quickly. Scale lines are arranged on the positioning plate 31. During use, according to the size of the hoop 8, the distance between the two pressing blocks 32 is determined, and then the distance between the two pressing blocks 32 is adjusted according to the scale lines, and it is ensured that the two pressing blocks 32 are symmetrically arranged on both sides of the positioning plate 31. Then the two limiting rods are respectively tightened, and further the positions of the two pressing blocks 32 are fixed.

[0034] The welding frame 4 includes a vertical frame 41 and a horizontal frame 42. The vertical frame 41 is vertically arranged on the frame 1, and the horizontal frame 42 is arranged on the vertical frame 41 and horizontally arranged above the rotating disk 2; the welding assembly 5 slides on the horizontal frame 42, and the welding assembly 5 is arranged above the rotating disk 2. The welding assembly 5 is provided with a welding gun 6. There are two welding guns 6 and they are respectively arranged at the positions of the two ribs 9 of the clamp 8; in this embodiment, by setting the horizontal frame 42 and slidingly connecting the welding assembly 5 to the horizontal frame 42, the position of the welding assembly 5 can be adjusted during use, and it can also be automatically adjusted when clamps 8 of different sizes need to be welded.

[0035] The welding assembly 5 includes a lifting rod 51, a mounting platform 52, a horizontal sliding rod 53, a sliding platform 54 and a rotating sleeve 55. A first sliding tube 501 is provided on the top of the lifting rod 51, and the first sliding tube 501 slides on the horizontal frame 42. The bottom end of the lifting rod 51 is fixedly connected to the mounting platform 52. The horizontal sliding rod 53 is horizontally arranged on the mounting platform 52. Both ends of the horizontal sliding rod 53 extend out of the mounting platform 52. Two sliding platforms 54 are provided and slide on both sides of the horizontal sliding rod 53 respectively. A vertical hole is provided on the sliding platform 54. The rotating sleeve 55 is arranged in the vertical hole and rotates in the vertical hole. The rotating sleeve 55 is sleeved on the welding gun 6;

[0036] The welding assembly 5 also includes a first driving mechanism 502, a second driving mechanism 503 and a third driving mechanism 504. The first driving mechanism 502 is arranged on the vertical frame 41, and the first driving mechanism 502 drives the first sliding tube 501 to slide on the horizontal frame 42. The second driving mechanism 503 is arranged on the mounting table 52, and the second driving mechanism 503 drives the sliding table 54 to slide. The third driving mechanism 504 is arranged on the sliding table 54, and the third driving mechanism 504 drives the rotating sleeve 55 to rotate; in this embodiment, the horizontal frame 42 is arranged horizontally, the horizontal sliding rod 53 is arranged longitudinally, the lifting rod 51 is a hydraulic cylinder 302 or a pneumatic cylinder, the lifting rod 51 is arranged vertically, and the lifting rod 51 vertically drives the mounting table 52.

[0037] The first driving mechanism 502 includes a first motor, a first driving gear, a first driven gear, a first threaded rod and a first threaded sleeve. The first motor is arranged at the top of the vertical rod, the first driving gear is arranged on the output shaft of the first motor, the first driving gear is connected to the first driven gear in a transmission manner, the two ends of the first threaded rod are rotatably connected to the vertical rod and the support column respectively, the first driven gear is sleeved on the first threaded rod and rotates synchronously with the first threaded rod, the first threaded sleeve is fixedly connected to the first sliding tube 501 and is helically connected to the first threaded rod, the axis of the first threaded rod is parallel to the axis of the cross frame 42. When in use, the first motor rotates to drive the first threaded sleeve and the first sliding tube 501 to slide on the cross frame 42, thereby driving the welding assembly 5 and the welding gun 6 to slide in the length direction of the cross frame 42.

[0038] The second driving mechanism 503 includes a second motor, a second driving gear, a second driven gear and a positive and negative screw rod. The second motor is fixedly connected to the mounting table 52. The second driving gear is arranged on the output shaft of the second motor. The second driven gear is sleeved on the positive and negative screw rod. The second driven gear is in transmission connection with the second driving gear. Positive screw holes and reverse screw holes are respectively arranged at the two ends of the two sliding tables 54 corresponding to the two ends of the positive and negative screw rod. The two ends of the positive and negative screw rod are respectively in screw transmission connection with the two sliding tables 54. During use, the second motor drives the two sliding tables 54 to approach or depart from each other, so as to symmetrically weld the positions to be welded on both sides of the hoop 8.

[0039] The third driving mechanism 504 includes a third motor, a third driving gear and a third driven gear. The third motor is arranged on the sliding table 54. The third driving gear is arranged on the output shaft of the third motor. The third driven gear is sleeved on the outer wall of the rotating sleeve 55 and rotates synchronously with the rotating sleeve 55. The third driving gear is in transmission connection with the third driven gear. During use, the third motor drives the rotating sleeve 55 to rotate, so as to drive the welding gun 6 to rotate axially, and thus can weld the stiffener plate 9 and the hoop 8 at multiple angles.

[0040] A blower 7 is arranged on the mounting table 52. An air outlet pipe 701 is arranged on the sliding table 54. The air outlet of the air outlet pipe 701 points to the stiffener plate 9. The air outlet pipe 701 is communicated with the air outlet hole of the blower 7. In this embodiment, there are two air outlet holes on the blower 7. The blower 7 is respectively connected to the two air outlet pipes 701 through hoses. The two air outlet pipes 701 move along with the sliding table 54. During use, the high-speed air output by the blower 7 can blow away the spatter generated during welding, so as to prevent the spatter from falling on the hoop 8 or the stiffener plate 9 and causing welding scars, and can improve the quality of the workpiece and the welding efficiency.

[0041] The limiting block 33 includes a U-shaped frame 331 and a metal mesh 332. The open end of the U-shaped frame 331 faces the hoop 8. The two ends of the metal mesh 332 are respectively connected to the two ends of the U-shaped frame 331. The metal mesh 332 is in contact with the surface of the hoop 8. The end of the U-shaped frame 331 far from the metal mesh 332 is connected to the hydraulic cylinder 302. In this embodiment, a fixing plate is arranged at the other end of the hydraulic cylinder 302. The fixing plate is fixedly connected to the rotating disk 2. By driving the hydraulic cylinder 302, the U-shaped frame 331 can be driven to slide on the rotating disk 2 during use. A chute is arranged on the rotating disk 2. A slider is arranged at the bottom of the U-shaped frame 331. By arranging the metal mesh 332, the metal mesh 332 has a certain plasticity. Thus, when the open end of the U-shaped frame 331 abuts against the outer surface of the hoop 8, the entire metal mesh 332 can be in contact with the surface of the hoop 8, so that the metal mesh 332 and the U-shaped frame 331 can be applicable to hoops 8 of various different diameters and effectively fix and position the hoop 8.

[0042] The U-shaped frame 331 includes a left plate 3311, a right plate 3312 and a cross plate 3313. One end of the left plate 3311 is connected to the metal mesh 332, the other end of the left plate 3311 is connected to the cross plate 3313, the other end of the cross plate 3313 is connected to the right plate 3312, and the other end of the right plate 3312 is connected to the metal mesh 332. The left plate 3311 and the right plate 3312 are parallel to each other, and the cross plate 3313 is connected to the hydraulic cylinder 302; in this embodiment, a reinforcing plate is provided between the left plate 3311 and the right plate 3312. The two ends of the reinforcing plate are respectively connected to the left plate 3311 and the right plate 3312. The reinforcing plate and the cross plate 3313 are parallel, and the left plate 3311, the right plate 3312, the reinforcing plate and the cross plate 3313 form a rectangular structure.

[0043] Mesh sleeves 303 are provided on the sides of the left plate 3311 away from the right plate 3312 and the right plate 3312 away from the left plate 3311. The metal mesh 332 is inserted into the mesh sleeves 303. Adjusting holes are provided on the mesh sleeves 303, and adjusting nails 304 are threadedly connected in the adjusting holes. The adjusting nails 304 penetrate through the mesh sleeves 303 and abut against the metal mesh 332; in this embodiment, a plurality of springs are provided at both ends of the metal mesh 332. The ends of the plurality of springs away from the metal mesh 332 are respectively connected to the left plate 3311 and the right plate 3312. When in use, loosen the adjusting nails 304 and adjust the position of the metal mesh 332 in the mesh sleeves 303, and the length of the metal mesh 332 between the left plate 3311 and the right plate 3312 can be adjusted, so that the limiting block 33 can be used on the hoop 8 with a larger range of sizes.

[0044] A rotating groove is provided on the frame 1. The rotating groove is semicircular. The side wall of the rotating groove is slidably connected to the side wall of the rotating disk 2. Hemispherical positioning grooves are respectively provided on the inner walls at both ends of the rotating groove. Two positioning holes are respectively provided on the side wall of the rotating disk 2 along the diameter direction of the rotating disk 2. Springs are provided in the positioning holes. One end of the spring is connected to the positioning hole, and the other end of the spring is connected to a positioning ball 201. The positioning ball 201 cooperates with the hemispherical positioning groove; in this embodiment, the axes of the two positioning holes are on the same axis, the axis between the two positioning holes is collinear with the diameter of the rotating disk 2, and the two fixing components 3 are symmetrically arranged on the surface of the rotating disk 2 with respect to the axis of the two positioning holes. When in use, a handle is provided on the rotating disk 2, and a plurality of handles are provided. Hold the handle and rotate the rotating disk 2. The rotating disk 2 rotates. When a fixing component 3 on the rotating disk 2 rotates to the position to be welded, the spring pushes the positioning ball 201 to cooperate with the positioning groove. Rotate the rotating disk 2 again. When the positioning groove and the positioning ball 201 cooperate again, the other fixing component 3 rotates to the lower part of the welding component 5.

[0045] A rotating shaft 305 is provided in the middle of the abutting rod 34. The abutting rod 34 passes through the rotating shaft 305 and is threadedly connected to the rotating shaft 305. The rotating shaft 305 is vertically provided on the rotating disk 2 and is rotatably connected to the rotating disk 2. In this embodiment, a friction plate is provided at one end of the abutting rod 34 away from the rotating shaft 305. The friction plate is hinged to the abutting rod 34 and is frictionally connected to the side wall of the rib plate 9. By providing the abutting rod 34, the rib plate 9 can be fixed and positioned. During use, by rotating the abutting rod, the abutting angle of the abutting rod can be adjusted. A vertical threaded hole is provided at the top of the rotating shaft 305, and a threaded rod is vertically provided in the threaded hole. The bottom end of the threaded rod abuts against the rotating disk 2. By providing the threaded rod, the rotating shaft 305 can be fixed, and thus the angle of the abutting rod 34 can be fixed after adjusting the position of the abutting rod 34. Through the threaded connection between the abutting rod 34 and the rotating shaft 305, the extending length of the abutting rod 34 can be adjusted, and thus the rib plates 9 of various sizes can be fixed.

[0046] The various embodiments in this specification are described in a progressive manner. Each embodiment focuses on the differences from other embodiments. The same or similar parts among the various embodiments can be referred to each other. For the devices disclosed in the embodiments, since they correspond to the methods disclosed in the embodiments, the description is relatively simple. For the relevant parts, refer to the description of the method part.

[0047] The above description of the disclosed embodiments enables those skilled in the art to implement or use the present invention. Various modifications to these embodiments will be obvious to those skilled in the art. The general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention will not be limited to the embodiments shown herein, but will be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A welding device for finishing a clamp, characterized in that: include: frame; a rotating disk, the rotating disk being arranged on the frame and rotating on the frame; A fixing assembly, the fixing assembly being arranged on the rotating disk, wherein two fixing assemblies are provided and symmetrically arranged on the rotating disk; The top end of the lifting block is connected with the lifting block by the spring, and the bottom end of the lifting block is connected with the sliding sleeve of the lifting block to the up-down knob. A welding frame, comprising a vertical frame and a horizontal frame, wherein the vertical frame is vertically arranged on the frame, and the horizontal frame is arranged on the vertical frame and laterally arranged above the rotating disk; A welding assembly, the welding assembly slides on the horizontal frame, the welding assembly is arranged above the rotating disk, and the welding assembly is provided with a welding gun, two welding guns are provided and are respectively arranged at the two ribs of the hoop; The welding assembly includes a lifting rod, a mounting platform, a transverse sliding rod, a sliding platform and a rotating sleeve. The top of the lifting rod is provided with a first sliding tube, which slides on the transverse frame. The bottom end of the lifting rod is fixedly connected to the mounting platform. The transverse sliding rod is transversely arranged on the mounting platform. Both ends of the transverse sliding rod extend out of the mounting platform. Two sliding platforms are provided and slide on both sides of the transverse sliding rod respectively. A vertical hole is provided on the sliding platform. The rotating sleeve is arranged in the vertical hole and rotates in the vertical hole. The rotating sleeve is sleeved on the welding gun. The welding assembly also includes a first driving mechanism, a second driving mechanism and a third driving mechanism. The first driving mechanism is arranged on the vertical frame, and the first driving mechanism drives the first sliding tube to slide on the horizontal frame. The second driving mechanism is arranged on the mounting table, and the second driving mechanism drives the sliding table to slide. The third driving mechanism is arranged on the sliding table, and the third driving mechanism drives the rotating sleeve to rotate.

2. The welding equipment for finishing a clamp according to claim 1, characterized in that: A fan is provided on the mounting platform, and an air outlet pipe is provided on the sliding platform. The air outlet of the air outlet pipe points to the rib plate, and the air outlet pipe is communicated with the air outlet hole of the fan.

3. The welding equipment for finishing a clamp according to claim 1, characterized in that: The limit block includes a U-shaped frame and a metal mesh, the open end of the U-shaped frame faces the hoop, the two ends of the metal mesh are respectively connected to the two ends of the U-shaped frame, the metal mesh is in contact with the surface of the hoop, and the end of the U-shaped frame away from the metal mesh is connected to the hydraulic cylinder.

4. The clamp finishing welding equipment according to claim 3, characterized in that: The U-shaped frame includes a left plate, a right plate and a cross plate, one end of the left plate is connected to the metal mesh, the other end of the left plate is connected to the cross plate, the other end of the cross plate is connected to the right plate, and the other end of the right plate is connected to the metal mesh, the left plate and the right plate are parallel to each other, and the cross plate is connected to the hydraulic cylinder.

5. The clamp finishing welding equipment according to claim 4, characterized in that: A mesh sleeve is provided on one side of the left plate away from the right plate and on the other side of the right plate away from the left plate. The metal mesh is inserted into the mesh sleeve. An adjustment hole is provided on the mesh sleeve. An adjustment pin is threaded in the adjustment hole. The adjustment pin passes through the mesh sleeve and abuts against the metal mesh.

6. The clamp finishing welding equipment according to claim 1, characterized in that: The frame is provided with a rotating groove, which is semicircular. The side walls of the rotating groove are slidably connected to the side walls of the rotating disk. Hemispherical positioning grooves are respectively provided on the inner walls at both ends of the rotating groove. Two positioning holes are respectively provided on the side walls of the rotating disk along the diameter direction of the rotating disk. A spring is provided in the positioning hole, one end of the spring is connected to the positioning hole, and the other end of the spring is connected to a positioning ball, and the positioning ball cooperates with the hemispherical positioning groove.

7. The clamp finishing welding equipment according to claim 1, characterized in that: A rotating shaft is provided at the middle of the abutting rod, the abutting rod passes through the rotating shaft and is connected to the rotating shaft via a thread, and the rotating shaft is vertically provided on the rotating disk and is rotatably connected to the rotating disk.

Citation Information

Patent Citations

  • Automatic hoop welding equipment and using method thereof

    CN113828978A

  • Welding equipment for hoop production and machining

    CN117798535A

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