Cantilever type welding machine device for compensator machining
By designing a cantilever welding machine device including a welding machine table, a support drive assembly, a moving load-bearing mechanism, an upward assembly and a steering mechanism, the problem of cumbersome compensator clamping and steering welding operations in the prior art is solved, automated operation is realized, and operation convenience and safety are improved.
Patent Information
- Application Number
- CN202510550725.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-29
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2045-04-29
AI Technical Summary
The existing cantilever welding machine device for compensator processing requires staff to perform tedious support and steering operations during clamping and steering welding operations, resulting in inconvenient operation and easy injury.
A cantilever welding machine device including a welding machine table, a support drive assembly, a compensator moving bearing mechanism, an upward moving assembly and a steering mechanism are designed. The moving stage and the upward-moving carrier are driven by the hydraulic rod to realize automatic movement and rise of the compensator; at the same time, the automatic steering of the compensator is realized through the steering drive assembly and the rotating gear.
The staff does not need to perform tedious support and steering operations, which significantly improves the convenience and safety of operations and reduces the work burden of staff.
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Figure CN120055450A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of welding devices, and particularly to a cantilever welding machine device for compensator processing. Background Art
[0002] Compensators are also habitually called expansion joints or telescopic joints. They are composed of a corrugated pipe (an elastic element) that constitutes the main body of their work, and accessories such as end pipes, brackets, flanges, and conduits. They belong to a type of compensating element. By utilizing the effective telescopic deformation of the corrugated pipe of the main body, they can absorb the dimensional changes of pipelines, conduits, containers, etc. caused by reasons such as thermal expansion and contraction, or compensate for the axial, lateral, and angular displacements of pipelines, conduits, containers, etc. They can also be used for noise reduction and vibration damping, and are widely used in modern industry.
[0003] During the processing of compensators, an arc welding operation needs to be carried out on them using a cantilever welding machine device. The existing cantilever welding machine device for compensator processing has a relatively simple structure. During use, it is fixed by a chuck and drives the compensator to rotate to achieve continuous welding operations. However, during the clamping process of the compensator, it is necessary for workers to support it. The compensator is relatively heavy, making it inconvenient for workers to operate and prone to injury. Moreover, when the compensator needs to be turned for welding again during welding, it is also necessary for workers to turn it and perform a clamping operation again, which is rather troublesome. Summary of the Invention
[0004] The purpose of the present invention is to provide a cantilever welding machine device for compensator processing to solve the problems raised in the above background art.
[0005] To achieve the above purpose, the present invention provides the following technical solutions:
[0006] A cantilever welding machine device for compensator processing includes a welding machine table. One end of the welding machine table is equipped with a three-jaw chuck, and the other end is equipped with a support driving assembly;
[0007] A compensator moving and carrying mechanism is installed on the support driving assembly, and the compensator is driven to move towards the three-jaw chuck through the compensator moving and carrying mechanism;
[0008] A compensator lifting assembly is installed on the compensator moving and carrying mechanism to support the compensator and drive the compensator to move upward;
[0009] A compensator turning mechanism is also installed on the compensator moving and carrying mechanism, and the compensator turning mechanism drives the compensator to rotate to complete turning welding;
[0010] A turning driving assembly is installed on the welding machine table, and the turning driving assembly drives the compensator turning mechanism to rotate.
[0011] Preferably, the support driving assembly is a bearing plate frame, and a hydraulic rod is fixedly installed on the bearing plate frame;
[0012] Support grooves are symmetrically formed on both sides of the bearing plate frame, and holding frames are symmetrically and fixedly arranged on the bearing plate frame, and a pulling frame is arranged on the holding frame.
[0013] Preferably, the compensator moving bearing mechanism is a moving stage, and the moving stage is fixedly installed on the hydraulic rod;
[0014] An installation channel is formed on the moving stage, a matching bearing rod is fixedly arranged at the upper end of the moving stage, and a support frame plate is fixedly arranged on the matching bearing rod.
[0015] Preferably, support plate strips are symmetrically and fixedly arranged on both sides of the moving stage, and the support plate strips are inserted into the support grooves;
[0016] A bearing matching rod is fixedly arranged on the support plate strip, an installation carrier plate is fixedly arranged at the lower end of the moving stage, and a guiding bearing rod is fixedly arranged on the installation carrier plate.
[0017] A matching insertion hole is formed on the moving stage beside the installation carrier plate.
[0018] Preferably, the compensator upward movement assembly includes an upward pushing driving plate and an upward movement bearing platform. There are two upward pushing driving plates, which are respectively installed on both sides of the moving stage;
[0019] The upward pushing driving plate is sleeved on the bearing matching rod, and a matching connecting column is fixedly arranged at one end of the upward pushing driving plate, and the matching connecting column is inserted into the pulling frame;
[0020] The other end of the upward pushing driving plate is hinged with an upward pushing connecting rod, and the upper end of the upward pushing connecting rod is hinged with the upward movement bearing platform.
[0021] Preferably, an assembly hole is formed on the upward movement bearing platform, and a bearing guiding hole is also formed on the upward movement bearing platform. A matching bearing rod is inserted into the bearing guiding hole;
[0022] A second bearing is installed in the assembly hole, the second bearing is matched with a connecting rotating column, and rotating connecting strips are circumferentially arranged on the connecting rotating column;
[0023] A support arc plate is fixedly arranged at the upper end of the connecting rotating column, a support carrier frame is fixedly arranged on the support arc plate, a rotating screw is installed on the support carrier frame, and a third bearing is sleeved on the rotating screw, and the third bearing is installed on the support carrier frame.
[0024] Preferably, bearing through holes are symmetrically formed at both ends of the support carrier frame, and the rotating screw is matched with a movable plate strip;
[0025] The movable slats are symmetrically and fixedly provided with bearing insertion rods, which are inserted into the bearing through holes, and a pressing ring is fixedly arranged at the lower end of the bearing insertion rods;
[0026] A push plate frame is also fixedly arranged on the upward moving bearing platform. A push block is arranged at the lower end of the push plate frame, and a first runner is installed on the push block.
[0027] Preferably, the compensator steering mechanism includes a rotating bearing column and a fixed carrier plate. A first bearing is sleeved on the rotating bearing column, and the first bearing is installed in the installation channel;
[0028] A connecting moving cavity is formed in the rotating bearing column. A rotating linkage groove is arranged in the connecting moving cavity, and a connecting rotating column is inserted into the connecting moving cavity. The rotating connecting bar is inserted into the rotating linkage groove;
[0029] The lower end of the rotating bearing column is fixedly provided with a rotating gear, and gear fixing holes are symmetrically formed in the rotating gear.
[0030] Preferably, a fixed matching column is arranged on the fixed carrier plate, and the upper end of the fixed matching column is inserted into the matching jack;
[0031] A movable connecting rod is hinged on the fixed carrier plate. The lower end of the movable connecting rod is hinged with a driving carrier plate. A matching carrier plate is fixedly arranged on the driving carrier plate, and a second runner is installed on the matching carrier plate;
[0032] A matching bearing hole is formed in the fixed carrier plate, and a guiding bearing rod is inserted into the matching bearing hole. A connecting spring is sleeved on the guiding bearing rod.
[0033] Preferably, the steering driving assembly includes a limiting vertical rod and a driving carrier plate. The limiting vertical rod is fixedly arranged on one side of the welding machine table;
[0034] The driving carrier plate is sleeved on the limiting vertical rod. A supporting carrier column is fixedly arranged on the driving carrier plate. A rack is fixedly arranged at the lower end of the supporting carrier column. A bevel matching strip is also fixedly arranged on the driving carrier plate.
[0035] Compared with the prior art, the beneficial effects of the present invention are as follows: The structure of the present invention is reasonably arranged and has strong functionality, and has the following advantages:
[0036] 1. When clamping the compensator, it is not necessary for the staff to support it. The staff only needs to place it on the supporting arc plate, limit it through the pressing ring, start the hydraulic rod to drive the moving carrier platform to move, and then drive the compensator to move to the corresponding height at the same time. Through its support, the compensator can be clamped on the three-jaw chuck, which is very convenient.
[0037] 2. When the steering welding operation of the compensator is required, start the hydraulic rod to move towards the three-jaw chuck. The three-jaw chuck releases the compensator, and the support arc plate supports the compensator. Then drive the compensator to move in the reverse direction. During the reverse movement, it will drive the support arc plate to rotate, thereby realizing the steering of the compensator. Then drive the compensator to move towards the three-jaw chuck again to achieve the steering welding operation, without the need for staff to operate. The operation is simple and reduces the work burden of the staff. Brief Description of the Drawings
[0038] Figure 1 It is an assembly schematic diagram of the welding machine table.
[0039] Figure 2 It is a structural schematic diagram of the welding machine table.
[0040] Figure 3 It is a schematic diagram of the first perspective of the mobile carrier table assembly.
[0041] Figure 4 For Figure 3 The enlarged schematic diagram at position A in
[0042] Figure 5 It is a schematic diagram of the second perspective of the mobile carrier table assembly.
[0043] Figure 6 It is an assembly schematic diagram of the welding machine table and the driving support plate.
[0044] Figure 7 It is a structural schematic diagram of the first perspective of the mobile carrier table.
[0045] Figure 8 It is a structural schematic diagram of the second perspective of the mobile carrier table.
[0046] Figure 9 It is a structural schematic diagram of the rotating bearing column.
[0047] Figure 10 It is an assembly schematic diagram of the upward moving carrier table.
[0048] Figure 11 For Figure 10 The enlarged schematic diagram at position B in
[0049] Figure 12 It is a structural schematic diagram of the driving support plate.
[0050] In the figure: 1. Welding machine table; 11. Three-jaw chuck; 12. Carrier plate frame; 13. Hydraulic rod; 14. Support groove; 15. Holding frame; 16. Pulling frame; 17. Limit vertical rod; 2. Moving carrier table; 20. Installation channel; 21. Matching carrier rod; 22. Support frame plate; 23. Support plate strip; 24. Carrier matching rod; 25. Installation carrier plate; 26. Guide bearing rod; 27. Matching jack; 3. Rotating carrier column; 31. First bearing; 32. Connecting moving cavity; 33. Rotating linkage groove; 34. Rotating gear; 35. Gear fixing hole; 4. Upward pushing drive plate; 41. Support through hole; 42. Matching connecting column; 43. Upward pushing connecting rod; 5. Upward moving carrier table; 51. Assembly hole; 52. Carrier guide hole; 53. Second bearing; 54. Connecting rotating column; 55. Rotating connecting strip; 56. Support arc plate; 561. Support carrier frame; 562. Rotating screw; 563. Third bearing; 564. Installation carrier hole; 565. Carrier through hole; 57. Upward pushing plate frame; 571. Upward pushing block; 572. First runner; 58. Movable plate strip; 581. Carrier insertion rod; 582. Threaded through hole; 59. Compression ring; 6. Fixed carrier plate; 61. Fixed matching column; 62. Movable connecting rod; 63. Driving carrier plate; 64. Matching carrier plate; 65. Second runner; 66. Matching bearing hole; 67. Connecting spring; 7. Driving bearing plate; 71. Limiting through hole; 72. Support carrier column; 73. Rack; 74. Inclined surface matching strip. Detailed implementation mode
[0051] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying 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 making creative efforts shall fall within the protection scope of the present invention.
[0052] The present invention provides a technical solution:
[0053] As Figure 1 shown, a cantilever welding machine device for compensator processing includes a welding machine table 1. A three-jaw chuck 11 is installed at one end of the welding machine table 1, and a support driving assembly is installed at the other end of the welding machine table 1. A compensator moving and bearing mechanism is installed on the support driving assembly. The compensator moving and bearing mechanism drives the compensator to move towards the direction of the three-jaw chuck 11. A compensator upward moving assembly is installed on the compensator moving and bearing mechanism. The compensator upward moving assembly supports the compensator and drives the compensator to move upward. A compensator steering mechanism is also installed on the compensator moving and bearing mechanism. The compensator steering mechanism drives the compensator to rotate to complete the steering welding; a steering driving assembly is installed on the welding machine table 1, and the steering driving assembly drives the compensator steering mechanism to rotate.
[0054] As Figure 2 shown, the support driving assembly is the bearing plate frame 12, on which a hydraulic rod 13 is fixedly installed. Support grooves 14 are symmetrically formed on both sides of the bearing plate frame 12, and retaining frames 15 are symmetrically and fixedly arranged on the bearing plate frame 12. A pulling frame 16 is arranged on the retaining frame 15, and the inner walls of the retaining frame 15 and the pulling frame 16 are smooth and free of burrs.
[0055] As Figure 1 、 Figure 7 and Figure 8 shown, the compensator moving bearing mechanism is the moving carrier 2, which is fixedly installed on the hydraulic rod 13. An installation channel 20 is formed on the moving carrier 2, a cooperating bearing rod 21 is fixedly arranged at the upper end of the moving carrier 2, a support frame plate 22 is fixedly arranged on the cooperating bearing rod 21, support plate strips 23 are symmetrically and fixedly arranged on both sides of the moving carrier 2, the support plate strips 23 are inserted into the support grooves 14, a bearing cooperation rod 24 is fixedly arranged on the support plate strips 23, an installation carrier plate 25 is fixedly arranged at the lower end of the moving carrier 2, a guiding bearing rod 26 is fixedly arranged on the installation carrier plate 25, and a cooperating jack 27 is formed on the moving carrier 2 beside the installation carrier plate 25.
[0056] As Figure 1 、 Figure 3 and Figure 5 shown, the compensator upward movement assembly includes an upward pushing driving plate 4 and an upward movement bearing platform 5. There are two upward pushing driving plates 4, which are respectively installed on both sides of the moving carrier 2. The upward pushing driving plate 4 is sleeved on the bearing cooperation rod 24. A support through hole 41 is formed on the upward pushing driving plate 4, and the bearing cooperation rod 24 is inserted into the support through hole 41. One end of the upward pushing driving plate 4 is fixedly provided with a cooperating connecting column 42, the cooperating connecting column 42 is inserted into the pulling frame 16, the other end of the upward pushing driving plate 4 is hinged with an upward pushing connecting rod 43, the upper end of the upward pushing connecting rod 43 is hinged with the upward movement bearing platform 5. In addition, the cooperating connecting column 42 is in contact with the inner wall of the pulling frame 16, and the inner width of the pulling frame 16 is equal to the inner width of the retaining frame 15.
[0057] As Figure 10 shown, an assembly hole 51 is formed on the upward movement bearing platform 5, and a bearing guiding hole 52 is also formed on the upward movement bearing platform 5. The cooperating bearing rod 21 is inserted into the bearing guiding hole 52. A second bearing 53 is installed in the assembly hole 51, the second bearing 53 cooperates with a connecting rotating column 54. Rotating connecting strips 55 are circumferentially arranged on the connecting rotating column 54. A support arc plate 56 is fixedly arranged at the upper end of the connecting rotating column 54. A support carrier 561 is fixedly arranged on the support arc plate 56. A rotating screw 562 is installed on the support carrier 561. A third bearing 563 is sleeved on the rotating screw 562, the third bearing 563 is installed on the support carrier 561, and an installation carrier hole 564 is formed on the support carrier 561. The third bearing 563 is installed in the installation carrier hole 564.
[0058] As Figure 10 and Figure 11 shown, both ends of the support carrier 561 are symmetrically provided with load-bearing through holes 565. The rotating screw 562 is engaged with a movable strip 58. A threaded through hole 582 is provided on the movable strip 58. The threaded through hole 582 is in threaded engagement with the rotating screw 562. Symmetrically fixed load-bearing insertion rods 581 are provided on the movable strip 58. The load-bearing insertion rods 581 are inserted into the load-bearing through holes 565. A pressing ring 59 is fixedly provided at the lower end of the load-bearing insertion rod 581. A push-up plate frame 57 is also fixedly provided on the upper moving carrier 5. A push-up block 571 is provided at the lower end of the push-up plate frame 57. A first runner 572 is installed on the push-up block 571.
[0059] As Figure 4 and Figure 9 shown, the compensator steering mechanism includes a rotating load-bearing column 3 and a fixed carrier plate 6. A first bearing 31 is sleeved on the rotating load-bearing column 3. The first bearing 31 is installed in the installation channel 20. A connecting moving cavity 32 is provided in the rotating load-bearing column 3. A rotating linkage groove 33 is provided in the connecting moving cavity 32. A connecting rotating column 54 is inserted into the connecting moving cavity 32. A rotating connecting bar 55 is inserted into the rotating linkage groove 33. A rotating gear 34 is fixedly provided at the lower end of the rotating load-bearing column 3. Gear fixing holes 35 are symmetrically provided on the rotating gear 34.
[0060] As Figure 3 and Figure 4 shown, a fixed fitting column 61 is provided on the fixed carrier plate 6. The upper end of the fixed fitting column 61 is inserted into the fitting jack 27. A movable connecting rod 62 is hinged on the fixed carrier plate 6. The lower end of the movable connecting rod 62 is hinged to a driving carrier plate 63. A fitting carrier plate 64 is fixedly provided on the driving carrier plate 63. A second runner 65 is installed on the fitting carrier plate 64. A fitting bearing hole 66 is provided on the fixed carrier plate 6. A guiding bearing rod 26 is inserted into the fitting bearing hole 66. A connecting spring 67 is sleeved on the guiding bearing rod 26. The two ends of the connecting spring 67 are respectively fixed on the installation carrier plate 25 and the driving carrier plate 63. In addition, when the fixed fitting column 61 fixes the rotating gear 34, its lower end is inserted into the gear fixing hole 35.
[0061] As Figure 6 and Figure 12 shown, the steering drive assembly includes a limiting vertical rod 17 and a driving carrier plate 7. The limiting vertical rod 17 is fixedly provided on one side of the welding machine table 1. The driving carrier plate 7 is sleeved on the limiting vertical rod 17. A limiting through hole 71 is provided on the driving carrier plate 7. The limiting vertical rod 17 is inserted into the limiting through hole 71. A support carrier column 72 is fixedly provided on the driving carrier plate 7. A rack 73 is fixedly provided at the lower end of the support carrier column 72. An inclined surface fitting strip 74 is also fixedly provided on the driving carrier plate 7. The surface of the inclined surface fitting strip 74 is smooth and free of burrs.
[0062] When welding the compensator, place it on the support arc plate 56, then rotate the rotating screw 562. Under the action of the thread, the movable plate strip 58 moves downward, which can drive the pressing ring 59 to move downward, so that the pressing ring 59 presses on the compensator to play a role in pressing and limiting it, ensuring the stability of the compensator during movement. After placing the compensator, start the hydraulic rod 13 to drive the moving stage 2 to move towards the three-jaw chuck 11. As the moving stage 2 moves, under the action of the pulling frame 16, the upper push driving plate 4 will be driven to move towards the moving stage 2 until the mating connecting column 42 is inserted into the holding frame 15. As the upper push driving plate 4 moves, under the action of the upper push connecting rod 43, the upper moving bearing platform 5 will be driven to move upward, and then the compensator can be driven to move to the working height. And as the upper moving bearing platform 5 moves upward, under the action of the first runner 572, the driving bearing plate 7 will be pushed upward. In this way, when the moving stage 2 moves towards the three-jaw chuck 11, the rotating gear 34 will not mesh with the rack 73, and at the same time, the second runner 65 will not contact the inclined surface mating strip 74. When the compensator moves to the three-jaw chuck 11, at this time, the first runner 572 is separated from the driving bearing plate 7, and the driving bearing plate 7 moves downward and resets under its own gravity. Start the three-jaw chuck 11 to clamp it, and then rotate the rotating screw 562 in the reverse direction to make the movable plate strip 58 move upward, that is, make the pressing ring 59 no longer press on the compensator, release the compensator, and then start the hydraulic rod 13 to drive the moving stage 2 to move in the reverse direction and separate from the compensator. When the compensator needs to be turned and welded again, the hydraulic rod 13 drives the moving stage 2 to move towards the three-jaw chuck 11 again, so that the support arc plate 56 supports the compensator, and then the three-jaw chuck 11 releases the compensator. The compensator is pressed and limited by the pressing ring 59, and the compensator is driven to move in the reverse direction. When moving, the second runner 65 will contact the inclined surface mating strip 74. In this way, under the action of the inclined surface mating strip 74, the driving carrier plate 63 will be pushed to move. As the driving carrier plate 63 moves, under the action of the movable connecting rod 62, the fixed carrier plate 6 will be driven to move upward, so that the fixed mating column 61 exits the gear fixing hole 35. At the same time of exiting, the rotating gear 34 also meshes with the rack 73. In this way, under the action of the rack 73, the rotating gear 34 will be driven to rotate. As the rotating gear 34 rotates, the support arc plate 56 can be rotated 180 degrees, and thus the turning around of the compensator can be realized. When the rotating gear 34 is separated from the rack 73, the second runner 65 is also separated from the inclined surface mating strip 74. In this way, under the action of the connecting spring 67 and the self-gravity of the fixed carrier plate 6, the fixed mating column 61 moves downward again and is inserted into the gear fixing hole 35 to realize the fixing of the rotating gear 34, and thus the fixing of the support arc plate 56 can be realized. After the turning is completed, the hydraulic rod 13 drives it to move towards the three-jaw chuck 11 again, and it can be clamped and fixed again by the three-jaw chuck 11 for welding operation.The whole process requires little manual operation. All the staff need to do is place the compensator on the supporting arc plate 56 and rotate the rotating screw 562, which is very convenient.
[0063] Although the embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A cantilever welding machine device for compensator processing, comprising a welding machine table, one end of which is equipped with a three-jaw chuck, characterized in that: A support drive assembly is installed at the other end of the welding machine table; The support drive assembly is provided with a compensator moving bearing mechanism, which drives the compensator to move in the direction of the three-jaw chuck; A compensator upward moving assembly is installed on the compensator moving bearing mechanism, and the compensator is supported by the compensator upward moving assembly, and the compensator is driven to move upward; A compensator steering mechanism is also installed on the compensator moving bearing mechanism, and the compensator steering mechanism drives the compensator to rotate to complete the steering welding; A steering drive assembly is installed on the welding machine table, and the steering drive assembly drives the compensator steering mechanism to rotate; The support drive assembly is a load-bearing plate frame, and a hydraulic rod is fixedly mounted on the load-bearing plate frame; Support grooves are symmetrically provided on both sides of the load-bearing plate frame, and a holding frame is symmetrically fixedly provided on the load-bearing plate frame, and a pulling frame is provided on the holding frame; The compensator upward moving assembly includes an upward push driving plate and an upward moving bearing platform, the upward moving bearing platform is provided with an assembly hole, and the upward moving bearing platform is also provided with a bearing guide hole, and a matching bearing rod is inserted in the bearing guide hole; A second bearing is installed in the assembly hole, and the second bearing is matched with a connecting rotating column, and a rotating connecting strip is arranged on the circumference of the connecting rotating column; A supporting arc plate is fixedly provided on the upper end of the rotating column, a supporting frame is fixedly provided on the supporting arc plate, a rotating screw is installed on the supporting frame, a third bearing is sleeved on the rotating screw, and the third bearing is installed on the supporting frame.
2. A cantilever welding machine device for compensator processing according to claim 1, characterized in that: The compensator movable bearing mechanism is a movable platform, and the movable platform is fixedly mounted on the hydraulic rod; An installation channel is provided on the movable platform, a matching bearing rod is fixedly provided on the upper end of the movable platform, and a supporting frame plate is fixedly provided on the matching bearing rod.
3. A cantilever welding machine device for compensator processing according to claim 2, characterized in that: Support strips are symmetrically fixedly arranged on both sides of the movable platform, and the support strips are inserted into the support grooves; A bearing matching rod is fixedly arranged on the supporting slats, and a mounting plate is fixedly arranged on the lower end of the movable platform, and a guide bearing rod is fixedly arranged on the mounting plate; A matching socket is provided on the movable carrier beside the mounting plate.
4. A cantilever welding machine device for compensator processing according to claim 3, characterized in that: There are two push-up drive plates, which are respectively installed on both sides of the moving platform; The push-up drive plate is sleeved on the bearing matching rod, and a matching connecting column is fixedly provided at one end of the push-up drive plate, and the matching connecting column is plugged into the pulling frame; The other end of the push-up driving plate is hinged with a push-up connecting rod, and the upper end of the push-up connecting rod is hinged with an upward moving bearing platform.
5. A cantilever welding machine device for compensator processing according to claim 4, characterized in that: The two ends of the support frame are symmetrically provided with bearing through holes, and the rotating screw rod is matched with movable slats; The movable slats are symmetrically and fixedly provided with load-bearing plug rods, the load-bearing plug rods are inserted into the load-bearing through holes, and a clamping ring is fixedly provided at the lower end of the load-bearing plug rods; An upper push plate frame is also fixedly arranged on the upper moving bearing platform, and an upper push block is arranged at the lower end of the upper push plate frame, and a first rotating wheel is installed on the upper push block.
6. A cantilever welding machine device for compensator processing according to claim 5, characterized in that: The compensator steering mechanism comprises a rotating bearing column and a fixed carrier plate, the rotating bearing column is sleeved with a first bearing, and the first bearing is installed in the installation channel; A connecting and moving cavity is provided on the rotating bearing column, a rotating linkage groove is provided in the connecting and moving cavity, a connecting and rotating column is inserted in the connecting and moving cavity, and the rotating connecting bar is inserted in the rotating linkage groove; A rotating gear is fixedly arranged at the lower end of the rotating bearing column, and gear fixing holes are symmetrically opened on the rotating gear.
7. A cantilever welding machine device for compensator processing according to claim 6, characterized in that: The fixed carrier plate is provided with a fixed matching column, and the upper end of the fixed matching column is inserted into the matching socket; A movable connecting rod is hinged on the fixed carrier plate, a driving carrier plate is hinged at the lower end of the movable connecting rod, a matching carrier plate is fixedly arranged on the driving carrier plate, and a second rotating wheel is installed on the matching carrier plate; A matching bearing hole is provided on the fixed carrier plate, a guide bearing rod is inserted into the matching bearing hole, and a connecting spring is sleeved on the guide bearing rod.
8. A cantilever welding machine device for compensator processing according to claim 7, characterized in that: The steering drive assembly includes a limit rod and a drive bearing plate, and the limit rod is fixedly arranged on one side of the welding machine table; The driving support plate is sleeved on the limiting vertical rod, a supporting column is fixedly arranged on the driving support plate, a rack is fixedly arranged on the lower end of the supporting column, and an inclined matching strip is also fixedly arranged on the driving support plate.
Citation Information
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