A welding device for assembling flange plate electric pole processing
Patent Information
- Application Number
- CN202610876624.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-06-17
- Publication Date
- 2026-08-18
AI Technical Summary
[0004]本发明的目的在于:为了解决传统条形钢筋在进行焊接时因剪切产生的毛刺影响贴合对焊接质量产生影响的问题,而提出的一种法兰盘组装电杆加工用焊接装置
1、本发明中,通过设置打磨装置,通过固定环传动带动支杆进行移动,支杆通过挤压板挤压传动板,使得传动板带动传动杆向上移动,通过传动杆在传动槽内滑动,使得传动杆带动多个铰接板顶部进行相向移动,故而使得铰接板带动安装板向下移动,安装板带动销磨模块移动,使得销磨模块一侧的打磨盘移动至钢筋端面,随后对钢筋端面的毛刺进行销磨,避免钢筋端面因毛刺影响贴合质量导致焊接质量较低。
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Figure CN122583985A_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of pole processing technology, and particularly relates to a welding device for processing poles with flange assembly. Background Technology
[0002] Flange-assembled poles refer to prestressed concrete poles with steel flanges at the base and connected to the foundation via anchor bolts. They can be assembled from multiple pole sections with flanges joined together. During production, flange-assembled poles require laser welding equipment to weld the reinforcing cage to the flange.
[0003] However, in actual use, when manufacturing flange-assembled poles, it is necessary to weld one side of the reinforcing cage to the other side of the flange. However, during the production of the reinforcing cage, the end face of the strip steel bar will produce burrs due to shearing. As a result, the reinforcing cage and the flange cannot make full contact due to the burrs, which affects the subsequent welding quality. Therefore, there is an urgent need for a welding device for processing flange-assembled poles to solve the above problems. Summary of the Invention
[0004] The purpose of this invention is to solve the problem that burrs generated during the shearing of traditional strip steel bars affect the fit and thus the welding quality, and to propose a welding device for processing flange assembly poles.
[0005] To achieve the above objectives, the present invention adopts the following technical solution: a welding device for processing flange-assembled utility poles, comprising a base plate, a conveying module mounted on the top of the base plate, a flange fixing module connected to the top of the base plate, and further comprising: A welding module, which is mounted on one side of the base plate; A grinding device is installed on the top of a base plate. The grinding device includes a support ring with an internal groove. Multiple grinding modules are driven within the internal groove.
[0006] As a further description of the above technical solution: The polishing device also includes: Stroke grooves, wherein multiple stroke grooves are formed on one side of the inner wall of the built-in groove; The stroke rods, wherein the outer walls of the plurality of stroke rods are slidably connected to the inner walls of the corresponding stroke grooves; A hinge plate, wherein one side of the hinge plate is rotatably connected to the outer wall of the corresponding stroke rod, and the bottom of the multiple hinge plates on the same side is hinged to the same mounting plate. The pin grinding module is installed on one side of the mounting plate, and a transmission groove is formed in the hinge plate.
[0007] As a further description of the above technical solution: The polishing device also includes: The transmission plate has one side attached to the corresponding mounting plate side, and the transmission plate has a connecting groove, and a connecting rod is slidably connected in the connecting groove. The other side of the connecting rod is connected to one side of the inner wall of the built-in groove. The bottom of the transmission plate has an extrusion groove, and the extrusion groove has a limiting groove. The transmission rods are connected on one side to one side of the transmission plate, and the outer wall of the transmission rods is slidably connected to the inner wall of the corresponding transmission groove.
[0008] As a further description of the above technical solution: The polishing device also includes: Through slots, a plurality of said through slots are formed on one side of the inner wall of the built-in slot, and the other side of the through slots extends to one side of the support ring; Support rods, the outer walls of multiple support rods are slidably connected to the inner walls of corresponding through grooves, and one end of the support rod extends into the built-in groove through the through groove; The extrusion plate has one side connected to one end of a corresponding support rod, and one side of the extrusion plate is in contact with one side of the extrusion groove. Both sides of the extrusion plate are connected to limit blocks, and the outer wall of the limit block is slidably connected to the inner wall of the limit groove.
[0009] As a further description of the above technical solution: The polishing device also includes: The support box has one side connected to the side of the conveying module, and the inner wall of the support box is slidably connected with a sliding sleeve seat; The two slide rods are respectively connected to one side of the inner wall of the support box at both ends, and the outer wall of the slide rod is slidably connected to the inner wall of the sliding sleeve seat. A first spring is sleeved on the outer wall of the slide rod, and the two ends of the first spring are respectively connected to one side of the sliding sleeve seat and one side of the inner wall of the support box. The slide has two slides with slide rails slidably connected to each other on their inner walls. One side of the slide rail is connected to one side of the conveying module, and the bottom of the slide is connected to the top of the slide sleeve seat. A bracket is connected to the top of the slide, and one side of the bracket is connected to the outer wall of the support ring.
[0010] As a further description of the above technical solution: A clamping device is connected to one side of the support ring, and the clamping device includes: Sliding cylinders, wherein one side of the plurality of sliding cylinders is connected to one side of the support ring; A sliding rod, wherein the outer wall of the sliding rod is slidably connected to the inner wall of the corresponding sliding cylinder, and a support groove is provided in the sliding rod, and a support rod is slidably connected to the inner wall of the support groove. The support rod is connected to one side of the inner wall of the sliding cylinder, and a return spring is sleeved on the outer wall of the support rod. The two ends of the return spring are respectively connected to one side of the inner wall of the sliding cylinder and one end of the sliding rod. A fixing ring, one side of which is connected to one end of the sliding rod.
[0011] As a further description of the above technical solution: The clamping device further includes: A movable ring is installed on one side of a fixed ring, and the inner wall of the movable ring is provided with multiple hinge grooves; Two electric push rods are fixedly installed on one side of a fixed ring and on the other side of a moving ring, and the push rod of the electric push rod is connected to the other side of the moving ring. First hinge rod, one side of the plurality of first hinge rods is hinged to the inner wall of the corresponding hinge groove; The second hinge rod has a hinge seat at one end, one side of the hinge seat is connected to one side of the fixed ring, and the first hinge rod and the second hinge rod are both hinged to the opposite side of the hinge block. A connecting frame, wherein the top of a plurality of connecting frames is connected to the bottom of a corresponding hinge block, and a connecting plate is connected to the bottom of the connecting frame, wherein a through hole is provided in the connecting plate.
[0012] As a further description of the above technical solution: The clamping device further includes: The connecting rods are slidably connected to the inner wall of the through hole, and the top of the connecting rods is provided with a margin groove, and the bottom of the margin groove is provided with a fixing groove. A fixing rod is slidably connected to the inner wall of the fixing groove. The other end of the fixing rod is connected to the bottom of the connecting frame, and a second spring is sleeved on the outer wall of the fixing rod. The two ends of the second spring are respectively connected to the bottom of the connecting frame and one side of the margin groove. Contact plates, wherein the tops of multiple contact plates are connected to the bottoms of corresponding connecting rods; A rotating groove, multiple rotating grooves are formed in the connecting plate, a rotating rod is rotatably connected in the rotating groove, and the same transmission frame is connected between two rotating rods on the same side. A clamping block is hinged to one side of the transmission frame, and a stop block is connected to the other side of the transmission frame. The third spring, one end of which is connected to the corresponding abutment side, and the other end of which is connected to the bottom of the connecting block at the top of the connecting plate.
[0013] As a further description of the above technical solution: Two adjusting devices are connected to one side of the support ring. The adjusting devices include: An adjusting cylinder, one side of which is connected to one side of a support ring, and multiple snap-fit grooves are provided on both sides of the inner wall of the adjusting cylinder; An adjusting rod, wherein the outer wall of the adjusting rod is slidably connected to the inner wall of the adjusting cylinder, and side grooves are provided on both sides of the adjusting rod; The two snap-fit blocks have their outer walls slidably connected to the inner walls of the corresponding side grooves, and one side of the snap-fit block is inserted into the inner wall of the corresponding snap-fit groove. The other side of the snap-fit block is connected to two adjusting springs, and the other end of the adjusting spring is connected to one side of the inner wall of the side groove.
[0014] As a further description of the above technical solution: The regulating device further includes: The two fixed frames are connected to the outer wall of the adjusting cylinder on one side, and the inner wall of the fixed frame is connected to a positioning rod, and both ends of the positioning rod are connected to a limit plate; The movable frame has positioning grooves on both sides, and the inner wall of the positioning groove is slidably connected to the outer wall of the positioning rod. A plurality of top blocks are connected to one side of the movable frame, and the top blocks are corresponding to the positions of the snap-fit grooves. A plurality of spring springs are sleeved on the outside of the positioning rod, and the two ends of the spring springs are respectively connected to one side of the movable frame and one side of the fixed frame.
[0015] In summary, due to the adoption of the above technical solution, the beneficial effects of the present invention are: 1. In this invention, a grinding device is set up, and a fixed ring drives the support rod to move. The support rod squeezes the transmission plate through the extrusion plate, causing the transmission plate to drive the transmission rod to move upward. The transmission rod slides in the transmission groove, causing the transmission rod to drive the tops of multiple hinge plates to move towards each other. Therefore, the hinge plates drive the mounting plate to move downward, and the mounting plate drives the pin grinding module to move. This causes the grinding disc on one side of the pin grinding module to move to the end face of the rebar, and then the burrs on the end face of the rebar are pinned, so as to avoid the rebar end face from affecting the bonding quality and resulting in low welding quality.
[0016] 2. In this invention, by setting up a clamping device, the moving ring is driven to move by an electric push rod, so that the moving ring drives one end of the first hinge rod to move through the hinge groove, and is supported by the second hinge rod, so that the first hinge rod drives the connecting frame to move down through the hinge block, and the connecting frame drives the connecting plate to move, and the connecting plate drives the connecting rod and the contact plate to move down. When the bottom of the contact plate contacts the surface of the steel bar, the contact plate moves up, so that the contact plate presses against the abutment block, thereby driving the transmission frame to rotate, and then the transmission frame drives the clamping block to move to tightly clamp the steel bar, ensuring that the steel bar does not shake during grinding and affect the grinding quality.
[0017] 3. In this invention, by setting an adjustment device, when the moving frame is pressed, the moving frame moves and drives the top block to move. When the top block moves, it presses the locking block, causing the locking block to move inward and press the adjusting spring. Then, the adjusting rod is moved so that the adjusting rod and the adjusting cylinder form different limit lengths. Therefore, the device can adjust the moving stroke of the pin grinding module according to the steel cage of different sizes, thereby improving the applicability of the device. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the three-dimensional structure proposed in this invention; Figure 2 This is a schematic diagram of the other side of the three-dimensional structure proposed in this invention; Figure 3 This is a schematic diagram of the grinding device proposed in this invention; Figure 4 The present invention proposes Figure 3 Enlarged structural diagram of section A; Figure 5 This is a schematic diagram of the support box structure proposed in this invention; Figure 6 This is a schematic diagram of the clamping device structure proposed in this invention; Figure 7 The present invention proposes Figure 6 Enlarged structural diagram of section B; Figure 8 The present invention proposes Figure 6 Enlarged structural diagram of section C; Figure 9 This is a schematic diagram of the hinge seat structure proposed in this invention; Figure 10 This is a schematic diagram of the regulating device proposed in this invention.
[0019] Legend: 1. Conveying module; 2. Base plate; 3. Welding module; 4. Flange fixing module; 5. Grinding device; 501. Support ring; 502. Stroke groove; 503. Internal groove; 504. Through groove; 505. Bracket; 506. Slide carriage; 507. Support rod; 508. Extrusion plate; 509. Stroke rod; 510. Pin grinding module; 511. Hinge plate; 512. Transmission groove; 513. Transmission rod; 514. Connecting rod; 515. Mounting plate; 516. Extrusion groove; 517. Transmission plate; 518. Support box; 519. Sliding sleeve seat; 520. First spring; 521. Slide rod; 6. Clamping device; 601. Moving ring; 602. Electric push rod; 603. Hinge groove; 604. Fixing ring; 605. First hinge rod; 606. Second hinge rod; 6 607. Hinge block; 608. Connecting frame; 609. Through hole; 610. Connecting rod; 611. Contact plate; 612. Spare part groove; 613. Fixing rod; 614. Second spring; 615. Third spring; 616. Transmission frame; 617. Rotating rod; 618. Clamping block; 619. Rotating groove; 620. Connecting plate; 621. Abutment block; 622. Sliding rod; 623. Support rod; 624. Return spring; 625. Hinge seat; 626. Sliding cylinder; 7. Adjusting device; 701. Adjusting rod; 702. Side groove; 703. Snap-fit block; 704. Adjusting spring; 705. Moving frame; 706. Fixing frame; 707. Top block; 708. Limiting plate; 709. Positioning rod; 710. Rebound spring; 711. Adjusting cylinder; 712. Snap-fit groove. Detailed Implementation
[0020] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0021] Please see Figures 1-5 The present invention provides a technical solution: a welding device for processing flange assembly poles, including a base plate 2, a conveying module 1 installed on the top of the base plate 2, a flange fixing module 4 connected to the top of the base plate 2, a welding module 3 and a grinding device 5, the welding module 3 being installed on one side of the base plate 2, the grinding device 5 being installed on the top of the base plate 2, the grinding device 5 including a support ring 501, an internal groove 503 being formed in the support ring 501, and a plurality of pin grinding modules 510 being driven in the internal groove 503.
[0022] Furthermore, the grinding device 5 also includes a stroke groove 502, a stroke rod 509, and a hinge plate 511. Multiple stroke grooves 502 are formed on one side of the inner wall of the built-in groove 503. The outer walls of multiple stroke rods 509 are slidably connected to the inner walls of the corresponding stroke grooves 502. One side of multiple hinge plates 511 is rotatably connected to the outer wall of the corresponding stroke rod 509. The bottom of multiple hinge plates 511 on the same side is hinged to the same mounting plate 515. The pin grinding module 510 is installed on one side of the mounting plate 515. A transmission groove 512 is formed in the hinge plate 511.
[0023] Furthermore, the grinding device 5 also includes a transmission plate 517 and a transmission rod 513. One side of the multiple transmission plates 517 is attached to one side of the corresponding mounting plate 515, and a connecting groove is provided in the transmission plate 517. A connecting rod 514 is slidably connected in the connecting groove. The other side of the connecting rod 514 is connected to one side of the inner wall of the built-in groove 503. A pressing groove 516 is provided at the bottom of the transmission plate 517, and a limiting groove is provided in the pressing groove 516. One side of the multiple transmission rods 513 is connected to one side of the transmission plate 517, and the outer wall of the transmission rod 513 is slidably connected to the inner wall of the corresponding transmission groove 512.
[0024] Furthermore, the grinding device 5 also includes a through groove 504, a support rod 507, and an extrusion plate 508. Multiple through grooves 504 are formed on one side of the inner wall of the built-in groove 503, and the other side of the through groove 504 extends to one side of the support ring 501. The outer wall of multiple support rods 507 is slidably connected to the inner wall of the corresponding through groove 504, and one end of the support rod 507 extends into the built-in groove 503 through the through groove 504. One side of multiple extrusion plates 508 is connected to one end of the corresponding support rod 507, and one side of the extrusion plate 508 is in contact with one side of the extrusion groove 516. Limiting blocks are connected to both sides of the extrusion plate 508, and the outer wall of the limiting block is slidably connected to the inner wall of the limiting groove.
[0025] Furthermore, the grinding device 5 also includes a support box 518, a slide rod 521, and a slide frame 506. One side of the two support boxes 518 is connected to one side of the conveying module 1, and a sliding sleeve seat 519 is slidably connected to the inner wall of the support box 518. The two ends of the two slide rods 521 are respectively connected to one side of the inner wall of the support box 518, and the outer wall of the slide rod 521 is slidably connected to the inner wall of the sliding sleeve seat 519. A first spring 520 is sleeved on the outer wall of the slide rod 521. The two ends of the first spring 520 are respectively connected to one side of the sliding sleeve seat 519 and one side of the inner wall of the support box 518. The inner walls of the two slide frames 506 are slidably connected to a slide rail, and one side of the slide rail is connected to one side of the conveying module 1. The bottom of the slide frame 506 is connected to the top of the sliding sleeve seat 519. A bracket 505 is connected to the top of the slide frame 506, and one side of the bracket 505 is connected to the outer wall of the support ring 501.
[0026] The specific implementation method is as follows: By setting up a grinding device 5, the fixed ring 604 moves to drive the support rod 507 to move, the support rod 507 moves the extrusion plate 508, and one side of the extrusion plate 508 is in contact with the extrusion groove 516, so that the extrusion plate 508 drives the transmission plate 517 to move upward, the transmission plate 517 moves to drive the transmission rod 513 to move upward, and the transmission rod 513 slides in the transmission groove 512, so that the transmission rod 513 drives the top of multiple hinge plates 511 to drive the stroke rod 509 to move towards each other, so that the hinge plates 511 drive the mounting plate 515 to move downward, the mounting plate 515 drives the pin grinding module 510 to move, and then the drive unit drives the... The grinding disc rotates, and after the steel bar moves and comes into contact with one side of the grinding module 510, the grinding disc grinds the burrs on the end face of the steel bar, avoiding the low welding quality caused by the burrs affecting the contact quality. The fixed steel bar drives the support ring 501 to move, the support ring 501 drives the bracket 505 to move, the bracket 505 drives the slide 506 to move, and the slide 506 drives the sliding sleeve seat 519 to move. When the sliding sleeve seat 519 moves, it compresses the first spring 520, causing the first spring 520 to generate a rebound force. Before welding, the rebound force of the first spring 520 drives the support ring 501 to reset and move, thereby facilitating the welding operation of the welding module 3.
[0027] Please see Figures 6-9A clamping device 6 is connected to one side of the support ring 501. The clamping device 6 includes a sliding cylinder 626, a sliding rod 622, and a fixing ring 604. One side of the multiple sliding cylinders 626 is connected to one side of the support ring 501. The outer wall of the multiple sliding rods 622 is slidably connected to the inner wall of the corresponding sliding cylinder 626. A support groove is opened in the sliding rod 622, and a support rod 623 is slidably connected to the inner wall of the support groove. The support rod 623 is connected to one side of the inner wall of the sliding cylinder 626, and a return spring 624 is sleeved on the outer wall of the support rod 623. The two ends of the return spring 624 are respectively connected to one side of the inner wall of the sliding cylinder 626 and one end of the sliding rod 622. One side of the fixing ring 604 is connected to one end of the sliding rod 622.
[0028] Furthermore, the clamping device 6 also includes a movable ring 601, an electric push rod 602, a first hinge rod 605, a second hinge rod 606, and a connecting frame 608. The movable ring 601 is installed on one side of the fixed ring 604, and the inner wall of the movable ring 601 is provided with multiple hinge slots 603. One side of the two electric push rods 602 is fixedly installed on one side of the fixed ring 604, and the top rod of the electric push rod 602 is connected to one side of the movable ring 601. One side of the multiple first hinge rods 605 is hinged to the inner wall of the corresponding hinge slot 603. One end of the multiple second hinge rods 606 is hinged to a hinge seat 625. One side of the hinge seat 625 is connected to one side of the fixed ring 604, and the opposite side of the first hinge rod 605 and the second hinge rod 606 are both hinged to hinge blocks 607. The top of the multiple connecting frames 608 is connected to the bottom of the corresponding hinge blocks 607, and the bottom of the connecting frame 608 is connected to a connecting plate 620, and the connecting plate 620 is provided with a through hole 609.
[0029] Furthermore, the clamping device 6 also includes connecting rods 610, contact plates 611, rotating grooves 619, and third springs 615. The outer walls of the multiple connecting rods 610 are slidably connected to the inner walls of the through holes 609. The top of the connecting rods 610 is provided with a clearance groove 612, and the bottom of the clearance groove 612 is provided with a fixing groove. A fixing rod 613 is slidably connected to the inner wall of the fixing groove. The other end of the fixing rod 613 is connected to the bottom of the connecting frame 608. A second spring 614 is sleeved on the outer wall of the fixing rod 613. The two ends of the second spring 614 are respectively connected to the bottom of the connecting frame 608 and the clearance groove. On one side of 612, the tops of multiple contact plates 611 are connected to the bottoms of corresponding connecting rods 610. Multiple rotating slots 619 are opened in the connecting plate 620. Rotating rods 617 are rotatably connected in the rotating slots 619. The same transmission frame 616 is connected between two rotating rods 617 on the same side. A clamping block 618 is hinged to one side of the transmission frame 616. A stop block 621 is connected to the other side of the transmission frame 616. One end of multiple third springs 615 is connected to one side of the corresponding stop block 621, and the other end of the third springs 615 is connected to the bottom of the connecting block at the top of the connecting plate 620.
[0030] The specific implementation method is as follows: By setting up a clamping device 6, the electric push rod 602 drives the moving ring 601 to move, which in turn drives the hinge groove 603 to move. The hinge groove 603 drives one end of the first hinge rod 605 to move, and the hinge seat 625 supports the second hinge rod 606. The first hinge rod 605 and the second hinge rod 606 respectively drive the connecting frame 608 to move downward through two hinge blocks 607. The connecting frame 608 drives the connecting plate 620 to move, the connecting plate 620 drives the connecting rod 610 to move, and the connecting rod 610 drives the contact plate 611 to move downward. When the bottom of the contact plate 611 contacts the surface of the reinforcing bar, the contact plate 611 moves upward, thus causing the top of the contact plate 611 to press against the abutment block 621, thereby causing the abutment block 621 to move downward. 1. The transmission frame 616 rotates around the rotating rod 617, which in turn causes the clamping block 618 on the other side of the transmission frame 616 to move and tightly clamp the steel bar, ensuring that the steel bar does not shake during grinding and affect the grinding quality. When the contact plate 611 moves, it drives the connecting rod 610 to squeeze the second spring 614, forcing the second spring 614 to generate a rebound force. The fixing rod 613 supports the second spring 614 to prevent the second spring 614 from bending during compression and affecting the rebound effect of the second spring 614. When the electric push rod 602 pushes the rod in the opposite direction, the rebound force of the second spring 614 drives the contact plate 611 to move in the opposite direction, thus losing the fixing effect on the steel bar. This makes it easier for the steel bar to move continuously to one side through the conveying module 1 and contact the flange.
[0031] Please see Figure 10 Two adjusting devices 7 are connected to one side of the support ring 501. The adjusting device 7 includes an adjusting cylinder 711, an adjusting rod 701, and a locking block 703. One side of the adjusting cylinder 711 is connected to one side of the support ring 501, and multiple locking grooves 712 are opened on both sides of the inner wall of the adjusting cylinder 711. The outer wall of the adjusting rod 701 is slidably connected to the inner wall of the adjusting cylinder 711, and side grooves 702 are opened on both sides of the adjusting rod 701. The outer walls of the two locking blocks 703 are slidably connected to the inner walls of the corresponding side grooves 702, and one side of the locking block 703 is inserted into the inner wall of the corresponding locking groove 712. Two adjusting springs 704 are connected to the other side of the locking block 703, and the other end of the adjusting spring 704 is connected to one side of the inner wall of the side groove 702.
[0032] Furthermore, the adjustment device 7 also includes a fixed frame 706, a movable frame 705, and a rebound spring 710. One side of the two fixed frames 706 is connected to the outer wall of the adjustment cylinder 711, and the inner wall of the fixed frame 706 is connected to a positioning rod 709. Both ends of the positioning rod 709 are connected to limit plates 708. Both sides of the two movable frames 705 are provided with positioning grooves, and the inner wall of the positioning groove is slidably connected to the outer wall of the positioning rod 709. A plurality of top blocks 707 are connected to one side of the movable frame 705. The top blocks 707 are positioned corresponding to the snap-fit groove 712. A plurality of rebound springs 710 are sleeved on the outside of the positioning rod 709, and the two ends of the rebound springs 710 are respectively connected to one side of the movable frame 705 and one side of the fixed frame 706.
[0033] The specific implementation method is as follows: By setting the adjustment device 7, by simultaneously pressing the movable frames 705 on both sides, the movable frames 705 drive the top block 707 to move. When the movable frames 705 move, they compress the return spring 710, causing the return spring 710 to generate a rebound force. Then, the movement of the movable frames 705 drives the top block 707 to move. When the top block 707 moves, it compresses the locking block 703, causing the locking block 703 to move inward and compress the adjustment spring 704, causing the adjustment spring 704 to generate a rebound force. Then, the adjustment rod 701 is moved. When the adjustment rod 70... 1. After moving to the desired position, release the moving frame 705. The rebound force of the return spring 710 drives the moving frame 705 to reset and move, so that the top block 707 loses its squeezing effect on the locking block 703. Thus, the locking block 703 is reset by the adjusting spring 704 and inserted into the corresponding locking groove 712. Then, the adjusting rod 701 and the adjusting cylinder 711 form different limiting lengths. Therefore, the device can adjust the moving stroke of the pin grinding module 510 according to the steel cage of different sizes, thereby improving the applicability of the device.
[0034] Working principle: During use, the movable frame 705 is moved according to the size of the rebar cage, causing the movable frame 705 to move the top block 707. The top block 707 presses against the locking block 703, causing the locking block 703 to move inward and press the adjusting spring 704, causing the adjusting spring 704 to generate a rebound force. Then, the adjusting rod 701 is moved, so that the adjusting rod 701 and the adjusting cylinder 711 form different stroke limits to meet the welding of rebar cages of different sizes to the flange. Then, the rebar cage is placed on the surface of the conveying module 1, and then the conveying module 1 drives the rebar cage to move. When one end of the rebar cage moves to the side of the support ring 501, the electric push rod 602 drives the moving ring 601 to move. The moving ring 601 is driven by the hinge groove 603. The first hinge rod 605 moves, limiting the second hinge rod 606 via the hinge seat 625. This causes the first and second hinge rods 605 and 606 to move the hinge block 607 downward. The hinge block 607 then moves the connecting frame 608 downward. As the connecting frame 608 moves downward, it moves the connecting rod 610 downward. The connecting rod 610 moves the contact plate 611, bringing it into contact with the strip-shaped reinforcing bar. Subsequently, as the contact plate 611 moves upward, it presses against the abutment block 621, causing the abutment block 621 to drive the transmission frame 616 to rotate around the rotating rod 617. This causes the transmission frame 616 to drive the clamping block 618 to contact and fix the reinforcing bar. After fixing, the conveying module 1 continuously moves the reinforcing cage, causing the reinforcing cage to... The moving fixed ring 604 moves, driving the support rod 507 to move. The support rod 507 drives the extrusion plate 508 to move. The extrusion plate 508 drives the transmission plate 517 to move upward through the extrusion groove 516. The transmission plate 517 drives the transmission rod 513 to move. The transmission rod 513 slides in the transmission groove 512, causing the top of the hinge plate 511 to move downward. Therefore, the hinge plate 511 drives the mounting plate 515 to move radially. The movement of the mounting plate 515 drives the pin grinding module 510 to move. When one side of the rebar end contacts one side of the pin grinding module 510, the pin grinding module 510 grinds the burrs on the rebar end face to prevent the burrs from obstructing the bonding quality when contacting the flange. After the pinning process is completed, the electric push rod 602 moves in the reverse direction, causing the connecting frame 608 to move in the reverse direction. This causes the contact plate 611 to separate from the surface of the reinforcing bar, which in turn causes the fixing ring 604 to move in the reverse direction. The movement of the fixing ring 604 drives the support rod 507 to move, which in turn drives the extrusion plate 508 to move in the reverse direction within the extrusion groove 516. This causes the extrusion plate 508 to drive the transmission plate 517 to move in the reverse direction, which in turn drives the hinge plate 511 to move in the reverse direction via the transmission rod 513. The hinge plate 511 then drives the mounting plate 515 to move in the reverse direction, causing the mounting plate 515 to separate the pinning module 510 from the end face of the reinforcing bar. Finally, the conveying module 1 continues to drive the reinforcing cage to move, causing the reinforcing cage to contact the flange and then weld.
[0035] In this invention, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance; the term "multiple" refers to two or more unless otherwise explicitly defined. The terms "installation," "connection," "linking," and "fixing," etc., should be interpreted broadly. For example, "connection" can be a fixed connection, a detachable connection, or an integral connection; "linking" can be a direct connection or an indirect connection through an intermediate medium. Those skilled in the art can understand the specific meaning of the above terms in this invention according to the specific circumstances.
[0036] It is important to note that the constructions and arrangements of this application shown in several different exemplary embodiments are merely illustrative. Although only a few embodiments are described in detail in this disclosure, those who consult this disclosure will readily understand that many modifications are possible (e.g., changes in the size, dimensions, structure, shape, and proportions of various elements, as well as parameter values (e.g., temperature, pressure, etc.), mounting arrangements, use of materials, color, orientation, etc.) without substantially departing from the novel teachings and advantages of the subject matter described in this application). For example, an element shown as integrally formed may be composed of multiple parts or elements, the position of elements may be inverted or otherwise altered, and the nature or number or position of discrete elements may be changed or altered. Therefore, all such modifications are intended to be included within the scope of the invention. The order or sequence of any process or method steps may be changed or rearranged according to alternative embodiments. In the claims, any "device plus function" clause is intended to cover the structure described herein that performs the function, and not only structurally equivalent but also equivalent in structure. Other substitutions, modifications, alterations, and omissions may be made in the design, operation, and arrangement of the exemplary embodiments without departing from the scope of the invention. Therefore, the present invention is not limited to the specific embodiments, but extends to various modifications that still fall within the scope of the appended claims.
[0037] Furthermore, in order to provide a concise description of exemplary embodiments, not all features of actual embodiments (i.e., those features that are not relevant to the best mode of carrying out the invention as currently considered, or those features that are not relevant to implementing the invention) may be omitted.
[0038] It should be understood that numerous specific implementation decisions can be made during the development of any actual implementation method, and in any engineering or design project. Such development efforts may be complex and time-consuming, but for those of ordinary skill in the art who benefit from this disclosure, the development effort will be a routine work of design, manufacturing, and production without requiring much experimentation.
[0039] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and are not intended to limit it. Although the present invention has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solutions of the present invention without departing from the spirit and scope of the technical solutions of the present invention, and all such modifications or substitutions should be covered within the scope of the claims of the present invention.
Claims
1. A welding device for assembling electric poles with flanges, comprising a base plate (2), a conveying module (1) mounted on the top of the base plate (2), and a flange fixing module (4) connected to the top of the base plate (2), characterized in that, Also includes: Welding module (3), which is installed on one side of the base plate (2); A grinding device (5) is installed on the top of the base plate (2). The grinding device (5) includes a support ring (501). An internal groove (503) is provided in the support ring (501). Multiple pin grinding modules (510) are driven in the internal groove (503).
2. The welding device for processing flange-assembled utility poles according to claim 1, characterized in that, The polishing device (5) also includes: Stroke grooves (502), a plurality of stroke grooves (502) are formed on one side of the inner wall of the built-in groove (503); The stroke rods (509) have their outer walls slidably connected to the inner walls of their corresponding stroke grooves (502); A hinge plate (511) is rotatably connected on one side to the outer wall of the corresponding stroke rod (509), and the bottom of the multiple hinge plates (511) on the same side is hinged to the same mounting plate (515). The pin grinding module (510) is installed on one side of the mounting plate (515), and a transmission groove (512) is opened in the hinge plate (511).
3. The welding device for processing flange-assembled utility poles according to claim 2, characterized in that, The polishing device (5) also includes: The transmission plate (517) has one side attached to the corresponding mounting plate (515) and a connecting groove is provided in the transmission plate (517), and a connecting rod (514) is slidably connected in the connecting groove. The other side of the connecting rod (514) is connected to one side of the inner wall of the built-in groove (503). The bottom of the transmission plate (517) has an extrusion groove (516) and a limiting groove is provided in the extrusion groove (516). The transmission rods (513) are connected on one side to the transmission plate (517), and the outer wall of the transmission rods (513) is slidably connected to the inner wall of the corresponding transmission groove (512).
4. The welding device for processing flange-assembled utility poles according to claim 3, characterized in that, The polishing device (5) also includes: Through groove (504), a plurality of through grooves (504) are formed on one side of the inner wall of the built-in groove (503), and the other side of the through groove (504) extends to one side of the support ring (501); Support rod (507), the outer wall of multiple support rods (507) is slidably connected to the inner wall of the corresponding through groove (504), and one end of the support rod (507) extends into the inner groove (503) through the through groove (504); The extrusion plate (508) has one side connected to one end of the corresponding support rod (507), and one side of the extrusion plate (508) is in contact with one side of the extrusion groove (516). Both sides of the extrusion plate (508) are connected to limit blocks, and the outer wall of the limit block is slidably connected to the inner wall of the limit groove.
5. The welding device for processing flange-assembled utility poles according to claim 1, characterized in that, The polishing device (5) also includes: Support box (518), one side of the two support boxes (518) is connected to the side of the conveying module (1), and a sliding sleeve seat (519) is slidably connected to the inner wall of the support box (518). The two slide rods (521) are connected at both ends to one side of the inner wall of the support box (518), and the outer wall of the slide rod (521) is slidably connected to the inner wall of the sliding sleeve seat (519). A first spring (520) is sleeved on the outer wall of the slide rod (521), and the two ends of the first spring (520) are connected to one side of the sliding sleeve seat (519) and one side of the inner wall of the support box (518). The slide (506) has two slides (506) with slide rails slidably connected to the inner walls of each slide, and one side of the slide rail is connected to one side of the conveying module (1). The bottom of the slide (506) is connected to the top of the slide sleeve seat (519). The top of the slide (506) is connected to a bracket (505), and one side of the bracket (505) is connected to the outer wall of the support ring (501).
6. The welding device for processing flanged electric poles according to claim 1, characterized in that, A clamping device (6) is connected to one side of the support ring (501), and the clamping device (6) includes: Sliding cylinders (626), one side of the plurality of sliding cylinders (626) is connected to one side of the support ring (501); A sliding rod (622) is provided. The outer wall of the sliding rod (622) is slidably connected to the inner wall of the corresponding sliding cylinder (626). A support groove is provided in the sliding rod (622), and a support rod (623) is slidably connected to the inner wall of the support groove. The support rod (623) is connected to one side of the inner wall of the sliding cylinder (626), and a return spring (624) is sleeved on the outer wall of the support rod (623). The two ends of the return spring (624) are respectively connected to one side of the inner wall of the sliding cylinder (626) and one end of the sliding rod (622). A fixing ring (604) is connected to one end of a sliding rod (622) on one side.
7. The welding device for processing flanged electric poles according to claim 6, characterized in that, The clamping device (6) further includes: A movable ring (601) is installed on one side of a fixed ring (604), and the inner wall of the movable ring (601) is provided with a plurality of hinge grooves (603). Electric push rods (602), one side of the two electric push rods (602) is fixedly installed on one side of the fixed ring (604), and the top rod of the electric push rod (602) is connected to one side of the moving ring (601); First hinge rod (605), one side of the plurality of first hinge rods (605) is hinged to the inner wall of the corresponding hinge groove (603); The second hinge rod (606) has a hinge seat (625) hinged at one end of each of the second hinge rods (606). One side of the hinge seat (625) is connected to one side of the fixing ring (604), and the first hinge rod (605) and the second hinge rod (606) are both hinged to the opposite side of the second hinge rod (606) with a hinge block (607). A connecting frame (608) is provided, the top of which is connected to the bottom of a corresponding hinge block (607), and a connecting plate (620) is connected to the bottom of the connecting frame (608), and a through hole (609) is provided in the connecting plate (620).
8. The welding device for processing flanged electric poles according to claim 7, characterized in that, The clamping device (6) further includes: A connecting rod (610) is provided. The outer wall of the multiple connecting rods (610) is slidably connected to the inner wall of the through hole (609). The top of the connecting rod (610) is provided with a margin groove (612). The bottom of the margin groove (612) is provided with a fixing groove. The inner wall of the fixing groove is slidably connected with a fixing rod (613). The other end of the fixing rod (613) is connected to the bottom of the connecting frame (608). The outer wall of the fixing rod (613) is fitted with a second spring (614). The two ends of the second spring (614) are respectively connected to the bottom of the connecting frame (608) and one side of the margin groove (612). Contact plates (611), the tops of the plurality of contact plates (611) are connected to the bottoms of the corresponding connecting rods (610); Rotating groove (619), multiple rotating grooves (619) are formed in the connecting plate (620), rotating rods (617) are rotatably connected in the rotating grooves (619), and the same transmission frame (616) is connected between two rotating rods (617) on the same side. A clamping block (618) is hinged to one side of the transmission frame (616), and a stop block (621) is connected to the other side of the transmission frame (616). The third spring (615) has one end connected to one side of the corresponding abutment (621), and the other end of the third spring (615) is connected to the bottom of the connecting block at the top of the connecting plate (620).
9. The welding device for processing flanged electric poles according to claim 1, characterized in that, Two adjusting devices (7) are connected to one side of the support ring (501), and the adjusting device (7) includes: Adjusting cylinder (711), one side of the adjusting cylinder (711) is connected to one side of the support ring (501), and multiple snap-fit grooves (712) are provided on both sides of the inner wall of the adjusting cylinder (711). Adjusting rod (701), the outer wall of the adjusting rod (701) is slidably connected to the inner wall of the adjusting cylinder (711), and side grooves (702) are provided on both sides of the adjusting rod (701). The two snap-fit blocks (703) have their outer walls slidably connected to the inner walls of the corresponding side grooves (702), and one side of the snap-fit block (703) is inserted into the inner wall of the corresponding snap-fit groove (712), and the other side of the snap-fit block (703) is connected to two adjusting springs (704), the other end of which is connected to one side of the inner wall of the side groove (702).
10. A welding device for processing flange-assembled utility poles according to claim 9, characterized in that, The regulating device (7) further includes: The two fixed frames (706) are connected to the outer wall of the adjusting cylinder (711) on one side, and the inner wall of the fixed frame (706) is connected to the positioning rod (709), and the two ends of the positioning rod (709) are connected to the limit plate (708). The movable frame (705) has positioning grooves on both sides, and the inner wall of the positioning groove is slidably connected to the outer wall of the positioning rod (709). A plurality of top blocks (707) are connected to one side of the movable frame (705), and the top blocks (707) are corresponding to the positions of the snap-fit groove (712). A spring (710) is sleeved on the outside of the positioning rod (709), and the two ends of the spring (710) are respectively connected to one side of the movable frame (705) and one side of the fixed frame (706).