Building climbing frame walkway machining equipment

By designing automated construction scaffolding walkway processing equipment, the automated conveying, drilling, and welding of rectangular steel pipes were realized, solving the problems of instability and safety hazards caused by manual operation in existing technologies, and improving production efficiency and safety.

CN121607930APending Publication Date: 2026-03-06QINGDAO XINHUAYOU CONSTR GROUP +2
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Patent Information

Application Number
CN202610051686.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-01-15
Publication Date
2026-03-06

AI Technical Summary

Technical Problem

The welding production of existing building climbing formwork walkway panels generally relies on manual operation, which results in unstable quality, safety hazards, low production efficiency, large equipment footprint, and high costs.

Method used

Design a construction climbing scaffold walkway processing equipment, including a support base, an inclined section, a stepping conveyor section, a drilling section, and a welding section, to realize the automated conveying, drilling, and welding of rectangular steel pipes and reduce manual intervention.

Benefits of technology

It has improved production efficiency, reduced reliance on skilled workers, enhanced operational safety and health, reduced equipment footprint, and simplified operating procedures.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of building climbing frames, and discloses building climbing frame walkway machining equipment which comprises a supporting base, a supporting box, a first inclined part, a stepping conveying part, a drilling part, a second inclined part and a welding part are arranged at the top of the supporting base, and a conveying mechanism and a welding mechanism are arranged on the two sides of the welding part correspondingly; the first inclined part comprises supporting tables located on the two sides, close to the center position, of the side edge of the supporting box, side triangular plates are arranged at the positions, close to the side edge of the supporting box, of the tops of the supporting tables, inclined tables are arranged at the tops of the side triangular plates, and first side plates are arranged on the sides, close to the supporting box, of the tops of the inclined tables; connecting plates are arranged on the upper portions of the corresponding side edges of the first side plates on the two sides, and baffles are arranged on the sides, away from the first side plates, of the connecting plates. The stepping conveying part comprises a supporting column, the supporting column is fixed to the supporting base, dependence on technical workers is reduced, the production efficiency is improved, and the automation degree is high.
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Description

Technical Field

[0001] This invention relates to the field of building climbing formwork technology, and more specifically, to a building climbing formwork walkway processing equipment. Background Technology

[0002] Currently, the welding and processing of climbing scaffold walkway panels generally adopts ordinary equipment and manual hand-held welding machines, with each individual machine operated by skilled workers. Specifically: 1. Assembly and welding are done by a single person on a single machine. The operator's skill level and work standards have a huge impact on product quality. Welding length and quality are entirely controlled by the operator's experience, so quality problems such as insufficient or excessive welding length, incomplete welding, and missing welding often occur, directly affecting the product's performance and service life. Specialized skilled workers are required. At the same time, the electric arc and welding fumes are harmful to the health of employees, so fewer and fewer people are engaged in this work. Production costs are constantly rising, and traditional production not only increases the number of machines and floor space of the entire production equipment, but also has low processing efficiency. Summary of the Invention

[0003] The technical objective of this invention is to address the above-mentioned shortcomings by providing a construction climbing scaffold walkway processing equipment to solve the aforementioned problems.

[0004] The technical solution of this invention is implemented as follows: A construction scaffolding walkway processing equipment includes a support base. The top of the support base is provided with a support box, a first inclined section, a stepping conveyor section, a drilling section, a second inclined section, and a welding section. A conveying mechanism and a welding mechanism are respectively provided on both sides of the welding section. The first inclined section includes support platforms located on both sides of the support box near its center. A side triangular plate is provided on the top of the support platform near the side of the support box. An inclined platform is provided on the top of the side triangular plate near the support box. A side plate is provided on the top of the inclined platform near the support box. Connecting plates are provided on the upper parts of the corresponding sides of the two side plates. A baffle is provided on the side of the connecting plate away from the side plate. The stepping conveyor section includes a support column fixed to the support base. A motor is provided on one side of the support column. A rotating plate is provided on the side of the motor away from the support column. A slot is provided on the other side of the rotating plate. A cylinder is provided in the slot. A fixing ring is provided on the side of the cylinder corresponding to the motor. A fixing plate is provided on the side of the fixing ring corresponding to the motor. The fixing plate is fixed to the top of the support base. A limiting rod is provided on the side of the cylinder away from the fixing ring. A fixing block is sleeved on the outside of the limiting rod. A second slider is provided on the side of the fixing block corresponding to the support box. A longitudinal track is provided on the side of the second slider away from the fixing block. An L-shaped plate is provided on the side of the longitudinal track away from the second slider. A first slider is provided on the top of the L-shaped plate corresponding to the second fixing plate. A transverse track is provided on the side of the first slider away from the L-shaped plate. A frame beam is provided on the top of the support platform away from the side triangular plate. A set of pushers is provided on the inner side of the two frame beams. A square groove is provided on the top of the pushers and the frame beam. Several crossbeams are provided between the pushers. The top of the fixing block on the side away from the second slider is fixed to the side of the crossbeam located in the middle position. The welding part includes a support pad. A drive limiting part is provided on the top of the support pad. A cylinder is provided at the center of the top of the support pad. A matching piston rod is provided inside the cylinder. The top of the piston rod passes through the cylinder. A walkway plate is provided on the top of the piston rod.

[0005] Preferably, the support box is provided with side baffles on both sides of the top, and there is a gap between the bottom wall of the baffle and the top surface of the inclined platform, the longitudinal cross-sectional dimension of the gap being adapted to the size of the rectangular steel pipe.

[0006] Preferably, the support column has a mounting plate on one side corresponding to the motor, the bottom of the mounting plate is fixed to the top of the support base, the side of the motor away from the mounting plate has a fixing plate one, the side of the fixing plate one away from the motor has several support rods around its perimeter, the side of the support rods away from the fixing plate one is fixed to the side of the fixing plate two, the center of the side of the fixing plate two away from the support rods is provided with a center block located in the center groove of the fixing ring, the side of the motor away from the mounting plate has an output shaft, the output shaft passes through the middle of the fixing plate one, the fixing plate two and the center block and connects to one side of the rotating plate.

[0007] Preferably, an annular guide rail is formed between the outer wall of the central block and the inner wall of the fixing ring, and the cylinder is located at the annular guide rail; the top of the side of the fixing plate away from the support rod is provided with a groove, and the transverse track is located in the groove.

[0008] Preferably, the drilling section includes a support plate, a hydraulic cylinder is provided at the top center of the support plate, a set of cooperating hydraulic rods are provided inside the hydraulic cylinder, the hydraulic rods pass through the hydraulic cylinder and the support plate, a lifting plate is provided at the bottom of the hydraulic rods, and side plates are provided on both sides of the bottom of the lifting plate. A cylinder is provided on the outer side of the side plate, and a piston rod is provided inside the cylinder, the piston rod passing through the cylinder and the side plate.

[0009] Preferably, the piston rod is provided with a drilling mechanism on the side away from the cylinder; the bottom of the support plate is provided with a vertical plate on the outer side of the support platform, and the bottom of the vertical plate is fixed to the top side of the support base.

[0010] Preferably, the second inclined portion includes a first inclined platform and a second inclined platform, the first inclined platform being located inside the second inclined platform, and the top of the first inclined platform on the side away from the welded portion being fixedly connected to the side of the frame beam by a connecting crossbeam.

[0011] Preferably, the welding part includes an extension plate, which is fixed to the side of the support pad near the second inclined part. The top of the extension plate is provided with a first track, the side of the first track away from the second inclined part is provided with a third track, and the top of the support pad is provided with a second track at the center of the side away from the first track.

[0012] Preferably, both the first and second tracks are provided with a cooperating third slider, and each third slider has a clamping block at its top. The clamping block has a limiting groove at its top, and a limiting block is provided inside the limiting groove. The third track is provided with a cooperating fourth slider, and the fourth slider has a clamping block at its top. The clamping block has a limiting groove at its top, and a limiting block is provided inside the limiting groove. Both the limiting block and the limiting block have a return spring at their bottoms on the protruding side.

[0013] Preferably, the support pad has several support seats on both sides of the top, and the top of each support seat has a symmetrical L-shaped seat. The inner wall of each L-shaped seat has several rollers, and the rollers are connected to the upper part of the L-shaped seat through roller shafts.

[0014] Compared with the prior art, the advantages and positive effects of the present invention are as follows: 1. By placing rectangular steel pipes on top of the support box, the rectangular steel pipes placed on top are pushed by the outside to slide along the first inclined section into the stepping conveyor section on the lower right. The stepping conveyor section pushes the falling rectangular steel pipes forward at equal intervals. After the first batch of pushed rectangular steel pipes is pushed below the drilling section, the stepping conveyor section stops running. After the drilling mechanism on the drilling section runs, it will simultaneously drill holes on the sides of the two rectangular steel pipes. Then, as the second inclined section slides into the welding section below, the welding section adjusts the distance between the two conveyed rectangular steel pipes as needed. At the same time, the walkway plate is conveyed between the two rectangular steel pipes by the conveying mechanism. Finally, after driving the welding mechanism, the welding operation is performed.

[0015] 2. It reduces reliance on skilled workers, improves production efficiency, has a high degree of automation, is easy to operate, avoids operators being in hazardous working environments, and improves operator safety and health.

[0016] 3. The main function of the stepping conveyor in this invention is to facilitate the equal-interval conveying of rectangular steel pipes and to facilitate simultaneous drilling operations on different sides of two rectangular steel pipes. Compared with existing drilling operations, it saves components such as flipping, clamping, and spacing adjustment. In addition, in the existing methods, conveying and drilling operations are performed separately, while in this invention, conveying and drilling are integrated. This not only saves space but also allows the operator to observe the entire process between conveying and drilling, thereby reducing the number of operators.

[0017] 4. Compared with existing welding structures, the welding and conveying / unloading of the present invention are integrated, which increases the conveying distance, facilitates the cooling treatment of the welded product, and helps improve the safety of workers. Attached Figure Description

[0018] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0019] Figure 1 This is a schematic diagram of the overall structure according to an embodiment of the present invention; Figure 2 This is a schematic diagram of the first inclined portion structure according to an embodiment of the present invention; Figure 3 This is a schematic diagram of the stepping conveyor structure according to an embodiment of the present invention; Figure 4 This is a schematic diagram of the connection structure of the fixing plate two according to an embodiment of the present invention; Figure 5 This is a schematic diagram of the drilling mechanism connection structure according to an embodiment of the present invention; Figure 6 This is a schematic diagram of the drilling section structure according to an embodiment of the present invention; Figure 7 This is a schematic diagram of the second inclined portion structure according to an embodiment of the present invention; Figure 8 This is a schematic diagram of the welded connection structure according to an embodiment of the present invention.

[0020] In the picture: 1. Support base; 2. Support box; 3. First inclined section; 4. Stepping conveyor section; 5. Drilling section; 6. Second inclined section; 7. Welding section; 8. Conveying mechanism; 9. Welding mechanism; 10. Support platform; 11. Side triangular plate; 12. Inclined platform; 13. Side plate one; 14. Connecting plate; 15. Baffle; 16. Support column; 17. Motor; 18. Turning plate; 19. Groove; 20. Cylinder; 21. Fixing ring; 22. Fixing plate two; 23. Limiting rod; 24. Fixing block; 25. Second slider; 26. Longitudinal track; 27. L-shaped plate; 28. First slider; 29. ​​Transverse track; 30. Frame beam; 31. Pusher frame; 32. Square groove; 33. Crossbeam; 34. Support pad; 35. Pneumatic 36. Cylinder 2; 37. Roller; 38. Walkway plate support; 39. Side baffle; 40. Mounting plate; 41. Fixing plate 1; 42. Support rod; 43. Center block; 44. Groove; 45. Support plate; 46. Hydraulic cylinder; 47. Hydraulic rod; 48. Lifting plate; 49. Side plate 2; 50. Cylinder 1; 51. Piston rod 1; 52. Drilling mechanism; 53. Vertical plate; 54. First tilting platform; 55. Second tilting platform; 56. Connecting crossbeam; 57. Extension plate; 58. First track; 59. Third track; 60. Second track; 61. Third slider; 62. Clamping block 1; 63. Limiting block 1; 64. Fourth slider; 65. Clamping block 2; 66. Limiting block 2; 67. Support seat; 68. L-shaped seat. Detailed Implementation

[0021] To better understand the above-mentioned objectives, features, and advantages of the present invention, the present invention will be further described below in conjunction with the accompanying drawings and embodiments. It should be noted that, unless otherwise specified, the embodiments and features described in these embodiments can be combined with each other.

[0022] The present invention will be further described below with reference to the accompanying drawings and specific embodiments.

[0023] According to embodiments of the present invention, such as Figures 1-8 As shown in the document: This invention provides a construction climbing scaffold walkway processing equipment, including a support base 1. The top of the support base 1 is provided with a support box 2, a first inclined section 3, a stepping conveyor section 4, a drilling section 5, a second inclined section 6, and a welding section 7. A conveying mechanism 8 and a welding mechanism 9 are respectively provided on both sides of the welding section 7. The first inclined section 3 includes support platforms 10 located on both sides of the support box 2 near the center. A side triangular plate 11 is provided on the top of the support platform 10 near the side of the support box 2. A ramp 12 is provided on the top of the side triangular plate 11. A side plate 13 is provided on the top of the ramp 12 near the support box 2. The two side plates 13 are... Each side has a connecting plate 14 on its upper part, and a baffle 15 on the side of the connecting plate 14 away from the side plate 13. The stepping conveyor 4 includes a support column 16, which is fixed to the support base 1. A motor 17 is provided on one side of the support column 16, and a rotating plate 18 is provided on the side of the motor 17 away from the support column 16. A slot 19 is provided on the other side of the rotating plate 18, and a cylinder 20 is provided in the slot 19. A fixing ring 21 is provided on the side of the cylinder 20 corresponding to the motor 17, and a fixing plate 22 is provided on the side of the fixing ring 21 corresponding to the motor 17. The fixing plate 22 is fixed to the top of the support base 1. On the cylinder 20, a limiting rod 23 is provided on the side away from the fixing ring 21. A fixing block 24 is sleeved on the outside of the limiting rod 23. A second slider 25 is provided on the side of the fixing block 24 corresponding to the support box 2. A longitudinal track 26 is provided on the side of the second slider 25 away from the fixing block 24. An L-shaped plate 27 is provided on the side of the longitudinal track 26 away from the second slider 25. A first slider 28 is provided on the top of the L-shaped plate 27 corresponding to the fixing plate 22. A transverse track 29 is provided on the side of the first slider 28 away from the L-shaped plate 27. A beam 3 is provided on the top of the support platform 10 on the side away from the side triangular plate 11. 0. A set of pusher frames 31 are provided on the inner side of the two side beams 30. The top of the pusher frame 31 and the beam 30 are provided with square grooves 32. Several crossbeams 33 are provided between the pusher frames 31. The top of the fixing block 24 on the side away from the second slider 25 is fixed to the side of the crossbeam 33 located in the middle position. The welding part 7 includes a support pad 34. The top of the support pad 34 is provided with a drive limiting part. The top center of the support pad 34 is provided with a cylinder 2 35. The cylinder 2 35 is provided with a matching piston rod 2. The top of the piston rod 2 passes through the cylinder 2 35. The top of the piston rod 2 is provided with a walkway plate support 37.

[0024] The conveying mechanism 8, welding mechanism 9, and drilling mechanism 51 in this invention are all existing structures. Therefore, the conveying mechanism 8, welding mechanism 9, and drilling mechanism 51 are not described in detail in this invention. The conveying mechanism 8 is an existing structure, mainly used to place the walkway plate on the conveying mechanism 8. After the conveying mechanism 8 is running, it will transport the walkway plate to the walkway plate support plate 37. Its main function is to convey.

[0025] The welding mechanism 9 includes a servo motor, a rotating mechanism, a welding torch, etc. When the servo motor runs, it drives the rotating mechanism, which rotates the welding torch to a suitable position, and then welds the area to be welded through the welding torch.

[0026] The support box 2 has side baffles 38 on both sides of its top. A gap is left between the bottom wall of the baffle 15 and the top surface of the inclined platform 12. The longitudinal cross-sectional dimension of the gap is adapted to the size of the rectangular steel pipe. The support column 16 has a mounting plate 39 on one side corresponding to the motor 17. The bottom of the mounting plate 39 is fixed to the top of the support base 1. A fixing plate 40 is provided on the side of the motor 17 away from the mounting plate 39. Several support rods 41 are provided around the fixing plate 40 on the periphery of the side away from the motor 17. The support rod 41 is fixed to the side of the fixing plate 22 away from the fixing plate 40. A center block 42 is provided at the center of the fixing plate 22, located in the center groove of the fixing ring 21, on the side of the fixing plate 22 away from the support rod 41. An output shaft is provided on the side of the motor 17 away from the mounting plate 39. The output shaft passes through the middle of the fixing plate 40, the fixing plate 22, and the center block 42, and connects to one side of the rotating plate 18. An annular guide is formed between the outer wall of the center block 42 and the inner wall of the fixing ring 21. The cylinder 20 is located at the annular guide rail; the top of the fixing plate 22 away from the support rod 41 is provided with a groove 43, the transverse track 29 is located in the groove 43, the drilling part 5 includes a support plate 44, a hydraulic cylinder 45 is provided at the top center of the support plate 44, a set of cooperating hydraulic rods 46 are provided in the hydraulic cylinder 45, the hydraulic rods 46 pass through the hydraulic cylinder 45, the hydraulic rods 46 pass through the support plate 44, and a lifting plate 47 is provided at the bottom of the hydraulic rods 46. Both sides of the bottom of 7 are provided with side plates 48. A cylinder 49 is provided on the outer side of the side plate 48. A piston rod 50 is provided inside the cylinder 49. The piston rod 50 passes through the cylinder 49 and the side plate 48. A drilling mechanism 51 is provided on the side of the piston rod 50 away from the cylinder 49. The bottom of the support plate 44 is provided with a vertical plate 52 on the outer side of the support platform 10. The bottom of the vertical plate 52 is fixed on the top side of the support base 1.

[0027] The beam 30 is fixed on the support platform 10 and does not move. The pusher 31 is located inside the beam 30. As the fixed block 24 moves up and down and left and right, the pusher 31 is pushed forward in a step-by-step manner. The spacing between the several square grooves 32 set on the top of the pusher 31 is the same as the spacing between the several square grooves 32 set on the top of the beam 30.

[0028] Additionally, the second inclined portion 6 includes a first inclined platform 53 and a second inclined platform 54. The first inclined platform 53 is located inside the second inclined platform 54. The top of the first inclined platform 53 on the side away from the welding portion 7 is fixedly connected to the side of the frame beam 30 via a connecting beam 55. The welding portion 7 includes an extension plate 56, which is fixed to the side of the support pad 34 near the second inclined portion 6. The top of the extension plate 56 is provided with a first track 57, and the side of the first track 57 away from the second inclined portion 6 is provided with a third track 58. The top of the support pad 34 on the side away from the first track 57 is provided with a second track 59 at its center. Both the first track 57 and the second track 59 are provided with matching... The third slider 60 has a clamping block 61 on its top, and a limiting groove 62 inside the clamping block 61. The third track 58 has a corresponding fourth slider 63, and a clamping block 64 on its top. The clamping block 64 has a limiting groove 65 inside the limiting groove 64. The bottom of the limiting block 62 and the limiting block 65 are both provided with a return spring on the protruding side. The top of the support pad 34 has several support seats 66 on both sides. The top of the support seat 66 has a symmetrical L-shaped seat 67. The inner wall of the L-shaped seat 67 is provided with several rollers 36. The rollers 36 are connected to the upper part of the L-shaped seat 67 through roller shafts.

[0029] Each of the first track 57, the second track 59, and the third track 58 is equipped with an individually controlled sensor. Through an external drive connection, the sliding movement of the slider can be controlled individually. Alternatively, a miniature actuator can be installed on the side of each track. The miniature actuator is connected to a threaded rod, and a matching threaded sleeve is fitted onto the threaded rod. The threaded sleeve connects to the corresponding slider, thus driving the sliding movement of the slider.

[0030] Detailed usage and function of this embodiment: First, a rectangular steel pipe is placed on the support box 2. With external pushing force, the rectangular steel pipe placed on the support box 2 is pushed forward, causing it to slide forward along the inclined plane 12 through the space between the baffle 15 and the inclined plane 12. The rectangular steel pipe falls into the square groove 32 on the pusher frame 31 below one side. The leftmost square groove 32 of the pusher frame 31 is located directly below the side of the inclined plane 12, precisely catching the rectangular steel pipe sliding down from above and embedding it into the groove. The drive motor 17 runs, causing the rotating plate 18 to rotate. The cylinder 20 in the groove 19 on the other side of the rotating plate 18 rotates in the annular groove in the middle of the fixed ring 21 as the rotating plate 18 rotates. During rotation, the limiting rod 23 carries the fixing block 24, and the fixing block 24 carries the second slider 25 to slide on the longitudinal track 26, achieving the upward... As the second slider 25 slides down, it pushes against the connected crossbeam 33 via the fixed block 24, further driving the pusher frame 31 upward. Then, as the first slider 28 moves left and right on the transverse track 29, the pusher frame 31 pushes forward with the rectangular steel pipe that has fallen down. The erected rectangular steel pipe is just stuck in the square groove 32 on the support beam 30. When the pusher frame 31 moves down, the pushed rectangular steel pipe remains in the square groove 32 on the support beam 30. After pushing in sequence, the rectangular steel pipe will be pushed forward step by step at equal intervals until it reaches the far right. Then, the rear end of the pusher frame 31 will lift the rectangular steel pipe at the end of the support beam 30 forward again. When the pusher frame 31 moves down, the erected rectangular steel pipe will remain on the first inclined platform 53 and slide down with the slope of the inclined surface, falling into the roller 36.

[0031] When the rectangular steel pipe is transported to the end of the beam 30, the stepping conveyor 4 stops, allowing the rectangular steel pipe to stop at the end of the beam 30. At this time, the hydraulic cylinder 45 and the hydraulic rod 46 are driven to extend and retract, and the hydraulic rod 46 presses the lifting plate 47 down, so that the drilling mechanism 51 is aligned with the sides of the two end rectangular steel pipes. Then, the cylinder 49 and the piston rod 50 are driven to extend and retract, and the piston rod 50 carries the drilling mechanism 51 to perform drilling operations on the sides of the two end rectangular steel pipes. After drilling is completed, the lifting plate 47 rises, and then pushes the rectangular steel pipe onto the welding section 7.

[0032] Immediately after receiving the signal, the first track 57 drives the third slider 60 to slide on the first track 57. The limiting block 62 at this point pushes the rectangular steel tube on the roller 36 forward. After passing the limiting block 62 on the second track 59, under the action of the thrust, it presses against the limiting block 62, causing the protruding part on the right side of the limiting block 62 to rotate downwards. At this time, when the rectangular steel tube is pushed forward, it will pass the limiting block 62 on the second track 59, pressing against the limiting block 62 at that point. Once the rectangular steel tube has passed this point... After the limiting block 62 is positioned, it returns to its original state under the action of the return spring. At this time, the protruding part on the right side of the limiting block 62 will push forward against the rectangular steel pipe in front, pushing the first rectangular steel pipe to the right. Then, the second rectangular steel pipe is pushed over. Before pushing the second rectangular steel pipe over, the walkway plate placed on the conveying mechanism 8 is first conveyed to the walkway plate support plate 37. Since the walkway plate support plate 37 was previously located below the roller 36, the rectangular steel pipe... The rectangular steel pipe is not affected during pushing. Before conveying the walkway plate, the second cylinder 35 and the second piston rod are driven to extend and retract, causing the second piston rod to rise against the walkway plate support 37 until it is parallel to the conveying mechanism 8. This allows the conveying mechanism 8 to transport the walkway plate onto it. After the walkway plate support 37 is delivered, its side will abut against the inner wall of the L-shaped seat 67 on the other side. This ensures that the conveyed walkway plate corresponds to the pushed rectangular steel pipe. The lifting height of the walkway plate can be adjusted to maintain alignment with the rectangular steel pipe. After the rectangular steel pipe on the side is in the correct position, the second rectangular steel pipe is pushed. After the second rectangular steel pipe slides past the limiting block 62 on the second track 59, the protruding part on the right side of the limiting block 62 will push the second rectangular steel pipe to the left side of the walkway panel. At the same time, the limiting block 65 pushes the first rectangular steel pipe to the right side of the walkway panel, clamping the walkway panel and keeping it stationary. At this time, the welding mechanism 9 set on the side is driven. After the welding mechanism 9 adjusts its height and angle, it will perform the welding operation, thereby completing the welding work of the walkway panel.

[0033] After the walkway plate is welded, the cylinder 2 35 and piston rod 2 extend and retract, pushing the walkway plate support 37 upward, so that the limit block 2 65 is below. Then, only the second track 59 and the third slider 60 that cooperates with it are driven to run. The limit block 1 62 at this point pushes the walkway plate support 37 forward to press the limit block 2 65, slides past the limit block 2 65, and transports the walkway plate to the next process part. In this way, the operator can stay away from the processing parts, which greatly improves the operator's safety.

[0034] Through the specific embodiments described above, those skilled in the art can easily implement the present invention. However, it should be understood that the present invention is not limited to the specific embodiments described above. Based on the disclosed embodiments, those skilled in the art can arbitrarily combine different technical features to achieve different technical solutions.

Claims

1. A building climbing frame walkway processing apparatus characterized by comprising: Including support base (1), the top of support base (1) is equipped with support box (2), first inclined part (3), step conveying part (4), drilling part (5), second inclined part (6) and welding part (7), the both sides of welding part (7) are equipped with conveying mechanism (8) and welding mechanism (9) respectively; The first inclined part (3) includes the support table (10) on both sides of the side edge of the support box (2) near the center position, the top of the support table (10) is equipped with a side triangle plate (11) near the side edge of the support box (2), the top of the side triangle plate (11) is equipped with an inclined table (12), the top of the inclined table (12) is equipped with a side plate (13) near one side of the support box (2), the upper part of the corresponding side edge of both side plates (13) is equipped with a connecting plate (14), and the side of the connecting plate (14) away from the side plate (13) is equipped with a baffle (15); The step conveying part (4) includes a support column (16), the support column (16) is fixed on the support base (1), one side of the support column (16) is equipped with a motor (17), the side of the motor (17) away from the support column (16) is equipped with a rotating plate (18), the other side of the rotating plate (18) is equipped with a notch (19), the notch (19) is equipped with a cylinder (20), the side of the cylinder (20) corresponding to the motor (17) is equipped with a fixed ring (21), the side of the fixed ring (21) corresponding to the motor (17) is equipped with a fixed plate (22), the fixed plate (22) is fixed on the top of the support base (1), the side of the cylinder (20) away from the fixed ring (21) is equipped with a limiting rod (23), the outer side of the limiting rod (23) is equipped with a fixed block (24), the side of the fixed block (24) corresponding to the support box (2) is equipped with a second sliding block (25), the side of the second sliding block (25) away from the fixed block (24) is equipped with a longitudinal rail (26), the side of the longitudinal rail (26) away from the second sliding block (25) is equipped with an L-shaped plate (27), the top of the side of the L-shaped plate (27) corresponding to the fixed plate (22) is equipped with a first sliding block (28), the side of the first sliding block (28) away from the L-shaped plate (27) is equipped with a transverse rail (29); The top of the support table (10) is equipped with a beam (30) on the side away from the side triangle plate (11), the inner side of both beams (30) is equipped with a group of pushing frames (31), the top of the pushing frame (31) and the beam (30) is equipped with a square groove (32), and a plurality of cross beams (33) are arranged between the pushing frames (31); The top of the side of the fixed block (24) away from the second sliding block (25) is fixed on the side edge of the cross beam (33) located at the middle position; The welding part (7) includes a support backing plate (34), the top of the support backing plate (34) is provided with a driving limiting part, the top center of the support backing plate (34) is provided with a cylinder two (35), the cylinder two (35) is internally provided with a matched piston rod two, the top of the piston rod two penetrates the cylinder two (35), and the top of the piston rod two is provided with a walkway plate supporting plate (37).

2. The construction climbing formwork walkway processing apparatus according to claim 1, characterized in that, The top of the support box (2) is provided with a side blocking strip (38) on both sides, and a spacing is left between the bottom wall of the blocking plate (15) and the top surface of the inclined table (12), and the longitudinal section dimension of the spacing is matched with the size of the rectangular steel pipe.

3. The construction climbing formwork processing apparatus according to claim 1, characterized in that, The side of the support column (16) corresponding to the motor (17) is provided with a mounting plate (39), the bottom of the mounting plate (39) is fixed on the top of the support base (1), the side, away from the mounting plate (39), of the motor (17) is provided with a fixed plate one (40), the side, away from the motor (17), of the fixed plate one (40) is provided with a plurality of support rods (41), the side, away from the fixed plate one (40), of the support rod (41) is fixed on the side of the fixed plate two (22), the side, away from the support rod (41), of the fixed plate two (22) is provided with a center block (42) at the center groove of the fixed ring (21), the side, away from the mounting plate (39), of the motor (17) is provided with an output shaft, and the output shaft penetrates the middle of the fixed plate one (40), the fixed plate two (22) and the center block (42) and is connected with one side of the rotating plate (18).

4. The construction climbing formwork processing apparatus according to claim 3, characterized in that, The outer wall of the center block (42) and the inner wall of the fixed ring (21) form an annular guide rail, and the cylinder (20) is located at the annular guide rail; The top of the side, away from the support rod (41), of the fixed plate two (22) is provided with a groove (43), and the transverse rail (29) is located in the groove (43).

5. The construction climbing formwork processing apparatus according to claim 1, characterized in that, The drilling part (5) includes a support plate (44), the top center of the support plate (44) is provided with a hydraulic cylinder (45), the hydraulic cylinder (45) is internally provided with a set of matched hydraulic rods (46), the hydraulic rods (46) penetrate the hydraulic cylinder (45), the hydraulic rods (46) penetrate the support plate (44), the bottom of the hydraulic rods (46) is provided with a lifting plate (47), the bottom of the lifting plate (47) is provided with a side plate two (48) on both sides, the outer side of the side plate two (48) is provided with a cylinder one (49), the cylinder one (49) is internally provided with a matched piston rod one (50), the piston rod one (50) penetrates the cylinder one (49), and the piston rod one (50) penetrates the side plate two (48).

6. The construction climbing formwork processing apparatus according to claim 5, wherein The side, away from the cylinder one (49), of the piston rod one (50) is provided with a drilling mechanism (51); The bottom of the support plate (44) is provided with a vertical plate (52) on the outer side of the support table (10), and the bottom of the vertical plate (52) is fixed on the top side of the support base (1).

7. The construction climbing formwork processing apparatus according to claim 1, wherein The second inclined part (6) comprises a group of first inclined tables (53) and second inclined tables (54), the first inclined tables (53) are located on the inner side of the second inclined tables (54), and the first inclined tables (53) are fixedly connected with the side edges of the frame beams (30) at the side top away from the welding part (7) through connecting cross beams (55).

8. The construction climbing formwork processing apparatus according to claim 1, characterized in that, The welding part (7) comprises an extension plate (56) fixed on the side edge of the support backing plate (34) on the side close to the second inclined part (6), the top of the extension plate (56) is provided with a first track (57), the side away from the second inclined part (6) of the first track (57) is provided with a third track (58), and the top of the support backing plate (34) is provided with a second track (59) at the center position away from the first track (57).

9. The construction climbing formwork processing apparatus according to claim 8, wherein The first track (57) and the second track (59) are provided with matched third sliders (60), the top of the third sliders (60) is provided with clamping blocks one (61), the top of the clamping blocks one (61) is provided with limiting grooves one, and the limiting grooves one are provided with limiting blocks one (62). The third track (58) is provided with a matched fourth slider (63), the top of the fourth slider (63) is provided with clamping blocks two (64), the top of the clamping blocks two (64) is provided with limiting grooves two, the limiting grooves two are provided with limiting blocks two (65), and the bottoms of the limiting blocks one (62) and the limiting blocks two (65) are provided with return springs on the convex sides.

10. The construction climbing formwork processing apparatus according to claim 9, wherein The top of the support backing plate (34) is provided with a plurality of support seats (66), the top of the support seat (66) is provided with symmetrical L-shaped seats (67), the inner walls of the L-shaped seats (67) are provided with a plurality of rollers (36), and the rollers (36) are connected with the upper portions of the L-shaped seats (67) through roller shafts.