Machining and welding machine for movable formwork assembly
Through the design of lifting and rotating mechanisms, the problems of welding machine cable mopping and fixing are solved, automatic storage of cables and flexible adjustment of welding machines are realized, and welding efficiency and operation convenience are improved.
Patent Information
- Application Number
- CN202510689138.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-27
- Publication Date
- 2025-07-04
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The welding torch cables of existing welding machines are easily dragged on the ground, lacking storage capacity, and the welding machine is fixed in a fixed direction and cannot be adjusted flexibly.
A mobile mold frame assembly processing welding machine is designed, using a lifting mechanism and a rotating mechanism to realize the storage of cables through a lifting wheel and a wire receiving box, and the orientation of the welding machine is changed through a rotating mechanism.
It effectively solves the problem of cable mopping, realizes automatic storage of cables and flexible orientation adjustment of welding machine, and improves welding efficiency and equipment operation convenience.
Smart Images

Figure CN120244381A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of die carrier welding, and particularly to a processing and welding machine for a movable die carrier assembly. Background Art
[0002] A movable die carrier is a movable support system used for bridge construction, building formwork support, or large - scale structure construction. A Chinese patent document with the application number 202211010611.5 discloses a welding machine, which includes a machine table, a head stock loading mechanism, a handle stock loading mechanism, a welding mechanism, a detection mechanism, and a receiving mechanism. The head stock loading mechanism is connected to the machine table and is used for conveying the head stock; the handle stock loading mechanism is connected to the machine table and is used for conveying the handle stock; the welding mechanism is connected to the machine table and is used for welding the head stock and the handle stock to form a welded part; the detection mechanism is connected to the machine table and is used for detecting the welded part; the receiving mechanism is connected to the machine table and is used for storing the welded parts that are qualified after being detected by the detection mechanism. In this application, the welding machine is composed of the head stock loading mechanism, the handle stock loading mechanism, the welding mechanism, the detection mechanism, and the receiving mechanism, so that the welding machine can achieve automatic welding and improve the welding efficiency.
[0003] However, this welding machine also has some problems. For example, in order to facilitate welding, the welding gun cable often needs to be several meters long. Such a long cable often drags on the ground. During the welding operation, the cable is very easy to get caught on various sundries. Moreover, if the cable is too long, it does not have the ability to be stored, which easily exacerbates cable wear. At the same time, the orientation of the welding machine is fixed, and only by moving the entire device can the orientation be adjusted. Summary of the Invention
[0004] Based on the technical problems in the background art that the cable is easy to drag on the ground, does not have the ability to be stored, and the orientation is fixed, the present invention proposes a processing and welding machine for a movable die carrier assembly.
[0005] A mobile formwork component processing and welding machine proposed by the present invention includes a mobile formwork component welding machine. A tray is bolted to the bottom of the mobile formwork component welding machine. A mobile base is rotatably connected to the center of the bottom of the tray. A transmission box is bolted to the right side of the tray. A cable rack is hinged to the left side of the top of the transmission box. A lifting wheel is rotatably connected to the right side of the cable rack. A wire reel is bolted to the top of the cable rack. A bracket is bolted to the right side of the wire reel. A reduction motor is bolted to the surface of the bracket. A concave wheel is key-connected to the output end of the reduction motor. A limiting wheel is rotatably connected to the top of the bracket. A rotating mechanism is key-connected to the center of the bottom of the tray. A lifting mechanism is slidably connected to the sliding hole of the cable rack. The welding torch cable of the mobile formwork component welding machine passes through the concave wheel and the lifting wheel. The lifting mechanism can drive the cable rack to rotate upward. In this way, the lifting wheel can lift the cable. The reduction motor and the concave wheel can drive the cable to be received into the wire reel. At the same time, the rotating mechanism can drive the mobile formwork component welding machine to rotate and change the orientation.
[0006] Preferably, the rotating mechanism includes an electric push cylinder, a hinged rod, a transmission rod, and a transmission component. The output end of the electric push cylinder is hinged to the right end of the hinged rod. The left end of the hinged rod is hinged to the surface of the transmission rod. The transmission rod is hinged to the transmission component. The power supply of the electric push cylinder is connected. The power supply uses an external power supply and an internal power supply and is controlled by a controller. The electric push cylinder can drive the hinged rod to move to the right. The hinged rod can drive the top end of the transmission rod to rotate to the right. The transmission rod can drive the transmission component to rotate.
[0007] Preferably, the transmission component includes sliders, chute bars, a chain, and a driving component. There are two sliders and two chute bars. The top and bottom ends of the transmission rod are respectively hinged to the surfaces of the two sliders. The sliders are slidably connected to the chute bars. The two ends of the left side of the chain are respectively bolted to the left ends of the two chute bars. The chain meshes with the driving component. The transmission rod can drive the top slider to move to the right and drive the bottom slider to move to the left. The slider can slide in the chute of the chute bar and drive the chute bar to move. The chute bar can drive the chain to rotate clockwise. The chain can drive the driving component to rotate.
[0008] Preferably, the driving component includes a sprocket, a main bevel gear, and a sub-bevel gear. The inner side of the chain meshes with the teeth of the sprocket. The sprocket is key-connected to the main bevel gear. The teeth of the main bevel gear mesh with the teeth of the sub-bevel gear. The shaft at the top of the sub-bevel gear is key-connected to the center of the bottom of the tray. The chain can drive the sprocket to rotate clockwise. The sprocket can drive the main bevel gear to rotate clockwise. The main bevel gear can drive the sub-bevel gear to rotate. The sub-bevel gear can drive the tray to rotate.
[0009] Preferably, the surface of the electric push cylinder is bolted to the hole on the right side inside the moving base. The middle end of the transmission rod is rotatably connected to the inside of the moving base. The surface of the chute bar is slidably connected to the inside of the moving base. The center of the main bevel gear is rotatably connected to the middle end inside the moving base. The electric push cylinder is fixed by the moving base. The transmission rod is rotatably arranged on the moving base through a bearing to ensure the smooth rotation of the transmission rod. The chute bar is slidably arranged on the moving base through a slide rail to guide the chute bar.
[0010] Preferably, the lifting mechanism includes a power motor, a lead screw, a carriage, and a conversion assembly. The output end of the power motor is key-connected to the right end of the lead screw. The surface of the lead screw is threadedly connected to the screw hole of the carriage. The carriage is hinged to the conversion assembly. When the power supply of the power motor is turned on, the power supply of the power motor uses an external power supply or an internal power supply and is controlled by a controller. The power motor can drive the lead screw to rotate. The lead screw can drive the carriage to move to the right by using the thread. The carriage can drive the conversion assembly to rotate.
[0011] Preferably, the conversion assembly includes a movable rod, a driving wheel, a transmission belt, and a lifting assembly. The top end of the carriage is hinged to the right end of the movable rod. The left end of the movable rod is hinged to the surface of the driving wheel. The inner side of the driving wheel is drivingly connected to the inner side of the transmission belt. The transmission belt is drivingly connected to the lifting assembly. The carriage can drive the movable rod to move to the right. The left end of the movable rod and the surface of the driving wheel are in an eccentric structure. The movable rod can drive the driving wheel to rotate counterclockwise. The driving wheel can drive the transmission belt to rotate. The transmission belt can drive the lifting assembly to rotate.
[0012] Preferably, the lifting assembly includes a driven wheel, a transmission gear, a rack, and a sliding frame. The transmission belt is drivingly connected to the driven wheel. The driven wheel is key-connected to the transmission gear. The teeth of the transmission gear are meshed with the teeth of the rack. The top end of the rack is bolted to the bottom of the sliding frame. The inner side of the sliding frame is slidably connected to the sliding hole of the cable rack. The transmission belt can drive the driven wheel to rotate. The radius of the driving wheel is larger than the radius of the driven wheel, which can accelerate the driven wheel. The driven wheel can drive the transmission gear to rotate. The transmission gear can drive the rack to move upward. The rack can drive the sliding frame to move upward. The convex block of the sliding frame slides in the sliding hole of the cable rack and drives the cable rack to rotate upward.
[0013] Preferably, the surface of the power motor is bolted to the hole on the right side of the transmission box. The bottom of the carriage is slidably connected to the bottom end inside the transmission box. The centers of the driving wheel and the transmission gear are both rotatably connected to the inside of the transmission box. The surface of the rack is slidably connected to the sliding hole on the top of the transmission box. The power motor is fixed by the transmission box to ensure the stability of the power motor. The carriage is slidably arranged on the transmission box through a slide rail to guide the carriage. The driving wheel and the transmission gear are rotatably arranged on the transmission box through bearings to ensure the smooth rotation of the driving wheel and the transmission gear.
[0014] Preferably, the cable rack includes a sliding hole rack and a U-shaped rack. The right end of the sliding hole rack is welded to the left side of the U-shaped rack. There are two lifting wheels, and the axles of both lifting wheels are rotatably connected to the inner side of the U-shaped rack. The convex block of the sliding frame can move in the sliding hole of the sliding hole rack and drive the sliding hole rack to rotate, and the sliding hole rack can drive the U-shaped rack to rotate.
[0015] The beneficial effects of the present invention are as follows: The welding torch cable of the mobile formwork assembly welding machine passes through the concave wheel and the lifting wheel. The lifting mechanism can drive the cable rack to rotate upward. In this way, the cable can be lifted by the lifting wheel, and the cable can be driven into the inside of the wire reel by the reduction motor and the concave wheel. At the same time, the rotating mechanism can drive the mobile formwork assembly welding machine to rotate and change the orientation. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 is a front view structural schematic diagram of a mobile formwork assembly processing and welding machine proposed by the present invention; Figure 2 is an internal structural schematic diagram of the transmission box of a mobile formwork assembly processing and welding machine proposed by the present invention; Figure 3 is a rear view structural schematic diagram of the chute bar of a mobile formwork assembly processing and welding machine proposed by the present invention; Figure 4 is a three-dimensional schematic diagram of the driving wheel of a mobile formwork assembly processing and welding machine proposed by the present invention; Figure 5 is a three-dimensional schematic diagram of the sprocket of a mobile formwork assembly processing and welding machine proposed by the present invention.
[0017] In the figure: 1. Mobile formwork assembly welding machine; 2. Tray; 3. Mobile base; 4. Transmission box; 5. Cable rack; 6. Lifting wheel; 7. Wire reel; 8. Bracket; 9. Reduction motor; 10. Concave wheel; 11. Limiting wheel; 12. Electric push cylinder; 13. Hinge rod; 14. Transmission rod; 15. Slide block; 16. Chute bar; 17. Chain; 18. Sprocket; 19. Main bevel gear; 20. Sub bevel gear; 21. Power motor; 22. Lead screw; 23. Slide frame; 24. Movable rod; 25. Driving wheel; 26. Transmission belt; 27. Driven wheel; 28. Transmission gear; 29. Rack; 30. Slide frame. DETAILED DESCRIPTION OF THE INVENTION
[0018] The present invention will be further explained below with reference to specific embodiments.
[0019] Embodiment Reference Figures 1-5, in this embodiment, a processing and welding machine for a mobile formwork component is proposed, which includes a mobile formwork component welding machine 1. A tray 2 is bolted to the bottom of the mobile formwork component welding machine 1. A mobile base 3 is rotatably connected to the center of the bottom of the tray 2. A transmission box 4 is bolted to the right side of the tray 2. A cable rack 5 is hinged to the left side of the top of the transmission box 4. A lifting wheel 6 is rotatably connected to the right side of the cable rack 5. A wire reel 7 is bolted to the top of the cable rack 5. A bracket 8 is bolted to the right side of the wire reel 7. A reduction motor 9 is bolted to the surface of the bracket 8. An output end of the reduction motor 9 is key-connected with a concave wheel 10. A limiting wheel 11 is rotatably connected to the top of the bracket 8. A rotating mechanism is key-connected to the center of the bottom of the tray 2. A lifting mechanism is slidably connected to a sliding hole of the cable rack 5; The rotating mechanism includes an electric push cylinder 12, a hinged rod 13, a transmission rod 14 and a transmission component. An output end of the electric push cylinder 12 is hinged to the right end of the hinged rod 13. The left end of the hinged rod 13 is hinged to the surface of the transmission rod 14. The transmission rod 14 is hinged to the transmission component. When the power supply of the electric push cylinder 12 is turned on, the power supply adopts an external power supply and an internal power supply and is controlled by a controller. The electric push cylinder 12 can drive the hinged rod 13 to move to the right. The hinged rod 13 can drive the top end of the transmission rod 14 to rotate to the right. The transmission rod 14 can drive the transmission component to rotate; The transmission component includes two sliders 15, two chute bars 16, a chain 17 and a driving component. The top end and the bottom end of the transmission rod 14 are respectively hinged to the surfaces of the two sliders 15. The sliders 15 are slidably connected to the chute bars 16. Two left ends of the right side of the chain 17 are respectively bolted to the two chute bars 16. The chain 17 meshes with the driving component. The transmission rod 14 can drive the top slider 15 to move to the right and drive the bottom slider 15 to move to the left. The slider 15 can slide in the chute of the chute bar 16 and drive the chute bar 16 to move. The chute bar 16 can drive the chain 17 to rotate clockwise. The chain 17 can drive the driving component to rotate; The driving component includes a sprocket 18, a main bevel gear 19 and a sub-bevel gear 20. The inner side of the chain 17 meshes with the teeth of the sprocket 18. The sprocket 18 is key-connected with the main bevel gear 19. The teeth of the main bevel gear 19 mesh with the teeth of the sub-bevel gear 20. A shaft at the top of the sub-bevel gear 20 is key-connected to the center of the bottom of the tray 2. The chain 17 can drive the sprocket 18 to rotate clockwise. The sprocket 18 can drive the main bevel gear 19 to rotate clockwise. The main bevel gear 19 can drive the sub-bevel gear 20 to rotate. The sub-bevel gear 20 can drive the tray 2 to rotate; The surface of the electric push cylinder 12 is bolted to the hole on the right side inside the moving base 3. The middle end of the transmission rod 14 is rotatably connected to the inside of the moving base 3. The surface of the chute bar 16 is slidably connected to the inside of the moving base 3. The center of the main bevel gear 19 is rotatably connected to the middle end inside the moving base 3. The electric push cylinder 12 is fixed by the moving base 3. The transmission rod 14 is rotatably arranged on the moving base 3 through a bearing to ensure the smooth rotation of the transmission rod 14. The chute bar 16 is slidably arranged on the moving base 3 through a slide rail to guide the chute bar 16. The lifting mechanism includes a power motor 21, a lead screw 22, a carriage 23 and a conversion component. The output end of the power motor 21 is key-connected to the right end of the lead screw 22. The surface of the lead screw 22 is threadedly connected to the threaded hole of the carriage 23. The carriage 23 is hinged to the conversion component. When the power supply of the power motor 21 is turned on, the power supply of the power motor 21 uses an external power supply or an internal power supply and is controlled by a controller. The power motor 21 can drive the lead screw 22 to rotate. The lead screw 22 can drive the carriage 23 to move to the right by using the thread. The carriage 23 can drive the conversion component to rotate. The conversion component includes a movable rod 24, a driving wheel 25, a transmission belt 26 and a lifting component. The top end of the carriage 23 is hinged to the right end of the movable rod 24. The left end of the movable rod 24 is hinged to the surface of the driving wheel 25. The inner side of the driving wheel 25 is in transmission connection with the inner side of the transmission belt 26. The transmission belt 26 is in transmission connection with the lifting component. The carriage 23 can drive the movable rod 24 to move to the right. The left end of the movable rod 24 and the surface of the driving wheel 25 are in an eccentric structure. The movable rod 24 can drive the driving wheel 25 to rotate counterclockwise. The driving wheel 25 can drive the transmission belt 26 to rotate. The transmission belt 26 can drive the lifting component to rotate. The lifting component includes a driven wheel 27, a transmission gear 28, a rack 29 and a sliding frame 30. The transmission belt 26 is in transmission connection with the driven wheel 27. The driven wheel 27 is key-connected to the transmission gear 28. The teeth of the transmission gear 28 are meshed with the teeth of the rack 29. The top end of the rack 29 is bolted to the bottom of the sliding frame 30. The inner side of the sliding frame 30 is slidably connected to the sliding hole of the cable rack 5. The transmission belt 26 can drive the driven wheel 27 to rotate. The radius of the driving wheel 25 is larger than the radius of the driven wheel 27, which can accelerate the driven wheel 27. The driven wheel 27 can drive the transmission gear 28 to rotate. The transmission gear 28 can drive the rack 29 to move upward. The rack 29 can drive the sliding frame 30 to move upward. The convex block of the sliding frame 30 slides in the sliding hole of the cable rack 5 and drives the cable rack 5 to rotate upward. The surface of the power motor 21 is bolted to the hole on the right side of the transmission case 4. The bottom of the carriage 23 is slidably connected to the inner bottom end of the transmission case 4. The axles of the driving wheel 25 and the transmission gear 28 are rotatably connected to the inside of the transmission case 4. The surface of the rack 29 is slidably connected to the sliding hole at the top of the transmission case 4. The power motor 21 is fixed by the transmission case 4 to ensure the stability of the power motor 21. The carriage 23 is slidably arranged on the transmission case 4 through a slide rail to guide the carriage 23. The driving wheel 25 and the transmission gear 28 are rotatably arranged on the transmission case 4 through bearings to ensure the smooth rotation of the driving wheel 25 and the transmission gear 28; The cable rack 5 includes a slide hole rack and a U-shaped rack. The right end of the slide hole rack is welded to the left side of the U-shaped rack. There are two lifting wheels 6, and the axles of the two lifting wheels 6 are rotatably connected to the inner side of the U-shaped rack. The convex block of the sliding frame 30 can be held in the slide hole of the slide hole rack and drive the slide hole rack to rotate. The slide hole rack can drive the U-shaped rack to rotate; The welding gun cable of the mobile formwork assembly welding machine 1 passes through the concave wheel 10 and the lifting wheel 6. The lifting mechanism can drive the cable rack 5 to rotate upward. In this way, the cable can be lifted by the lifting wheel 6. The cable can be driven into the inside of the cable reel 7 by the reduction motor 9 and the concave wheel 10. At the same time, the rotating mechanism can drive the mobile formwork assembly welding machine 1 to rotate and change the orientation.
[0020] Working principle: Pass the welding torch cable of the mobile formwork component welding machine 1 through the concave wheel 10 and the lifting wheel 6, connect the power supply of the power motor 21. The power supply of the power motor 21 uses an external power supply or an internal power supply and is controlled by a controller. The power motor 21 can drive the lead screw 22 to rotate. The lead screw 22 can drive the carriage 23 to move to the right by using the thread. The carriage 23 can drive the movable rod 24 to move to the right. There is an eccentric structure between the left end of the movable rod 24 and the surface of the driving wheel 25. The movable rod 24 can drive the driving wheel 25 to rotate counterclockwise. The driving wheel 25 can drive the transmission belt 26 to rotate. The transmission belt 26 can drive the driven wheel 27 to rotate. The radius of the driving wheel 25 is larger than the radius of the driven wheel 27, which can accelerate the driven wheel 27. The driven wheel 27 can drive the transmission gear 28 to rotate. The transmission gear 28 can drive the rack 29 to move upward. The rack 29 can drive the sliding frame 30 to move upward. The convex block of the sliding frame 30 slides in the sliding hole of the cable rack 5 and drives the cable rack 5 to rotate upward. The cable rack 5 can drive the lifting wheel 6 to move upward. The lifting wheel 6 can lift the cable upward. When the cable needs to be stored, the reduction motor 9 is controlled by a controller. The power supply uses an external power supply or an internal power supply. The reduction motor 9 can drive the concave wheel 10 to rotate counterclockwise. The concave wheel 10 can cooperate with the limit wheel 11 to pull the cable into the inside of the wire reel 7. When it is necessary to change the orientation of the mobile formwork component welding machine 1, connect the power supply of the electric push cylinder 12. The power supply uses an external power supply and an internal power supply and is controlled by a controller. The electric push cylinder 12 can drive the articulated rod 13 to move to the right. The articulated rod 13 can drive the top of the transmission rod 14 to rotate to the right. The transmission rod 14 can drive the slider 15 at the top to move to the right and drive the slider 15 at the bottom to move to the left. The slider 15 can slide in the chute of the chute bar 16 and drive the chute bar 16 to move. The chute bar 16 can drive the chain 17 to rotate clockwise. The chain 17 can drive the sprocket 18 to rotate clockwise. The sprocket 18 can drive the main bevel gear 19 to rotate clockwise. The main bevel gear 19 can drive the sub-bevel gear 20 to rotate. The sub-bevel gear 20 can drive the tray 2 to rotate. The tray 2 can drive the mobile formwork component welding machine 1 to rotate.
[0021] The above is only a preferred specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution and inventive concept of the present invention, makes equivalent substitutions or changes, and should be covered by the protection scope of the present invention.
Claims
1. A processing and welding machine for a movable formwork assembly, comprising a movable formwork assembly welding machine (1), characterized in that, The bottom of the movable formwork component welding machine (1) is bolted with a tray (2). At the center of the bottom of the tray (2), a movable base (3) is rotatably connected. On the right side of the tray (2), a transmission box (4) is bolted. On the left side of the top of the transmission box (4), a cable rack (5) is hinged. On the right side of the cable rack (5), a lifting wheel (6) is rotatably connected. On the top of the cable rack (5), a wire reel box (7) is bolted. On the right side of the wire reel box (7), a bracket (8) is bolted. On the surface of the bracket (8), a reduction motor (9) is bolted. The output end of the reduction motor (9) is key-connected with a concave wheel (10). On the top of the bracket (8), a limiting wheel (11) is rotatably connected. At the center of the bottom of the tray (2), a rotating mechanism is key-connected. A lifting mechanism is slidably connected to the sliding hole of the cable rack (5).
2. The processing and welding machine for a mobile formwork component according to claim 1, characterized in that, The rotating mechanism includes an electric push cylinder (12), a hinged rod (13), a transmission rod (14) and a transmission component. The output end of the electric push cylinder (12) is hinged to the right end of the hinged rod (13). The left end of the hinged rod (13) is hinged to the surface of the transmission rod (14). The transmission rod (14) is hinged to the transmission component.
3. A processing and welding machine for a mobile formwork component according to claim 2, characterized in that, The transmission component includes two sliders (15), two chute bars (16), a chain (17) and a driving component. The top and bottom of the transmission rod (14) are respectively hinged to the surfaces of the two sliders (15). The sliders (15) are slidably connected to the chute bars (16). The two left ends of the right side of the chain (17) are respectively bolted to the two chute bars (16). The chain (17) is meshed with the driving component.
4. A processing and welding machine for a mobile formwork assembly according to claim 3, characterized in that, The driving component includes a sprocket (18), a main bevel gear (19) and a sub-bevel gear (20). The inner side of the chain (17) is meshed with the teeth of the sprocket (18). The sprocket (18) is key-connected with the main bevel gear (19). The teeth of the main bevel gear (19) are meshed with the teeth of the sub-bevel gear (20). The shaft at the top of the sub-bevel gear (20) is key-connected to the center of the bottom of the tray (2).
5. A processing and welding machine for a movable formwork assembly according to claim 4, characterized in that, The surface of the electric push cylinder (12) is bolted to the hole on the right side inside the movable base (3). The middle of the transmission rod (14) is rotatably connected to the inside of the movable base (3). The surface of the chute bar (16) is slidably connected to the inside of the movable base (3). The center of the main bevel gear (19) is rotatably connected to the middle inside the movable base (3).
6. The processing and welding machine for a movable formwork assembly according to claim 1, characterized in that, The lifting mechanism includes a power motor (21), a lead screw (22), a sliding frame (23) and a conversion component. The output end of the power motor (21) is key-connected to the right end of the lead screw (22). The surface of the lead screw (22) is threadedly connected to the screw hole of the sliding frame (23). The sliding frame (23) is hinged to the conversion component.
7. A processing and welding machine for a movable formwork assembly according to claim 6, characterized in that, The conversion component includes a movable rod (24), a driving wheel (25), a transmission belt (26) and a lifting component. The top of the sliding frame (23) is hinged to the right end of the movable rod (24). The left end of the movable rod (24) is hinged to the surface of the driving wheel (25). The inner side of the driving wheel (25) is drivingly connected to the inner side of the transmission belt (26). The transmission belt (26) is drivingly connected to the lifting component.
8. A processing and welding machine for a mobile formwork component according to claim 7, characterized in that, The lifting assembly includes a driven wheel (27), a transmission gear (28), a rack (29) and a sliding frame (30). The transmission belt (26) is in transmission connection with the driven wheel (27). The driven wheel (27) is key-connected to the transmission gear (28). The teeth of the transmission gear (28) are meshed with the teeth of the rack (29). The top end of the rack (29) is bolted to the bottom of the sliding frame (30). The inner side of the sliding frame (30) is in sliding connection with the sliding hole of the cable rack (5).
9. A processing and welding machine for a movable formwork assembly according to claim 8, characterized in that, The surface of the power motor (21) is bolted to the hole on the right side of the transmission box (4). The bottom of the sliding frame (23) is in sliding connection with the bottom end inside the transmission box (4). The axles of the driving wheel (25) and the transmission gear (28) are both rotatably connected to the inside of the transmission box (4). The surface of the rack (29) is in sliding connection with the sliding hole on the top of the transmission box (4).
10. The processing and welding machine for a mobile formwork component according to claim 1, characterized in that, The cable rack (5) includes a sliding hole frame and a U-shaped frame. The right end of the sliding hole frame is welded to the left side of the U-shaped frame. There are two lifting wheels (6), and the axles of the two lifting wheels (6) are both rotatably connected to the inner side of the U-shaped frame.
Citation Information
Patent Citations
Welding machine
CN115319254A