An auxiliary welding platform for electrical equipment installation
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-07-13
- Publication Date
- 2026-08-14
AI Technical Summary
[0004]针对上述情况,为克服现有技术的缺陷,本发明提供了一种电气设备安装辅助焊接平台,有效解决了现有的电气设备安装辅助焊接平台难以对施工过程中产生的碎屑进行拦截和回收、自动化水平较低的问题
[0014]采用上述结构本发明取得的有益效果如下:本方案提供了一种电气设备安装辅助焊接平台,有效解决了现有的电气设备安装辅助焊接平台难以对施工过程中产生的碎屑进行拦截和回收、自动化水平较低的问题,这种方法带来了如下优点:
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Figure CN122559577A_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of electrical equipment welding technology, specifically referring to an auxiliary welding platform for electrical equipment installation. Background Technology
[0002] Electrical equipment refers to technical devices used in power systems for generating, transforming, transmitting, distributing or utilizing electrical energy, or devices that connect machinery or mechanical parts to electricity.
[0003] Existing auxiliary welding platforms for electrical equipment installation have limited structure and function. A prior art application (CN202511415929.5) discloses a welding fixture for manufacturing mechanical and electrical equipment. This fixture uses a fume recovery unit on the workbench. During welding, a fan is activated to create negative pressure in the flow channel and near the air vents of the recovery component, thereby absorbing the welding fumes into the flow channel and ultimately discharging them into a collection box for recovery. This avoids environmental pollution from welding fumes or their absorption by welding workers. However, existing technologies cannot intercept and recover welding slag and other debris generated during construction. Even if debris interception and recovery are achieved, the collected debris cannot be automatically stored and centrally processed, failing to provide an automated experience and easily polluting the surrounding environment, causing inconvenience. Therefore, there is a need for an auxiliary welding platform for electrical equipment installation. Summary of the Invention
[0004] In order to overcome the shortcomings of the prior art, the present invention provides an auxiliary welding platform for electrical equipment installation, which effectively solves the problems of existing auxiliary welding platforms for electrical equipment installation being unable to intercept and recycle debris generated during construction and having a low level of automation.
[0005] The technical solution adopted by the present invention is as follows: The present invention provides an auxiliary welding platform for electrical equipment installation, including an interception and recycling structure capable of intercepting and collecting debris, a positioning component, a collection and guiding mechanism, a moving welding mechanism, and an equipment base. The equipment base is disposed on a plane, the positioning component is disposed on the equipment base, the interception and recycling structure is disposed on the equipment base, the collection and guiding mechanism is disposed on the interception and recycling structure, and the moving welding mechanism is disposed between the equipment bases.
[0006] Preferably, the interception and recycling structure includes a recycling container, a tilting access gate, a tilting operation trough, a tilting support plate, a tilting torsion spring, a debris collector, an internal auxiliary column, and an auxiliary connecting ring. The recycling container is slidably mounted on the equipment base via its bottom fitting. The tilting access gate is hinged to the side wall of the recycling container. The tilting operation trough is arranged in two groups on the inner wall of the recycling container. The tilting support plate is rotatably mounted in two groups on the tilting operation trough. The tilting torsion spring is mounted on the shaft of the tilting support plate. The debris collector is slidably fitted onto the inner wall of the recycling container. The internal auxiliary column is fixed to the inside of the debris collector. The auxiliary connecting ring is fixed to the top of the internal auxiliary column. In the initial state, the tilting support plate can provide support for the debris collector and maintain its position.
[0007] Preferably, the top of the recycling container is open, and an inclined collection rack is provided around the top of the recycling container. The inclined collection rack is provided with a silicone placement groove, and a silicone layer is hinged on the silicone placement groove. The silicone layer can be peeled off when subjected to force. A collection adhesive layer is provided on the surface of the silicone layer, so that the debris falling on the collection adhesive layer cannot fly away. There are collection connecting cotton threads on four sets of silicone layers. The four sets of collection connecting cotton threads converge at the bottom, and a bottom auxiliary hook is provided at the bottom of the collection connecting cotton threads.
[0008] Furthermore, the collection and guiding mechanism includes a winding belt, a coil spring, a winding reel, a top ring of the guiding mechanism, and an L-shaped bracket. The L-shaped bracket is fixed to the outer wall of the recycling container in two groups. The top ring of the guiding mechanism is fixed to the top of the L-shaped bracket. The winding reel is fixed to the inner side wall of the equipment base. The coil spring is located on the rotating shaft of the winding reel. The winding belt is wound and wound on the rotating shaft of the winding reel. There are two groups of winding belts, and the ends of the two groups of winding belts are respectively located on both sides of the top ring of the guiding mechanism.
[0009] Furthermore, the positioning assembly includes a positioning chassis, a pipe rotation motor, a pipe rotation gear, a pipe rotation toothed disc, a linear guide groove, a linear adjusting column, a clamping rotation toothed disc, an arc-shaped guide groove, a positioning rod, positioning holes, and pipe positioning components. A chassis connecting electric cylinder is provided on the equipment base. One set of positioning chassis is located on the output end of the chassis connecting electric cylinder, and the other set of positioning chassis is located on the equipment base. The body of the pipe rotation motor is located on the positioning chassis, the pipe rotation gear is located on the output shaft of the pipe rotation motor, and the pipe rotation toothed disc is rotatably mounted on the positioning chassis. The pipe rotation toothed disc and the pipe rotation gear... The wheels are meshed together. An array of linear guide grooves is arranged around the rotating toothed disc of the pipe. A clamping rotating toothed disc is fitted and rotated on the rotating toothed disc of the pipe. The clamping rotating toothed disc and the rotating toothed disc of the pipe rotate concentrically. An array of arc-shaped guide grooves is arranged around the clamping rotating toothed disc. One end of the linear adjusting column is fitted and slidably arranged on the arc-shaped guide groove. The other end of the linear adjusting column is fitted and slidably arranged on the linear guide groove. The positioning rod is fitted and slidably arranged on the clamping rotating toothed disc. A positioning hole array is arranged around the rotating toothed disc of the pipe. The positioning rod can be engaged in any set of positioning holes. The pipe positioning component is arranged on the linear adjusting column.
[0010] Furthermore, the debris collector is equipped with a second collection adhesion layer, which prevents debris falling on the second collection adhesion layer from flying away. The bottom auxiliary hook and auxiliary connecting ring work together to collect a certain weight of debris in the debris collector, causing the flipping torsion spring to lose its ability to maintain the horizontal state of the flipping support plate and flip downward. At this time, the debris collector slides down due to gravity, and then the bottom auxiliary hook and auxiliary connecting ring work together to drive the four sets of collection connecting cotton lines to pull down the four sets of collection silicone layers, thereby causing the four sets of collection silicone layers to fall out of the silicone placement groove.
[0011] Furthermore, the inner walls of the four sets of silicone placement tanks are equipped with internal button slots, and series buttons are installed in the internal button slots. LED lights are installed on the equipment base, and the LED lights are electrically connected to the four sets of series buttons. The four sets of series buttons are connected in series. When the four sets of silicone collection layers fall off from the silicone placement tanks, the four sets of series buttons will trigger the internal circuits to light up the LED lights, thereby indicating to the staff that they should clean and reset the silicone collection layers and debris collectors, achieving the effect of automatic indication.
[0012] The mobile welding mechanism includes a welder, a ball screw, a welding guide rod, a horizontal welding motor, a screw nut, and a screw support. The screw support is fixed to the equipment base. The body of the horizontal welding motor is mounted on the screw support. The ball screw rotates on the screw support and is connected to the output shaft of the horizontal welding motor. The welding guide rod is mounted on the screw support and the equipment base. The screw nut is driven by the welding guide rod and the ball screw. The welder is located at the bottom of the screw nut. A linkage vertical rod is provided between the screw nut and the top ring of the guide mechanism, which can drive the winding belt and the interception and recycling structure to move together when the welder moves. This ensures that the interception and recycling structure is in the position closest to the welding point at different positions of the welding pipeline, which is more conducive to the recycling of debris.
[0013] Preferably, the bottom of the recycling container is provided with a material retrieval chamber, and the flip-up material retrieval door corresponds to the material retrieval chamber.
[0014] The beneficial effects achieved by the present invention using the above structure are as follows: This solution provides an auxiliary welding platform for electrical equipment installation, which effectively solves the problems of existing auxiliary welding platforms for electrical equipment installation having difficulty in intercepting and recycling debris generated during construction and having a low level of automation. This method brings the following advantages: (1) The linkage vertical rod can drive the winding belt and the interception and recycling structure to move together when the welder moves, so that the interception and recycling structure can be kept in the position closest to the welding point when the welding pipe is in different positions, which is more conducive to the subsequent recycling of debris. (2) In this solution, the collected debris does not need to be processed separately. Instead, it is automatically collected in a quantitative manner by gravity. At the same time, the adhesive layer can be automatically peeled off, which is convenient for timely replacement when used multiple times, bringing an automated experience. The LED lights illuminate to indicate to the staff that they need to clean and reset the silicone layer and debris collector, achieving an automatic indication effect and providing an automated experience. This effectively solves the problem that debris at the construction site can easily cause environmental pollution. (3) When using it next time, flip the flip-open material door, clean the collected silicone layer and the debris in the debris collector, then slide the debris collector upward to reset it, so that the flip torsion spring drives the flip support plate to reset, and the flip support plate supports the debris collector again. Then, the cleaned collected silicone layer is placed in the silicone placement groove and reset, which is convenient for multiple uses. Attached Figure Description
[0015] Figure 1 A schematic diagram of the overall structure of an auxiliary welding platform for electrical equipment installation provided by the present invention; Figure 2 A perspective view of the positioning component provided by the present invention; Figure 3A side view of the internal structure of the positioning component provided by the present invention; Figure 4 A perspective view of the interception and recovery structure provided by the present invention; Figure 5 This is a front view of the interception and recovery structure provided by the present invention; Figure 6 A cross-sectional view of the interception and recovery structure provided by the present invention; Figure 7 This is a cross-sectional view of a portion of the interception and recovery structure provided by the present invention; Figure 8 A cross-sectional view of the recycling container provided by the present invention; Figure 9 for Figure 7 A magnified view of part A.
[0016] The components include: 1. Interception and recycling structure; 2. Positioning component; 3. Collection guiding mechanism; 4. Moving welding mechanism; 5. Equipment base; 6. Recycling container; 7. Tilting material handling door; 8. Tilting operation trough; 9. Tilting support plate; 10. Tilting torsion spring; 11. Debris collector; 12. Internal auxiliary column; 13. Auxiliary connecting ring; 14. Inclined collection rack; 15. Silicone placement trough; 16. Collection silicone layer; 17. Collection adhesive layer one; 18. Collection connecting cotton thread; 19. Rewinding belt; 20. Coil spring; 21. Rewinding reel; 22. Top ring of guiding mechanism; 23. L-shaped bracket; 24. Bottom auxiliary hook. 25. Collection of Adhesive Layer II; 26. Internal Button Slot; 27. Serial Button; 28. LED Light; 29. Material Picking Chamber; 30. Positioning Chassis; 31. Pipe Rotation Motor; 32. Pipe Rotation Gear; 33. Pipe Rotation Gear Plate; 34. Linear Guide Slot; 35. Linear Adjustment Column; 36. Clamping Rotation Gear Plate; 37. Arc-shaped Guide Slot; 38. Positioning Rod; 39. Positioning Hole; 40. Pipe Positioning Component; 41. Welder; 42. Ball Screw; 43. Welding Guide Rod; 44. Horizontal Welding Motor; 45. Screw Nut; 46. Screw Support; 47. Linkage Vertical Rod; 48. Chassis Connecting Electric Cylinder.
[0017] The accompanying drawings are provided to further illustrate the invention and form part of the specification. They are used together with the embodiments of the invention to explain the invention and do not constitute a limitation thereof. Detailed Implementation
[0018] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention without creative effort are within the scope of protection of the present invention.
[0019] In the description of this invention, it should be understood that the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this invention.
[0020] like Figure 1 As shown, the present invention provides an auxiliary welding platform for electrical equipment installation, including an interception and recycling structure 1 capable of intercepting and collecting debris, a positioning component 2, a collection and guiding mechanism 3, a moving welding mechanism 4, and an equipment base 5. The equipment base 5 is disposed on a plane, the positioning component 2 is disposed on the equipment base 5, the interception and recycling structure 1 is disposed on the equipment base 5, the collection and guiding mechanism 3 is disposed on the interception and recycling structure 1, and the moving welding mechanism 4 is disposed between the equipment bases 5.
[0021] like Figure 1 , Figures 4-6 and Figure 8 As shown, the interception and recycling structure 1 includes a recycling container 6, a tilting and material-retrieving gate 7, a tilting operation trough 8, a tilting support plate 9, a tilting torsion spring 10, a debris collector 11, an internal auxiliary column 12, and an auxiliary connecting ring 13. The recycling container 6 is slidably mounted on the equipment base 5 via its bottom fitting. The tilting and material-retrieving gate 7 is hinged to the side wall of the recycling container 6. The tilting operation trough 8 is arranged in two groups on the inner wall of the recycling container 6. The tilting support plate 9 is rotatably mounted in two groups on the tilting operation trough 8. The tilting torsion spring 10 is mounted on the shaft of the tilting support plate 9. The debris collector 11 is fitted and slidably mounted on the inner wall of the recycling container 6. The internal auxiliary column 12 is fixed to the inside of the debris collector 11. The auxiliary connecting ring 13 is fixed to the top of the internal auxiliary column 12. In the initial state, the tilting support plate 9 can provide support for the debris collector 11 and maintain its position.
[0022] like Figures 4-7 As shown, the top of the recycling container 6 is open, and an inclined collection rack 14 is inclinedly arranged around the top of the recycling container 6. The inclined collection rack 14 is provided with a silicone placement groove 15. The silicone placement groove 15 is hinged to receive the silicone layer 16. The silicone layer 16 can be peeled off when subjected to force. The surface of the silicone layer 16 is provided with a collection adhesion layer 17, so that the debris falling on the collection adhesion layer 17 cannot fly away. There are collection connecting cotton threads 18 on the four sets of silicone layers 16. The four sets of collection connecting cotton threads 18 converge at the bottom. The bottom of the collection connecting cotton threads 18 is provided with a bottom auxiliary hook 24.
[0023] like Figure 1As shown, the collection guide mechanism 3 includes a winding belt 19, a coil spring 20, a winding reel 21, a guide mechanism top ring 22, and an L-shaped bracket 23. The L-shaped bracket 23 is fixed to the outer wall of the recycling container 6 in two groups. The guide mechanism top ring 22 is fixed to the top of the L-shaped bracket 23. The winding reel 21 is fixed to the inner side wall of the equipment base 5. The coil spring 20 is located on the rotating shaft of the winding reel 21. The winding belt 19 is wound and coiled on the rotating shaft of the winding reel 21. There are two groups of winding belts 19, and the ends of the two groups of winding belts 19 are respectively located on both sides of the guide mechanism top ring 22.
[0024] like Figures 1-3 As shown, the positioning assembly 2 includes a positioning base 30, a pipe rotation motor 31, a pipe rotation gear 32, a pipe rotation gear 33, a linear guide groove 34, a linear adjusting column 35, a clamping rotation gear 36, an arc-shaped guide groove 37, a positioning rod 38, a positioning hole 39, and a pipe positioning component 40. The equipment base 5 is equipped with a base connecting electric cylinder 48. One set of positioning bases 30 is located on the output end of the base connecting electric cylinder 48, and the other set of positioning bases 30 is located on the equipment base 5. The body of the pipe rotation motor 31 is located on the positioning base 30. The pipe rotation gear 32 is located on the output shaft of the pipe rotation motor 31. The pipe rotation gear 33 is rotatably mounted on the positioning base 30. The pipe rotation gear 33 and the pipe rotation... The moving gears 32 are meshed together. A linear guide groove 34 is arranged in an array around the pipe rotating gear disk 33. A clamping rotating gear disk 36 is fitted and rotated on the pipe rotating gear disk 33. The clamping rotating gear disk 36 and the pipe rotating gear disk 33 rotate concentrically. An arc-shaped guide groove 37 is arranged in an array around the clamping rotating gear disk 36. One end of the linear adjusting column 35 is fitted and slidably disposed on the arc-shaped guide groove 37, and the other end of the linear adjusting column 35 is fitted and slidably disposed on the linear guide groove 34. A positioning rod 38 is fitted and slidably disposed on the clamping rotating gear disk 36. Positioning holes 39 are arranged in an array around the pipe rotating gear disk 33. The positioning rod 38 can be engaged in any set of positioning holes 39. The pipe positioning component 40 is disposed on the linear adjusting column 35.
[0025] like Figures 7-8 As shown, the debris collector 11 is equipped with a second collection adhesion layer 25, which prevents debris falling on the second collection adhesion layer 25 from flying away. The bottom auxiliary hook 24 and the auxiliary connecting ring 13 cooperate to collect a certain weight of debris in the debris collector 11, causing the flipping torsion spring 10 to be unable to maintain the horizontal state of the flipping support plate 9 and flipping downward. At this time, the debris collector 11 slides down due to gravity, and then the cooperation of the bottom auxiliary hook 24 and the auxiliary connecting ring 13 drives the four sets of collection connecting cotton threads 18 to pull down the four sets of collection silicone layers 16, thereby causing the four sets of collection silicone layers 16 to fall out of the silicone placement groove 15.
[0026] like Figures 7-9As shown, the inner walls of the four sets of silicone placement tanks 15 are provided with internal button slots 26, and the internal button slots 26 are provided with series buttons 27. The equipment base 5 is provided with LED lights 28. The LED lights 28 are electrically connected to the four sets of series buttons 27. The four sets of series buttons 27 are connected in series. When the four sets of collecting silicone layers 16 fall off from the silicone placement tanks 15, the four sets of series buttons 27 will trigger the internal circuit, causing the LED lights 28 to light up, thereby indicating to the staff and reminding them to clean and reset the collecting silicone layers 16 and the debris collector 11, achieving the effect of automatic indication.
[0027] like Figure 1 As shown, the mobile welding mechanism 4 includes a welder 41, a ball screw 42, a welding guide rod 43, a horizontal welding motor 44, a screw nut 45, and a screw support 46. The screw support 46 is fixed to the equipment base 5. The body of the horizontal welding motor 44 is mounted on the screw support 46. The ball screw 42 is rotatably mounted on the screw support 46 and connected to the output shaft of the horizontal welding motor 44. The welding guide rod 43 is mounted on the screw support 46 and the equipment base 5. The screw nut 45 is driven by the welding guide rod 43 and the ball screw 42. The welder 41 is located at the bottom of the screw nut 45. A linkage vertical rod 47 is provided between the screw nut 45 and the top ring 22 of the guide mechanism. When the welder 41 moves, it can drive the winding belt 19 and the interception and recovery structure 1 to move together. This ensures that the interception and recovery structure 1 is in the position closest to the welding point at different positions of the welding pipe, which is more conducive to the recovery of debris.
[0028] like Figure 4 and Figure 6 As shown, the bottom of the recycling container 6 is provided with a material taking chamber 29, and the flip-top material taking door 7 corresponds to the material taking chamber 29.
[0029] In practical use, the equipment is moved to the construction site, the pipe is placed between the four sets of pipe positioning components 40, and the clamping rotating gear 36 is rotated. The arc-shaped guide groove 37 drives the linear adjusting column 35 to slide and move closer along the linear guide groove 34. When the four sets of pipe positioning components 40 clamp the pipe, the positioning rod 38 is slid and inserted into the positioning hole 39, so that the pipe is clamped and positioned by the four sets of pipe positioning components 40. The chassis connecting electric cylinder 48 is started, which can move one section of the pipe until it reaches the distance where welding can be performed. The horizontal welding motor 44 is started, and the rotating ball screw 42 can make the screw nut 45 slide along the welding guide rod 43, thereby driving the welder 41 to move synchronously until the welder 41 moves to the position on the pipe to be welded and then stops. When the pipe rotation motor 31 is started, the pipe rotation gear 32 drives the pipe rotation gear 33 to rotate, which in turn causes the clamping rotation gear 36 to rotate the entire pipe, thereby cooperating with the welder 41 to realize the welding and installation process of the pipe. The linkage vertical rod 47 can drive the winding belt 19 and the interception and recovery structure 1 to move together when the welder 41 moves. The two sets of winding belts 19 can freely extend and retract through the coil spring 20, so that the interception and recovery structure 1 can be in the position closest to the welding point when the welding pipe is in different positions, which is more conducive to the subsequent recovery of debris. During the installation process, a small amount of splashed debris slides along the two sets of inclined and extended winding belts 19 into the collecting silicone layer 16. Initially, no debris accumulates in the debris collector 11. The flip support plate 9 provides support for the debris collector 11 and maintains its position through the flip torsion spring 10. However, once the debris in the debris collector 11 has accumulated to a certain weight, the flip torsion spring 10 can no longer maintain the horizontal state of the flip support plate 9 and flips downward. At this time, the debris collector 11 slides down due to gravity. Then, through the cooperation of the bottom auxiliary hook 24 and the auxiliary connecting ring 13, the four sets of collecting connecting cotton threads 18 pull down the four sets of collecting silicone layers 16, causing the four sets of collecting silicone layers 16 to fall out of the silicone placement groove 15. At this time, the four sets of series buttons 27 return from the pressed state of the collected silicone layers 16 to the popped state. Only then will the four sets of series buttons 27 trigger the internal circuit, causing the LED light 28 to light up, thereby indicating to the staff that they should clean and reset the collecting silicone layers 16 and the debris collector 11. This achieves the effect of automatic indication, provides an automated experience, and effectively solves the problem of environmental pollution caused by debris during the installation of electrical conduits. The first collection adhesive layer 17 prevents debris from flying away, and the second collection adhesive layer 25 inside the debris collector 11 prevents debris from flying away, making it easy to collect debris. When using it next time, flip open the flip-open material gate 7, clean the debris in the collected silicone layer 16 and debris collector 11, then slide the debris collector 11 upwards to reset it, so that the flip-open torsion spring 10 drives the flip-open support plate 9 to reset. The flip-open support plate 9 supports the debris collector 11 again. Then, the cleaned collected silicone layer 16 is placed in the silicone placement groove 15 and reset.
[0030] It should be noted that, in this document, the terms “comprising,” “including,” or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.
[0031] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention.
[0032] The present invention and its embodiments have been described above. This description is not restrictive, and the accompanying drawings are only one embodiment of the present invention; the actual structure is not limited thereto. In conclusion, if those skilled in the art are inspired by this description and design similar structures and embodiments without departing from the spirit of the invention, such designs should fall within the protection scope of the present invention.
Claims
1. An auxiliary welding platform for electrical equipment installation, characterized in that: It includes an interception and recovery structure (1), a positioning component (2), a collection and guiding mechanism (3), a moving welding mechanism (4), and an equipment base (5). The equipment base (5) is located on a plane, the positioning component (2) is located on the equipment base (5), the interception and recovery structure (1) is located on the equipment base (5), the collection and guiding mechanism (3) is located on the interception and recovery structure (1), and the moving welding mechanism (4) is located between the equipment bases (5).
2. The auxiliary welding platform for electrical equipment installation according to claim 1, characterized in that: The interception and recycling structure (1) includes a recycling container (6), a flip-over material-retrieving door (7), a flip-over operation trough (8), a flip-over support plate (9), a flip-over torsion spring (10), a debris collector (11), an internal auxiliary column (12), and an auxiliary connecting ring (13). The recycling container (6) is slidably mounted on the equipment base (5) by its bottom fitting. The flip-over material-retrieving door (7) is hinged to the side wall of the recycling container (6). The flip-over operation trough (8) is arranged in two groups on the inner wall of the recycling container (6). The flip-over support plate (9) is rotatably mounted in two groups on the flip-over operation trough (8). The flip-over torsion spring (10) is mounted on the shaft of the flip-over support plate (9). The debris collector (11) is slidably fitted on the inner wall of the recycling container (6). The internal auxiliary column (12) is fixed to the inside of the debris collector (11). The auxiliary connecting ring (13) is fixed to the top of the internal auxiliary column (12).
3. The auxiliary welding platform for electrical equipment installation according to claim 2, characterized in that: The top of the recycling container (6) is open, and the top of the recycling container (6) is provided with an inclined collection rack (14). The inclined collection rack (14) is provided with a silicone placement groove (15). The silicone placement groove (15) is provided with a collection silicone layer (16). The surface of the collection silicone layer (16) is provided with a collection adhesive layer (17). The four sets of collection silicone layers (16) are provided with collection connecting cotton threads (18). The four sets of collection connecting cotton threads (18) converge at the bottom. The bottom of the collection connecting cotton threads (18) is provided with a bottom auxiliary hook (24).
4. The auxiliary welding platform for electrical equipment installation according to claim 3, characterized in that: The collection guide mechanism (3) includes a winding belt (19), a coil spring (20), a winding reel (21), a guide mechanism top ring (22), and an L-shaped bracket (23). The L-shaped bracket (23) is fixed to the outer wall of the recycling container (6) in two groups. The guide mechanism top ring (22) is fixed to the top of the L-shaped bracket (23). The winding reel (21) is fixed to the inner side wall of the equipment base (5). The coil spring (20) is located on the rotating shaft of the winding reel (21). The winding belt (19) is wound and wound on the rotating shaft of the winding reel (21). There are two groups of winding belts (19), and the ends of the two groups of winding belts (19) are respectively located on both sides of the guide mechanism top ring (22).
5. The auxiliary welding platform for electrical equipment installation according to claim 4, characterized in that: The positioning assembly (2) includes a positioning base (30), a pipe rotation motor (31), a pipe rotation gear (32), a pipe rotation gear disc (33), a linear guide groove (34), a linear adjusting column (35), a clamping rotation gear disc (36), an arc-shaped guide groove (37), a positioning rod (38), a positioning hole (39), and a pipe positioning component (40). A base connecting electric cylinder (48) is provided on the equipment base (5). One set of positioning bases (30) is located on the output end of the base connecting electric cylinder (48), and another set of positioning bases (30) is located on the equipment base (5). The body of the pipe rotation motor (31) is located on the positioning base (30). The pipe rotation gear (32) is located on the output shaft of the pipe rotation motor (31). The pipe rotation gear disc (33) is rotatably mounted on the positioning base (30). The pipe rotation gear disc (33) and the pipe... The rotating gears (32) mesh with each other. An array of linear guide grooves (34) is arranged around the rotating gear disk (33) of the pipeline. A clamping rotating gear disk (36) is fitted and rotated on the rotating gear disk (33) of the pipeline. The clamping rotating gear disk (36) and the rotating gear disk (33) of the pipeline rotate concentrically. An array of arc-shaped guide grooves (37) is arranged around the clamping rotating gear disk (36). One end of the linear adjusting column (35) is fitted and slidably arranged on the arc-shaped guide groove (37). The other end of the linear adjusting column (35) is fitted and slidably arranged on the linear guide groove (34). A positioning rod (38) is fitted and slidably arranged on the clamping rotating gear disk (36). A positioning hole (39) is arranged in an array around the rotating gear disk (33) of the pipeline. The positioning rod (38) can be engaged in any set of positioning holes (39). A pipeline positioning component (40) is arranged on the linear adjusting column (35).
6. The auxiliary welding platform for electrical equipment installation according to claim 5, characterized in that: The debris collector (11) is equipped with a second collection adhesion layer (25), and the bottom auxiliary hook (24) and auxiliary connecting ring (13) work together to collect a certain weight of debris in the debris collector (11), so that the flipping torsion spring (10) can no longer maintain the horizontal state of the flipping support plate (9) and flips downward.
7. The auxiliary welding platform for electrical equipment installation according to claim 6, characterized in that: The inner wall of the four sets of silicone placement slots (15) is provided with an internal button slot (26), and the internal button slot (26) is provided with a series button (27). The equipment base (5) is provided with an LED light (28), and the LED light (28) is electrically connected to the four sets of series buttons (27). The four sets of series buttons (27) are connected in series.
8. The auxiliary welding platform for electrical equipment installation according to claim 7, characterized in that: The mobile welding mechanism (4) includes a welder (41), a ball screw (42), a welding guide rod (43), a horizontal welding motor (44), a screw nut (45), and a screw support (46). The screw support (46) is fixed to the equipment base (5). The body of the horizontal welding motor (44) is located on the screw support (46). The ball screw (42) is rotatably located on the screw support (46). The ball screw (42) is connected to the output shaft of the horizontal welding motor (44). The welding guide rod (43) is located on the screw support (46) and the equipment base (5). The screw nut (45) is driven on the welding guide rod (43) and the ball screw (42). The welder (41) is located at the bottom of the screw nut (45). A linkage vertical rod (47) is provided between the screw nut (45) and the top ring (22) of the guide mechanism.
9. The auxiliary welding platform for electrical equipment installation according to claim 8, characterized in that: The bottom of the recycling container (6) is provided with a material taking chamber (29), and the flip-top material taking door (7) corresponds to the material taking chamber (29).
Citation Information
Patent Citations
Welding tool for manufacturing mechanical and electrical equipment
CN121156589A