Welding tool for communication base station supporting assembly

The welding fixture for communication base station support components addresses the challenge of adapting to different specifications by using a flip-over mechanism and automated control systems, enhancing precision and efficiency in welding operations.

CN120306931AInactive Publication Date: 2025-07-15DEZHOU DUNDUN ELECTRONICS CO LTD
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Patent Information

Application Number
CN202510799072.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-16
Publication Date
2025-07-15
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing communication base station support component welding tooling cannot flexibly adapt to the clamping needs of different specifications, resulting in frequent manual adjustments by operators, which consumes time and is prone to positioning deviations, affecting welding efficiency and accuracy.

Method used

A welding tool for supporting components of communication base stations is designed, using a combination of flip frame, a dual-axis motor, a transmission box and a linear module to achieve accurate movement and positioning of clamps in multiple angles and directions. The workpiece angle is automatically adjusted through hydraulic rods, sliders and gear transmission, and combined with motor drive, the welding path, angle and position are achieved.

Benefits of technology

It realizes flexible clamping of support components of communication base stations of different specifications, reduces the number of manual adjustments, significantly improves welding efficiency, ensures the stability and consistency of welding quality, reduces waste rate, and simplifies operational processes.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a welding tool for a communication base station supporting assembly, and relates to the technical field of welding tools. A welding frame is welded to the front end of the protection box, two baffles are installed on the welding frame through screws, two rail rods are fixed to the welding frame, two sealing plates are arranged on the rail rods in a sliding mode, four round rods are installed in the protection box, a supporting plate is installed on the four round rods, and a first supporting column and a second supporting column are installed on the supporting plate through bolts. A rotatable overturning frame is mounted between the first supporting column and the second supporting column; through cooperation of the overturning frame, the double-shaft motor and the like, accurate moving and positioning of the clamping jaw are achieved, the clamping device is suitable for clamping various workpieces, and the welding efficiency is improved; the workpiece placing plate automatically adjusts the angle to ensure that a workpiece is located at the optimal welding position by means of structures such as a hydraulic rod, third, fourth and fifth motors cooperate with transmission parts, a highly automatic welding system is constructed, the welding path, angle and position are accurately controlled, the welding quality is stabilized, and the rejection rate is reduced.
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Description

Technical Field

[0001] The present invention relates to the technical field of welding tools, and particularly to a welding tool for communication base station support components. Background Art

[0002] With the full popularization of 5G technology and the in-depth research and development of 6G technology, emerging fields such as the Internet of Things, smart cities, and industrial Internet have developed vigorously, putting forward higher requirements for the coverage, transmission speed, and stability of communication networks. Against this background, the construction scale of communication base stations has shown an explosive growth trend. As a key component to ensure the stable operation of base stations, the welding quality of communication base station support components directly affects the safety and service life of base stations. Therefore, a welding tool for communication base station support components is designed.

[0003] The patent with the application number CN202221707511.3 provides a welding tool for communication base station support components, which relates to the technical field of communication base station construction, and includes: a base; a support platform, the support platform is arranged on the base, the support platform includes a movable platform and a fixed platform that are oppositely arranged and have the same horizontal height, the movable platform can make a reciprocating linear motion on the base relative to the fixed platform, the movable platform is used for positioning and fixing one end of the workpiece, and the fixed platform is used for positioning and fixing the other end of the workpiece. The welding tool for communication base station support components of the present application can be applied to the welding of support components of different specifications. Compared with the existing welding tools for communication base station support components, it not only improves the welding efficiency, but also has high welding accuracy. However, it cannot flexibly adapt to the clamping requirements of support components of different specifications of communication base stations. Operators often need to frequently manually adjust the position of the jaws, which not only consumes a lot of time, but also easily causes positioning deviation, resulting in the inability to weld the workpiece from an ideal angle, seriously restricting the improvement of welding efficiency. Summary of the Invention

[0004] The present invention relates to a welding tool for communication base station support components to solve the technical problems raised in the above background art.

[0005] In the first aspect of the present invention, a welding tool for a communication base station support component is provided, specifically including: a protective box; a welding frame is welded to the front end of the protective box, two baffles are installed on the welding frame by screws, and two rail rods are fixed on the welding frame. Two sealing plates slide on the rail rods. Four round rods are installed inside the protective box, a support plate is installed on the four round rods, a first support column and a second support column are installed on the support plate by bolts, a rotatable turnover frame is installed between the first support column and the second support column, a first motor is installed on the second support column by bolts, the output shaft of the first motor is connected to the rotating shaft of the turnover frame, a motor frame is installed on the turnover frame by bolts, a double-shaft motor is installed on the motor frame by bolts, and a transmission box is installed on the turnover frame by bolts. Three output shafts are provided on the transmission box, the left side of the output shaft of the double-shaft motor is connected to the input shaft of the transmission box, four housing seats are installed on the turnover frame by bolts, a gear is installed on the output shaft of the transmission box, the gear is located inside the housing seat, and a rotating rod is installed inside the housing seat. A gear is fixed on the rotating rod, four linear modules are installed on the turnover frame by bolts, and a universal connecting rod is connected between the input shaft of the linear module and the rotating rod. A clamping jaw is movable on the linear module.

[0006] In at least some embodiments, four support feet are installed at the lower end of the protective box, a controller is hinged to the right side of the protective box, and handles are installed on both sealing plates. Two threaded holes are provided on the support plate, and two lead screws are installed inside the protective box through bearings. The two lead screws are respectively in threaded cooperation with the two threaded holes on the support plate.

[0007] In at least some embodiments, pulley wheels are installed at the upper ends of the two lead screws, a top frame is installed at the upper end of the protective box by bolts, a gearbox is installed on the top frame by bolts, a second motor is installed on the gearbox by bolts, a pulley wheel is installed on the output shaft of the second motor, and connecting belts are connected between the pulley wheels at the upper ends of the two lead screws and the pulley wheel on the output shaft of the second motor.

[0008] In at least some embodiments, a frame is installed at the upper end of the protective box by bolts, a movable seat is movable inside the frame, a threaded hole is provided on the movable seat, an adjusting bolt is installed on the frame, the adjusting bolt is threadedly screwed into the threaded hole on the movable seat, and a tensioning wheel is installed on the movable seat. The tensioning wheel is in contact with the connecting belt, and a cover shell is installed at the upper end of the protective box by bolts.

[0009] In at least some embodiments, a top shell is installed at the upper end of the housing seat by bolts, and the right end of the output shaft of the double-shaft motor is connected to the input shaft of the linear module near the right side of the turnover frame.

[0010] In at least some embodiments, a bottom plate is fixed to the upper end of the turnover frame. An installation cylinder is installed on the bottom plate through bolts. A partition plate is installed at the upper end of the installation cylinder through bolts. A rotating rod is installed inside the installation cylinder. A gear is fixed on the rotating rod. A first slider and a second slider slide on the partition plate. Tooth plates are fixed on both the first slider and the second slider. Both tooth plates are engaged with the gear on the rotating rod.

[0011] In at least some embodiments, a cylinder seat is installed on the partition plate through bolts. A hydraulic rod is installed on the cylinder seat. The piston rod of the hydraulic rod is connected to the first slider. Two limit seats are installed on the partition plate through bolts. Limit screws are screwed onto both limit seats. A workpiece placing plate is fixed to the upper end of the rotating rod.

[0012] In at least some embodiments, two first fixing seats and two second fixing seats are fixed to the upper end inside the protection box. Two guide rails are fixed between the first fixing seat and the second fixing seat. A moving seat slides on the guide rails. A third motor is installed at the lower end of the first fixing seat through bolts. A base is fixed to the lower end of the second fixing seat. Belt pulleys are installed on the output shafts of both the base and the third motor. A transmission belt is connected between the two belt pulleys. The transmission belt is fixedly connected to the lower end of the moving seat. A cross plate is installed below the two moving seats.

[0013] In at least some embodiments, side plates are installed at both the left and right ends of the cross plate. The upper ends of the two side plates are respectively fixed to the two moving seats. A driving rod is installed between the two side plates through bearings. A gear box is installed on the cross plate through bolts. The output shaft of the gear box is connected to the driving rod. A fourth motor is installed on the gear box through bolts. Belt pulleys are fixed to both the left and right ends of the driving rod. A turnover plate is installed at the lower ends of the two side plates. A belt pulley is fixed to the rotating shaft of the turnover plate. A belt is connected between the belt pulley on the rotating shaft of the turnover plate and the belt pulley on the driving rod.

[0014] In at least some embodiments, a rail plate is installed on the turnover plate through bolts. A sliding seat moves on the rail plate. A welding torch is fixed to the sliding seat. A threaded rod is installed on the rail plate through bearings. The threaded rod is in threaded cooperation with the sliding seat. An end seat is installed at the right end of the rail plate through bolts. A fifth motor is installed on the end seat through bolts. The output shaft of the fifth motor is connected to the right end of the threaded rod.

[0015] The present invention provides a welding tool for a communication base station support assembly, which has the following beneficial effects: In the present invention, the design of the flipping frame in cooperation with the dual-axis motor, the transmission box and the linear module can achieve precise movement and positioning of the clamping jaws at multiple angles and in multiple directions, can flexibly adapt to the clamping requirements of communication base station support components of different specifications, is convenient for welding workpieces from multiple angles, reduces the number of manual adjustments, significantly improves the welding efficiency. At the same time, the workpiece placing plate can automatically adjust the placing angle through the structure of the hydraulic rod, the slider and the gear drive, ensuring that the workpiece is in the best welding position.

[0016] In addition, in the present invention, the third motor drives the moving seat to slide along the guide rail through the transmission belt, and in cooperation with the fourth motor, controls the flipping of the flipping plate through the gear box, the driving rod and the belt drive. Then, combined with the fifth motor driving the threaded rod to make the welding torch move precisely along the rail plate, a highly automated welding system is formed. Each component operates in coordination, and can achieve precise control of the welding path, angle and position, ensuring the stability and consistency of the welding quality and reducing the rejection rate.

[0017] In addition, in the present invention, the protective box not only provides protection for the internal precision components, preventing dust and sundries from entering and affecting the operation of the equipment, but also the design of the welding frame, the baffle, the rail rod and the sealing plate at its front end not only properly isolates the welding area, but also facilitates the operator to load and unload workpieces and observe the welding situation. The controller hinged on the right side integrates the control functions of each motor, facilitating the operator to centrally control, simplifying the operation process and improving the usability. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings of the embodiments will be briefly introduced below.

[0019] The drawings in the following description only relate to some embodiments of the present invention and do not limit the present invention.

[0020] In the drawings: Figure 1 A schematic diagram showing the overall structure of the present invention is shown.

[0021] Figure 2 A schematic diagram showing the structure of the welding frame part of the present invention is shown.

[0022] Figure 3 A schematic diagram showing the internal structure of the protective box of the present invention is shown.

[0023] Figure 4 Shows the Figure 3 Enlarged structural schematic diagram of part A in the present invention.

[0024] Figure 5 A schematic diagram showing the structure of the flipping frame part of the present invention is shown.

[0025] Figure 6 Shows theFigure 5 Schematic enlarged structure diagram of part B

[0026] Figure 7 Shows the present invention Figure 5 Schematic enlarged structure diagram of part C

[0027] Figure 8 Schematic structure diagram showing the first fixing seat and the second fixing seat parts of the present invention

[0028] Figure 9 Schematic structure diagram showing the cross - plate part of the present invention

[0029] Figure 10 Shows the present invention Figure 9 Schematic enlarged structure diagram of part D

[0030] List of reference numerals 1. Protection box; 11. Support feet; 12. Welding frame; 121. Baffle; 122. Rail rod; 123. Sealing plate; 13. Controller; 14. Round rod; 141. Lead screw; 142. Top frame; 1421. Gearbox; 1422. Second motor; 143. Connecting belt; 144. Frame; 1441. Adjusting bolt; 145. Movable seat; 1451. Tension pulley; 15. Support plate; 151. First support pillar; 152. Second support pillar; 1521. First motor; 153. Flipping frame; 1531. Motor frame; 1532. Biaxial motor; 1533. Transmission box; 1534. Housing seat; 1535. Rotating rod; 1536. Top shell; 154. Bottom plate; 1541. Installation cylinder; 1542. Partition board; 1543. Rotating rod; 1544. First slider; 1545. Second slider; 1546. Cylinder seat; 1547. Hydraulic rod; 1548. Limiting seat; 1549. Limiting screw; 155. Part - placing plate; 156. Linear module; 1561. Claw; 16. Cover shell; 2. First fixing seat; 21. Second fixing seat; 211. Third motor; 212. Base; 213. Transmission belt; 22. Guide rail; 23. Moving seat; 24. Cross - plate; 241. Side plate; 242. Driving rod; 243. Gearbox; 2431. Fourth motor; 244. Flipping plate; 245. Rail plate; 2451. Sliding seat; 2452. End seat; 2453. Fifth motor; 2454. Threaded rod; 2455. Welding torch Detailed implementation manners

[0031] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the technical solutions of the embodiments 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 some, but not all, of the embodiments of the present invention. All other embodiments obtained by those of ordinary skill in the art based on the described embodiments of the present invention without creative efforts shall fall within the scope of protection of the present invention.

[0032] Please refer to Figures 1 to 10 : Embodiment 1: The present invention provides a welding tooling for a communication base station support component, comprising: a protective box 1; a welding frame 12 is welded to the front end of the protective box 1, two baffle plates 121 are installed on the welding frame 12 by screws, and two rail rods 122 are fixed on the welding frame 12. Two sealing plates 123 slide on the rail rods 122. Four round rods 14 are installed inside the protective box 1, a support plate 15 is installed on the four round rods 14, a first support column 151 and a second support column 152 are installed on the support plate 15 by bolts, a rotatable turning frame 153 is installed between the first support column 151 and the second support column 152, a first motor 1521 is installed on the second support column 152 by bolts, and the output shaft of the first motor 1521 is connected to the rotating shaft of the turning frame 153. A motor frame 1531 is installed on the turning frame 153 by bolts, a dual-axis motor 1532 is installed on the motor frame 1531 by bolts, and a transmission box 1533 is installed on the turning frame 153 by bolts. The transmission box 1533 is provided with three output shafts, the left side of the output shaft of the dual-axis motor 1532 is connected to the input shaft of the transmission box 1533. Four housing seats 1534 are installed on the turning frame 153 by bolts, a gear is installed on the output shaft of the transmission box 1533, the gear is located inside the housing seat 1534, and a rotating rod 1535 is installed inside the housing seat 1534. A gear is fixed on the rotating rod 1535. Four linear modules 156 are installed on the turning frame 153 by bolts, and the input shaft of the linear module 156 is connected to the rotating rod 1535 through a universal connecting rod. A clamping jaw 1561 moves on the linear module 156. A top shell 1536 is installed on the upper end of the housing seat 1534 by bolts, and the right end of the output shaft of the dual-axis motor 1532 is connected to the input shaft of the linear module 156 close to the right side of the turning frame 153.

[0033] In the present invention, four feet 11 are installed at the lower end of the protective box 1. A controller 13 is hinged to the right side of the protective box 1, and handles are installed on both sealing plates 123. Two threaded holes are provided on the support plate 15. Two lead screws 141 are installed inside the protective box 1 through bearings. The two lead screws 141 are respectively in threaded cooperation with the two threaded holes on the support plate 15. Pulley wheels are installed at the upper ends of the two lead screws 141. A top frame 142 is installed at the upper end of the protective box 1 through bolts. A gearbox 1421 is installed on the top frame 142 through bolts. A second motor 1422 is installed on the gearbox 1421 through bolts. A pulley wheel is installed on the output shaft of the second motor 1422. Connecting belts 143 are connected between the pulley wheels at the upper ends of the two lead screws 141 and the pulley wheel on the output shaft of the second motor 1422. A frame 144 is installed at the upper end of the protective box 1 through bolts. A movable seat 145 is movable inside the frame 144. A threaded hole is provided on the movable seat 145. An adjusting bolt 1441 is installed on the frame 144. The adjusting bolt 1441 is screwed into the threaded hole on the movable seat 145. A tension pulley 1451 is installed on the movable seat 145. The tension pulley 1451 contacts the connecting belt 143. A cover shell 16 is installed at the upper end of the protective box 1 through bolts. Its functions are as follows: When the output shaft of the second motor 1422 rotates, the pulley wheel installed on its output shaft rotates accordingly. Through the connecting belt 143, the pulley wheels at the upper ends of the two lead screws 141 are driven to rotate, thereby causing the lead screws 141 to rotate. Since the lead screws 141 are in threaded cooperation with the threaded holes on the support plate 15, the rotation of the lead screws 141 can cause the support plate 15 to move up or down along the lead screws 141, so as to adjust the height of the support plate 15 to meet the welding operation requirements at different heights. The tension pulley 1451 is used to tension the connecting belt 143.

[0034] In the present invention, a bottom plate 154 is fixed to the upper end of the turnover frame 153. An installation cylinder 1541 is installed on the bottom plate 154 by bolts. A partition plate 1542 is installed at the upper end of the installation cylinder 1541 by bolts. A rotating rod 1543 is installed inside the installation cylinder 1541. A gear is fixed on the rotating rod 1543. A first slider 1544 and a second slider 1545 are slidably arranged on the partition plate 1542. Rack plates are fixed on both the first slider 1544 and the second slider 1545. Both rack plates are engaged with the gear on the rotating rod 1543. A cylinder seat 1546 is installed on the partition plate 1542 by bolts. A hydraulic rod 1547 is installed on the cylinder seat 1546. The piston rod of the hydraulic rod 1547 is connected to the first slider 1544. Two limit seats 1548 are installed on the partition plate 1542 by bolts. Limit screws 1549 are screwed onto both limit seats 1548. A workpiece placing plate 155 is fixed to the upper end of the rotating rod 1543. Its functions are as follows: The piston rod of the hydraulic rod 1547 is connected to the first slider 1544. Through the telescopic movement of the hydraulic rod 1547, the first slider 1544 can be pushed to slide, thereby driving the second slider 1545 to move synchronously, realizing the rotation of the rotating rod 1543, automatically adjusting the placing angle, and ensuring that the workpiece is in the best welding position. The two limit seats 1548 are installed on the partition plate 1542. The screwed limit screws 1549 can limit the sliding range of the second slider 1545 by adjusting their extended lengths, preventing the second slider 1545 from excessively sliding, which may cause structural damage or affect the angle adjustment accuracy of the workpiece, playing a role in protection and precise positioning.

[0035] Embodiment 2: On the basis of Embodiment 1, two first fixing seats 2 and two second fixing seats 21 are fixed to the upper end inside the protection box 1. Two guide rails 22 are fixed between the first fixing seat 2 and the second fixing seat 21. A moving seat 23 is slidably arranged on the guide rails 22. A third motor 211 is installed at the lower end of the first fixing seat 2 by bolts. A base 212 is fixed to the lower end of the second fixing seat 21. Belt pulleys are installed on the output shafts of both the base 212 and the third motor 211. A transmission belt 213 is connected between the two belt pulleys. The transmission belt 213 is fixedly connected to the lower end of the moving seat 23. A cross plate 24 is installed below the two moving seats 23. Its functions are as follows: When the third motor 211 operates, the belt pulley on its output shaft rotates accordingly. The belt pulley on the base 212 is driven to rotate through the transmission belt 213. Since the transmission belt 213 is fixedly connected to the lower end of the moving seat 23, the moving seat 23 will slide linearly along the guide rails 22 under the drive of the transmission belt 213.

[0036] Embodiment 3. On the basis of Embodiment 1 and Embodiment 2, side plates 241 are installed at both the left and right ends of the cross plate 24. The upper ends of the two side plates 241 are respectively fixed on the two moving seats 23. A driving rod 242 is installed between the two side plates 241 through bearings. And a gear box 243 is installed on the cross plate 24 through bolts. The output shaft of the gear box 243 is connected to the driving rod 242. A fourth motor 2431 is installed on the gear box 243 through bolts. Pulley wheels are fixed at both the left and right ends of the driving rod 242. A turning plate 244 is installed at the lower ends of the two side plates 241. A pulley wheel is fixed on the rotating shaft of the turning plate 244. A belt is connected between the pulley wheel on the rotating shaft of the turning plate 244 and the pulley wheels on the driving rod 242. A track plate 245 is installed on the turning plate 244 through bolts. A sliding seat 2451 is movable on the track plate 245. A welding torch 2455 is fixed on the sliding seat 2451. And a threaded rod 2454 is installed on the track plate 245 through bearings. The threaded rod 2454 is in threaded cooperation with the sliding seat 2451. A end seat 2452 is installed at the right end of the track plate 245 through bolts. A fifth motor 2453 is installed on the end seat 2452 through bolts. The output shaft of the fifth motor 2453 is connected to the right end of the threaded rod 2454. Its functions are as follows: The fourth motor 2431 drives the driving rod 242 through the gear box 243, and drives the turning plate 244 to rotate around the axis through the belt, realizing the angle adjustment of the welding torch 2455 in the vertical plane. The fifth motor 2453 drives the threaded rod 2454 to rotate, making the sliding seat 2451 move linearly on the track plate 245 to complete the fine adjustment of the position of the welding torch 2455.

[0037] Working principle of the present invention: The piston rod of the hydraulic rod 1547 extends and retracts, pushing the first slider 1544 to slide on the partition plate 1542. Since the toothed plates on the first slider 1544 and the second slider 1545 are engaged with the gears on the rotating rod 1543, the sliding of the first slider 1544 drives the second slider 1545 to move synchronously, thereby realizing the rotation of the rotating rod 1543, and automatically adjusting the placement angle of the workpiece on the workpiece placing plate 155. The dual-axis motor 1532 is started, and the left side of its output shaft is connected to the input shaft of the transmission box 1533. The transmission box 1533 transmits power to three output shafts, and the gears on the output shafts drive the gears on the rotating rod 1535 in the housing seat 1534, causing the rotating rod 1535 to rotate. The rotating rod 1535 is connected to the input shaft of the linear module 156 through a universal connecting rod, driving the linear module 156 to work, and further enabling the jaws 1561 to move, realizing the clamping and releasing operations of the workpiece. The third motor 211 is operated, and the pulley on its output shaft rotates, driving the pulley on the base 212 through the transmission belt 213. Since the transmission belt 213 is fixedly connected to the lower end of the moving seat 23, the moving seat 23 slides linearly along the guide rail 22, driving the cross plate 24 to move, realizing the preliminary position adjustment of the welding torch 2455 in the horizontal direction. The fourth motor 2431 is started, and the driving rod 242 is driven through the gear box 243, and the turning plate 244 is rotated around the axis by the belt, realizing the angle adjustment of the welding torch 2455 in the vertical plane. The fifth motor 2453 is started, driving the threaded rod 2454 to rotate, causing the sliding seat 2451 to move linearly on the rail plate 245, completing the fine position adjustment of the welding torch 2455. The second motor 1422 is started, and the rotation of its output shaft drives the pulley to rotate, and the pulleys at the upper ends of the two lead screws 141 are rotated through the connecting belt 143, further driving the lead screws 141 to rotate. Since the lead screws 141 are in threaded engagement with the threaded holes on the support plate 15, the rotation of the lead screws 141 causes the support plate 15 to rise or fall along the lead screws 141, realizing the adjustment of the height of the support plate 15 to adapt to the welding operation requirements of different heights.

[0038] In this article, the following points need to be noted: 1. The attached drawings of the embodiments of the present invention only relate to the structures involved in the embodiments of the present invention, and other structures can refer to the general design.

[0039] 2. Without conflict, the embodiments of the present invention and the features in the embodiments can be combined with each other to obtain new embodiments.

[0040] The above is only the specific implementation manner 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 can easily think of changes or substitutions, which should all be covered within the protection scope of the present invention.

Claims

1. A welding tool for a communication base station support component, comprising: Protective box; characterized in that a welding frame is welded at the front end of the protective box, two baffle plates are installed on the welding frame, and two rail rods are fixed on the welding frame. Two sealing plates slide on the rail rods. Four round rods are installed inside the protective box, a support plate is installed on the four round rods, a first support column and a second support column are installed on the support plate, a rotatable turning frame is installed between the first support column and the second support column, a first motor is installed on the second support column, the output shaft of the first motor is connected to the rotating shaft of the turning frame, a motor frame is installed on the turning frame, a dual-axis motor is installed on the motor frame, and a transmission box is installed on the turning frame. Three output shafts are provided on the transmission box, the left side of the output shaft of the dual-axis motor is connected to the input shaft of the transmission box, four housing seats are installed on the turning frame, gears are installed on the output shafts of the transmission box, the gears are located inside the housing seats, and rotating rods are installed inside the housing seats. Gears are fixed on the rotating rods. Four linear modules are installed on the turning frame, and the input shafts of the linear modules are connected to the rotating rods through universal connecting rods. Claws are movable on the linear modules.

2. The welding tooling for a communication base station support component according to claim 1, characterized in that, Four feet are installed at the lower end of the protective box, a controller is hinged on the right side of the protective box, and handles are installed on both sealing plates. Two threaded holes are provided on the support plate, and two lead screws are installed inside the protective box. The two lead screws are respectively in threaded cooperation with the two threaded holes on the support plate.

3. The welding tool for a communication base station support component according to claim 2, characterized in that, Pulley wheels are installed at the upper ends of the two lead screws. A top frame is installed at the upper end of the protective box. A gearbox is installed on the top frame. A second motor is installed on the gearbox. A pulley wheel is installed on the output shaft of the second motor. Connecting belts are connected between the pulley wheels at the upper ends of the two lead screws and the pulley wheel on the output shaft of the second motor.

4. A welding tool for a communication base station support component according to claim 3, characterized in that, A frame is installed at the upper end of the protective box. A movable seat is movable inside the frame. A threaded hole is provided on the movable seat. An adjusting bolt is installed on the frame. The adjusting bolt is screwed into the threaded hole on the movable seat. A tension pulley is installed on the movable seat. The tension pulley is in contact with the connecting belt. A cover shell is installed at the upper end of the protective box.

5. A welding tool for a communication base station support component according to claim 1, characterized in that, A top shell is installed at the upper end of the housing seat through bolts, and the right end of the output shaft of the dual-axis motor is connected to the input shaft of the linear module near the right side of the turning frame.

6. The welding tooling for a communication base station support component according to claim 5, characterized in that, A bottom plate is fixed at the upper end of the turning frame. An installation cylinder is installed on the bottom plate. A partition plate is installed at the upper end of the installation cylinder. A rotating rod is installed inside the installation cylinder. A gear is fixed on the rotating rod. A first slider and a second slider slide on the partition plate. Tooth plates are fixed on both the first slider and the second slider. Both tooth plates are engaged with the gear on the rotating rod.

7. A welding tool for a communication base station support component according to claim 6, characterized in that, A cylinder seat is installed on the partition plate. A hydraulic rod is installed on the cylinder seat. The piston rod of the hydraulic rod is connected to the first slider. Two limiting seats are installed on the partition plate. Limiting screws are screwed into both limiting seats. A workpiece placing plate is fixed at the upper end of the rotating rod.

8. A welding tool for a communication base station support component according to claim 4, characterized in that At the upper end inside the protective box, two first fixing seats and two second fixing seats are fixed. Between the first fixing seat and the second fixing seat, two guide rails are fixed. A moving seat slides on the guide rails. A third motor is installed at the lower end of the first fixing seat. A base is fixed at the lower end of the second fixing seat. Belt pulleys are installed on the output shafts of the base and the third motor respectively. A transmission belt is connected between the two belt pulleys. The transmission belt is fixedly connected to the lower end of the moving seat. A cross plate is installed below the two moving seats.

9. A welding tool for a communication base station support component according to claim 8, characterized in that, Side plates are installed at the left and right ends of the cross plate respectively. A driving rod is installed between the two side plates. And a gear box is installed on the cross plate. The output shaft of the gear box is connected to the driving rod. A fourth motor is installed on the gear box. Belt pulleys are fixed at the left and right ends of the driving rod respectively. Flipping plates are installed at the lower ends of the two side plates. A belt pulley is fixed on the rotating shaft of the flipping plate. A belt is connected between the belt pulley on the rotating shaft of the flipping plate and the belt pulley on the driving rod.

10. A welding tool for a communication base station support component according to claim 6, characterized in that, A rail plate is installed on the flipping plate. A sliding seat moves on the rail plate. A welding torch is fixed on the sliding seat. And a threaded rod is installed on the rail plate. The threaded rod is in threaded cooperation with the sliding seat. An end seat is installed at the right end of the rail plate. A fifth motor is installed on the end seat. The output shaft of the fifth motor is connected to the right end of the threaded rod.

Citation Information

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