An adjustable electromechanical welding support
By designing the lifting components and adjustment structure of the adjustable electromechanical welding bracket, the height and angle of the bracket can be flexibly adjusted, solving the problem of poor adaptability of existing welding brackets and improving welding efficiency and quality.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 天津市博川建设工程有限公司
- Filing Date
- 2025-06-17
- Publication Date
- 2026-06-02
AI Technical Summary
Existing welding supports cannot adjust the support height and angle as needed, making it difficult to meet the precise requirements for welding position and angle in different work scenarios. This results in poor adaptability and limits the flexibility and efficiency of welding operations.
An adjustable electromechanical welding support was designed, comprising a lifting component and an adjustment structure. The height of the support can be adjusted by rotating a handwheel, and the welding angle can be quickly adjusted by the adjustment structure to meet diverse welding operation needs.
This improved the adaptability of the support frame to different electromechanical equipment and welding processes, reduced welding rework and quality defects caused by improper adjustment, and improved welding efficiency and quality.
Smart Images

Figure CN224309964U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of auxiliary support technology for electromechanical equipment, and more specifically, it relates to an adjustable electromechanical welding support. Background Technology
[0002] In the core area of electromechanical equipment manufacturing and maintenance, welding technology is of paramount importance. Its operational quality and efficiency directly determine the performance of equipment and profoundly influence the length of the production cycle. Welding supports, as core equipment ensuring welding accuracy and stability, play a crucial role in supporting workpieces, calibrating positions, and resisting vibrations during welding operations. As the industry's demands for product precision and production efficiency continue to rise, technological innovation in welding supports has become a key driving force for the high-quality development of the electromechanical manufacturing industry.
[0003] Based on the above, the height, angle and other parameters of most existing welding brackets are determined during manufacturing, which makes it impossible to adjust the support height and angle of the brackets as needed. This makes it difficult to meet the precise requirements of welding position and angle in different working scenarios, resulting in poor adaptability in practical applications and greatly limiting the flexibility and efficiency of welding operations. Utility Model Content
[0004] To address the aforementioned technical problems, this disclosure relates to an adjustable electromechanical welding support, which solves the problem that existing welding supports cannot adjust their support height and angle as needed, making it difficult to meet the precise requirements for welding position and viewing angle in different work scenarios. By setting up a lifting component and adjustment structure, the height of the support can be easily adjusted by turning a handwheel, making the operation simple and quick without the need for other tools. At the same time, the positioning platform can be angled, allowing for quick adjustment to various required welding angles, greatly improving the adaptability of the support to different electromechanical equipment and welding processes, and meeting diverse welding operation needs.
[0005] This utility model discloses an adjustable electromechanical welding bracket, achieved through the following specific technical means:
[0006] In a first aspect, this disclosure provides an adjustable electromechanical welding bracket, specifically comprising: a fixed base, a lifting assembly, and an adjustment structure;
[0007] The fixed base has anchor bolt holes on all four sides, and a lifting assembly is provided on the top of the fixed base. The lifting assembly includes the following components:
[0008] Fixed support cylinder: It is fixedly connected to the top of the fixed base. The fixed support cylinder has a movable cavity inside and a through groove on the side. The top of the fixed support cylinder is fixedly connected to a limiting plate.
[0009] Lead screw: Located inside the fixed support cylinder, the top of the lead screw passes through the limiting top plate and is fixedly connected to the handwheel;
[0010] Moving belt ring: Located on the outside of the lead screw, the moving belt ring has a first screw hole in the middle, and an extension protrusion is fixedly connected to one side of the moving belt ring;
[0011] One end of the extension protrusion is provided with an adjustment structure, which includes a connecting vertical plate, an outer arc plate, a hinge frame, a rotating hinge rod, and a shaft pin. One end of the extension protrusion is fixedly connected to the connecting vertical plate, both ends of the connecting vertical plate are fixedly connected to the outer arc plate, and the middle of the connecting vertical plate is fixedly connected to the hinge frame. The hinge frame is hinged to the rotating hinge rod through the shaft pin.
[0012] In at least some embodiments, one end of the shaft pin is fixedly connected to a gear, and both sides of the rotating hinge are fixedly connected to limit guide posts, which are movably installed between the outer arc plate and the hinge frame.
[0013] In at least some embodiments, a fixed carrier plate is fixedly connected to one side of the extension protrusion, a guide hole is provided on the fixed carrier plate, a connecting column is fixedly connected to the rear side of the fixed carrier plate, a spring is fitted on the outer side of the connecting column, and a limit protrusion is fixedly connected to the other end of the connecting column.
[0014] In at least some embodiments, a locking rack is provided on one side of the gear, and an extension arc frame is fixedly connected to both ends of the locking rack. A connecting rod is fixedly connected to the rear side of the extension arc frame. The connecting rod passes through a guide hole and is fixedly connected to the rear plate on the rear side. A compression ring is fixedly connected between the rear plates and is slidably installed on the outside of the connecting support.
[0015] In at least some embodiments, the end of the rotating hinge is provided with a positioning structure, the positioning structure including a connecting recess, a guide groove and a second screw hole. The end of the rotating hinge is fixedly connected to the connecting recess, a guide groove is provided on one side of the connecting recess, a second screw hole is provided on the top of the connecting recess, a screw is engaged and installed inside the second screw hole, and a throttle is fixedly connected to one end of the screw.
[0016] In at least some embodiments, a positioning plate is provided between the connecting recesses, a guide protrusion is fixedly connected to one side of the positioning plate, a connecting protrusion is fixedly connected to the top of the positioning plate, and the other end of the screw is rotatably installed in the connecting protrusion.
[0017] This utility model provides an adjustable electromechanical welding bracket, which has the following advantages:
[0018] 1. By setting up lifting components and adjustment structures, the height can be easily adjusted by turning the handwheel. The operation is simple and quick, without the need for other tools. At the same time, the positioning platform can be angled, which can be quickly adjusted to various required welding angles. This greatly improves the adaptability of the bracket to different electromechanical equipment and welding processes, and meets the diverse welding operation needs.
[0019] 2. The above-mentioned structure enables operators to quickly adjust the electromechanical components to the optimal welding position and angle through convenient adjustment functions, reducing welding rework and quality defects caused by improper bracket adjustment, and improving welding efficiency and welding quality. Attached Figure Description
[0020] Figure 1 This is a schematic diagram of the structure of this utility model;
[0021] Figure 2 This is a schematic diagram of the lifting component structure of this utility model;
[0022] Figure 3 This is a schematic diagram of the adjustment structure of this utility model;
[0023] Figure 4 This is a schematic diagram of the structural components of the adjustment structure of this utility model;
[0024] Figure 5 This is a schematic diagram of the positioning structure of this utility model;
[0025] Figure 6 This is a schematic diagram of the positioning plate structure in the positioning structure of this utility model.
[0026] In the diagram, the correspondence between component names and drawing numbers is as follows:
[0027] 1. Fixed base; 101. Anchor bolt hole; 2. Lifting assembly; 201. Fixed support cylinder; 2011. Moving cavity; 2012. Limiting top plate; 2013. Through slot; 202. Lead screw; 2021. Handwheel; 203. Moving belt ring; 2031. First bolt hole; 2032. Extension protrusion; 3. Adjustment structure; 301. Connecting vertical plate; 3011. Outer arc plate; 3012. Hinge frame; 302. Rotating hinge; 3021. Shaft pin; 3022. Gear; 3023. Limiting pin. 303. Guide post; 303. Fixed carrier plate; 3031. Guide hole; 3032. Connecting support column; 3033. Limiting protrusion; 304. Spring; 305. Locking rack; 3051. Extension arc frame; 3052. Connecting rod; 3053. Rear plate; 3054. Extrusion ring; 4. Positioning structure; 401. Connecting recess; 4011. Guide groove; 4012. Second screw hole; 402. Screw; 4021. Thruster; 403. Positioning plate; 4031. Guide protrusion; 4032. Connecting protrusion ring. Detailed Implementation
[0028] The embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples. The following examples are for illustrative purposes only and should not be construed as limiting the scope of this utility model.
[0029] Example 1: As shown in the attached document Figure 1 To be continued Figure 6 As shown:
[0030] This utility model provides an adjustable electromechanical welding bracket, including: a fixed base 1, a lifting component 2, and an adjustment structure 3;
[0031] The fixed base 1 has anchor bolt holes 101 on its four sides, and the top of the fixed base 1 is provided with a lifting assembly 2, which includes the following components:
[0032] Fixed support cylinder 201: It is fixedly connected to the top of the fixed base 1. The fixed support cylinder 201 has a movable cavity 2011 inside, a through groove 2013 on the side of the fixed support cylinder 201, and a limiting top plate 2012 is fixedly connected to the top of the fixed support cylinder 201.
[0033] Lead screw 202: Located inside the fixed support cylinder 201, the top of the lead screw 202 passes through the limiting top plate 2012 and is fixedly connected to the handwheel 2021;
[0034] Movable belt ring 203: Located on the outside of the lead screw 202, the movable belt ring 203 has a first screw hole 2031 in the middle, and an extension protrusion 2032 is fixedly connected to one side of the movable belt ring 203.
[0035] An adjustment structure 3 is provided at one end of the extension protrusion 2032. The adjustment structure 3 includes a connecting vertical plate 301, an outer arc plate 3011, a hinge frame 3012, a rotating hinge rod 302, and a shaft pin 3021. The connecting vertical plate 301 is fixedly connected to one end of the extension protrusion 2032. The outer arc plate 301 is fixedly connected to both ends of the connecting vertical plate 301. The hinge frame 3012 is fixedly connected to the middle of the connecting vertical plate 301. The hinge frame 3012 is hinged to the rotating hinge rod 302 through the shaft pin 3021.
[0036] One end of the shaft pin 3021 is fixedly connected to a gear 3022, and the two sides of the rotating hinge rod 302 are fixedly connected to limit guide posts 3023. The limit guide posts 3023 are movably installed between the outer arc plate 3011 and the hinge frame 3012.
[0037] A fixed carrier plate 303 is fixedly connected to one side of the extension protrusion 2032. A guide hole 3031 is provided on the fixed carrier plate 303. A connecting support column 3032 is fixedly connected to the rear side of the fixed carrier plate 303. A spring 304 is fitted on the outer side of the connecting support column 3032. A limit protrusion 3033 is fixedly connected to the other end of the connecting support column 3032.
[0038] A locking rack 305 is provided on one side of the gear 3022. An extension arc frame 3051 is fixedly connected to both ends of the locking rack 305. A connecting rod 3052 is fixedly connected to the rear side of the extension arc frame 3051. The connecting rod 3052 passes through the guide hole 3031 and is fixedly connected to the rear plate 3053 on the rear side. A compression ring 3054 is fixedly connected between the rear plates 3053. The compression ring 3054 is slidably installed on the outside of the connecting support column 3032.
[0039] By rotating the handwheel 2021, the lead screw 202 rotates, and the lead screw 202 engages with the first screw hole 2031 of the movable belt ring 203. The movable belt ring 203 is guided and limited in the slot 2013 by the extension protrusion 2032, causing the lead screw 202 to drive the movable belt ring 203 for lifting and lowering adjustment. For angle adjustment, simply press the extension arc frame 3051 to release the locking rack 305 from the gear 3022, thereby adjusting the angle of the rotating hinge 302. After adjusting to the desired angle, release the extension arc frame 3051. When the extension arc frame 3051 moves, it drives the rear plate 3053 to move via the connecting rod 3052. The rear plate 3053 then drives the compression ring 3054 to compress the spring 304 on the outside of the connecting support 3032, causing the spring 304 to undergo elastic deformation. When the pressure is lost, the compression ring 3054 is pushed to move under the reaction force of the spring 304. The compression ring 3054 then drives the extension arc frame 3051 to move via the connecting rod 3052. The extension arc frame 3051 drives the locking rack 305 to lock onto the gear 3022, thereby completing the angle locking.
[0040] Example 2: Based on Example 1, wherein, as Figure 5 and Figure 6 As shown, the end of the rotating hinge 302 is provided with a positioning structure 4. The positioning structure 4 includes a connecting recess 401, a guide groove 4011, and a second screw hole 4012. The end of the rotating hinge 302 is fixedly connected to the connecting recess 401. A guide groove 4011 is provided on one side of the connecting recess 401. A second screw hole 4012 is provided on the top of the connecting recess 401. A screw 402 is meshed and installed inside the second screw hole 4012. A throttle 402 is fixedly connected to one end of the screw 402.
[0041] A positioning plate 403 is provided between the connecting brackets 401. A guide protrusion 4031 is fixedly connected to one side of the positioning plate 403, and a connecting protrusion ring 4032 is fixedly connected to the top of the positioning plate 403. The other end of the screw 402 is rotatably installed in the connecting protrusion ring 4032.
[0042] By placing the electromechanical components on the connecting recess 401, and then rotating the throttle 4021 to drive the screw 402 to rotate, the screw 402 engages and moves under the action of the second screw hole 4012, thereby pushing the positioning plate 403 to move, and then clamping and fixing the electromechanical components through the positioning plate 403.
[0043] The specific usage and function of this embodiment are as follows:
[0044] In this invention, firstly, rotating the handwheel 2021 drives the lead screw 202 to rotate, and the lead screw 202 rotates and engages with the first screw hole 2031 of the movable belt ring 203. The movable belt ring 203 is then guided and limited in the slot 2013 by the extension protrusion 2032, causing the lead screw 202 to drive the movable belt ring 203 to adjust its height. Then, pressing the extension arc frame 3051 releases the locking rack 305 from limiting the gear 3022, thereby adjusting the angle of the rotating hinge 302. After adjusting to the desired angle, the pressure on the extension arc frame 3051 is released. Because the extension arc frame 3051 moves, it drives the rear plate 3053 to move via the connecting rod 3052. The rear plate 3053 then drives the compression ring 3054 to press against the spring 30 on the outside of the connecting support column 3032. 4. When the spring 304 is compressed, it undergoes elastic deformation. When the pressure is lost, the compression ring 3054 is pushed to move under the reaction force of the spring 304. The compression ring 3054 then drives the extension arc frame 3051 to move through the connecting rod 3052. The extension arc frame 3051 drives the locking rack 305 to lock onto the gear 3022, thereby completing the angle locking. This greatly improves the adaptability of the bracket to different electromechanical equipment and welding processes, meeting the diverse welding operation requirements. Finally, by placing the electromechanical components on the connecting recess 401 and then rotating the throttle 4021 to drive the screw 402 to rotate, the screw 402 engages and moves under the action of the second screw hole 4012, thereby pushing the positioning plate 403 to move, and then clamping and fixing the electromechanical components through the positioning plate 403.
Claims
1. An adjustable electromechanical welding bracket, comprising: Fixed base, lifting assembly and adjustment mechanism; The fixed base has anchor bolt holes on all four sides, and a lifting assembly is provided on the top of the fixed base. The lifting assembly comprises the following components: Fixed support cylinder: It is fixedly connected to the top of the fixed base. The fixed support cylinder has a movable cavity inside and a through groove on the side. The top of the fixed support cylinder is fixedly connected to a limiting plate. Lead screw: Located inside the fixed support cylinder, the top of the lead screw passes through the limiting top plate and is fixedly connected to the handwheel; Moving belt ring: Located on the outside of the lead screw, the moving belt ring has a first screw hole in the middle, and an extension protrusion is fixedly connected to one side of the moving belt ring; One end of the extension protrusion is provided with an adjustment structure, which includes a connecting vertical plate, an outer arc plate, a hinge frame, a rotating hinge rod, and a shaft pin. One end of the extension protrusion is fixedly connected to the connecting vertical plate, both ends of the connecting vertical plate are fixedly connected to the outer arc plate, and the middle of the connecting vertical plate is fixedly connected to the hinge frame. The hinge frame is hinged to the rotating hinge rod through the shaft pin.
2. The adjustable electromechanical welding bracket according to claim 1, characterized in that: One end of the shaft pin is fixedly connected to a gear, and the two sides of the rotating hinge are fixedly connected to limit guide posts, which are movably installed between the outer arc plate and the hinge frame.
3. The adjustable electromechanical welding bracket according to claim 1, characterized in that: A fixed carrier plate is fixedly connected to one side of the extension protrusion. A guide hole is provided on the fixed carrier plate. A connecting column is fixedly connected to the rear side of the fixed carrier plate. A spring is fitted on the outer side of the connecting column. A limit protrusion is fixedly connected to the other end of the connecting column.
4. An adjustable electromechanical welding bracket according to claim 2, characterized in that: A locking rack is provided on one side of the gear, and an extension arc frame is fixedly connected to both ends of the locking rack. A connecting rod is fixedly connected to the rear side of the extension arc frame. The connecting rod passes through the guide hole and is fixedly connected to the rear plate on the rear side. A compression ring is fixedly connected between the rear plates and is slidably installed on the outside of the connecting support.
5. An adjustable electromechanical welding bracket according to claim 1, characterized in that: The end of the rotating hinge is provided with a positioning structure, which includes a connecting recess, a guide groove, and a second screw hole. The end of the rotating hinge is fixedly connected to the connecting recess, a guide groove is provided on one side of the connecting recess, and a second screw hole is provided on the top of the connecting recess. A screw is engaged and installed inside the second screw hole, and a throttle is fixedly connected to one end of the screw.
6. An adjustable electromechanical welding bracket according to claim 5, characterized in that: A positioning plate is provided between the connecting recesses. A guide protrusion is fixedly connected to one side of the positioning plate, and a connecting protrusion ring is fixedly connected to the top of the positioning plate. The other end of the screw is rotatably installed in the connecting protrusion ring.