An intelligent metal mesh welding device
Through the automatic rounding and correction function of the intelligent welding equipment of metal mesh, the problem of weld skew caused by workers' operation errors during metal mesh welding is solved, and efficient and stable welding effect is achieved.
Patent Information
- Application Number
- CN202510712736.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-30
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2045-05-30
AI Technical Summary
During the existing metal mesh round welding process, workers have large operating errors, making it difficult to align one end of the metal mesh with the axial direction of the mandrel, resulting in crooked welds, which require manual adjustment, inefficiency and unstable welding quality.
It adopts a metal mesh intelligent welding equipment, which uses electric sliders, clamping rods, guide rods and pressure sensors to realize automatic rounding and correction of the metal mesh, welding is carried out through a roller welding machine, and is equipped with a camera to detect the quality of the weld.
Automatic round welding and automatic correction of metal mesh is realized, welding efficiency and quality is improved, labor is reduced, and weld alignment and welding quality is ensured.
Smart Images

Figure CN120228563B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of metal mesh welding, and particularly to an intelligent metal mesh welding device. Background Art
[0002] The existing metal mesh curling and welding method mainly relies on manual operation. That is, it is necessary to manually curl the metal mesh around a mandrel as a support, and then hold the metal mesh with one hand and hold a rolling welder with the other hand to weld the overlapping area at the end of the metal mesh. When manually placing one end of the metal mesh on the mandrel and fixing it, and then curling it, it is necessary to rely on the experience of the worker to align one end of the metal mesh with the axial direction of the mandrel to ensure that after curling the metal mesh, the two ends of the overlapping part of the metal mesh are aligned. However, the operation error of the worker is relatively large, and it is difficult to align one end of the metal mesh with the axial direction of the mandrel, resulting in a skewed weld after welding. Eventually, an irregular cylindrical shape with a large opening at one end and a small opening at the other end is formed after curling the metal mesh. Therefore, when curling manually, it is necessary to adjust and correct the metal mesh again and then weld it, which reduces the operation continuity. Moreover, the metal mesh is soft, increasing the difficulty of adjustment, and there are problems such as low efficiency, unstable welding quality, and high labor intensity. Summary of the Invention
[0003] In order to overcome the disadvantages that when curling and welding a metal mesh, the operation error of the worker is relatively large, it is difficult to align one end of the metal mesh with the axial direction of the mandrel, and it is necessary to adjust and correct the metal mesh again and then weld it after curling, the present invention provides an intelligent metal mesh welding device.
[0004] The technical solution of the present invention is: an intelligent metal mesh welding device, comprising a bracket and a rolling welder; a first electric slider is slidably connected to the bracket; the rolling welder is fixedly connected to the first electric slider; further comprising a abutting rod, a first driving member, a clamping rod, an annular slide rail, a guiding rod and a supporting steel sheet; an abutting rod for supporting the metal mesh is fixedly connected to the bracket, and the bottom of the rolling electrode wheel of the rolling welder is flush with the upper surface of the abutting rod; a plurality of first driving members are fixedly connected to the abutting rod; the telescopic ends of all the first driving members are commonly fixedly connected to the clamping rod; an annular slide rail is fixedly connected to the bracket; the annular slide rail is connected to the guiding rod through a second electric slider; the abutting rod and the clamping rod are commonly fixedly connected to the supporting steel sheet, the supporting steel sheet is located inside the annular slide rail, and the guiding rod is in contact with the surface of the supporting steel sheet.
[0005] More preferably, it further includes a third electric slider, a clamping strip and a abutting block; two first sliding grooves are formed on the abutting rod, two second sliding grooves are formed on the clamping rod, and a third electric slider is slidably connected in each first sliding groove; a third electric slider is also slidably connected in each second sliding groove; two third electric sliders located on the abutting rod are jointly rotatably connected to a clamping strip, and two third electric sliders located on the clamping rod are also jointly rotatably connected to a clamping strip; an abutting block is connected to the guiding rod, a pressure sensor is arranged on one side of the abutting block facing the annular slide rail, and the pressure sensor is electrically connected to all the third electric sliders.
[0006] More preferably, the abutting block is slidably connected to the guiding rod, and a spring is arranged between the abutting block and the guiding rod.
[0007] More preferably, the bottom of the abutting block is U-shaped.
[0008] More preferably, a plurality of barbs are arranged on the guiding rod, and an electric driving and rotating structure is arranged at the connection of the second electric slider and the guiding rod.
[0009] More preferably, it further includes a camera; a camera is fixedly connected to the upper side of the bracket.
[0010] More preferably, a rubber layer is attached to the side of the clamping strip in contact with the metal mesh.
[0011] More preferably, it further includes a second driving member and a pushing block; a fourth electric slider is slidably connected to the bracket, and a second driving member is fixedly connected to the fourth electric slider; a pushing block is fixedly connected to the telescopic end of the second driving member.
[0012] More preferably, it further includes a first connecting rod, an arc-shaped plate and a second connecting rod; four first connecting rods arranged in a rectangular array are fixedly connected to the front side of the bracket through a connecting plate; an arc-shaped plate is jointly fixedly connected to two adjacent first connecting rods front and back, and the arc-shaped plate is fixedly connected to the inner side of the support steel sheet; a second connecting rod is slidably connected to the bracket, a spring is arranged between the bracket and the second connecting rod, and the second connecting rod is fixedly connected to the lower side of the support steel sheet.
[0013] More preferably, a rubber layer is attached to the side of the pushing block in contact with the support steel sheet.
[0014] The beneficial effects are as follows: Workers only need to put one end of the metal mesh between the abutting rod and the clamping rod, and then the guiding rod automatically rolls the metal mesh into a cylindrical shape. There is no need for manual rolling operation of the metal mesh, which reduces the manual labor intensity and avoids manual operation, which is likely to cause the two ends of the overlapping part of the metal mesh to be misaligned, resulting in a skewed weld seam and an irregular cylindrical shape of the metal mesh after welding; and the overlapping part of the metal mesh is roll-pressed and welded by the roll welding electrode wheel of the roll welding machine, and there is no need for manual operation of holding the roll welding machine for welding.
[0015] During the process of curling the metal mesh, the pressure sensor on the abutting block monitors the state of the front end of the metal mesh. The clamping strip drives the fixed end of the metal mesh to rotate in the direction opposite to its inclined direction, so that the fixed end of the metal mesh is adjusted to the horizontal. The guiding rod cooperates with the barbs on it to pull and tighten the metal mesh, realizing the correction operation of the metal mesh. This can avoid the problem that when one end of the metal mesh is manually placed between the abutting rod and the clamping rod, the part of the metal mesh placed between the abutting rod and the clamping rod cannot be guaranteed to be horizontal, resulting in misalignment of the overlapping area of the metal mesh and the formation of an irregular cylindrical shape after the guiding rod automatically curls the metal mesh into a cylindrical shape. Thus, through the present invention, the automatic curling and welding of the metal mesh and the automatic correction function can be realized, ensuring the efficiency and quality of the curling and welding of the metal mesh.
[0016] After the rolling welding machine completes the welding of the metal mesh, the barbs of the guiding rod can be inserted into the mesh holes of the metal mesh, and then the clamping strip swings and pulls one end of the metal mesh, cooperating with the camera to detect the weld strength of the metal mesh. That is, the present invention not only has the functions of automatic curling and welding of the metal mesh and automatic correction, but also has the detection of the quality of the welded part. Description of the Drawings
[0017] Figure 1 Schematic three-dimensional structure diagram of the intelligent welding equipment for metal mesh of the present invention;
[0018] Figure 2 Schematic three-dimensional structure diagram of the combination of the rolling welding machine and the camera of the present invention;
[0019] Figure 3 Schematic three-dimensional structure diagram of the support component of the present invention;
[0020] Figure 4 Schematic three-dimensional structure diagram of the combination of the abutting rod and the clamping strip of the present invention;
[0021] Figure 5 For Figure 4 Enlarged schematic diagram of area A in
[0022] Figure 6 Schematic three-dimensional structure diagram of the combination of the clamping rod, the second electric slider and the clamping strip of the present invention;
[0023] Figure 7 Cross-sectional view of the abutting rod of the present invention;
[0024] Figure 8 Front view of the present invention;
[0025] Figure 9 Schematic three-dimensional structure diagram of the combination of the annular slide rail and the guiding rod of the present invention;
[0026] Figure 10Schematic three-dimensional structure diagram of the guide rod and the abutting block combination of the present invention.
[0027] In the attached drawing reference numerals: 111 - metal mesh, 1 - bracket, 1001 - first electric slider, 1002 - fourth electric slider, 2 - seam welder, 3 - abutting rod, 3001 - first chute, 4 - first driving member, 5 - clamping rod, 5001 - second chute, 6 - annular slide rail, 6001 - second electric slider, 7 - guide rod, 7001 - barbs, 101 - supporting steel sheet, 102 - first connecting rod, 103 - arc plate, 104 - second connecting rod, 201 - third electric slider, 202 - clamping strip, 301 - abutting block, 401 - camera, 501 - second driving member, 502 - pushing block. Detailed implementation manners
[0028] The present invention will be further described below in conjunction with the embodiments shown in the attached drawings.
[0029] Embodiment 1
[0030] An intelligent metal mesh welding device, as Figures 1 - 10 shown, includes a bracket 1 and a seam welder 2; a first electric slider 1001 that moves back and forth is slidably connected to the bracket 1; a seam welder 2 is fixedly connected to the first electric slider 1001;
[0031] It further includes an abutting rod 3, a first driving member 4, a clamping rod 5, an annular slide rail 6, a guide rod 7 and a supporting steel sheet 101; an abutting rod 3 is fixedly connected to the bracket 1, a ceramic gasket is attached to the upper side of the abutting rod 3, and the bottom of the seam welding electrode wheel of the seam welder 2 is flush with the upper surface of the abutting rod 3; two first driving members 4 are fixedly connected to the lower side of the abutting rod 3, and the first driving members 4 are electric push rods; the telescopic ends of all the first driving members 4 are commonly fixedly connected to a clamping rod 5; an annular slide rail 6 is fixedly connected to the bracket 1; the annular slide rail 6 is connected to a guide rod 7 through a second electric slider 6001; the abutting rod 3 and the clamping rod 5 are commonly fixedly connected to a supporting steel sheet 101, the supporting steel sheet 101 is located inside the annular slide rail 6, and the guide rod 7 is in contact with the surface of the supporting steel sheet 101.
[0032] It also includes a third electric slider 201, a clamping bar 202 and a support block 301; two first slide grooves 3001 are provided on the support rod 3, and two second slide grooves 5001 are provided on the clamping rod 5, and each first slide groove 3001 is slidably connected to a third electric slider 201; each second slide groove 5001 is also slidably connected to a third electric slider 201; the two third electric sliders 201 located on the support rod 3 are connected to a clamping bar 202 for rotation together, and the two third electric sliders 201 located on the clamping rod 5 are also connected to a clamping bar 202 for rotation together; the guide rod 7 is connected to the support block 301, and a pressure sensor is provided on the side of the support block 301 facing the annular slide rail 6, and the pressure sensor is electrically connected to all the third electric sliders 201.
[0033] The abutting block 301 is slidably connected to the guide rod 7 , and a spring is provided between the abutting block 301 and the guide rod 7 .
[0034] The bottom of the abutting block 301 is configured to be U-shaped.
[0035] The guide rod 7 is provided with a plurality of barbed hooks 7001 , and the connection between the second electric slider 6001 and the guide rod 7 is provided with an electric drive rotation structure, which can be any one of the conventionally known electric drive rotation structures, for example, a DD motor.
[0036] It also includes a camera 401; the upper side of the bracket 1 is fixed with a camera 401 facing downward to shoot.
[0037] The side of the clamping strip 202 that contacts the metal mesh 111 is covered with a rubber layer to increase the friction between the clamping strip 202 and the metal mesh 111 and ensure the fixing effect.
[0038] The working process of the metal mesh 111 intelligent welding equipment of the present invention is as follows:
[0039] The following description is based on Figure 1 is the viewing angle reference, where the side where the seam welder 2 is located is the front side;
[0040] During operation, one end of the metal mesh 111 is manually placed between the abutting rod 3 and the clamping rod 5 from top to bottom, and then the first driving member 4 is controlled to drive the clamping rod 5 to move to the left, and the metal mesh 111 is fixed at the position between the abutting rod 3 and the clamping rod 5, and then the metal mesh 111 is released. At this time, the metal mesh 111 sags and rests on the supporting steel sheet 101; the second electric slider 6001 is controlled to drive the guide rod 7 from the right side of the clamped position of the metal mesh 111, and rotates counterclockwise from front to back along the annular slide rail 6. The guide rod 7 moves the metal mesh 111 so that the metal mesh 111 gradually fits the supporting steel sheet 101. After the guide rod 7 rotates 370 degrees, as shown in FIG. Figure 9As shown, the two ends of the wire mesh 111 are overlapped, and the wire mesh 111 is automatically rolled into a cylindrical shape. The abutting rod 3 supports and abuts against the overlapping part of the wire mesh 111, and the guiding rod 7 restricts the other end of the wire mesh 111. Then, the first electric slider 1001 is controlled to drive the seam welder 2 to move backward, and the seam welding electrode wheel of the seam welder 2 rolls and welds the overlapping part of the wire mesh 111 to form the wire mesh 111 into a cylindrical shape. Then, the first electric slider 1001 is controlled to drive the seam welder 2 to reset, and the welded wire mesh 111 is manually removed for the subsequent rolling and welding operation of the wire mesh 111.
[0041] It should be noted that after the first driving member 4 drives the clamping rod 5 to move leftward to fix the wire mesh 111, the outer surface of the support steel sheet 101, the upper surface of the abutting rod 3 and the upper surface of the clamping rod 5 together form a cylindrical shape.
[0042] The following process is to correct the wire mesh 111:
[0043] When one end of the metal mesh 111 is manually placed between the abutting rod 3 and the clamping rod 5, the front end of the metal mesh 111 is located between the front end of the supporting steel sheet 101 and the front end of the abutting rod 3, and the front end of the supporting steel sheet 101 contacts the abutting block 301 on the guide rod 7. When the first driving member 4 drives the clamping rod 5 to move to the left to fix the metal mesh 111, the clamping strip 202 on the clamping rod 5 cooperates with the clamping strip 202 on the abutting rod 3 to fix the metal mesh 111. When the metal mesh 111 is moved by the guide rod 7 to fit the supporting steel sheet 101, the abutting block 301 contacts the front end of the metal mesh 111. During the process of the metal mesh 111 being rolled up by the pressure sensor on the abutting block 301, The front end status of the metal mesh 111 is monitored. When the abutting block 301 is subjected to excessive squeezing force from the front end of the metal mesh 111, it indicates that the front end of the metal mesh 111 protrudes outward, and the end of the metal mesh 111 located between the abutting rod 3 and the clamping rod 5 is tilted with the front lower and the back higher. At this time, the third electric sliders 201 on the front and rear sides of the abutting rod 3 are controlled to slide up and down respectively along the corresponding first slide grooves 3001, and the third electric sliders 201 on the front and rear sides of the clamping rod 5 are controlled to slide up and down respectively along the corresponding second slide grooves 5001, so as to drive the corresponding clamping bar 202 to rotate 2° counterclockwise from left to right. The clamping bar 202 drives the fixed end of the metal mesh 111 to rotate 2° counterclockwise from left to right. Then, while the second electric slider 6001 drives the guide rod 7 to rotate counterclockwise around the annular slide rail 6, the electric drive rotation structure (the electric drive rotation structure can be any of the commonly known ones, for example, a DD motor) at the connection between the second electric slider 6001 and the guide rod 7 is controlled to drive the guide rod 7 to rotate clockwise from front to back, so that the barbed hooks 7001 penetrate into the mesh of the metal mesh 111 to pull and tighten the metal mesh 111, and then control the electric drive structure to drive the guide rod 7 to rotate and reset, repeat the above steps many times, drive the fixed end of the metal mesh 111 to rotate 2° counterclockwise from left to right through the clamping bar 202, and then pull and tighten the metal mesh 111 through the guide rod 7 until it abuts against block 3. 01, the pressure sensor detects that the extrusion pressure of the front end of the metal mesh 111 on it is normal, thereby achieving the correction of the metal mesh 111; on the contrary, when the abutment block 301 is not subjected to the extrusion pressure of the front end of the metal mesh 111, it indicates that the end of the metal mesh 111 located between the abutment rod 3 and the clamping rod 5 is inclined with the front higher and the back lower. The third electric slider 201 is controlled to drive the clamping bar 202 to rotate 2° clockwise from left to right. The clamping bar 202 drives the fixed end of the metal mesh 111 to rotate 2° clockwise from left to right, and the metal mesh 111 is pulled and tightened through the guide rod 7. The above steps are repeated until the pressure sensor detects that the extrusion pressure of the front end of the metal mesh 111 on it is normal, thereby achieving the correction of the metal mesh 111.
[0044] The following process is for testing the weld of the metal mesh 111:
[0045] After the welding of the metal mesh 111 is completed by the roll welding machine 2, the electric drive rotating structure is controlled to drive the guide rod 7 to rotate clockwise when viewed from front to back, so that the barbs 7001 penetrate into the mesh holes of the metal mesh 111, and the third electric slider 201 is controlled to drive the corresponding clamping strip 202 to rotate reciprocally in a small amplitude, and the end of the metal mesh 111 fixed by the clamping strip 202 is swung and pulled. At this time, the welding seam of the metal mesh 111 is observed through the camera 401 to detect whether the welded part of the metal mesh 111 is firm.
[0046] According to the above work process, we can know that the present invention has the following effects:
[0047] The worker only needs to place one end of the metal mesh 111 between the abutting rod 3 and the clamping rod 5, and then the guide rod 7 automatically rolls the metal mesh 111 into a cylindrical shape. There is no need for manual rolling of the metal mesh 111, which reduces the manual labor intensity and avoids manual operation, which easily causes the two ends of the overlapping part of the metal mesh 111 to be misaligned, resulting in a skewed welding seam and an irregular cylindrical shape of the metal mesh 111 after welding; and the overlapping part of the metal mesh 111 is roll-pressed and welded by the roll welding electrode wheel of the roll welding machine 2, and there is no need for manual holding of the roll welding machine 2 for welding operation.
[0048] During the process of rolling the metal mesh 111, the pressure sensor on the abutting block 301 monitors the state of the front end of the metal mesh 111, and the clamping strip 202 drives the fixed end of the metal mesh 111 to rotate in the direction opposite to its inclined direction, so that the fixed end of the metal mesh 111 is adjusted to be horizontal, and the guide rod 7 cooperates with the barbs 7001 thereon to pull and tighten the metal mesh 111, realizing the correction operation of the metal mesh 111. When the worker places one end of the metal mesh 111 between the abutting rod 3 and the clamping rod 5, the part of the metal mesh 111 placed between the abutting rod 3 and the clamping rod 5 cannot be guaranteed to be horizontal, resulting in the overlapping area of the metal mesh 111 not being aligned after the guide rod 7 automatically rolls the metal mesh 111 into a cylindrical shape, and the metal mesh 111 forms an irregular cylindrical shape problem; thus, through the present invention, the automatic rolling and welding and automatic correction functions of the metal mesh 111 can be realized, ensuring the efficiency and quality of the rolling and welding of the metal mesh 111.
[0049] After the roll welding machine 2 completes the welding of the metal mesh 111, the barbs 7001 of the guide rod 7 can be penetrated into the mesh holes of the metal mesh 111, and then the clamping strip 202 swings and pulls one end of the metal mesh 111, and the weld strength of the metal mesh 111 is detected in cooperation with the camera 401, that is, the present invention has the function of detecting the quality of the welded part while having the automatic rolling and welding and automatic correction functions of the metal mesh 111.
[0050] The additional technical effects of the present invention are as follows:
[0051] Among them, such asFigure 7 As shown in the figure, a rubber layer is attached to the side of the clamping strip 202 that contacts the metal mesh 111, thereby increasing the friction between the clamping strip 202 and the metal mesh 111 and preventing the metal mesh 111 from slipping off the clamping strip 202 when the metal mesh 111 is pushed by the clamping strip 202.
[0052] Among them, as Figure 9 and Figure 10 shown in the figure, the abutting block 301 is slidably connected to the guiding rod 7. During the process of the guiding rod 7 driving the abutting block 301 to rotate, when the abutting block 301 moves to contact the abutting rod 3 and the clamping rod 5, the abutting rod 3 and the clamping rod 5 squeeze the U-shaped bottom surface of the abutting block 301, thereby generating an upward extrusion force on the abutting block 301, causing the abutting block 301 to move upward. The spring between the abutting block 301 and the guiding rod 7 is compressed, so that the abutting block 301 does not block the movement of the guiding rod 7.
[0053] Embodiment 2
[0054] On the basis of Embodiment 1, as Figures 1 - 4 shown in the figure, it further includes a second driving member 501 and a pushing block 502; a fourth electric slider 1002 is slidably connected to the bracket 1, and a second driving member 501 is fixedly connected to the fourth electric slider 1002. The second driving member 501 is an electric push rod; a pushing block 502 is fixedly connected to the telescopic end of the second driving member 501.
[0055] It further includes a first connecting rod 102, an arc-shaped plate 103 and a second connecting rod 104; four first connecting rods 102 arranged in a rectangular array are fixedly connected to the front side of the bracket 1 through a connecting plate; two adjacent first connecting rods 102 before and after are jointly fixedly connected to an arc-shaped plate 103, and the arc-shaped plate 103 is fixedly connected to the inner side of the support steel sheet 101; a second connecting rod 104 is slidably connected to the bracket 1, a spring is arranged between the bracket 1 and the second connecting rod 104, and the second connecting rod 104 is fixedly connected to the lower side of the support steel sheet 101.
[0056] A rubber layer is attached to the side of the pushing block 502 that contacts the support steel sheet 101 to prevent the pushing block 502 from wearing the support steel sheet 101.
[0057] The working process of the above embodiments is as follows:
[0058] After the welding and detection of the metal mesh 111 described in Embodiment 1 are completed:
[0059] Control the first driving member 4 to drive the clamping rod 5 and the parts thereon to move to the right until the clamping strip 202 is separated from the metal mesh 111. Then, control the second driving member 501 to push the pushing block 502 upward until it fits against the supporting steel sheet 101. Next, control the fourth electric slider 1002 to drive the pushing block 502 to move forward, so as to push the metal mesh 111 forward through the pushing block 502 and unload the metal mesh 111 from the supporting steel sheet 101. This eliminates the need for manual operation and realizes the automatic unloading function.
[0060] Furthermore, when the second driving member 501 pushes the pushing block 502 upward, after the pushing block 502 fits against the supporting steel sheet 101, it continues to move upward. The pushing block 502 pushes the second connecting rod 104 upward, causing the second connecting rod 104 to drive the bottom of the supporting steel sheet 101 to move upward. The spring between the second connecting rod 104 and the bracket 1 is compressed, causing the lower part of the supporting steel sheet 101 to sink inward, creating a gap between the supporting steel sheet 101 and the metal mesh 111. This prevents the supporting steel sheet 101 from being in close contact with the metal mesh 111, and under the action of friction, it is not easy for the pushing block 502 to push the metal mesh 111 away from the supporting steel sheet 101.
[0061] It should be noted that the inner side of the supporting steel sheet 101 contacts the arc-shaped plate 103, and the arc-shaped plate 103 restricts the supporting steel sheet 101 to ensure the stable state of the supporting steel sheet 101 and prevent the supporting steel sheet 101 from deforming during the process of the guide rod 7 automatically curling the metal mesh 111 into a cylindrical shape, which may affect the curling operation of the metal mesh 111. Moreover, since the arc-shaped plate 103 is fixedly connected to the supporting steel sheet 101, when the second connecting rod 104 drives the bottom of the supporting steel sheet 101 to move upward, the deformation reset of the supporting steel sheet 101 occurs between its bottom and the arc-shaped plate 103, preventing the supporting steel sheet 101 from expanding circumferentially and jamming the metal mesh 111.
[0062] The above are only examples of the present invention and are not intended to limit the present invention. All equivalent replacements made within the principles of the present invention shall be included within the protection scope of the present invention. The content not elaborated in detail in the present invention belongs to the well-known prior art of those skilled in the relevant technical field.
Claims
1. An intelligent metal mesh welding device, comprising a bracket (1) and a rolling welder (2); a first electric slider (1001) is slidably connected to the bracket (1); the rolling welder (2) is fixedly connected to the first electric slider (1001); characterized in that: It also includes a abutting rod (3), a first driving member (4), a clamping rod (5), an annular slide rail (6), a guiding rod (7) and a supporting steel sheet (101); An abutting rod (3) for supporting the metal mesh (111) is fixedly connected to the bracket (1), and the bottom of the resistance welding electrode wheel of the resistance welding machine (2) is flush with the upper surface of the abutting rod (3); A number of first driving members (4) are fixedly connected to the abutting rod (3); The telescopic ends of all the first driving members (4) are commonly fixedly connected with a clamping rod (5); An annular slide rail (6) is fixedly connected to the bracket (1); The annular slide rail (6) is connected with a guiding rod (7) through a second electric slider (6001); The abutting rod (3) and the clamping rod (5) are commonly fixedly connected with a supporting steel sheet (101), the supporting steel sheet (101) is located inside the annular slide rail (6), and the guiding rod (7) is in contact with the surface of the supporting steel sheet (101); It also includes a third electric slider (201), a clamping strip (202) and an abutting block (301); Two first sliding grooves (3001) are formed in the abutting rod (3), two second sliding grooves (5001) are formed in the clamping rod (5), and a third electric slider (201) is slidably connected in each first sliding groove (3001); A third electric slider (201) is also slidably connected in each second sliding groove (5001); Two third electric sliders (201) located on the abutting rod (3) are commonly rotatably connected with a clamping strip (202), and two third electric sliders (201) located on the clamping rod (5) are also commonly rotatably connected with a clamping strip (202); An abutting block (301) is connected to the guiding rod (7), a pressure sensor is arranged on the side of the abutting block (301) facing the annular slide rail (6), and the pressure sensor is electrically connected to all the third electric sliders (201); A number of barbs (7001) are arranged on the guiding rod (7), and an electric drive rotating structure is arranged at the connection of the second electric slider (6001) and the guiding rod (7); It also includes a first connecting rod (102), an arc-shaped plate (103) and a second connecting rod (104); Four first connecting rods (102) arranged in a rectangular array are fixedly connected to the front side of the bracket (1) through a connecting plate; Two adjacent first connecting rods (102) before and after are commonly fixedly connected with an arc-shaped plate (103), and the arc-shaped plate (103) is fixedly connected to the inner side surface of the supporting steel sheet (101); A second connecting rod (104) is slidably connected to the bracket (1), a spring is arranged between the bracket (1) and the second connecting rod (104), and the second connecting rod (104) is fixedly connected to the lower side of the supporting steel sheet (101).
2. The intelligent metal mesh welding device according to claim 1, wherein: The abutting block (301) is slidably connected to the guiding rod (7), and a spring is arranged between the abutting block (301) and the guiding rod (7).
3. The intelligent metal mesh welding device according to claim 1, wherein: The bottom of the abutting block (301) is U-shaped.
4. The intelligent metal mesh welding device according to claim 1, characterized in that: It also includes a camera (401); A camera (401) is fixedly connected to the upper side of the bracket (1).
5. The intelligent metal mesh welding device according to claim 1, wherein: A rubber layer is attached to the side of the clamping strip (202) in contact with the metal mesh (111).
6. The intelligent metal mesh welding device according to claim 1, wherein: It further includes a second driving member (501) and a pushing block (502); a fourth electric slider (1002) is slidably connected to the bracket (1), and the second driving member (501) is fixedly connected to the fourth electric slider (1002); the telescopic end of the second driving member (501) is fixedly connected to the pushing block (502).
7. The intelligent metal mesh welding equipment according to claim 6, characterized in that: A rubber layer is attached to the side of the pushing block (502) that contacts the support steel sheet (101).
Citation Information
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Welding device for aluminum alloy sections
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