Adjustable positioning and welding device for reinforcing mesh

By adjusting the motor and screw mechanism, the automatic positioning and welding of the steel mesh is solved, and the problems of position deviation and cumbersome operation in the traditional welding process are improved, and the welding efficiency and accuracy are improved.

CN223198342UActive Publication Date: 2025-08-08HEBEI ZHOUXIN METAL TECH CO LTD
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Patent Information

Application Number
CN202422418124.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-08
Publication Date
2025-08-08
Estimated Expiration
2034-10-08

AI Technical Summary

Technical Problem

During the welding of traditional steel bar mesh, manual placement of steel bars is prone to position deviation, resulting in low welding efficiency and cumbersome operation.

Method used

The adjustment motor and screw mechanism are used to cooperate with the welding frame to achieve equidistant adjustment of the rectangular adjustment seat on the X-axis and Y-axis, and combined with the servo cylinder to drive the automatic welding head, realizing the automatic welding of the steel mesh.

Benefits of technology

It improves the efficiency and accuracy of steel mesh welding, reduces the cumbersomeness of manual operation, and improves the welding efficiency.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223198342U_ABST
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Abstract

The utility model discloses a reinforcing mesh adjustable positioning welding device which comprises a bearing table and a welding frame located on the right side of the bearing table, an adjusting mechanism is arranged on the bearing table, and a welding mechanism is arranged at the upper end of the welding frame. The adjusting mechanism comprises a first adjusting motor, a first rotating lead screw, a first adjusting nut, a set of first fixed sliding rails, a plurality of strip-shaped sliding bases, a second adjusting motor, a second rotating lead screw, a second adjusting nut, a plurality of second fixed sliding rails and a plurality of rectangular adjusting bases. The device has the advantages that the adjusting mechanism is arranged on the bearing table, the first adjusting motor is matched with the second adjusting motor, the distance between the multiple rectangular adjusting bases on the X axis and the Y axis can be adjusted at equal intervals, and therefore reinforcing meshes of different models can be conveniently placed, and the moving mechanism is installed at the bottom of the bearing table; and the welding mechanism is matched with a servo cylinder to drive an automatic welding head, so that the reinforcing mesh can be automatically welded, and the welding efficiency of the reinforcing mesh is effectively improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of steel mesh welding, in particular to a steel mesh adjustable positioning welding device. Background Art

[0002] Steel mesh is also called welded steel mesh, steel welded mesh, steel welded mesh, steel welded mesh sheet, steel mesh sheet, etc. It is a mesh in which the longitudinal steel bars and the transverse axis steel bars are arranged at a certain distance and at right angles to each other, and all intersections are welded together.

[0003] Traditionally, the steel mesh welding process involves manually placing the rebar on a rack. The rack is then moved to work with the welding machine to weld the mesh together. However, when welding meshes of varying specifications, workers are prone to misalignment when placing the rebar, and the manual back-and-forth movement of the rack is cumbersome, impacting mesh welding efficiency.

[0004] It should be noted that the above content falls within the technical knowledge of the inventor and does not necessarily constitute prior art. Utility Model Content

[0005] In view of the above defects, the utility model provides a steel mesh adjustable positioning welding device to solve the problem of steel mesh welding adjustment and positioning.

[0006] In order to achieve the above purpose, the utility model adopts the following technical solutions:

[0007] A steel mesh adjustable positioning welding device comprises a bearing platform and a welding frame located on the right side of the bearing platform, wherein the bearing platform is provided with an adjustment mechanism and the upper end of the welding frame is provided with a welding mechanism;

[0008] Material toggling mechanism, its both sides respectively have a cylinder pressure, and the cylinder pressure bar connects swing arm, and the swing arm end face has hook portion, and a bar is placed on the swing arm end face to the swing arm, and a bar is placed on the swing arm end face to the hook portion.

[0009] Furthermore, the welding mechanism includes a servo cylinder, a push plate and an automatic welding head. The servo cylinder is installed at the upper end of the welding frame, and the telescopic end is vertically downward. The push plate is installed on the telescopic end of the servo cylinder, and the automatic welding head is installed at the bottom of the push plate.

[0010] Furthermore, the automatic welding head is connected to an external welding machine.

[0011] Furthermore, the first rotating end of the regulating motor is connected to the first rotating screw rod via a first transmission belt, and the second rotating end of the regulating motor is connected to the second rotating screw rod via a second transmission belt.

[0012] Furthermore, the front end strip sliding seat is fixedly installed on a set of fixed slide rails 1, and the right ends of several strip sliding seats are connected through a diamond telescopic frame 1, and the front end of the rightmost rectangular adjustment seat is fixedly installed on a fixed slide rail 2, and the front ends of several rectangular adjustment seats are connected through a diamond telescopic frame 2.

[0013] Furthermore, a row of relatively vertical rectangular adjustment seats are connected by movably plugging round rods, and a cross placement groove is respectively opened on the upper ends of several rectangular adjustment seats.

[0014] The utility model provides an adjustable positioning welding device for steel mesh, which has the following beneficial effects: an adjustment mechanism is provided on the bearing platform, and an adjustment motor 1 is used in conjunction with an adjustment motor 2 to equidistantly adjust the spacing between several rectangular adjustment seats on the X-axis and Y-axis, thereby facilitating the placement of steel meshes of different models; a moving mechanism is installed at the bottom of the bearing platform, and a servo cylinder is used to drive an automatic welding head in conjunction with the welding mechanism, so that automatic welding of the steel mesh can be realized, effectively improving the welding efficiency of the steel mesh. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 This is a top view of the adjustable positioning welding device for steel mesh described in the utility model.

[0016] Figure 2 This is a schematic diagram of the Y-axis adjustment of several strip-shaped sliding seats of the utility model.

[0017] Figure 3 This is a schematic diagram of the X-axis adjustment of several rectangular adjustment seats in the utility model.

[0018] Figure 4 This is a schematic diagram of a diamond-shaped telescopic frame of the present invention.

[0019] Figure 5 This is a schematic diagram of the welding mechanism of the present utility model.

[0020] In the figure: 1. Carrying platform; 2. Welding frame; 3. Adjusting motor 1; 4. Rotating screw 1; 5. Adjusting nut 1; 6. Fixed slide rail 1; 7. Strip sliding seat; 8. Adjusting motor 2; 9. Rotating screw 2; 10. Adjusting nut 2; 11. Fixed slide rail 2; 12. Rectangular adjustment seat; 13. Servo cylinder; 14. Push plate; 15. Automatic welding head; 16. Transmission belt 1; 17. Transmission belt 2; 18. Diamond telescopic frame 1; 19. Diamond telescopic frame 2; 20. Round rod; 21. Cross placement groove. DETAILED DESCRIPTION

[0021] The present invention will be described in detail below with reference to the accompanying drawings. Figure 1-shown: a steel mesh adjustable positioning welding device, including a bearing platform 1 and a welding frame 2 located on the right side of the bearing platform 1, the bearing platform 1 is provided with an adjustment mechanism, and the upper end of the welding frame 2 is provided with a welding mechanism; the adjustment mechanism includes an adjustment motor 3, a rotating screw rod 4, an adjustment nut 5, a group of fixed slide rails 6, a plurality of strip sliding seats 7, an adjustment motor 8, a rotating screw rod 9, an adjustment nut 10, a plurality of fixed slide rails 11 and a plurality of rectangular adjustment seats 12, the adjustment motor 3 is horizontally installed on the left side of the bearing platform 1, the rotating screw rod 4 is located at the adjustment motor On the right side of 1-3, the adjusting nut 1-5 is movably mounted on the rotating screw rod 1-4, a group of fixed slide rails 1-6 are installed on both sides of the carrier 1, and the bottom sides of several strip sliding seats 7 are slidably mounted on a group of fixed slide rails 6, and a strip sliding seat 7 at the rear end is connected to the upper end of the adjusting nut 1-5 by a connecting rod. The adjusting motor 2-8 is horizontally mounted on the front end of the carrier 1, the rotating screw rod 2-9 is located behind the adjusting motor 2-8, the adjusting nut 2-10 is movably mounted on the rotating screw rod 2-9, and several fixed slide rails 2-11 are installed on the upper ends of several strip sliding seats 7, and several rectangular The adjusting seat 12 is movably mounted on a plurality of fixed slide rails 11, and the front rectangular adjusting seat 12 in the left row is connected to the upper end of the adjusting nut 10 through a connecting plate; the welding mechanism includes a servo cylinder 13, a push plate 14 and an automatic welding head 15, the servo cylinder 13 is mounted on the upper end of the welding frame 2, and the telescopic end is vertically downward, the push plate 14 is mounted on the telescopic end of the servo cylinder 13, and the automatic welding head 15 is mounted at the bottom of the push plate 14; the automatic welding head 15 is connected to an external welding machine; a transmission belt is passed between the rotating end of the adjusting motor 3 and the rotating screw 4 16 transmission connection, the rotating end of the adjusting motor 28 and the rotating screw 29 are connected by a transmission belt 217; the front end strip sliding seat 7 is fixedly mounted on a set of fixed slide rails 16, and the right ends of several strip sliding seats 7 are connected by a diamond telescopic frame 18, the front rightmost rectangular adjustment seat 12 is fixedly mounted on the fixed slide rail 21, and the front ends of several rectangular adjustment seats 12 are connected by a diamond telescopic frame 21; the relatively vertical row of rectangular adjustment seats 12 are respectively connected by round rods 20 for movable insertion, and the upper ends of several rectangular adjustment seats 12 are respectively provided with cross placement grooves 21.

[0022] The working principle of this embodiment: The electrical equipment used in the device is controlled by an external controller. A plane moving mechanism is installed at the bottom of the carrier 1, which can realize the movement of the carrier 1 in the X-axis and Y-axis directions. This is the existing technology. The upper end of the adjustment seat 12 is respectively provided with a cross placement groove 21 for placing steel bars. When using, the user first adjusts the spacing between the several rectangular adjustment seats 12 according to the different specifications of the steel mesh;

[0023] During adjustment: the adjusting motor 3 is horizontally installed on the left side of the bearing platform 1, the rotating screw rod 4 is movably installed on the bearing platform 1 through a fastening bearing, and is located on the right side of the adjusting motor 3, the adjusting nut 5 is movably sleeved on the rotating screw rod 4, a group of fixed slide rails 6 are installed on both sides of the bearing platform 1, and the bottom sides of several strip sliding seats 7 are slidably installed on a group of fixed slide rails 6, and a strip sliding seat 7 at the rear end is connected to the upper end of the adjusting nut 5 through a connecting rod, the adjusting motor 2 8 is horizontally installed on the front end of the bearing platform 1, the rotating screw rod 2 9 is movably installed on the bearing platform 1 through a fastening bearing, and is located behind the adjusting motor 2 8, the adjusting nut 2 10 is movably sleeved on the rotating screw rod 2 9, several fixed slide rails 2 11 are installed on the upper ends of several strip sliding seats 7, and several rectangular adjustment seats 12 are movably installed. It is mounted on several fixed slide rails 11, and the front end rectangular adjustment seat 12 of the left row is connected to the upper end of the adjustment nut 10 through a connecting plate, the rotating end of the adjustment motor 3 is connected to the rotating screw 4 through a transmission belt 16, and the rotating end of the adjustment motor 28 is connected to the rotating screw 29 through a transmission belt 217. The front end strip sliding seat 7 is fixedly mounted on a group of fixed slide rails 6, and the right ends of several strip sliding seats 7 are connected through a diamond telescopic frame 18. The rightmost rectangular adjustment seat 12 at the front end is fixedly mounted on the fixed slide rail 2 11, and the front ends of several rectangular adjustment seats 12 are connected through a diamond telescopic frame 2 19. The relatively vertical row of rectangular adjustment seats 12 are respectively connected by round rods 20 for active insertion. The upper ends of several rectangular adjustment seats 12 are respectively provided with cross placement grooves 21, such as Figure 2 — Figure 4 As shown;

[0024] By adjusting the forward and reverse rotation of the motor 3, the plurality of strip sliding seats 7 can be driven to be equidistantly adjusted in the Y axis by rotating the screw rod 4 and the adjusting nut 5. The position of the frontmost strip sliding seat 7 is fixed, and the diamond telescopic frame 18 is stretched and retracted accordingly. The relatively vertical row of rectangular adjustment seats 12 are respectively connected by movably plug-in connections through round rods 20, and the front ends of the round rods 20 are fixedly connected to the frontmost row of rectangular adjustment seats 12, so that the plurality of strip sliding seats 7 can simultaneously drive the rectangular adjustment seats 12 to be equidistantly adjusted in the Y axis, and the round rods 20 can play a guiding role; by adjusting the forward and reverse rotation of the motor 28, the plurality of rectangular adjustment seats 12 can be adjusted in the X axis spacing by rotating the screw rod 29 and the adjusting nut 210. The position of the frontmost right rectangular adjustment seat 12 is fixed, and the diamond telescopic frame 219 is stretched and retracted accordingly, thereby facilitating the placement of steel meshes of different models;

[0025] During welding: the servo cylinder 13 is installed on the upper end of the welding frame 2, and the telescopic end is vertically downward, the push plate 14 is installed on the telescopic end of the servo cylinder 13, and the automatic welding head 15 is installed at the bottom of the push plate 14. The automatic welding head 15 is connected to the external welding machine, such as Figure 5As shown, the welding frame 2 moves the welding points to the bottom of the automatic welding head 15 in sequence through the bottom plane moving mechanism, and the servo cylinder 13 drives the automatic welding head 15 to realize automatic welding of the steel mesh, thereby effectively improving the welding efficiency of the steel mesh.

[0026] The above technical solutions only reflect the preferred technical solutions of the present utility model. Any changes that may be made to certain parts thereof by technicians in this technical field all reflect the principles of the present utility model and fall within the scope of protection of the present utility model.

Claims

1. A steel mesh adjustable positioning welding device, comprising a bearing platform (1) and a welding frame (2) located on the right side of the bearing platform (1), characterized in that: The supporting platform (1) is provided with an adjustment mechanism, and the upper end of the welding frame (2) is provided with a welding mechanism; The adjusting mechanism comprises an adjusting motor (3), a rotating screw rod (4), an adjusting nut (5), a set of fixed slide rails (6), a plurality of strip sliding seats (7), an adjusting motor (8), a rotating screw rod (9), an adjusting nut (10), a plurality of fixed slide rails (11) and a plurality of rectangular adjusting seats (12), wherein the adjusting motor (3) is horizontally mounted on the left side of the support platform (1), the rotating screw rod (4) is located on the right side of the adjusting motor (3), the adjusting nut (5) is movably mounted on the rotating screw rod (4), a set of fixed slide rails (6) is mounted on both sides of the support platform (1), and a plurality of strip sliding seats (7) are located on the bottom. The two sides are respectively slidably mounted on a set of fixed slide rails (6), and a strip sliding seat (7) at the rear end is connected to the upper end of the adjusting nut (5) through a connecting rod. The adjusting motor (8) is horizontally mounted on the front end of the support platform (1). The rotating screw rod (9) is located behind the adjusting motor (8). The adjusting nut (10) is movably mounted on the rotating screw rod (9). Several fixed slide rails (11) are mounted on the upper ends of several strip sliding seats (7). Several rectangular adjusting seats (12) are movably mounted on several fixed slide rails (11), and a row of front rectangular adjusting seats (12) on the left side are connected to the upper end of the adjusting nut (10) through a connecting plate.

2. The adjustable positioning welding device for steel mesh according to claim 1, characterized in that: The welding mechanism comprises a servo cylinder (13), a push plate (14) and an automatic welding head (15), wherein the servo cylinder (13) is mounted on the upper end of the welding frame (2) with its telescopic end facing vertically downward, the push plate (14) is mounted on the telescopic end of the servo cylinder (13), and the automatic welding head (15) is mounted on the bottom of the push plate (14).

3. The adjustable positioning welding device for steel mesh according to claim 2, characterized in that: The automatic welding head (15) is connected to an external welding machine.

4. The adjustable positioning welding device for steel mesh according to claim 1, characterized in that: The rotating end of the regulating motor 1 (3) is connected to the rotating screw 1 (4) via a transmission belt 1 (16), and the rotating end of the regulating motor 2 (8) is connected to the rotating screw 2 (9) via a transmission belt 2 (17).

5. The adjustable positioning welding device for steel mesh according to claim 1, characterized in that: The front end bar sliding seat (7) is fixedly mounted on a set of fixed slide rails (6), and the right ends of several bar sliding seats (7) are connected through a diamond telescopic frame (18). The rightmost rectangular adjustment seat (12) at the front end is fixedly mounted on a fixed slide rail (11), and the front ends of several rectangular adjustment seats (12) are connected through a diamond telescopic frame (19).

6. The adjustable positioning welding device for steel mesh according to claim 1, characterized in that: A row of relatively vertical rectangular adjustment seats (12) are movably connected by round rods (20), and a cross placement groove (21) is formed on the upper ends of the plurality of rectangular adjustment seats (12).