Angle steel bevel machining equipment

Through the angle steel angle processing equipment integrating inverted conical blocks and angle cutters, the problem of difficult integration of existing equipment is solved, efficient groove cutting and bending processing is achieved, and processing efficiency and quality are improved.

CN223145691UActive Publication Date: 2025-07-25SHAANXI YILIANDA INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202422090211.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-28
Publication Date
2025-07-25
Estimated Expiration
2034-08-28

AI Technical Summary

Technical Problem

It is difficult to integrate the groove cutting equipment and bending equipment in existing angle steel processing equipment, resulting in large production space occupation, low processing efficiency and poor quality.

Method used

An angle steel angle processing equipment is designed. By integrating an inverted conical block and an angle cutter on the processing table, the slide seat is driven to drive the cutter and inverted conical block downward, achieving dual purpose of groove and bending, and adjusting the cutting position through a rotating disc, combining the limit structure to avoid angle steel slipping.

Benefits of technology

The groove cutting and bending of angle steel are achieved on the same equipment, which improves processing efficiency, ensures processing quality, and simplifies the operation process.

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Abstract

The utility model discloses angle steel bevel machining equipment, and belongs to the technical field of angle steel machining. Comprising a machining table, the four corners of the bottom face of the machining table are each fixedly provided with an adjusting supporting column, a motor is fixedly installed in the machining table, the output end of the motor is fixedly provided with a gear, the gear is in meshed connection with a gear ring, and the gear ring is fixedly connected with a rotating disc. A piston rod of an electric cylinder extends out, a sliding base drives an angular cutter and an inverted-cone-shaped block to move downwards, grooving or bending treatment can be carried out on an angle steel body, the effect that one machine has two purposes is achieved, a rotating disc rotates, position exchange treatment of the inverted-cone-shaped block and the angular cutter is achieved, an operator can conveniently machine the angle steel body, and when the angle steel body is grooved, the angle steel body can be conveniently cut. The two ends can be limited, and the situation that the angle steel body slides horizontally, the grooving position is changed, and the machining quality is affected is avoided.
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Description

Technical Field

[0001] This application relates to the technical field of angle steel processing, and more specifically, to an angle steel folding processing device. Background Art

[0002] Angle steel has important uses in construction projects. By bending angle steel into structures such as A-shaped steel or trapezoidal steel, it can be used to support and connect various structural components, and can be used as a frame and support structure to support and connect the entire structural system;

[0003] Generally, the bending of angle steel requires two processing processes. First, a groove with an angular structure needs to be cut at a specified position on the angle steel according to the design dimensions using a grooving machine device, and then the angle steel is bent at the grooved position through a bending machine device. It is difficult to integrate the grooving device and the bending device in the angle steel processing equipment, and the equipment investment is relatively large. Since it is two processing procedures, it requires a certain amount of production space, and the angle steel material needs to be changed between the equipment, resulting in low processing efficiency of the angle steel. Moreover, the non-uniformity of the equipment will also affect the final processing quality.

[0004] In view of this, we propose an angle steel folding processing device. Utility Model Content

[0005] The purpose of this application is to provide an angle steel folding processing device, which solves the technical problems in the above background art and realizes the technical effects of the angle steel folding processing device.

[0006] The technical solution of this application provides an angle steel folding processing device, including a processing table. Four adjusting support columns are fixedly installed at the four corners of the bottom surface of the processing table. A motor is fixedly installed inside the processing table. The output end of the motor is fixedly provided with a gear, and the gear is meshed with a toothed ring. The toothed ring is fixedly connected with a rotating disk, and the rotating disk is rotationally connected with the processing table. Four columns are fixedly provided on the rotating disk, and a grooving and folding mechanism is installed on the columns. The grooving and folding mechanism includes a bottom plate, and the bottom plate is fixedly connected with the four columns. A concave frame, a first L-shaped pad seat and a second L-shaped pad seat are fixedly provided on the upper surface of the bottom plate. An electric cylinder is fixedly provided on the upper surface of the concave frame. A sliding seat is slidably provided on the concave frame. The piston rod of the electric cylinder passes through the concave frame movably and is fixedly connected with the sliding seat. An inverted conical block and an angular cutter are respectively threadedly installed on both side surfaces of the sliding seat. An angle steel body is placed and installed on the first L-shaped pad seat and the second L-shaped pad seat. Four L-shaped supporting beams are also fixedly provided on the upper surface of the processing table, and two L-shaped supporting beams are respectively arranged at both ends of the first L-shaped pad seat and the second L-shaped pad seat. A trapezoidal block and a screw rod are slidably installed on the L-shaped supporting beam, and the trapezoidal block and the screw rod are threadedly connected. Second angle grooves are opened on both the first L-shaped pad seat and the bottom plate, and a rectangular groove is opened on the second L-shaped pad seat.

[0007] Optionally, a rectangular through groove is formed in the processing table, four sector-shaped blanking grooves are formed in the bottom surface of the processing table, and an annular groove is formed in the upper surface of the processing table for rotatably mounting a rotating disk.

[0008] Optionally, a guide pipe is fixedly sleeved on the rotating disk, the rotation radius of the guide pipe is smaller than the center distance between the gear and the rotating disk, the upper end of the guide pipe is arranged at the bottom of the second angle groove, a vertical shaft is fixedly arranged on the bottom surface of the rotating disk, and the bottom end of the vertical shaft is rotatably connected with the processing table.

[0009] Optionally, the adjusting support column includes an anti-slip pad, a screw cylinder is fixedly arranged on the upper surface of the anti-slip pad, a screw rod is threadedly sleeved in the screw cylinder, and the upper end of the screw rod is fixedly connected with the bottom surface of the processing table.

[0010] Optionally, guide grooves are formed on both side surfaces of the concave-shaped frame, the concave-shaped frame is slidably mounted with sliding seats through the guide grooves, the first L-shaped pad seat and the second L-shaped pad seat are arranged in parallel and are respectively arranged on both sides of the concave-shaped frame, the sliding seat drives the angular cutter to move down into the second angle groove to cut a first angle groove on the angle steel body, and the sliding seat drives the inverted conical block to move down to the rectangular groove to bend the angle steel body with the first angle groove cut out.

[0011] Optionally, connection blocks are fixedly connected between the L-shaped supporting beams and the processing table, two sliding grooves and a strip-shaped groove are formed on each L-shaped supporting beam, the L-shaped supporting beam is slidably mounted with trapezoidal blocks through the sliding grooves, and the L-shaped supporting beam is slidably mounted with screw rods through the strip-shaped grooves.

[0012] One or more technical solutions provided in the technical solution of the present application have at least the following technical effects or advantages:

[0013] Through the arrangement of the inverted conical block and the angular cutter, when the piston rod of the electric cylinder extends, the sliding seat drives the angular cutter and the inverted conical block to move down, so that grooving or bending treatment can be performed on the angle steel body, achieving the effect of dual use of one machine, and the rotating disk rotates to realize the position swapping of the inverted conical block and the angular cutter, which is convenient for the operator to process the angle steel body. When grooving the angle steel body, both ends can be limited to prevent the angle steel body from horizontally sliding and causing the change of the grooving position, which affects the processing quality. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 is a schematic view of the overall structure of the angle steel folding and processing equipment disclosed in the embodiment of the present application;

[0015] Figure 2 is a sectional view of the processing table of the angle steel folding and processing equipment disclosed in the embodiment of the present application;

[0016] Figure 3For the placement table of the angle steel folding and corner processing equipment disclosed in the embodiments of the present application Figure 2 The enlarged cross-sectional view at position A in

[0017] Figure 4 For the structural view of the rotating disk and the motor of the angle steel folding and corner processing equipment disclosed in the embodiments of the present application

[0018] Figure 5 For the structural view of the grooving and corner folding mechanism of the angle steel folding and corner processing equipment disclosed in the embodiments of the present application

[0019] Explanation of the reference numerals in the figure: 1, processing table; 2, adjusting support column; 3, rotating disk; 4, grooving and corner folding mechanism; 5, angle steel body; 6, L-shaped supporting beam; 7, first angle groove; 8, rectangular through groove; 9, fan-shaped blanking groove; 10, annular groove; 11, anti-slip pad; 12, screw barrel; 13, stud; 15, guide pipe; 16, column; 17, vertical shaft; 18, gear ring; 19, motor; 20, gear; 21, concave frame; 22, guide groove; 23, electric cylinder; 24, sliding seat; 25, inverted conical block; 26, angle cutter; 27, first L-shaped seat; 28, second angle groove; 29, second L-shaped seat; 30, rectangular groove; 31, bottom plate; 32, connecting block; 33, sliding groove; 34, strip-shaped groove; 35, trapezoidal block; 36, screw. Detailed implementation manners

[0020] The present application will be further described in detail below with reference to the accompanying drawings of the specification.

[0021] Refer to Figures 1 - 5, an embodiment of the present application provides an angle steel folding and chamfering processing device, including a processing table 1. At the four corners of the bottom surface of the processing table 1, an adjusting support column 2 is fixedly installed. Inside the processing table 1, a motor 19 is fixedly installed. The output end of the motor 19 is fixedly provided with a gear 20. The gear 20 is meshed with a toothed ring 18. The toothed ring 18 is fixedly connected with a rotating disk 3. The rotating disk 3 is rotatably connected with the processing table 1. Four upright columns 16 are fixedly provided on the rotating disk 3. A grooving and folding mechanism 4 is installed on the upright columns 16. The grooving and folding mechanism 4 includes a bottom plate 31. The bottom plate 31 is fixedly connected with the four upright columns 16. On the upper surface of the bottom plate 31, a concave frame 21, a first L-shaped cushion seat 27 and a second L-shaped cushion seat 29 are fixedly provided. On the upper surface of the concave frame 21, an electric cylinder 23 is fixedly provided. A sliding seat 24 is slidably arranged on the concave frame 21. The piston rod of the electric cylinder 23 passes through the concave frame 21 movably and is fixedly connected with the sliding seat 24. Inverted conical blocks 25 and angular cutters 26 are respectively threadedly installed on both side surfaces of the sliding seat 24. An angle steel body 5 is placed and installed on the first L-shaped cushion seat 27 and the second L-shaped cushion seat 29. Four L-shaped supporting beams 6 are also fixedly provided on the upper surface of the processing table 1. And two L-shaped supporting beams 6 are respectively arranged at both ends of the first L-shaped cushion seat 27 and the second L-shaped cushion seat 29. A trapezoidal block 35 and a screw rod 36 are slidably installed on the L-shaped supporting beam 6. The trapezoidal block 35 and the screw rod 36 are threadedly connected. Second angle grooves 28 are opened on both the first L-shaped cushion seat 27 and the bottom plate 31. A rectangular groove 30 is opened on the second L-shaped cushion seat 29. This angle steel processing device can use the sliding seat 24 to install the inverted conical block 25 and the angular cutter 26 at the same time. The bottom parts of the angular cutter 26 and the inverted conical block 25 are respectively fixedly installed on the first L-shaped cushion seat 27 and the second L-shaped cushion seat 29 through the bottom plate 31. The angle steel body 5 can be placed at the first L-shaped cushion seat 27 or the second L-shaped cushion seat 29. When the piston rod of the electric cylinder 23 drives the sliding seat 24 to move downwards, the angular cutter 26 and the first L-shaped cushion seat 27 are used in cooperation to perform grooving treatment on the angle steel body 5 first, and then the inverted conical block 25 and the second L-shaped cushion seat 29 are used in cooperation to perform folding treatment on the grooved angle steel body 5. The purpose of dual use of grooving and folding can be achieved. And by driving the gear 20 to rotate by the motor 19, the toothed ring 18 drives the rotating disk 3 to rotate, and the position swapping treatment of the inverted conical block 25 and the angular cutter 26 can be realized. After the operator processes the angle steel body 5 by grooving, only the angle steel body 5 needs to be removed, and then the position swapping treatment of the inverted conical block 25 and the angular cutter 26 is driven by the rotating disk 3, and then the cut angle steel body 5 can be installed again for processing, which is convenient for personnel operation. When the length of the angle steel body 5 is relatively long, an L-shaped supporting beam 6 is respectively arranged at both ends of the first L-shaped cushion seat 27 and the second L-shaped cushion seat 29. Through the trapezoidal block 35 and the screw rod 36 slidably installed on the L-shaped supporting beam 6, the trapezoidal block 35 can be used to limit the end of the angle steel body 5. Then, when grooving treatment is performed on the angle steel body 5, the limiting treatment of the angle steel body 5 can be realized, and the horizontal sliding of the angle steel body 5 can be avoided.This causes the position of the grooving to change, affecting the machining quality.

[0022] Referring to Figure 1 and Figure 2 , a rectangular through groove 8 is provided on the processing table 1, four sector-shaped blanking grooves 9 are provided on the bottom surface of the processing table 1, and an annular groove 10 is provided on the upper surface of the processing table 1 for rotatably mounting the rotating disk 3. The rotating disk 3 is rotatably mounted in the annular groove 10 provided on the processing table 1. The processing table 1 can be used to support the rotating disk 3 for processing. Four sector-shaped blanking grooves 9 are provided for discharging waste.

[0023] Referring to Figure 2 and Figure 4 , a guide pipe 15 is fixedly sleeved on the rotating disk 3. The rotation radius of the guide pipe 15 is smaller than the center distance between the gear 20 and the rotating disk 3. The upper end of the guide pipe 15 is located at the bottom of the second angle groove 28. A vertical shaft 17 is fixedly provided on the bottom surface of the rotating disk 3. The bottom end of the vertical shaft 17 is rotatably connected to the processing table 1. When it is necessary to adjust the positions of the inverted conical block 25 and the angular cutting tool 26, the rotating disk 3 drives the guide pipe 15 and the bottom plate 31 to rotate together. The guide pipe 15 rotates between the vertical shaft 17 and the gear 20, so that there will be no rotation interference problem of the rotating disk 3. The upper end of the guide pipe 15 is always located at the bottom of the second angle groove 28, and the waste generated by cutting can be discharged to the bottom of the processing table 1 for processing.

[0024] Referring to Figure 1 and Figure 2 , the adjusting support column 2 includes an anti-slip pad 11. A screw cylinder 12 is fixedly provided on the upper surface of the anti-slip pad 11. A screw column 13 is threadedly sleeved in the screw cylinder 12. The upper end of the screw column 13 is fixedly connected to the bottom surface of the processing table 1. By rotating the screw cylinder 12, the screw cylinder 12 moves along the axis of the screw column 13, and the processing table 1 can be adjusted to be placed stably.

[0025] Referring to Figure 2 and Figure 5 , guide grooves 22 are provided on both side surfaces of the concave frame 21. The concave frame 21 is slidably mounted with a sliding seat 24 through the guide grooves 22. The first L-shaped pad seat 27 and the second L-shaped pad seat 29 are arranged in parallel and are respectively located on both sides of the concave frame 21. The sliding seat 24 drives the angular cutting tool 26 to move down into the second angle groove 28, and cuts the first angle groove 7 on the angle steel body 5. The sliding seat 24 drives the inverted conical block 25 to move down to the rectangular groove 30, and bends the angle steel body 5 with the first angle groove 7 cut out. When the piston rod of the electric cylinder 23 extends, the angular cutting tool 26 and the inverted conical block 25 can be driven to move down simultaneously by the sliding seat 24. During processing, the angle steel body 5 needs to be processed one by one, that is, the angle steel body 5 needs to be placed on the first L-shaped pad seat 27 or the second L-shaped pad seat 29, and needs to go through the processes of grooving first and then angle folding.

[0026] Reference Figure 2 and Figure 3 A connecting block 32 is fixedly connected between the L-shaped joist 6 and the processing table 1. Two sliding grooves 33 and a strip-shaped groove 34 are formed in the L-shaped joist 6. The L-shaped joist 6 slidably installs a trapezoidal block 35 through the sliding groove 33, and the L-shaped joist 6 slidably installs a screw rod 36 through the strip-shaped groove 34. The trapezoidal block 35 and the screw rod 36 slide along the L-shaped joist 6 to the end position of the angle steel body 5, and the screw rod 36 is locked, so that the trapezoidal block 35 and the screw rod 36 clamp the L-shaped joist 6, so that the trapezoidal block 35 can limit the end position of the angle steel body 5, so that when the angle steel body 5 is grooved, no horizontal offset phenomenon will occur.

[0027] Working principle: The angle steel processing equipment can use the sliding seat 24 to install the inverted conical block 25 and the angle cutter 26 at the same time. The bottom parts of the angle cutter 26 and the inverted conical block 25 are respectively fixedly installed with the first L-shaped pad seat 27 and the second L-shaped pad seat 29 through the bottom plate 31. The angle steel body 5 can be placed at the first L-shaped pad seat 27 or the second L-shaped pad seat 29. When the piston rod of the electric cylinder 23 drives the sliding seat 24 to move down, the angle cutter 26 moves down. Because the first L-shaped pad seat 27 and the bottom plate 31 are both provided with a second angle groove 28, the shearing function of the angle cutter 26 can be realized, and the angle steel body 5 can be grooved first. And the cut waste falls through the material guide pipe 15 and is discharged from the fan-shaped blanking groove 9 opened on the processing table 1. Then, the grooved angle steel body 5 is removed and installed on the second L-shaped pad seat 29. By moving the inverted conical block 25 down, the inverted conical block 25 moves down to press the grooved part of the angle steel body 5. The inverted conical block 25 moves down into the rectangular groove 30 opened on the second L-shaped pad seat 29, so that the grooved angle steel body 5 can be folded, and the purpose of dual use of grooving and folding can be realized. And by using the motor 19 to drive the gear 20 to rotate, the gear ring 18 drives the rotating disc 3 to rotate, and the positions of the inverted conical block 25 and the angle cutter 26 can be adjusted. After the operator grooves the angle steel body 5, only the angle steel body 5 needs to be removed, and then the positions of the inverted conical block 25 and the angle cutter 26 are adjusted by driving the rotating disc 3, and then the cut angle steel body 5 can be installed again for processing, which is convenient for personnel to operate. When the length of the angle steel body 5 is relatively long, an L-shaped joist 6 is arranged at each end of the first L-shaped pad seat 27 and the second L-shaped pad seat 29. Through the trapezoidal block 35 and the screw rod 36 slidably installed on the L-shaped joist 6, and then the screw rod 36 is locked, the corresponding L-shaped joist 6 can be clamped, and the trapezoidal block 35 can be used to limit the end of the angle steel body 5. Then, when the angle steel body 5 is grooved, the angle steel body 5 can be limited to avoid the horizontal sliding of the angle steel body 5 and the change of the grooving position, which affects the processing quality.

[0028] The above are only the preferred specific embodiments of the present utility model, but the protection scope of the present utility model is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present utility model, according to the technical solution and the inventive concept of the present utility model, making equivalent substitutions or changes, shall be covered by the protection scope of the present utility model.

Claims

1. Angle steel corner folding processing equipment, including a processing table (1), characterized in that: At the four corners of the bottom surface of the processing table (1), an adjusting support column (2) is fixedly installed. Inside the processing table (1), a motor (19) is fixedly installed. The output end of the motor (19) is fixedly provided with a gear (20). The gear (20) is meshed with a gear ring (18). The gear ring (18) is fixedly connected with a rotating disk (3). The rotating disk (3) is rotationally connected with the processing table (1). Four upright columns (16) are fixedly arranged on the rotating disk (3). A grooving and folding angle mechanism (4) is installed on the upright columns (16). The grooving and folding angle mechanism (4) includes a bottom plate (31). The bottom plate (31) is fixedly connected with the four upright columns (16). On the upper surface of the bottom plate (31), a concave frame (21), a first L-shaped cushion seat (27) and a second L-shaped cushion seat (29) are fixedly arranged. On the upper surface of the concave frame (21), an electric cylinder (23) is fixedly installed. A sliding seat (24) is slidably arranged on the concave frame (21). The piston rod of the electric cylinder (23) movably penetrates through the concave frame (21) and is fixedly connected with the sliding seat (24). Inverted conical blocks (25) and angular cutters (26) are respectively threadedly installed on both side surfaces of the sliding seat (24). An angle steel body (5) is placed and installed on the first L-shaped cushion seat (27) and the second L-shaped cushion seat (29). Four L-shaped supporting beams (6) are also fixedly arranged on the upper surface of the processing table (1). And two L-shaped supporting beams (6) are respectively arranged at both ends of the first L-shaped cushion seat (27) and the second L-shaped cushion seat (29). A trapezoidal block (35) and a screw rod (36) are slidably installed on the L-shaped supporting beam (6). The trapezoidal block (35) and the screw rod (36) are threadedly connected. Second angle grooves (28) are formed on both the first L-shaped cushion seat (27) and the bottom plate (31). A rectangular groove (30) is formed on the second L-shaped cushion seat (29).

2. The angle steel corner folding processing equipment according to claim 1, characterized in that: A rectangular through groove (8) is formed on the processing table (1). Four sector-shaped blanking grooves (9) are formed on the bottom surface of the processing table (1). An annular groove (10) is formed on the upper surface of the processing table (1) for rotationally installing the rotating disk (3).

3. The angle steel corner folding processing equipment according to claim 1, characterized in that: A guide pipe (15) is also fixedly sleeved on the rotating disk (3). The rotation radius of the guide pipe (15) is smaller than the center distance between the gear (20) and the rotating disk (3). The upper end of the guide pipe (15) is arranged at the bottom of the second angle groove (28). A vertical shaft (17) is fixedly arranged on the bottom surface of the rotating disk (3). The bottom end of the vertical shaft (17) is rotationally connected with the processing table (1).

4. The angle steel corner folding processing equipment according to claim 1, characterized in that: The adjusting support column (2) includes an anti-slip pad (11). A screw barrel (12) is fixedly arranged on the upper surface of the anti-slip pad (11). A screw column (13) is threadedly sleeved in the screw barrel (12). The upper end of the screw column (13) is fixedly connected with the bottom surface of the processing table (1).

5. The angle steel corner folding processing equipment according to claim 1, characterized in that: Both side surfaces of the concave frame (21) are provided with guide grooves (22). The concave frame (21) slidably mounts a sliding seat (24) through the guide grooves (22). The first L-shaped pad seat (27) and the second L-shaped pad seat (29) are arranged in parallel and are respectively disposed on both sides of the concave frame (21). The sliding seat (24) drives the angular cutter (26) to move downward into the second angular groove (28) to cut a first angular groove (7) on the angle steel body (5). The sliding seat (24) drives the inverted conical block (25) to move downward to the rectangular groove (30) to bend the angle steel body (5) with the first angular groove (7) cut out.

6. The angle steel corner folding processing equipment according to claim 1, characterized in that: A connecting block (32) is fixedly connected between the L-shaped supporting beam (6) and the processing table (1). Two sliding grooves (33) and a strip-shaped groove (34) are provided on the L-shaped supporting beam (6). The L-shaped supporting beam (6) slidably mounts a trapezoidal block (35) through the sliding grooves (33). The L-shaped supporting beam (6) slidably mounts a screw rod (36) through the strip-shaped groove (34).