A continuous cutting and bending device for stainless steel rod machining

By designing a continuous cutting and bending equipment, efficient continuous processing of stainless steel bars has been achieved, solving the problems of low efficiency and safety hazards in existing technologies. Automated bending and turning are realized through hydraulic and electric components, removing burrs and reducing chip contamination.

CN122274663APending Publication Date: 2026-06-26TAIZHOU HUIZHONG STAINLESS STEEL PRODUCTS CO LTD
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Patent Information

Application Number
CN202610418928.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-04-01
Publication Date
2026-06-26

AI Technical Summary

Technical Problem

The current stainless steel bar processing requires two manual bending operations, which is inefficient and results in burrs on the cut surface, posing a safety hazard.

Method used

Design a continuous cutting and bending device that combines a feeder, a cutting assembly, a bending assembly, and a turning tool to achieve continuous bending and cutting of round bars. The bending angle and length are adjusted using hydraulic rods and electric telescopic rods, burrs are removed by turning, and debris is collected by an air pump.

Benefits of technology

It enables efficient continuous processing of stainless steel bars, reduces manual operation, improves safety, and effectively removes burrs and reduces debris splashing.

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Abstract

This invention belongs to the technical field of round bar bending and cutting devices, specifically a continuous cutting and bending equipment for processing stainless steel bars. It includes a feeder, a cutting assembly on one side of the feeder, and a cutting blade slidably mounted on one side of the feeder. A rectangular frame is located on the side of the cutting blade away from the feeder. Two bending assemblies are slidably mounted inside the rectangular frame. Each bending assembly includes two first rectangular plates slidably mounted inside the rectangular frame. A circular ring block is rotatably mounted in the center of each first rectangular plate, and a first cylindrical block is mounted in the center of the circular ring block. Two arc-shaped blocks are mounted on the upper end of the first cylindrical block, and a second cylindrical block is mounted on the upper end of the circular ring block. The round bar is conveyed between the two sets of arc-shaped blocks, allowing for simultaneous bending of both ends of the round bar without manual operation. Subsequently, driving the first rectangular bar to rotate transfers the processed round bar without affecting subsequent processing, thus improving processing efficiency.
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Description

Technical Field

[0001] This invention belongs to the field of round bar bending and cutting devices, specifically a continuous cutting and bending equipment for processing stainless steel bars. Background Technology

[0002] When bending stainless steel round bars, a rotating bending disc operates synchronously, working in conjunction with the round bar to bend it into a preset workpiece shape. After bending, a cutting device separates the workpiece from the continuously conveying round bar, thus completing the initial processing and workpiece preparation.

[0003] A patent application with publication number CN120663141B discloses a bending and cutting device for processing stainless steel round bars. After bending the round bar by placing one end between two bending blocks, the lower inclined plate is driven by a telescopic component to descend into the lifting and mating groove, pushing the moving abutment block to move in the direction of the corresponding moving abutment block. That is, the two moving abutment blocks are positioned by abutting the round bar inside the moving abutment block through the arc block. As the cutting blade continues to descend with the top plate, it cuts the connection between the round bar and the workpiece. After the cutting is completed, the telescopic component is driven to raise the top plate, and the moving plate moves away from the fixed plate to widen the distance between the two. The moving grinding component allows the grinding structure to enter the distance between the fixed plate and the moving plate, and at the same time grinds the cut surface of the round bar and the workpiece.

[0004] In the aforementioned prior art, when processing a round bar into a handle, it is necessary to bend it twice to form a U-shape, and then cut it off. First, one end of the round bar is placed in a bending machine and bent at 90 degrees before being cut off. Then, the round bar needs to be manually removed and the other end placed in the bending machine and bent at 90 degrees again to form the handle shape. The processing efficiency is low, and after the workpiece is processed, the cut surface of the round bar will have burrs, which may cause injury when the worker handles the workpiece, posing a safety hazard.

[0005] Therefore, the present invention provides a continuous cutting and bending device for processing stainless steel bars. Summary of the Invention

[0006] In order to overcome the shortcomings of the prior art, at least one technical problem raised in the background art is solved.

[0007] The technical solution adopted by the present invention to solve its technical problem is as follows: The present invention provides a continuous cutting and bending device for processing stainless steel bars, including a feeder, a cutting assembly provided on one side of the feeder, the cutting assembly including a cutting blade slidably disposed on one side of the feeder, a rectangular frame on the side of the cutting blade away from the feeder, two bending assemblies slidably disposed inside the rectangular frame, the bending assembly including two first rectangular plates slidably disposed inside the rectangular frame, a ring block rotatably disposed in the middle of the first rectangular plate, a first cylindrical block disposed in the middle of the ring block, two arc-shaped blocks disposed at the upper end of the first cylindrical block, a second cylindrical block disposed at the upper end of the ring block, a first rectangular strip rotatably disposed in the middle of the rectangular frame, and turning tools disposed at both ends of one side of the rectangular frame.

[0008] Preferably, a base plate is provided at the lower end of the rectangular frame, and a second rectangular plate is fixedly connected to the four corners of the lower end of the rectangular frame by a first cylindrical rod. The first cylindrical block is fixedly connected to the upper end of the second rectangular plate, the ring block is rotatably disposed at the upper end of the second rectangular plate, and the second rectangular plate is slidably disposed at the upper end of the base plate.

[0009] Preferably, the output end of the first hydraulic rod is fixedly connected to one side of the second rectangular plate, and the first hydraulic rod is fixedly connected to the upper end of the base plate.

[0010] Preferably, a second cylindrical rod is fixedly connected to the upper end of one of the arc-shaped blocks at the upper end of the first cylindrical block, and a first electric telescopic rod is fixedly connected to the upper end of the second cylindrical rod. One side of the first electric telescopic rod is fixedly connected to the upper end of the base plate through a U-shaped support rod.

[0011] Preferably, a mounting base is provided on one side of the turning tool, the turning tool is mounted on one side of the mounting base, a third hydraulic rod is rotatably provided on the side of the mounting base away from the turning tool, a second rectangular bar is fixedly connected to the side of the third hydraulic rod away from the mounting base, a first slide is fixedly connected to the lower end of the second rectangular bar, and a first slide rail is fixedly connected to the upper end of the base plate corresponding to the position of the first slide rail, and the first slide is slidably disposed on the upper end of the first slide rail.

[0012] Preferably, a first inclined plate is fixed to the side of the rectangular frame away from the turning tool, and the first inclined plate is fixed to the upper end of the base plate by a first support plate.

[0013] Preferably, a second inclined plate is slidably disposed inside both sides of the first inclined plate, and the second inclined plate is fixedly connected to the corresponding second rectangular plate by a first L-shaped rod.

[0014] Preferably, the upper end of the cutting blade is provided with a rectangular block, the lower end of the rectangular block is fixedly connected to the cutting blade through a second hydraulic rod, one side of the rectangular block is fixedly connected to a second support plate through a first connecting rod, and the second support plate is slidably disposed on the upper end of the base plate.

[0015] Preferably, a limiting block is slidably provided on the side of the rectangular frame away from the cutting blade. A second L-shaped rod is fixedly connected to one side of the limiting block, and a third support plate is fixedly connected to one side of the second L-shaped rod. The third support plate is slidably disposed on the upper end of the base plate. A second slider is fixedly connected to one side of the lower end of the third support plate, and a first slider is fixedly connected to one side of the lower end of the second support plate. The second slider and the first slider are connected by a bidirectional lead screw in the middle. The two ends of the bidirectional lead screw are rotatably disposed on the upper end of the base plate through support blocks.

[0016] Preferably, a rectangular box is provided at the lower end of the rectangular frame corresponding to the position of the cutting blade. One side of the rectangular box is fixed to the second support plate through a second connecting rod, and a collection box is fixed to one side of the rectangular box through a pipe. The pipe passes through the second support plate, and an air pump is installed inside the collection box. The collection box is fixed to the upper end of the base plate.

[0017] The beneficial effects of this invention are as follows: 1. The continuous cutting and bending equipment for processing stainless steel bars according to the present invention, by driving a first rectangular plate to slide inside a rectangular frame, can adjust the distance between the second cylindrical block and two sets of arc blocks, and can process handle workpieces of different lengths. After the round bar is bent, the turning tool is driven to approach the two ends of the processed round bar to turn the cutting surfaces at both ends of the round bar to form chamfers and reduce burrs. After processing, the first rectangular bar is driven to rotate, which drives the upper end of the processed handle to lift upward. The first rectangular bar rotates to one side of the rectangular frame, which can transfer the handle to one side of the rectangular frame. Then, the feeder continues to drive to convey the round bar between the two sets of arc blocks for further processing. No manual operation is required in the middle. Both ends of the round bar are bent at the same time. Then, the first rectangular bar is driven to rotate to transfer the processed round bar without affecting subsequent processing, thus improving processing efficiency.

[0018] 2. The continuous cutting and bending equipment for processing stainless steel bars according to the present invention includes a rectangular box set at the lower end of a rectangular frame corresponding to the position of the cutting blade. The rectangular box is connected to a second support plate via a second connecting rod. The rectangular box can move with the cutting blade. By activating the air pump inside the collection box, the lower end of the cutting blade can be adsorbed through a pipe, allowing the debris to enter the rectangular box and reducing debris splashing and pollution. Attached Figure Description

[0019] The invention will now be further described with reference to the accompanying drawings.

[0020] Figure 1 This is a perspective view of Embodiment 1 of the present invention; Figure 2 This is a schematic diagram showing the position of the first rectangular plate; Figure 3 This is a diagram showing the position of the cutting blade; Figure 4 This is a schematic diagram showing the position of the second cylindrical rod; Figure 5 This is a schematic diagram showing the position of the first inclined plate; Figure 6 This is a diagram showing the position of the turning tool; Figure 7 This is a diagram showing the position of the rectangular box; In the diagram: 1. Feeder; 2. Rectangular frame; 21. First rectangular plate; 211. Ring block; 212. First cylindrical block; 213. Arc block; 214. Second cylindrical block; 215. First cylindrical rod; 216. Second rectangular plate; 217. First hydraulic rod; 22. First rectangular strip; 23. First inclined plate; 231. First support plate; 232. Second inclined plate; 233. First L-shaped rod; 24. Second cylindrical rod; 241. First electric telescopic rod; 242. U-shaped support rod; 3. Cutting 31. Cutting tool; 32. Rectangular block; 33. Second hydraulic rod; 34. First connecting rod; 35. Second support plate; 4. First slider; 5. Limiting block; 41. Second L-shaped rod; 42. Third support plate; 43. Second slider; 44. Two-way lead screw; 45. Support block; 5. Turning tool; 51. Mounting base; 52. Third hydraulic rod; 53. Second rectangular bar; 54. First slide table; 55. First slide rail; 6. Rectangular box; 61. Second connecting rod; 62. Pipe; 63. Collection box; 7. Base plate. Detailed Implementation

[0021] To make the technical means, creative features, objectives and effects of this invention easier to understand, the invention will be further described below in conjunction with specific embodiments.

[0022] Example 1: As Figure 1 - Figure 7 As shown in the embodiment of the present invention, a continuous cutting and bending device for processing stainless steel bars includes a feeder 1. A cutting assembly is provided on one side of the feeder 1. The cutting assembly includes a cutting blade 3 slidably disposed on one side of the feeder 1. A rectangular frame 2 is provided on the side of the cutting blade 3 away from the feeder 1. Two bending assemblies are slidably disposed inside the rectangular frame 2. The bending assembly includes two first rectangular plates 21 slidably disposed inside the rectangular frame 2. A circular ring block 211 is rotatably disposed in the middle of the first rectangular plate 21. A first cylindrical block 212 is disposed in the middle of the circular ring block 211. Two arc-shaped blocks 213 are disposed at the upper end of the first cylindrical block 212. A second cylindrical block 214 is disposed at the upper end of the circular ring block 211. A first rectangular strip 22 is rotatably disposed in the middle of the rectangular frame 2. Turning tools 5 are disposed at both ends on one side of the rectangular frame 2.

[0023] Specifically, when forming a handle from a round bar, it requires two bending operations to create a U-shape. The bar is then cut. First, one end is placed in a bending machine and bent 90 degrees before being cut. Then, the bar is manually removed, and the other end is placed in the bending machine and bent 90 degrees again to form the handle shape. This process is inefficient, and the cut surface of the bar will have burrs after processing, which may cause injury to workers handling the workpiece, posing a safety hazard. In contrast, with this equipment, the round bar is placed in the feeder 1, which conveys it to the upper part of the rectangular frame 2, positioning the bar between two sets of arc-shaped blocks 213 for positioning. The cutting blade 3 then cuts the bar. Subsequently, the ring block 211 rotates, causing the second cylindrical block 214 to rotate, bending the bar. This allows for simultaneous bending of the round bar. The two ends of the round bar are bent, and the first rectangular plate 21 is driven to slide inside the rectangular frame 2. The distance between the second cylindrical block 214 and the two sets of arc blocks 213 can be adjusted to process handles of different lengths. After the round bar is bent, the turning tool 5 is driven to approach the two ends of the processed round bar to turn the cut surfaces at both ends of the round bar to form chamfers and reduce burrs. After processing, the first rectangular bar 22 is driven to rotate, which lifts the processed handle at the upper end. The first rectangular bar 22 rotates to one side of the rectangular frame 2, which can transfer the handle to one side of the rectangular frame 2. Then, the feeder 1 continues to drive the round bar to be conveyed between the two sets of arc blocks 213 for further processing. No manual operation is required in the middle. The two ends of the round bar are bent at the same time, and then the first rectangular bar 22 is driven to rotate to transfer the processed round bar without affecting subsequent processing, thus improving processing efficiency.

[0024] like Figure 2 As shown, a base plate 7 is provided at the lower end of the rectangular frame 2, and a second rectangular plate 216 is fixedly connected to the four corners of the lower end of the rectangular frame 2 by a first cylindrical rod 215. The first cylindrical block 212 is fixedly connected to the upper end of the second rectangular plate 216, and the ring block 211 is rotatably disposed on the upper end of the second rectangular plate 216. The second rectangular plate 216 is slidably disposed on the upper end of the base plate 7.

[0025] like Figure 2 As shown, the output ends of the first hydraulic rods 217 are fixedly connected to one side of the second rectangular plate 216, and the first hydraulic rods 217 are fixedly connected to the upper end of the base plate 7.

[0026] Specifically, by extending the first hydraulic rods 217 on both sides, the second rectangular plates 216 on both sides are brought closer together. The second rectangular plates 216 bring the first rectangular plates 21 closer together through the first cylindrical rod 215. The first rectangular plates 21 bring the second cylindrical block 214 and the two sets of arc blocks 213 closer together. The distance between the second cylindrical block 214 and the two sets of arc blocks 213 can be adjusted according to the different lengths of the handle as needed, making it widely applicable.

[0027] like Figure 4 As shown, a second cylindrical rod 24 is fixedly connected to the upper end of one of the arc-shaped blocks 213 on the upper end of the first cylindrical block 212. A first electric telescopic rod 241 is fixedly connected to the upper end of the second cylindrical rod 24. One side of the first electric telescopic rod 241 is fixedly connected to the upper end of the base plate 7 through a U-shaped support rod 242.

[0028] Specifically, by simultaneously driving the two first electric telescopic rods 241 to retract, the first electric telescopic rod 241 drives one of the arc-shaped blocks 213 at the upper end of the first cylindrical block 212 to move through the second cylindrical rod 24, which can adjust the distance between the two arc-shaped blocks 213 at the upper end of the first cylindrical block 212, and can be applied to round bars of different diameters.

[0029] like Figure 6 As shown, a mounting base 51 is provided on one side of the turning tool 5. The turning tool 5 is mounted on one side of the mounting base 51. A third hydraulic rod 52 is rotatably provided on the side of the mounting base 51 away from the turning tool 5. A second rectangular bar 53 is fixedly connected to the side of the third hydraulic rod 52 away from the mounting base 51. A first slide table 54 is fixedly connected to the lower end of the second rectangular bar 53. A first slide rail 55 is fixedly connected to the upper end of the base plate 7 at the position corresponding to the first slide table 54. The first slide table 54 is slidably disposed on the upper end of the first slide rail 55.

[0030] Specifically, after bending the round bar, the first slide table 54 is then driven to slide on the upper end of the first slide rail 55. The first slide table 54 drives the third hydraulic rods 52 on both sides to move through the second rectangular bar 53. The third hydraulic rods 52 drive the turning tool 5 to move through the mounting base 51, adjusting the turning tool 5 to the two ends of the bent round bar. Then, the third hydraulic rod 52 is driven to extend, driving the turning tool 5 to move closer to the two ends of the bent round bar. Then, the mounting base 51 is driven to rotate, driving the turning tool 5 to rotate and turn the two ends of the bent round bar, so that the two ends of the bent round bar form chamfers and remove burrs.

[0031] like Figure 5 As shown, a first inclined plate 23 is fixedly connected to the side of the rectangular frame 2 away from the turning tool 5, and the first inclined plate 23 is fixedly connected to the upper end of the base plate 7 through a first support plate 231.

[0032] like Figure 5 As shown, a second inclined plate 232 is slidably disposed on both sides of the first inclined plate 23, and the second inclined plate 232 is fixedly connected to the corresponding second rectangular plate 216 by the first L-shaped rod 233.

[0033] Specifically, after the round bar is bent, the first rectangular bar 22 is driven to rotate. The first rectangular bar 22 drives the round bar at the upper end of the rectangular frame 2 to lift upward. The first rectangular bar 22 drives the round bar to rotate towards the first inclined plate 23, so that the round bar falls on the upper end of the first inclined plate 23. When the distance between the second rectangular plates 216 is adjusted, the second rectangular plates 216 drive the second inclined plate 232 to slide inside the first inclined plate 23 through the first L-shaped rod 233. The distance of the second inclined plate 232 is adjusted according to different lengths so that round bars of different lengths can slide along the first inclined plate 23 and the second inclined plate 232.

[0034] like Figure 3 As shown, a rectangular block 31 is provided on the upper end of the cutting blade 3. The lower end of the rectangular block 31 is fixed to the cutting blade 3 through a second hydraulic rod 32. One side of the rectangular block 31 is fixed to a second support plate 34 through a first connecting rod 33. The second support plate 34 is slidably disposed on the upper end of the base plate 7.

[0035] like Figure 3 As shown, a limiting block 4 is slidably disposed on the side of the rectangular frame 2 away from the cutting blade 3. A second L-shaped rod 41 is fixedly connected to one side of the limiting block 4. A third support plate 42 is fixedly connected to one side of the second L-shaped rod 41. The third support plate 42 is slidably disposed on the upper end of the base plate 7. A second slider 43 is fixedly connected to one side of the lower end of the third support plate 42. A first slider 35 is fixedly connected to one side of the lower end of the second support plate 34. The second slider 43 and the first slider 35 are threaded together in the middle with a bidirectional lead screw 44. The two ends of the bidirectional lead screw 44 are rotatably disposed on the upper end of the base plate 7 through the support block 45.

[0036] Specifically, by driving the bidirectional lead screw 44 to rotate, the bidirectional lead screw 44 drives the first slider 35 and the second slider 43 on both sides to move simultaneously. The second slider 43 drives the limiting block 4 to move through the third support plate 42 and the second L-shaped rod 41. The first slider 35 drives the rectangular block 31 to move through the second support plate 34 and the first connecting rod 33. The rectangular block 31 drives the cutting blade 3 to move, so that the distance between the limiting block 4 and the arc block 213 on one side is the same as the distance between the cutting blade 3 and the arc block 213 on the other side. After adjusting the distance between the limiting block 4 and the cutting blade 3, the feeder 1 is then driven to convey the round bar, so that one end of the round bar abuts against one side of the limiting block 4. Then, the second hydraulic rod 32 is driven to extend and drive the cutting blade 3 to move downward. The cutting blade 3 cuts the round bar and then performs bending processing.

[0037] Example 2: Figure 7As shown in the comparative embodiment one, another embodiment of the present invention is as follows: a rectangular box 6 is provided at the lower end of the rectangular frame 2 corresponding to the position of the cutting blade 3. One side of the rectangular box 6 is fixedly connected to the second support plate 34 through the second connecting rod 61. A collection box 63 is fixedly connected to one side of the rectangular box 6 through the pipe 62. The pipe 62 passes through the second support plate 34. An air pump is installed inside the collection box 63. The collection box 63 is fixedly connected to the upper end of the base plate 7.

[0038] Specifically, when the cutting blade 3 cuts the round bar, it will generate debris. A rectangular box 6 is set at the lower end of the rectangular frame 2 corresponding to the position of the cutting blade 3. The rectangular box 6 is connected to the second support plate 34 through the second connecting rod 61. The rectangular box 6 can move with the cutting blade 3. By activating the air pump inside the collection box 63, the lower end of the cutting blade 3 can be adsorbed through the pipe 62, so that the debris enters the rectangular box 6, reducing debris splashing and pollution.

[0039] The working principle is as follows: The bidirectional lead screw 44 is driven to rotate, causing the first slider 35 and the second slider 43 on both sides to move simultaneously. The second slider 43, through the third support plate 42 and the second L-shaped rod 41, drives the limiting block 4 to move. The first slider 35, through the second support plate 34 and the first connecting rod 33, drives the rectangular block 31 to move. The rectangular block 31 drives the cutting blade 3 to move, ensuring that the distance between the limiting block 4 and one side of the arc-shaped block 213 is the same as the distance between the cutting blade 3 and the other side of the arc-shaped block 213. After adjusting the distance between the limiting block 4 and the cutting blade 3, the feeder 1 is then driven to convey the round bar, causing one end of the round bar to abut against one side of the limiting block 4. Then, the second hydraulic rod 32 is extended to move the cutting blade 3 downward. The cutting blade 3 cuts the round bar. A rectangular box 6 is set at the lower end of the rectangular frame 2 corresponding to the position of the cutting blade 3. The rectangular box 6 is connected to the second support plate 34 through the second connecting rod 61. The rectangular box 6 can move with the cutting blade 3. By starting the air pump inside the collection box 63, the lower end of the cutting blade 3 can be sucked up through the pipe 62, so that the debris enters the rectangular box 6, so that the round bar is located between the two sets of arc blocks 213, which limits the round bar. Then, the ring block 211 is driven to rotate, which drives the second cylindrical block 214 to rotate, and the round bar is bent. Both ends of the round bar can be bent at the same time. Then, the first slide table 54 is driven to slide on the upper end of the first slide rail 55. The first slide table 54 drives the third hydraulic rods 52 on both sides to move through the second rectangular bar 53. The third hydraulic rods 52 drive the turning tool 5 to move through the mounting base 51, and adjust the turning tool 5 to the two ends of the bent round bar. Then, the third hydraulic rod 52 is driven to extend, and the turning tool 5 is driven to move closer to the two ends of the bent round bar. Then, the mounting base 51 is driven to rotate, and the turning tool 5 is driven to rotate to turn the two ends of the bent round bar, so that the two ends of the bent round bar form chamfers and remove burrs. After the round bar is bent, the first rectangular bar 22 is driven to rotate. The first rectangular bar 22 drives the round bar at the upper end of the rectangular frame 2 to lift upward. The first rectangular bar 22 drives the round bar to rotate towards the first inclined plate 23, so that the round bar falls on the upper end of the first inclined plate 23. When the distance between the second rectangular plates 216 is adjusted, the second rectangular plates 216 drive the second inclined plate 232 to slide inside the first inclined plate 23 through the first L-shaped rod 233. The distance of the second inclined plate 232 is adjusted according to different lengths so that round bars of different lengths can slide along the first inclined plate 23 and the second inclined plate 232. Then, the feeder 1 continues to be driven to convey the round bar between the two sets of arc blocks 213 to continue the next round of processing.

[0040] The foregoing has shown and described the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of the invention. Various changes and modifications can be made to the invention without departing from its spirit and scope, and all such changes and modifications fall within the scope of the present invention as claimed. The scope of protection of the present invention is defined by the appended claims and their equivalents.

Claims

1. A continuous cutting and bending device for processing stainless steel bars, characterized in that: The device includes a feeder (1), a cutting assembly on one side of the feeder (1), a cutting blade (3) slidably disposed on one side of the feeder (1), a rectangular frame (2) on the side of the cutting blade (3) away from the feeder (1), two bending assemblies slidably disposed inside the rectangular frame (2), the bending assemblies including two first rectangular plates (21) slidably disposed inside the rectangular frame (2), a ring block (211) rotatably disposed in the middle of the first rectangular plate (21), a first cylindrical block (212) disposed in the middle of the ring block (211), two arc blocks (213) disposed at the upper end of the first cylindrical block (212), a second cylindrical block (214) disposed at the upper end of the ring block (211), a first rectangular strip (22) rotatably disposed in the middle of the rectangular frame (2), and turning tools (5) disposed at both ends on one side of the rectangular frame (2).

2. The continuous cutting and bending equipment for processing stainless steel bars according to claim 1, characterized in that: The lower end of the rectangular frame (2) is provided with a base plate (7). The four corners of the lower end of the rectangular frame (2) are fixed to a second rectangular plate (216) by a first cylindrical rod (215). The first cylindrical block (212) is fixed to the upper end of the second rectangular plate (216). The ring block (211) is rotatably disposed on the upper end of the second rectangular plate (216). The second rectangular plate (216) is slidably disposed on the upper end of the base plate (7).

3. The continuous cutting and bending equipment for processing stainless steel bars according to claim 2, characterized in that: The output ends of the first hydraulic rods (217) are fixed to one side of the second rectangular plate (216), and the first hydraulic rods (217) are fixed to the base plate (7).

4. The continuous cutting and bending equipment for processing stainless steel bars according to claim 3, characterized in that: The upper end of one of the arc-shaped blocks (213) on the upper end of the first cylindrical block (212) is fixedly connected to a second cylindrical rod (24), and the upper end of the second cylindrical rod (24) is fixedly connected to a first electric telescopic rod (241). One side of the first electric telescopic rod (241) is fixedly connected to the upper end of the base plate (7) through a U-shaped support rod (242).

5. The continuous cutting and bending equipment for processing stainless steel bars according to claim 4, characterized in that: The turning tool (5) is provided with a mounting base (51) on one side. The turning tool (5) is mounted on one side of the mounting base (51). A third hydraulic rod (52) is rotatably provided on the side of the mounting base (51) away from the turning tool (5). A second rectangular bar (53) is fixedly connected to the side of the third hydraulic rod (52) away from the mounting base (51). A first slide (54) is fixedly connected to the lower end of the second rectangular bar (53). A first slide rail (55) is fixedly connected to the upper end of the base plate (7) at the position corresponding to the first slide rail (54). The first slide rail (54) is slidably disposed on the upper end of the first slide rail (55).

6. The continuous cutting and bending equipment for processing stainless steel bars according to claim 5, characterized in that: The rectangular frame (2) has a first inclined plate (23) fixed to the side away from the turning tool (5), and the first inclined plate (23) is fixed to the upper end of the base plate (7) through the first support plate (231).

7. The continuous cutting and bending equipment for processing stainless steel bars according to claim 6, characterized in that: The first inclined plate (23) has a second inclined plate (232) slidably disposed on both sides of the first inclined plate (23). The second inclined plate (232) is fixedly connected to the corresponding second rectangular plate (216) through the first L-shaped rod (233).

8. The continuous cutting and bending equipment for processing stainless steel bars according to claim 1, characterized in that: The upper end of the cutting blade (3) is provided with a rectangular block (31). The lower end of the rectangular block (31) is fixed to the cutting blade (3) through a second hydraulic rod (32). One side of the rectangular block (31) is fixed to the second support plate (34) through a first connecting rod (33). The second support plate (34) is slidably disposed on the upper end of the base plate (7).

9. A continuous cutting and bending device for processing stainless steel bars according to claim 8, characterized in that: A limiting block (4) is slidably provided on the side of the rectangular frame (2) away from the cutting blade (3). A second L-shaped rod (41) is fixedly connected to one side of the limiting block (4). A third support plate (42) is fixedly connected to one side of the second L-shaped rod (41). The third support plate (42) is slidably provided on the upper end of the base plate (7). A second slider (43) is fixedly connected to one side of the lower end of the third support plate (42). A first slider (35) is fixedly connected to one side of the lower end of the second support plate (34). A bidirectional lead screw (44) is threadedly connected to the middle of the second slider (43) and the first slider (35). The two ends of the bidirectional lead screw (44) are rotatably provided on the upper end of the base plate (7) through the support block (45).

10. A continuous cutting and bending device for processing stainless steel bars according to claim 9, characterized in that: A rectangular box (6) is provided at the lower end of the rectangular frame (2) corresponding to the position of the cutting blade (3). One side of the rectangular box (6) is fixed to the second support plate (34) through the second connecting rod (61). A collection box (63) is fixed to one side of the rectangular box (6) through the pipe (62). The pipe (62) passes through the second support plate (34). An air pump is installed inside the collection box (63). The collection box (63) is fixed to the upper end of the base plate (7).

Citation Information

Patent Citations

  • A bending and cutting device for stainless steel round bar machining

    CN120663141B