A continuous cutting equipment for stainless steel angle bars

By designing a continuous cutting device for stainless steel angle bars with a combination structure of continuous cutting components and grinding discs, the problems of complex grinding after cutting and inconvenient debris cleaning have been solved, achieving efficient continuous cutting and grinding, and improving processing efficiency and finished product quality.

CN120307028BActive Publication Date: 2025-11-14TAIZHOU TIANSHENG STAINLESS STEEL PROD CO LTD
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Patent Information

Application Number
CN202510473776.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-04-16
Publication Date
2025-11-14
Estimated Expiration
2045-04-16

AI Technical Summary

Technical Problem

In existing technologies, the grinding process after cutting stainless steel angle bars is complex, the cutting steps are not continuous, and it is inconvenient to clean up debris and impurities, which affects processing efficiency and finished product quality.

Method used

Design a continuous cutting device for stainless steel angle bars. It adopts a combination structure of continuous cutting components and grinding disc. The continuous cutting and grinding of stainless steel angle bars is achieved by the high-speed rotation of the cutting blade and grinding disc. The cleaning components and fan system are used to clean up debris and impurities.

Benefits of technology

It enables continuous cutting and grinding of stainless steel angle bars, improves processing efficiency, ensures the quality of the cut surface, effectively cleans up debris and impurities, and simplifies the processing flow.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention belongs to the technical field of building material production equipment, specifically a continuous cutting device for stainless steel angle bars. It includes a continuous cutting component one and a continuous cutting component two. The continuous cutting component two includes a component disc and a connecting plate movably mounted on one side of the component disc. A cutting blade and a grinding disc are movably mounted on one side of the connecting plate. A component plate is fixedly mounted on the outer periphery of the component disc, and a cleaning component is movably mounted on the inner wall of the component plate. When the cutting blade or grinding disc rotates inside the semi-circular plate one and semi-circular plate two, two arc-shaped brushes scrape off debris and impurities on the outer side of the cutting blade or grinding disc. An electrically driven fan inside the component plate generates suction in the arc-shaped air channels. The debris and impurities scraped off inside the cleaning component are then drawn away by the arc-shaped air channels and finally transported to a designated location through an air guide pipe.
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Description

Technical Field

[0001] This invention belongs to the field of building material production equipment, specifically a continuous cutting device for stainless steel angle bars. Background Technology

[0002] Stainless steel angle bars are a type of building material. They are long strips of steel with two sides perpendicular to each other and forming an angle. They are widely used in the construction field because they have a variety of excellent properties and can meet the needs of different building structures and decorations. Angle bars usually need to be cut and polished before use. After processing, angle bars can be used in more building schemes.

[0003] A patent document with publication number CN222493042U discloses an angle steel cutting device, including a drive mechanism, a cutting and grinding mechanism fixedly installed on the moving end of the drive mechanism; a vertical plate fixedly installed on the right side of the top of the base plate, an angle steel placement platform fixedly installed on the inner side of the vertical plate via a second telescopic member, and a pressure plate fixedly connected to the right side of the top of the angle steel placement platform via a third telescopic member. This angle steel cutting device has a reasonable structural design and is easy to use. After cutting the angle steel, it can simultaneously grind the cut surface, eliminating the need for two separate devices.

[0004] In the above technical solution, stainless steel angle bars are processed by cutting and then grinding during transportation to complete the production of building materials. However, the grinding method after cutting the angle bars in the above technical solution is relatively complicated, and the cutting steps are not continuous, which makes the processing efficiency of the angle bars slow. In addition, the debris and impurities on the outside of the cutting and grinding structure are not easy to clean in time during continuous processing, which reduces the quality of the finished product after the angle bars are processed.

[0005] Therefore, the present invention provides a continuous cutting device for stainless steel angle 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 stainless steel angle bar continuous cutting equipment of the present invention includes a conveyor table one and a conveyor table two installed at one end of the conveyor table one. A movable table one is movably installed at the same end of the conveyor table one, and a movable table two is movably installed at the end of the conveyor table two facing the conveyor table one. The movable table one and the movable table two are movably connected.

[0008] A continuous cutting assembly is fixedly installed on one side of the conveyor platform one, and a continuous cutting assembly is fixedly installed on one side of the conveyor platform two. Angle steel conveying components are installed on the conveyor platform one, the moving platform one, and the moving platform two. The angle steel conveying components are used to convey stainless steel angle steel.

[0009] The second continuous cutting component and the first continuous cutting component are components made of the same structure. The second continuous cutting component includes a component disk and a connecting plate movably installed on one side of the component disk. A cutting blade and a grinding disc are movably installed on one side of the connecting plate. A component plate is fixedly installed on the outer periphery of the component disk. A cleaning component is movably installed on the inner wall of the component plate. The cleaning component cleans the outer side of the grinding disc and the cutting blade. The thickness of the grinding disc is greater than the thickness of the cutting blade. Continuous cutting of stainless steel angle bars is a means of producing building materials.

[0010] Preferably, the angle steel conveyor includes a conveyor bar fixedly installed above the first conveyor platform and a clamping bar movably installed on one side of the conveyor bar. The first conveyor platform and the first moving platform are connected by a telescopic structure, and the second conveyor platform and the second moving platform are connected by a telescopic structure.

[0011] Preferably, a non-linear connecting strip is fixedly installed on the side of the component tray, one end of which is connected to the second conveyor table, and an annular groove is formed on the side of the component tray facing the cutting blade.

[0012] Preferably, a plurality of guide posts are fixedly installed on the side of the connecting plate facing the component disk, and one end of the plurality of guide posts is slidably installed inside the annular groove. Two fixed motors are fixedly installed on the same side of the connecting plate, and the two fixed motors are used to drive the grinding disk and the cutting disc to work respectively.

[0013] Preferably, the component plate has an arc-shaped groove on the side facing the component disk, and the arc-shaped groove has a sliding groove and an arc-shaped air groove inside. The component plate has an internal cavity. The arc-shaped air groove communicates with the internal cavity of the component plate, while the sliding groove does not communicate with the internal cavity of the component plate. An air guide pipe is fixedly installed on the side of the component plate, and a fan is installed inside the cavity of the component plate.

[0014] Preferably, the cleaning component includes a semi-circular plate one fixedly installed inside the arc-shaped groove and a semi-circular plate two movably installed inside the arc-shaped groove. The semi-circular plate one and the semi-circular plate two are components made of the same structure. An arc-shaped brush block is fixedly installed on the side of the semi-circular plate one facing the semi-circular plate two. The arc-shaped air groove is located between the semi-circular plate one and the semi-circular plate two.

[0015] Preferably, a sliding block is fixedly installed on the outer side of the semi-circular plate II. The sliding block is slidably installed inside the sliding groove. A connecting rope I is fixedly installed inside the sliding groove. One end of the connecting rope I is fixedly connected to the side of the sliding block. Another connecting rope I is fixedly installed on the same side of the sliding block. The position of the connecting rope I is inside the annular spring I.

[0016] Preferably, a rotating ring is movably installed inside the annular groove, a fixed ring is fixedly installed on the outer side of the rotating ring, an internal rack is fixedly installed on the inner side of the rotating ring, a rotating gear is movably installed inside the component disk, the outer side of the rotating gear meshes with the internal rack, and a linkage component is installed on the outer side of the rotating gear.

[0017] Preferably, the linkage component includes a fixed cylinder fixedly installed inside the component disk, a spiral groove is formed through the fixed cylinder, a connecting column is fixedly installed on the outer side of the rotating gear, a guide column is fixedly installed on the outer side of the end of the connecting column, the connecting column is located inside the fixed cylinder, and the guide column is slidably installed inside the spiral groove.

[0018] Preferably, a second annular spring is fixedly installed at the end of the connecting column. One end of the second annular spring is fixedly connected to the inner wall of the fixed cylinder. A second connecting rope is installed inside the second annular spring. One end of the second connecting rope is connected to the end of the connecting column. The second connecting rope is connected to the cleaning component and is used to control the cleaning spacing of the cleaning component.

[0019] The beneficial effects of this invention are as follows:

[0020] 1. The stainless steel angle bar continuous cutting equipment of the present invention involves rotating a cutting blade and a grinding disc together until the high-speed rotating cutting blade contacts the stainless steel angle bar. The continued rotation of the cutting blade and grinding disc cuts the stainless steel angle bar. At this point, the distance between the second and first moving platforms is increased by electric means, thus increasing the distance between the two cut stainless steel angle bar segments. As the cutting blade and grinding disc continue to rotate, the cutting blade moves away from the two stainless steel angle bar segments, while the outer circumference of the grinding disc is positioned between the two segments. The distance between the two segments is then shortened again, ensuring that the cut surfaces of both segments are close to the outer circumference of the grinding disc. The high-speed rotating grinding disc, driven by electricity, grinds the cut surfaces of the stainless steel angle bar during this period. This allows for simultaneous cutting and grinding of the cut surfaces of stainless steel angle bars using a single device.

[0021] 2. The stainless steel angle bar continuous cutting equipment of the present invention cleans the cutting blade and the grinding disc when they are both located between a semi-circular plate one and a semi-circular plate two. Both semi-circular plates one and two are equipped with arc-shaped brush blocks. When the cutting blade or grinding disc rotates inside the semi-circular plates one and two, the two arc-shaped brush blocks scrape off the debris and impurities on the outside of the cutting blade or grinding disc. The fan inside the component plate is electrically driven, which causes the arc-shaped air groove to generate suction. At this time, the debris and impurities scraped off inside the cleaning component are drawn away by the arc-shaped air groove and finally transported to the designated location through the air guide pipe.

[0022] 3. The stainless steel angle bar continuous cutting equipment of the present invention allows the semi-circular plate two to move on one side of the arc groove through the cooperation of the sliding block and the sliding groove, thereby increasing or decreasing the distance between the semi-circular plate one and the semi-circular plate two. Under normal circumstances, in order to achieve the cutting effect, the blade of the cutting disc is relatively thin, while in order to achieve the grinding effect, the blade of the grinding disc is relatively thick. Therefore, by pulling the connecting rope one, the annular spring one is compressed or returned to its natural state, that is, the semi-circular plate two is moved. At this time, the distance between the semi-circular plate one and the semi-circular plate two is adjusted, thereby accommodating semi-circular plates one and two of different thicknesses and achieving a better cleaning effect. Attached Figure Description

[0023] The invention will now be further described with reference to the accompanying drawings.

[0024] Figure 1 This is a perspective view of the entire invention;

[0025] Figure 2 This is a three-dimensional schematic diagram of the conveyor table in this invention;

[0026] Figure 3 This is a three-dimensional schematic diagram of the continuous cutting component in this invention;

[0027] Figure 4 This is a three-dimensional schematic diagram of the component disk in this invention;

[0028] Figure 5 This is a three-dimensional schematic diagram of the cutting disc and grinding disc in this invention;

[0029] Figure 6 This is a three-dimensional schematic diagram of the component plate in this invention;

[0030] Figure 7 This is a three-dimensional schematic diagram of the cleaning component in this invention;

[0031] Figure 8 This is a three-dimensional schematic diagram of the rotating ring in this invention;

[0032] Figure 9 This is a three-dimensional schematic diagram of the linkage component in this invention.

[0033] In the diagram: 1. Conveyor table one; 11. Moving table one; 12. Angle steel conveyor component; 121. Conveyor bar; 122. Clamping bar; 2. Conveyor table two; 21. Moving table two; 3. Continuous cutting assembly one; 4. Continuous cutting assembly two; 5. Cutting disc; 6. Grinding disc; 7. Component disc; 71. Irregular connecting bar; 72. Connecting plate; 721. Guide column; 722. Fixed motor; 73. Annular groove; 74. Rotating ring; 741. Fixed ring; 742. Internal rack; 75. 76. Rotating gear; 76. Linkage component; 761. Connecting column; 7611. Guide column; 762. Fixed cylinder; 7621. Spiral groove; 763. Ring spring II; 764. Connecting rope II; 8. Component plate; 81. Arc groove; 82. Sliding groove; 83. Arc air groove; 84. Air guide pipe; 9. Cleaning component; 91. Semicircular plate I; 911. Arc brush block; 92. Semicircular plate II; 921. Sliding block; 922. Ring spring I; 923. Connecting rope I. Detailed Implementation

[0034] 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.

[0035] Example 1: As Figure 1-5 As shown, a continuous cutting device for stainless steel angle bars according to an embodiment of the present invention includes a conveyor table 1 and a conveyor table 2 installed at one end of the conveyor table 1. A movable table 11 is movably installed at the same end of the conveyor table 1, and a movable table 21 is movably installed at the end of the conveyor table 2 facing the conveyor table 1. The movable table 11 and the movable table 21 are movably connected.

[0036] A continuous cutting assembly 3 is fixedly installed on one side of conveyor table 1, and a continuous cutting assembly 4 is fixedly installed on one side of conveyor table 2. Angle steel conveying components 12 are installed on conveyor table 1, moving table 11 and moving table 21. Angle steel conveying components 12 are used to convey stainless steel angle steel.

[0037] The continuous cutting assembly 2 4 and the continuous cutting assembly 1 3 are components made of the same structure. The continuous cutting assembly 2 4 includes a component disk 7 and a connecting plate 72 movably installed on one side of the component disk 7. A cutting blade 5 and a grinding disk 6 are movably installed on one side of the connecting plate 72. A component plate 8 is fixedly installed on the outer periphery of the component disk 7. A cleaning component 9 is movably installed on the inner wall of the component plate 8. The cleaning component 9 cleans the outer side of the grinding disk 6 and the cutting blade 5. The thickness of the grinding disk 6 is greater than the thickness of the cutting blade 5. Continuous cutting of stainless steel angle bars is a means of producing building materials.

[0038] Specifically, stainless steel angle bars are placed inside angle bar conveying components 12 on conveyor table 1, moving table 11, and moving table 21, and transported by multiple angle bar conveying components 12. There is a gap between conveyor table 1 and moving table 11, and a gap between conveyor table 2 and moving table 21. When the placed stainless steel angle bars need to be cut, the component disk 7 drives the connecting plate 72, cutting blade 5, and grinding disk 6 to rotate via electric drive. The cutting blade 5 is driven to rotate at high speed. When the cutting blade 5 and grinding disk 6 rotate together until the high-speed rotating cutting blade 5 contacts the stainless steel angle bar, the continued rotation of the cutting blade 5 and grinding disk 6 will cut the stainless steel angle bar... Cutting begins. At this point, the distance between the moving stage 21 and the moving stage 11 is increased using electrical means, thus increasing the distance between the two cut stainless steel angle bars. As the cutting blade 5 and the grinding disc 6 continue to rotate, the cutting blade 5 moves away from the two stainless steel angle bars, while the outer circumference of the grinding disc 6 is positioned between them. The distance between the two stainless steel angle bars is then shortened again, ensuring that the cut surfaces of both stainless steel angle bars are close to the outer circumference of the grinding disc 6. The high-speed rotating grinding disc 6, driven by electricity, grinds the cut surfaces of the stainless steel angle bars during this period. While the grinding disc 6 is grinding, the cutting blade 5 rotates into the cleaning component 9. Through the self-rotation of the cutting blade 5, the cut surfaces of the stainless steel angle bars are ground. The cleaning component 9 cleans away debris and impurities that are difficult to fall off from the outer side of the cutting blade 5. After the grinding work is completed, the distance between the two sections of stainless steel angle steel is increased, and the cutting blade 5 and the grinding disc 6 continue to rotate until they return to their original positions after one revolution. At this time, the grinding disc 6 is inside the cleaning component 9. The self-rotation of the grinding disc 6 cleans away debris and impurities that are difficult to fall off from the outer side of the grinding disc 6. Then the cutting blade 5 and the grinding disc 6 can rotate again to continuously cut the stainless steel angle steel. The continuous cutting component 1 3 and the continuous cutting component 2 4 can simultaneously perform two continuous cuts on the entire stainless steel angle steel, accelerating the cutting of stainless steel angle steel. The cutting efficiency of steel angle steel can be improved by using a single device to simultaneously cut stainless steel angle steel and grind the cut surface. When the stainless steel angle steel is being cut, the grinding disc 6 is protected and cut by the cleaning component 9. The cutting disc 5 and the grinding disc 6 have the same counterweight. When the cutting disc 5 rotates at high speed to cut, the grinding disc 6 rotates and cleans inside the cleaning component 9. Because the cutting disc 5 and the grinding disc 6 are symmetrically distributed on one side of the connecting plate 72, the rotating grinding disc 6 and the cutting disc 5 can stably and continuously cut component 2 4, avoiding vibration during continuous cutting of component 2 4.

[0039] like Figure 2As shown, the angle steel conveyor 12 includes a conveyor bar 121 fixedly installed above the conveyor platform 1 and a clamping bar 122 movably installed on one side of the conveyor bar 121. The conveyor platform 1 and the moving platform 11 are connected by a telescopic structure, and the conveyor platform 2 and the moving platform 21 are connected by a telescopic structure.

[0040] like Figure 4-5 As shown, a non-linear connecting strip 71 is fixedly installed on the side of the component tray 7. One end of the non-linear connecting strip 71 is connected to the conveyor table 2. An annular groove 73 is opened on the side of the component tray 7 facing the cutting blade 5.

[0041] Multiple guide posts 721 are fixedly installed on the side of the connecting plate 72 facing the component disk 7. One end of the multiple guide posts 721 is slidably installed inside the annular groove 73. Two fixed motors 722 are fixedly installed on the same side of the connecting plate 72. The two fixed motors 722 are used to drive the grinding disk 6 and the cutting disc 5 to work respectively.

[0042] Specifically, the connecting plate 72 is mounted on one side of the component disk 7 via a shaft. Under electric drive, the connecting plate 72, the cutting blade 5, and the grinding disk 6 rotate. At this time, multiple guide posts 721 are slidably installed inside the annular groove 73. The multiple guide posts 721 play a guiding role to ensure that the rotation of the connecting plate 72, the cutting blade 5, and the grinding disk 6 will not be skewed.

[0043] like Figure 6-7 As shown, the component plate 8 has an arc-shaped groove 81 on the side facing the component disk 7. The arc-shaped groove 81 has a sliding groove 82 and an arc-shaped air groove 83 inside. The component plate 8 has an internal cavity. The arc-shaped air groove 83 is connected to the internal cavity of the component plate 8. The sliding groove 82 is not connected to the internal cavity of the component plate 8. An air guide pipe 84 is fixedly installed on the side of the component plate 8. A fan is installed inside the cavity of the component plate 8.

[0044] The cleaning component 9 includes a semi-circular plate 91 fixedly installed inside the arc-shaped groove 81 and a semi-circular plate 92 movably installed inside the arc-shaped groove 81. The semi-circular plate 91 and the semi-circular plate 92 are components made of the same structure. An arc-shaped brush block 911 is fixedly installed on the side of the semi-circular plate 91 facing the semi-circular plate 92. The arc-shaped air groove 83 is located between the semi-circular plate 91 and the semi-circular plate 92.

[0045] Specifically, the cutting disc 5 and the grinding disc 6 are cleaned when they are between the first semicircular plate 91 and the second semicircular plate 92. Both the first semicircular plate 91 and the second semicircular plate 92 are equipped with arc-shaped brush blocks 911. When the cutting disc 5 or the grinding disc 6 rotates inside the first semicircular plate 91 and the second semicircular plate 92, the two arc-shaped brush blocks 911 will scrape off the debris and impurities on the outside of the cutting disc 5 or the grinding disc 6. The fan inside the component plate 8 is electrically driven, which causes the arc-shaped air groove 83 to generate suction. At this time, the debris and impurities scraped off inside the cleaning component 9 are drawn away by the arc-shaped air groove 83 and finally transported to the designated position through the air guide pipe 84.

[0046] like Figure 7 As shown, a sliding block 921 is fixedly installed on the outer side of the semi-circular plate 92. The sliding block 921 is slidably installed inside the sliding groove 82. A connecting rope 923 is fixedly installed inside the sliding groove 82. One end of the connecting rope 923 is fixedly connected to the side of the sliding block 921. A connecting rope 923 is also fixedly installed on the same side of the sliding block 921. The position of the connecting rope 923 is inside the annular spring 922.

[0047] Specifically, the second semicircular plate 92 moves on one side of the arc groove 81 through the cooperation of the sliding block 921 and the sliding groove 82, which can increase or decrease the distance between the first semicircular plate 91 and the second semicircular plate 92. Under normal circumstances, in order to achieve the cutting effect, the blade of the cutting disc 5 is thinner, while in order to achieve the grinding effect, the blade of the grinding disc 6 is thicker. Therefore, by pulling the connecting rope 923, the ring spring 922 is compressed or restored to its natural state, that is, the second semicircular plate 92 is moved. At this time, the distance between the first semicircular plate 91 and the second semicircular plate 92 is adjusted, which can accommodate the different thicknesses of the first semicircular plate 91 and the second semicircular plate 92, and achieve a better cleaning effect.

[0048] Example 2: Figure 8-9 As shown in the comparative embodiment one, another embodiment of the present invention is as follows: a rotating ring 74 is movably installed inside the annular groove 73, a fixed ring 741 is fixedly installed on the outer side of the rotating ring 74, an internal rack 742 is fixedly installed on the inner side of the rotating ring 74, a rotating gear 75 is movably installed inside the component disk 7, the outer side of the rotating gear 75 meshes with the internal rack 742, and a linkage component 76 is installed on the outer side of the rotating gear 75.

[0049] The linkage component 76 includes a fixed cylinder 762 fixedly installed inside the component disk 7. A spiral groove 7621 is provided through the fixed cylinder 762. A connecting column 761 is fixedly installed on the outer side of the rotating gear 75. A guide column 7611 is fixedly installed on the outer side of the end of the connecting column 761. The connecting column 761 is located inside the fixed cylinder 762. The guide column 7611 is slidably installed inside the spiral groove 7621.

[0050] A second annular spring 763 is fixedly installed at the end of the connecting column 761. One end of the second annular spring 763 is fixedly connected to the inner wall of the fixed cylinder 762. A second connecting rope 764 is installed inside the second annular spring 763. One end of the second connecting rope 764 is connected to the end of the connecting column 761. The second connecting rope 764 is connected to the cleaning component 9 and is used to control the cleaning spacing of the cleaning component 9. One end of multiple guide columns 721 is connected to the rotating ring 74. The second connecting rope 764 is hidden inside the component plate 8 and the component disk 7 and one end of it is connected to the first connecting rope 923.

[0051] Specifically, when the grinding disc 6 is inside the cleaning component 9, the distance between the semi-circular plate 92 and the semi-circular plate 91 is relatively large to accommodate the thickness of the grinding disc 6. At this time, the rotating gear 75 is engaged with the internal rack 742, meaning the guide post 7611 is located in the spiral groove 7621 closest to the rotating gear 75. The annular spring 763 is under tension. Because one end of the connecting rope 764 is connected to the connecting rope 923, the annular spring 922 is stretched. When the cutting disc 5 continues to rotate and the grinding disc 6 continues to cut, the grinding disc 6 will rotate and disengage from the cleaning component 9. The rotating ring 74, which rotates along with the multiple guide posts 721, will also rotate. At this time, the toothless inner side of the rotating ring 74 is close to the rotating gear 75, meaning the rotating gear 75 and the internal rack 742 are no longer engaged. Under the restoring force of the annular spring 763 and the annular spring 922, the guide post 7611 is stretched in the spiral groove 7621. The rotary groove 7621 slides inside, at which time the rotating gear 75 and the connecting column 761 rotate and move towards the fixed cylinder 762 until the second ring spring 763 and the first ring spring 922 return to their original state. At this time, the distance between the first semicircular plate 91 and the second semicircular plate 92 is small. After the cutting blade 5 finishes cutting, the cutting blade 5 can rotate between the first semicircular plate 91 and the second semicircular plate 92 for self-rotation cleaning. The rotation of the cutting blade 5 and the grinding disc 6 can cause the internal rack 742 to continuously mesh and separate from the rotating gear 75. At this time, the rotating gear 75 will rotate and move back and forth under the action of the linkage component 76, thereby pulling the second connecting rope 764 and the first connecting rope 923 to control the distance between the first semicircular plate 91 and the second semicircular plate 92. This can more effectively clean the cutting blade 5 and the grinding disc 6 of different thicknesses, integrating cutting, grinding and cleaning, improving the cutting efficiency and processing quality of stainless steel angle bars.

[0052] Working Principle: Stainless steel angle bars are placed inside angle bar conveying components 12 on conveyor table 1, moving table 11, and moving table 21, and transported by multiple angle bar conveying components 12. There is a gap between conveyor table 11 and moving table 11, and a gap between conveyor table 21 and moving table 21. When the placed stainless steel angle bars need to be cut, the component disk 7 drives the connecting plate 72, cutting blade 5, and grinding disk 6 to rotate via electric drive. The cutting blade 5 is driven to rotate at high speed. When the cutting blade 5 and grinding disk 6 rotate together until the high-speed rotating cutting blade 5 contacts the stainless steel angle bar, the continued rotation of the cutting blade 5 and grinding disk 6 will cut the stainless steel angle bar. At this point, the distance between moving table 21 and moving table 11 is increased by electric drive. The spacing of 11 increases the distance between the two cut stainless steel angle bars. As the cutting blade 5 and the grinding disc 6 continue to rotate, the cutting blade 5 moves away from the two stainless steel angle bars, while the outer circumference of the grinding disc 6 is positioned between them. The spacing between the two stainless steel angle bars is then shortened again, ensuring that the cut surfaces of both angle bars are close to the outer circumference of the grinding disc 6. The high-speed rotating grinding disc 6, driven by electricity, grinds the cut surfaces of the stainless steel angle bars. While the grinding disc 6 is grinding, the cutting blade 5 rotates into the cleaning component 9. Through the rotation of the cutting blade 5, the cleaning component 9 cleans away debris and impurities that are difficult to fall off from the outer side of the cutting blade 5. After grinding is complete, the spacing between the two stainless steel angle bars is increased. Continue rotating the cutting disc 5 and grinding disc 6 until they return to their original positions after one full rotation. At this point, the grinding disc 6 is inside the cleaning component 9. The self-rotation of the grinding disc 6 cleans away debris and impurities that are difficult to fall off from its outer surface. The cutting disc 5 and grinding disc 6 can then rotate again to continuously cut the stainless steel angle. The combination of continuous cutting component 1 3 and continuous cutting component 2 4 allows for simultaneous secondary continuous cutting of the entire stainless steel angle, accelerating the cutting efficiency. This allows for simultaneous cutting and surface grinding of the stainless steel angle using a single device. While the stainless steel angle is being cut, the grinding disc 6 is protected by the cleaning component 9 during the cutting process. When cutting stainless steel angle bars, the grinding disc 6 is protected and cut by the cleaning component 9. The cutting blade 5 and the grinding disc 6 have the same counterweight. When the cutting blade 5 rotates at high speed to cut, the grinding disc 6 rotates and cleans inside the cleaning component 9. Because the cutting blade 5 and the grinding disc 6 are symmetrically distributed on one side of the connecting plate 72, the rotating grinding disc 6 and the cutting blade 5 can stably and continuously cut the component 2 4, avoiding vibration during continuous cutting of the component 2 4. The cutting blade 5 and the grinding disc 6 are cleaned when they are between the semi-circular plate 1 91 and the semi-circular plate 2 92. Both the semi-circular plate 1 91 and the semi-circular plate 2 92 are equipped with arc-shaped brush blocks 911. When the cutting blade 5 or the grinding disc 6 rotates inside the semi-circular plate 1 91 and the semi-circular plate 2 92,Two arc-shaped brush blocks 911 scrape off debris and impurities on the outside of the cutting disc 5 or grinding disc 6. An electrically driven fan inside the component plate 8 generates suction in the arc-shaped air groove 83. The debris and impurities scraped off inside the cleaning component 9 are then drawn away by the arc-shaped air groove 83 and finally transported to a designated location via the air guide pipe 84.

[0053] 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 device for stainless steel angle bars, comprising a first conveyor table (1) and a second conveyor table (2) installed at one end of the first conveyor table (1), characterized in that: A movable platform 1 (11) is movably installed at the same end of the conveyor platform 1 (1), and a movable platform 2 (21) is movably installed at the end of the conveyor platform 2 (2) facing the conveyor platform 1 (1). The movable platform 1 (11) and the movable platform 2 (21) are movably connected. A continuous cutting component 1 (3) is fixedly installed on one side of the conveyor platform 1 (1), and a continuous cutting component 2 (4) is fixedly installed on one side of the conveyor platform 2 (2). Angle steel conveying components (12) are installed on the conveyor platform 1 (1), the moving platform 1 (11) and the moving platform 2 (21). The angle steel conveying components (12) are used to convey stainless steel angle steel. The continuous cutting assembly 2 (4) and the continuous cutting assembly 1 (3) are components made of the same structure. The continuous cutting assembly 2 (4) includes a component disk (7) and a connecting plate (72) movably installed on one side of the component disk (7). A cutting blade (5) and a grinding disk (6) are movably installed on one side of the connecting plate (72). A component plate (8) is fixedly installed on the outer periphery of the component disk (7). A cleaning component (9) is movably installed on the inner wall of the component plate (8). The cleaning component (9) cleans the outer side of the grinding disk (6) and the cutting blade (5). The thickness of the grinding disk (6) is greater than the thickness of the cutting blade (5). Continuous cutting of stainless steel angle steel is a means of producing building materials. The component plate (8) has an arc-shaped groove (81) on the side facing the component disk (7). The arc-shaped groove (81) has a sliding groove (82) and an arc-shaped air groove (83) inside. The component plate (8) has an internal cavity. The arc-shaped air groove (83) is connected to the internal cavity of the component plate (8). The sliding groove (82) is not connected to the internal cavity of the component plate (8). An air guide pipe (84) is fixedly installed on the side of the component plate (8). A fan is installed inside the cavity of the component plate (8). The cleaning component (9) includes a semi-circular plate one (91) fixedly installed inside the arc groove (81) and a semi-circular plate two (92) movably installed inside the arc groove (81). The semi-circular plate one (91) and the semi-circular plate two (92) are components made of the same structure. An arc-shaped brush block (911) is fixedly installed on the side of the semi-circular plate one (91) facing the semi-circular plate two (92). The arc-shaped air groove (83) is located between the semi-circular plate one (91) and the semi-circular plate two (92). A sliding block (921) is fixedly installed on the outer side of the semi-circular plate 2 (92). The sliding block (921) is slidably installed inside the sliding groove (82). A connecting rope 1 (923) is fixedly installed inside the sliding groove (82). One end of the connecting rope 1 (923) is fixedly connected to the side of the sliding block (921). A connecting rope 1 (923) is also fixedly installed on the same side of the sliding block (921). The position of the connecting rope 1 (923) is inside the annular spring 1 (922).

2. The continuous cutting equipment for stainless steel angle bars according to claim 1, characterized in that: The angle steel conveyor (12) includes a conveyor bar (121) fixedly installed above the conveyor platform (1) and a clamping bar (122) movably installed on one side of the conveyor bar (121). The conveyor platform (1) and the moving platform (11) are connected by a telescopic structure, and the conveyor platform (2) and the moving platform (21) are connected by a telescopic structure.

3. The continuous cutting equipment for stainless steel angle bars according to claim 1, characterized in that: A non-linear connecting strip (71) is fixedly installed on the side of the component tray (7). One end of the non-linear connecting strip (71) is connected to the second conveyor (2). An annular groove (73) is opened on the side of the component tray (7) facing the cutting plate (5).

4. The continuous cutting equipment for stainless steel angle bars according to claim 3, characterized in that: Multiple guide posts (721) are fixedly installed on the side of the connecting plate (72) facing the component disk (7). One end of the multiple guide posts (721) is slidably installed inside the annular groove (73). Two fixed motors (722) are fixedly installed on the same side of the connecting plate (72). The two fixed motors (722) are used to drive the grinding disk (6) and the cutting disc (5) to work respectively.

5. The continuous cutting equipment for stainless steel angle bars according to claim 3, characterized in that: A rotating ring (74) is movably installed inside the annular groove (73). A fixed ring (741) is fixedly installed on the outer side of the rotating ring (74). An internal rack (742) is fixedly installed on the inner side of the rotating ring (74). A rotating gear (75) is movably installed inside the component disk (7). The outer side of the rotating gear (75) meshes with the internal rack (742). A linkage component (76) is installed on the outer side of the rotating gear (75).

6. The continuous cutting equipment for stainless steel angle bars according to claim 5, characterized in that: The linkage component (76) includes a fixed cylinder (762) fixedly installed inside the component disk (7). A spiral groove (7621) is provided through the fixed cylinder (762). A connecting column (761) is fixedly installed on the outer side of the rotating gear (75). A guide column (7611) is fixedly installed on the outer side of the end of the connecting column (761). The connecting column (761) is located inside the fixed cylinder (762). The guide column (7611) is slidably installed inside the spiral groove (7621).

7. A continuous cutting device for stainless steel angle bars according to claim 6, characterized in that: A second annular spring (763) is fixedly installed at the end of the connecting column (761). One end of the second annular spring (763) is fixedly connected to the inner wall of the fixed cylinder (762). A second connecting rope (764) is installed inside the second annular spring (763). One end of the second connecting rope (764) is connected to the end of the connecting column (761). The second connecting rope (764) is connected to the cleaning component (9) and is used to control the cleaning spacing of the cleaning component (9).

Citation Information

Patent Citations

  • Wall surface polishing device for building construction

    CN219521513U

  • Angle steel cutting equipment

    CN222493042U