Continuous cutting equipment for stainless steel angle steel
The continuous cutting and grinding device addresses inefficiencies in notched steel angle processing by integrating synchronized cutting and grinding with debris removal, improving efficiency and quality through unified operations.
Patent Information
- Application Number
- CN202510473776.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-16
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2045-04-16
AI Technical Summary
The existing stainless steel angle steel cutting equipment has a complicated grinding process after cutting, the cutting steps are not continuous enough, and the debris and debris are inconvenient to clean, which affects the processing efficiency and finished product quality.
A stainless steel angle steel continuous cutting equipment is designed, using a combination structure of continuous cutting components and grinding discs. Continuous cutting and grinding are achieved through the synchronous rotation of cutting sheets and grinding discs, and cleaning components are used to clean debris, combining fan suction and adjustable cleaning component structure to achieve efficient cleaning.
The continuous cutting and grinding of stainless steel angle steel is realized, processing efficiency is improved, the quality of the cutting surface is ensured, and debris and debris are effectively cleaned, improving the continuous processing capacity of the equipment.
Smart Images

Figure CN120307028A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the field of building material production equipment, and specifically relates to a continuous cutting equipment for stainless steel angle steel. Background Art
[0002] Stainless steel angle steel is a kind of building material. It is a long strip steel with two sides perpendicular to each other at an angle and is widely used in the construction field. Because of its many excellent properties, it can meet the needs of different building structures and decorations. When using angle steel, it usually needs to be cut and polished. The processed angle steel can be applied to more building projects.
[0003] A patent document with the publication number of CN222493042U discloses an angle steel cutting equipment, which includes a driving mechanism. A cutting and grinding mechanism is fixedly installed on the moving end of the driving mechanism; a vertical plate is fixedly installed on the right side of the top of the bottom plate. An angle steel placing table is fixedly installed inside the vertical plate through a second telescopic member, and a pressing plate is fixedly connected to the right side of the top of the angle steel placing table through a third telescopic member. This angle steel cutting equipment has a reasonable structural design and is easy to use. After cutting the angle steel, it can realize the simultaneous grinding work on the cutting surface without the need to use two devices for processing.
[0004] In the above technical solution, when transporting stainless steel angle steel, the stainless steel angle steel is processed by cutting first and then grinding, so as to complete the production of building materials. However, in the above technical solution, the means of grinding after cutting the angle steel is relatively complex, and the cutting steps are not continuous, resulting in a slow processing efficiency of the angle steel. Moreover, the debris and sundries on the outside of the cutting and grinding structures are not easy to be cleaned in time during continuous processing, thereby reducing the finished product quality of the processed angle steel.
[0005] Therefore, the present invention provides a continuous cutting equipment for stainless steel angle steel. Summary of the Invention
[0006] In order to make up for the deficiencies of the prior art and solve at least one of the technical problems proposed in the background art.
[0007] The technical solution adopted by the present invention to solve its technical problems is as follows: A continuous cutting equipment for stainless steel angle steel according to the present invention includes a first conveying table and a second conveying table installed at one end of the first conveying table. A first moving table is movably installed at the same end of the first conveying table, and a second moving table is movably installed at the end of the second conveying table facing the first conveying table. The first moving table and the second moving table are movably connected; A first continuous cutting assembly is fixedly installed on one side of the first conveying table, and a second continuous cutting assembly is fixedly installed on one side of the second conveying table. Angle steel conveying members are installed on the first conveying table, the first moving table, and the second moving table, and the angle steel conveying members are used for conveying stainless steel angle steel; The continuous cutting component two and the continuous cutting component one are components made of the same structure. The continuous cutting component two includes a component disk and a connecting plate movably installed on one side of the component disk. On one side of the connecting plate, a cutting blade and a grinding disk are movably installed. On the outer side of the periphery of the component disk, a component plate is fixedly installed. On the inner wall of the component plate, a cleaning component is movably installed. The cleaning component cleans the outer sides of the grinding disk and the cutting blade. The thickness of the grinding disk is greater than that of the cutting blade. The continuous cutting of stainless steel angle steel is a production means of building materials.
[0008] Preferably, the angle steel conveying component includes a conveying strip fixedly installed above the first conveying table and a clamping strip movably installed on one side of the conveying strip. The first conveying table and the first moving table are connected by a telescopic structure. The second conveying table and the second moving table are connected by a telescopic structure.
[0009] Preferably, a special-shaped connecting strip is fixedly installed on the side of the component disk. One end of the special-shaped connecting strip is connected to the second conveying table. An annular groove is formed on the side of the component disk facing the cutting blade.
[0010] Preferably, a plurality of guide columns are fixedly installed on the side of the connecting plate facing the component disk. One ends of the plurality of guide columns are slidably installed inside the annular groove. Two fixed motors are fixedly installed on the same side of the connecting plate. The two fixed motors are used to drive the grinding disk and the cutting blade to work respectively.
[0011] Preferably, an arc-shaped groove is formed on the side of the component plate facing the component disk. A sliding groove and an arc-shaped air groove are formed inside the arc-shaped groove. The component plate has an internal cavity. The arc-shaped air groove communicates with the internal cavity of the component plate. 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. A blower is arranged inside the cavity of the component plate.
[0012] 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.
[0013] Preferably, a sliding block is fixedly installed on the outer side of the semi-circular plate two. The sliding block is slidably installed inside the sliding groove. A connecting rope one is fixedly installed inside the sliding groove. One end of the connecting rope one is fixedly connected to the side of the sliding block. Another connecting rope one is also fixedly installed on the same side of the sliding block. The connecting rope one is located inside the annular spring one.
[0014] 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.
[0015] Preferably, the linkage component includes a fixed cylinder fixedly installed inside the component disk, a spiral groove is penetrated and opened on 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.
[0016] Preferably, an annular spring two is fixedly installed at the end of the connecting column, one end of the annular spring two is fixedly connected to the inner wall of the fixed cylinder, a connecting rope two is installed inside the annular spring two, one end of the connecting rope two is connected to the end of the connecting column, and the connecting rope two is connected to the cleaning component for controlling the cleaning distance of the cleaning component.
[0017] The beneficial effects of the present invention are as follows: 1. For a stainless steel angle steel continuous cutting device of the present invention, when the cutting blade and the grinding disc rotate together until the high-speed rotating cutting blade contacts the stainless steel angle steel, the continuous rotation of the cutting blade and the grinding disc will cut the stainless steel angle steel. At this time, the distance between the second moving table and the first moving table is increased by electric means, that is, the distance between the two sections of stainless steel angle steel after cutting is increased. As the cutting blade and the grinding disc continue to rotate, the cutting blade moves away from the two sections of stainless steel angle steel at this time, while the outer circumference of the grinding disc is between the two sections of stainless steel angle steel. Then, the distance between the two sections of stainless steel angle steel is controlled to be shortened again, so that the cutting surfaces of the two sections of stainless steel angle steel are both close to the outer circumference of the grinding disc. The cutting surfaces of the stainless steel angle steel at this section are polished by the high-speed rotating grinding disc driven by electricity, and the stainless steel angle steel can be cut and the cutting surface can be polished by one device at the same time.
[0018] 2. For a stainless steel angle steel continuous cutting device of the present invention, the cleaning is carried out when both the cutting blade and the grinding disc are between the first semi-circular plate and the second semi-circular plate. Both the first semi-circular plate and the second semi-circular plate are provided with arc-shaped brush blocks. When the cutting blade or the grinding disc rotates inside the first semi-circular plate and the second semi-circular plate, the two arc-shaped brush blocks will scrape off the debris and sundries existing on the outer side of the cutting blade or the grinding disc. The blower inside the component plate is electrically driven, so that the arc-shaped air groove generates suction. At this time, the debris and sundries scraped off inside the cleaning component are sucked away by the arc-shaped air groove and finally conveyed to the designated position through the air duct.
[0019] 3. A continuous cutting device for stainless steel angle steel according to the present invention can move the semi-circular plate II on one side of the arc groove through the cooperation of the sliding block and the sliding groove, that is, it can increase or decrease the distance between the semi-circular plate I and the semi-circular plate II. Usually, in order to achieve the cutting effect, the blade of the cutting disc is thinner, and in order to achieve the grinding effect, the blade of the grinding disc is thicker. Therefore, by pulling the connecting rope I, the annular spring I can be compressed or restored to its natural state, that is, the semi-circular plate II is moved. At this time, the distance between the semi-circular plate I and the semi-circular plate II is adjusted, and thus it can adapt to semi-circular plates I and II with different thicknesses, achieving a better cleaning effect. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] The present invention will be further described below with reference to the drawings.
[0021] Figure 1 is the overall three-dimensional view of the present invention; Figure 2 is the three-dimensional schematic diagram of the conveying table I in the present invention; Figure 3 is the three-dimensional schematic diagram of the continuous cutting component II in the present invention; Figure 4 is the three-dimensional schematic diagram of the component disc in the present invention; Figure 5 is the three-dimensional schematic diagram of the cutting disc and the grinding disc in the present invention; Figure 6 is the three-dimensional schematic diagram of the component plate in the present invention; Figure 7 is the three-dimensional schematic diagram of the cleaning component in the present invention; Figure 8 is the three-dimensional schematic diagram of the rotating ring in the present invention; Figure 9 is the three-dimensional schematic diagram of the linkage component in the present invention.
[0022] In the figure: 1. First conveying table; 11. First moving table; 12. Angle steel conveying member; 121. Conveying strip; 122. Clamping strip; 2. Second conveying table; 21. Second moving table; 3. First continuous cutting assembly; 4. Second continuous cutting assembly; 5. Cutting disc; 6. Grinding disc; 7. Component disc; 71. Special-shaped connecting strip; 72. Connecting plate; 721. Guide post; 722. Fixed motor; 73. Annular groove; 74. Rotating ring; 741. Fixed ring; 742. Internal rack; 75. Rotating gear; 76. Linking member; 761. Connecting column; 7611. Guide post; 762. Fixed cylinder; 7621. Spiral groove; 763. Second annular spring; 764. Second connecting rope; 8. Component plate; 81. Arc groove; 82. Sliding groove; 83. Arc-shaped air groove; 84. Air duct; 9. Cleaning member; 91. First semi-circular plate; 911. Arc-shaped brush block; 92. Second semi-circular plate; 921. Sliding block; 922. First annular spring; 923. First connecting rope. Detailed implementation mode
[0023] In order to make the technical means, creative features, achieved purposes and functions of the present invention easy to understand, the present invention will be further described below in conjunction with the specific implementation modes.
[0024] Example 1: As Figures 1-5 shown, a continuous cutting device for stainless steel angle steel according to an embodiment of the present invention includes a first conveying table 1 and a second conveying table 2 installed at one end of the first conveying table 1. A first moving table 11 is movably installed at the same end of the first conveying table 1, and a second moving table 21 is movably installed at one end of the second conveying table 2 facing the first conveying table 1. The first moving table 11 and the second moving table 21 are movably connected; A first continuous cutting assembly 3 is fixedly installed on one side of the first conveying table 1, and a second continuous cutting assembly 4 is fixedly installed on one side of the second conveying table 2. Angle steel conveying members 12 are installed on the first conveying table 1, the first moving table 11 and the second moving table 21. The angle steel conveying members 12 are used for conveying stainless steel angle steel; The second continuous cutting assembly 4 and the first continuous cutting assembly 3 are made of the same structure. The second continuous cutting assembly 4 includes a component disc 7 and a connecting plate 72 movably installed on one side of the component disc 7. A cutting disc 5 and a grinding disc 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 disc 7. A cleaning member 9 is movably installed on the inner wall of the component plate 8. The cleaning member 9 cleans the outer sides of the grinding disc 6 and the cutting disc 5. The thickness of the grinding disc 6 is greater than the thickness of the cutting disc 5. The continuous cutting of stainless steel angle steel is a production means for building materials.
[0025] Specifically, the stainless-steel angle steel is placed inside the angle-steel conveyor 12 on the first conveyor table 1, the first moving table 11, and the second moving table 21, and is transported by multiple angle-steel conveyors 12. At this time, there is a spacing between the first conveyor table 1 and the first moving table 11, and there is a spacing between the second conveyor table 2 and the second moving table 21. When the placed stainless-steel angle steel needs to be cut, the component disk 7 drives the connecting plate 72, the cutting blade 5, and the grinding disk 6 to rotate through electric drive. At this time, the cutting blade 5 is driven to rotate at a high speed. When the cutting blade 5 and the grinding disk 6 rotate together until the high-speed rotating cutting blade 5 contacts the stainless-steel angle steel, the continuous rotation of the cutting blade 5 and the grinding disk 6 will cut the stainless-steel angle steel. At this time, the spacing between the second moving table 21 and the first moving table 11 is increased by electric means, that is, the spacing between the two sections of stainless-steel angle steel after cutting is increased. As the cutting blade 5 and the grinding disk 6 continue to rotate, the cutting blade 5 moves away from the two sections of stainless-steel angle steel at this time, while the outer circumference of the grinding disk 6 is between the two sections of stainless-steel angle steel. The spacing between the two sections of stainless-steel angle steel is controlled to be shortened again, so that the cutting surfaces of the two sections of stainless-steel angle steel are both close to the outer circumference of the grinding disk 6. The cutting surfaces of the stainless-steel angle steel at this time period are ground by the high-speed rotating grinding disk 6 under electric drive. When the grinding disk 6 is performing the grinding work, the cutting blade 5 rotates into the cleaning component 9. Through the self-rotation of the cutting blade 5, the cleaning component 9 cleans the debris and sundries that are not easy to fall off on the outside of the cutting blade 5. When the grinding work is completed, the spacing between the two sections of stainless-steel angle steel is controlled to increase, and the cutting blade 5 and the grinding disk 6 are continuously rotated, so that the cutting blade 5 and the grinding disk 6 are in their original positions after rotating one circle. At this time, the grinding disk 6 is inside the cleaning component 9, and the debris and sundries that are not easy to fall off on the outside of the grinding disk 6 are cleaned through the self-rotation of the grinding disk 6. At this time, the cutting blade 5 and the grinding disk 6 can rotate for the next time to continuously cut the stainless-steel angle steel. The settings of the first continuous cutting component 3 and the second continuous cutting component 4 can simultaneously perform secondary simultaneous continuous cutting on the entire stainless-steel angle steel, accelerating the cutting efficiency of the stainless-steel angle steel. At this time, a device can simultaneously cut the stainless-steel angle steel and grind the cutting surface. When the stainless-steel angle steel is cut, the grinding disk 6 is protected and cut through the cleaning component 9. When the stainless-steel angle steel is cut, the grinding disk 6 is protected and cut through the cleaning component 9. The weights of the cutting blade 5 and the grinding disk 6 are the same. When the cutting blade 5 rotates at a high speed for cutting, the grinding disk 6 rotates and cleans inside the cleaning component 9. Because the cutting blade 5 and the grinding disk 6 are symmetrically distributed on one side of the connecting plate 72, the simultaneously rotating grinding disk 6 and cutting blade 5 can stabilize the second continuous cutting component 4 and prevent the second continuous cutting component 4 from vibrating during operation.
[0026] Such as Figure 2As shown in the figure, the angle steel conveyor 12 includes a conveyor strip 121 fixedly installed above the first conveyor table 1 and a clamping strip 122 movably installed on one side of the conveyor strip 121. The first conveyor table 1 and the first moving table 11 are connected by a telescopic structure, and the second conveyor table 2 and the second moving table 21 are connected by a telescopic structure.
[0027] As Figures 4-5 shown, a special-shaped connecting strip 71 is fixedly installed on the side of the component disk 7. One end of the special-shaped connecting strip 71 is connected to the second conveyor table 2, and an annular groove 73 is formed on the side of the component disk 7 facing the cutting blade 5.
[0028] On the side of the connecting plate 72 facing the component disk 7, a plurality of guide posts 721 are fixedly installed. One ends of the plurality of guide posts 721 are slidably installed inside the annular groove 73. On the same side of the connecting plate 72, two fixed motors 722 are fixedly installed, and the two fixed motors 722 are used to drive the grinding disk 6 and the cutting blade 5 to work respectively.
[0029] Specifically, the connecting plate 72 is installed on one side of the component disk 7 through a shaft. Under the drive of electricity, the connecting plate 72, the cutting blade 5, and the grinding disk 6 rotate. At this time, the plurality of guide posts 721 are slidably installed inside the annular groove 73, and the plurality of 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.
[0030] As Figures 6-7 shown, on the side of the component plate 8 facing the component disk 7, an arc-shaped groove 81 is formed. Inside the arc-shaped groove 81, a sliding groove 82 and an arc-shaped air groove 83 are formed. The inner cavity of the component plate 8 is provided. The arc-shaped air groove 83 is communicated with the inner cavity of the component plate 8, and the sliding groove 82 is not communicated with the inner cavity of the component plate 8. A trachea 84 is fixedly installed on the side of the component plate 8, and a blower is arranged inside the cavity of the component plate 8.
[0031] The cleaning component 9 includes a semi-circular plate one 91 fixedly installed inside the arc-shaped groove 81 and a semi-circular plate two 92 movably installed inside the arc-shaped groove 81. The semi-circular plate one 91 and the semi-circular plate two 92 are components made of the same structure. On the side of the semi-circular plate one 91 facing the semi-circular plate two 92, an arc-shaped brush block 911 is fixedly installed. The arc-shaped air groove 83 is located between the semi-circular plate one 91 and the semi-circular plate two 92.
[0032] Specifically, the cutting disc 5 and the grinding disc 6 are cleaned when they are both between the semi-circular plate one 91 and the semi-circular plate two 92. Both the semi-circular plate one 91 and the semi-circular plate two 92 are provided with arc-shaped brush blocks 911. When the cutting disc 5 or the grinding disc 6 rotates inside the semi-circular plate one 91 and the semi-circular plate two 92, the two arc-shaped brush blocks 911 will scrape off the debris and sundries existing on the outside of the cutting disc 5 or the grinding disc 6. The fan inside the component plate 8 is electrically driven, so that the arc-shaped air groove 83 generates suction. At this time, the debris and sundries scraped off inside the cleaning component 9 are sucked away by the arc-shaped air groove 83 and finally transported to the designated position through the air duct 84.
[0033] As Figure 7 shown, a sliding block 921 is fixedly installed on the outside of the semi-circular plate two 92. The sliding block 921 is slidably installed inside the sliding groove 82. One end of a connecting rope one 923 is fixedly connected to the side of the sliding block 921 inside the sliding groove 82. A connecting rope one 923 is also fixedly installed on the same side of the sliding block 921, and the connecting rope one 923 is located inside the annular spring one 922.
[0034] Specifically, the semi-circular plate two 92 moves on one side of the arc-shaped groove 81 through the cooperation of the sliding block 921 and the sliding groove 82, that is, the distance between the semi-circular plate one 91 and the semi-circular plate two 92 can be increased or decreased. Usually, in order to achieve the cutting effect, the blade of the cutting disc 5 is thinner, and in order to achieve the grinding effect, the blade of the grinding disc 6 is thicker. Therefore, by pulling the connecting rope one 923, the annular spring one 922 can be compressed or restored to its natural state, that is, the semi-circular plate two 92 is moved. At this time, the distance between the semi-circular plate one 91 and the semi-circular plate two 92 is adjusted, so as to adapt to semi-circular plates one 91 and two 92 with different thicknesses and achieve a better cleaning effect.
[0035] Embodiment 2: As Figures 8-9 shown, compared with Embodiment 1, another implementation manner of the present invention is as follows: A rotating ring 74 is movably installed inside the annular groove 73. A fixing ring 741 is fixedly installed on the outside of the rotating ring 74. An internal rack 742 is fixedly installed on the inside of the rotating ring 74. A rotating gear 75 is movably installed inside the component disc 7. The outside of the rotating gear 75 meshes with the internal rack 742, and a linkage component 76 is installed on the outside of the rotating gear 75.
[0036] The linkage component 76 includes a fixing cylinder 762 fixedly installed inside the component disc 7. A spiral groove 7621 is formed through the fixing cylinder 762. A connecting column 761 is fixedly installed on the outside of the rotating gear 75. A guide column 7611 is fixedly installed on the outside of the end of the connecting column 761. The connecting column 761 is located inside the fixing cylinder 762, and the guide column 7611 is slidably installed inside the spiral groove 7621.
[0037] An annular spring two 763 is fixedly installed at the end of the connecting column 761. One end of the annular spring two 763 is fixedly connected to the inner wall of the fixed cylinder 762. A connecting rope two 764 is installed inside the annular spring two 763. One end of the connecting rope two 764 is connected to the end of the connecting column 761, and the connecting rope two 764 is connected to the cleaning member 9 for controlling the cleaning distance of the cleaning member 9. One end of multiple guide columns 721 is connected to the rotating ring 74. The connecting rope two 764 is hidden inside the member plate 8 and the member disc 7 and one end of it is connected to the connecting rope one 923.
[0038] Specifically, when the grinding disc 6 is inside the cleaning member 9, the distance between the semi-circular plate two 92 and the semi-circular plate one 91 is relatively large to accommodate the thickness of the grinding disc 6. At this time, the rotating gear 75 and the inner rack 742 are in a meshing state, that is, the guide post 7611 is at the position inside the spiral groove 7621 closest to the rotating gear 75. At this time, the annular spring two 763 is in a stretched state. Because one end of the connecting rope two 764 is connected to the connecting rope one 923, the annular spring one 922 is stretched. When the cutting blade 5 and the grinding disc 6 continue to rotate and the cutting blade 5 cuts, the grinding disc 6 will rotate out of the cleaning member 9, and the rotating ring 74 that rotates with multiple guide columns 721 will rotate. At this time, the toothless inner side inside the rotating ring 74 is close to the rotating gear 75, that is, the rotating gear 75 and the inner rack 742 are no longer in a meshing state. Under the restoring force of the annular spring two 763 and the annular spring one 922, the guide post 7611 slides inside the spiral groove 7621. At this time, the rotating gear 75 and the connecting column 761 rotate and move towards the direction of the fixed cylinder 762 until the annular spring two 763 and the annular spring one 922 return to their original states. At this time, the distance between the semi-circular plate one 91 and the semi-circular plate two 92 is relatively small. After the cutting blade 5 finishes cutting, the cutting blade 5 can rotate between the semi-circular plate one 91 and the semi-circular plate two 92 for self-rotation cleaning. The rotation of the cutting blade 5 and the grinding disc 6 can make the inner rack 742 and the rotating gear 75 continuously engage and disengage. At this time, the rotating gear 75 will rotate and reciprocate under the action of the linkage member 76, thereby pulling the connecting rope two 764 and the connecting rope one 923 to control the distance between the semi-circular plate one 91 and the semi-circular plate two 92, which can more effectively clean the cutting blade 5 and the grinding disc 6 with different thicknesses, integrating cutting, grinding and cleaning, and improving the cutting processing efficiency of stainless steel angle steel and the processing quality of the angle steel.
[0039] Working principle: The stainless steel angle steel is placed inside the angle steel conveying parts 12 on the conveying table 1, the moving table 11 and the moving table 21, and is transported by multiple angle steel conveying parts 12. At this time, there is a spacing between the conveying table 1 and the moving table 11, and there is a spacing between the conveying table 2 and the moving table 21. When the placed stainless steel angle steel needs to be cut, the component disk 7 drives the connecting plate 72, the cutting blade 5 and the grinding disk 6 to rotate through electric drive. At this time, the cutting blade 5 is driven to rotate at high speed. When the cutting blade 5 and the grinding disk 6 rotate together until the high-speed rotating cutting blade 5 contacts the stainless steel angle steel, the continuous rotation of the cutting blade 5 and the grinding disk 6 will cut the stainless steel angle steel. At this time, the spacing between the moving table 21 and the moving table 11 is increased by electric means, that is, the spacing between the two sections of stainless steel angle steel after cutting is increased. As the cutting blade 5 and the grinding disk 6 continue to rotate, the cutting blade 5 moves away from the two sections of stainless steel angle steel at this time, and the outer circumference of the grinding disk 6 is between the two sections of stainless steel angle steel. The spacing between the two sections of stainless steel angle steel is controlled to be shortened again, so that the cutting surfaces of the two sections of stainless steel angle steel are both close to the outer circumference of the grinding disk 6. The cutting surfaces of the stainless steel angle steel at this time period are ground by the grinding disk 6 rotating at high speed under electric drive. When the grinding disk 6 is performing the grinding work, the cutting blade 5 rotates into the cleaning component 9. Through the self-rotation of the cutting blade 5, the cleaning component 9 cleans the debris and sundries that are not easy to fall off on the outside of the cutting blade 5. When the grinding work is completed, the spacing between the two sections of stainless steel angle steel is controlled to increase, and the cutting blade 5 and the grinding disk 6 are continuously rotated, so that the cutting blade 5 and the grinding disk 6 are in their original positions after rotating one circle. At this time, the grinding disk 6 is inside the cleaning component 9, and the debris and sundries that are not easy to fall off on the outside of the grinding disk 6 are cleaned through the self-rotation of the grinding disk 6. At this time, the cutting blade 5 and the grinding disk 6 can rotate for the next time to continuously cut the stainless steel angle steel. The settings of the continuous cutting component 1 and the continuous cutting component 2 can simultaneously perform secondary simultaneous continuous cutting on the whole stainless steel angle steel, improving the cutting efficiency of the stainless steel angle steel. At this time, a device can simultaneously cut the stainless steel angle steel and grind the cutting surface. When the stainless steel angle steel is cut, the grinding disk 6 is protected and cut through the cleaning component 9. When the stainless steel angle steel is cut, the grinding disk 6 is protected and cut through the cleaning component 9. The weights of the cutting blade 5 and the grinding disk 6 are the same. When the cutting blade 5 rotates at high speed for cutting, the grinding disk 6 rotates and cleans inside the cleaning component 9. Because the cutting blade 5 and the grinding disk 6 are symmetrically distributed on one side of the connecting plate 72, the simultaneously rotating grinding disk 6 and cutting blade 5 can stabilize the continuous cutting component 2 and prevent the continuous cutting component 2 from vibrating during work. The cutting blade 5 and the grinding disk 6 are both cleaned when they are between the semi-circular plate 1 91 and the semi-circular plate 2 92. The semi-circular plate 1 91 and the semi-circular plate 2 92 are both provided with arc-shaped brush blocks 911. When the cutting blade 5 or the grinding disk 6 rotates inside the semi-circular plate 1 91 and the semi-circular plate 2 92,The two arc-shaped brush blocks 911 scrape off the debris and sundries existing on the outer side of the cutting disc 5 or the grinding disc 6. The fan inside the component plate 8 is electrically driven to generate suction in the arc-shaped air groove 83. At this time, the debris and sundries scraped off inside the cleaning component 9 are sucked away by the arc-shaped air groove 83 and finally conveyed to the designated position through the air guide pipe 84.
[0040] The above shows and describes 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 by the above embodiments. What is described in the above embodiments and the specification only illustrates the principles of the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of the present invention claimed. The scope of protection claimed by the present invention is defined by the appended claims and their equivalents.
Claims
1. A continuous cutting device for stainless steel angle steel, comprising a first conveying table (1) and a second conveying table (2) installed at one end of the first conveying table (1), characterized in that: One end of the first conveying table (1) is movably installed with a first moving table (11). One end of the second conveying table (2) facing the first conveying table (1) is movably installed with a second moving table (21). The first moving table (11) and the second moving table (21) are movably connected. One side of the first conveying table (1) is fixedly installed with a first continuous cutting component (3). One side of the second conveying table (2) is fixedly installed with a second continuous cutting component (4). Angle steel conveying components (12) are installed on the first conveying table (1), the first moving table (11), and the second moving table (21). The angle steel conveying components (12) are used to convey stainless steel angle steel. The second continuous cutting component (4) and the first continuous cutting component (3) are components made of the same structure. The second continuous cutting component (4) includes a component disc (7) and a connecting plate (72) movably installed on one side of the component disc (7). One side of the connecting plate (72) is movably installed with a cutting blade (5) and a grinding disc (6). A component plate (8) is fixedly installed on the outer periphery of the component disc (7). A cleaning component (9) is movably installed on the inner wall of the component plate (8). The cleaning component (9) cleans the outer sides of the grinding disc (6) and the cutting blade (5). The thickness of the grinding disc (6) is greater than the thickness of the cutting blade (5). The continuous cutting of stainless steel angle steel is a production means of building materials.
2. The continuous cutting equipment for stainless steel angle steel according to claim 1, characterized in that: The angle steel conveying component (12) includes a conveying strip (121) fixedly installed above the first conveying table (1) and a clamping strip (122) movably installed on one side of the conveying strip (121). The first conveying table (1) and the first moving table (11) are connected through a telescopic structure. The second conveying table (2) and the second moving table (21) are connected through a telescopic structure.
3. A continuous cutting device for stainless steel angle steel according to claim 1, characterized in that: A special-shaped connecting strip (71) is fixedly installed on the side of the component disc (7). One end of the special-shaped connecting strip (71) is connected to the second conveying table (2). An annular groove (73) is formed on the side of the component disc (7) facing the cutting blade (5).
4. The continuous cutting device for stainless steel angle steel according to claim 3, wherein: A plurality of guiding columns (721) are fixedly installed on the side of the connecting plate (72) facing the component disc (7). One ends of the plurality of guiding columns (721) are 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 disc (6) and the cutting blade (5) to work respectively.
5. A continuous cutting device for stainless steel angle steel according to claim 1, characterized in that: An arc-shaped groove (81) is formed on the side of the component plate (8) facing the component disc (7). A sliding groove (82) and an arc-shaped air groove (83) are formed inside the arc-shaped groove (81). The interior of the component plate (8) is provided with a cavity. The arc-shaped air groove (83) is communicated with the cavity inside the component plate (8). The sliding groove (82) is not communicated with the cavity inside the component plate (8). An air guide pipe (84) is fixedly installed on the side of the component plate (8). A blower is arranged inside the cavity of the component plate (8).
6. The continuous cutting device for stainless steel angle steel according to claim 5, wherein: The cleaning member (9) includes a semi-circular plate one (91) fixedly installed inside the arc-shaped groove (81) and a semi-circular plate two (92) movably installed inside the arc-shaped groove (81). The semi-circular plate one (91) and the semi-circular plate two (92) are members made of the same structure. An arc-shaped brush block (911) is fixedly installed on one 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).
7. The continuous cutting equipment for stainless steel angle steel according to claim 6, characterized in that: A sliding block (921) is fixedly installed on the outer side of the semi-circular plate two (92). The sliding block (921) is slidably installed inside the sliding groove (82). A connecting rope one (923) is fixedly installed inside the sliding groove (82). One end of the connecting rope one (923) is fixedly connected to the side of the sliding block (921). The connecting rope one (923) is also fixedly installed on the same side of the sliding block (921). The connecting rope one (923) is located inside the annular spring one (922).
8. The continuous cutting equipment for stainless steel angle steel 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 member disk (7). The outer side of the rotating gear (75) meshes with the internal rack (742). A linkage member (76) is installed on the outer side of the rotating gear (75).
9. The continuous cutting equipment for stainless steel angle steel according to claim 8, characterized in that: The linkage member (76) includes a fixed cylinder (762) fixedly installed inside the member disk (7). A spiral groove (7621) is formed 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).
10. A continuous cutting device for stainless steel angle steel according to claim 9, characterized in that: An annular spring two (763) is fixedly installed at the end of the connecting column (761). One end of the annular spring two (763) is fixedly connected to the inner wall of the fixed cylinder (762). A connecting rope two (764) is installed inside the annular spring two (763). One end of the connecting rope two (764) is connected to the end of the connecting column (761). The connecting rope two (764) is connected to the cleaning member (9) and is used to control the cleaning distance of the cleaning member (9).
Citation Information
Patent Citations
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