Device and method for cutting C angle using cutting machine
By designing a cutting machine device including feeding components, auxiliary components and pressure relief components, the limiting problem under complex structures and specific cutting requirements in the prior art is solved, and higher cutting accuracy and stability are achieved.
Patent Information
- Application Number
- CN202411114743.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-14
- Publication Date
- 2025-06-06
- Estimated Expiration
- 2044-08-14
AI Technical Summary
The prior art cannot effectively and stably limit the position when facing complex structures and specific cutting requirements, resulting in a reduction in the precise effect of C-angle cutting.
A cutting machine device including a feeding assembly, an auxiliary assembly and a pressure relief assembly is designed. The feeding assembly is transported through the storage box and robotic structure, the auxiliary assembly achieves limiting and clamping through the electric push rod and the elastic clamping plate, and the pressure relief assembly provides buffering and stability through the compression spring and sliding rod.
Through precise limiting and stable clamping, the cutting accuracy and stability of the cutting machine for C angle is improved, ensuring the improvement of the cutting effect.
Smart Images

Figure CN119116176B_ABST
Abstract
Description
Technical Field
[0001] The invention belongs to the field of cutting technology, and in particular relates to a device and method for cutting a C angle using a cutting machine. Background Art
[0002] Disco cutter is an advanced optical cutting equipment, widely used in semiconductor, electronics, optics, solar energy and other fields.
[0003] After searching, in the prior art, Chinese patent publication number: CN118023599A, publication date: 2024-05-14, discloses a cutting device, including a feeding table, an auxiliary feeding assembly and a cutting assembly, the feeding table includes a separation area and a cutting area; the auxiliary feeding assembly is used to transport the workpiece in the separation area to the cutting area; the cutting assembly is arranged in the cutting area for cutting the workpiece; the above embodiment facilitates the cutting assembly to cut the workpiece.
[0004] However, the device still has the following defects:
[0005] When faced with complex structures and specific cutting requirements, it is impossible to achieve effective and stable limiting, which makes the subsequent C-angle cutting limited, thereby reducing the precision of the cutting machine in cutting the C-angle. Summary of the invention
[0006] In view of the above problems, the present invention provides a device for cutting C angles using a cutting machine. The device comprises a cutting machine body, a feeding assembly is installed on one side wall of the cutting machine body, an auxiliary assembly is installed on one side wall of the cutting machine body away from the feeding assembly, a pressure relief assembly is installed on the top of the auxiliary assembly, a plurality of groups of adjustment assemblies are distributed in a circular array on the top of the pressure relief assembly, and a group of compatible assemblies is installed on the top of each group of the adjustment assemblies;
[0007] The compatible component includes a mounting box and several groups of mounting blocks, one end of a group of tension springs is mounted on the top of each group of mounting blocks, a group of sliding rectangular plates is mounted on the other end of each group of tension springs, a group of sixth electric push rods are mounted on the top inner wall of each group of mounting boxes, and a group of seventh electric push rods are mounted on one side wall of each group of sliding rectangular plates;
[0008] When the tension spring is squeezed, it drives the designated limit structure to adjust its position.
[0009] Furthermore, the feeding assembly includes a material storage box, one end of which is installed on the outer wall of the cutting machine body, a cavity is opened on one side wall of the material storage box, a frosted pad layer is installed on the inner wall of the material storage box, a first electric push rod is installed on the bottom inner wall of the material storage box, and a push plate is installed on the output end of the first electric push rod.
[0010] Furthermore, a push box is connected to one side wall of the material storage box, a second electric push rod is installed on an inner wall of the push box away from the material storage box, and a manipulator structure is installed on the output end of the second electric push rod.
[0011] Furthermore, the auxiliary component includes a first fixed plate, one end of which is installed on a side wall of the cutting machine body, a third electric push rod is installed on the top of the first fixed plate, a first fixed block is installed on the output end of the third electric push rod, a fourth electric push rod is installed on a side wall of the first fixed block, and a second fixed block is installed on the output end of the fourth electric push rod.
[0012] Furthermore, the pressure relief assembly includes a first disc, the bottom of which is mounted on the top of a second fixed block, a sleeve is mounted on the top of the first disc, a sliding rod is slidably connected inside the sleeve, a second disc is mounted on the top of the sliding rod, a cutting disc is mounted on the top of the second disc, and one end of several groups of compression springs are distributed in a circular array at the top edge of the first disc, and the other end of each group of compression springs is mounted on the bottom of the second disc.
[0013] Furthermore, the adjustment assembly includes a third fixed block, the bottom of each group of the third fixed blocks is installed on the top of the second disk, a group of fifth electric push rods is installed on the top of each group of the third fixed blocks, a group of second fixed plates is installed on the output end of each group of the fifth electric push rods, and a group of third fixed plates is arranged directly above each group of the second fixed plates.
[0014] Furthermore, a plurality of movable rings are evenly spaced apart on the top of each group of the second fixed plates, a rotating rod is rotatably connected inside the movable rings, a plurality of fixed rings are evenly spaced apart and fixedly sleeved on the outer wall of the rotating rod, and the outer wall of each group of the fixed rings is mounted on the bottom of the third fixed plate.
[0015] Furthermore, the bottom of each group of the mounting boxes is installed on the top of the third fixed plate, a group of sliding cavities is opened on one side wall of each group of the mounting boxes, the bottom of each group of the mounting blocks is installed on the bottom inner wall of the mounting box, a group of connecting rods is installed on the top of each group of the mounting blocks, a group of blocking blocks is installed on the top of each group of the connecting rods, each group of the tension springs is sleeved on the connecting rods, each group of the sliding rectangular plates is movably sleeved on the connecting rods, the outer walls of each group of the sliding rectangular plates are slidably connected in the sliding cavity, and the output ends of each group of the sixth electric push rods are located directly above the sliding rectangular plates.
[0016] Furthermore, a group of second motors are installed on the output end of each group of the seventh electric push rods, and a group of fourth fixed plates are transmission-connected to the output end of each group of the second motors. Two groups of slides are symmetrically opened on one side wall of each group of the fourth fixed plates, and a group of fourth fixed blocks are slidably connected in each group of the slides, and an elastic clamping plate is connected between the two groups of the fourth fixed blocks.
[0017] A method for cutting a C-angle device using a cutting machine, the method comprising:
[0018] Start the auxiliary component to push the pressure relief component to move to the bottom of the cutting machine body;
[0019] Start the feeding component to transport raw materials;
[0020] Compatible components are used to clamp and limit the raw materials;
[0021] Start the adjustment component to rotate and press the limit;
[0022] Start the sixth electric push rod to descend and press the sliding rectangular plate;
[0023] The sliding rectangular plate starts to press the extension spring after it senses the pressure;
[0024] The tension spring senses the pressure and drives the clamping structure to adjust its position.
[0025] The beneficial effects of the present invention are:
[0026] 1. Since the surface conditions of the material to be C-angle cut are uncertain, in order to ensure the precise effect of C-angle cutting, the sixth electric push rod is started to descend to press the sliding rectangular plate. After the sliding rectangular plate feels the pressure, it starts to press the tension spring. When the tension spring feels the pressure, it drives the designated limit structure to adjust the position. Then, several groups of seventh electric push rods are started to drive the designated limit structure to support the designated position of the material, which improves the limit compatibility effect and the precision of the cutting machine in cutting the C angle.
[0027] 2. Start the fifth electric push rod to push the elastic clamping plate up to the specified height, then start the first motor to drive the elastic clamping plate to start rotating, so that the elastic clamping plate is located directly above the cutting material, then start the seventh electric push rod to push the elastic clamping plate to press the surface of the material to stabilize it, and in order to improve the clamping stability effect, start the second motor to drive the elastic clamping plate to rotate and limit it, thereby improving the flexibility of the cutting structure limit.
[0028] 3. After placing the raw material on the cutting disc, it is fixed and limited. Since the shape of the raw material is uncertain, several designated groups of seventh electric push rods can be started to push the elastic clamping plate to move closer to the raw material. When the elastic clamping plate is in contact with the surface of the raw material, it is pushed continuously, so that the elastic clamping plate begins to deform according to the shape of the raw material, and drives the two groups of fourth fixed blocks to slide in the slideway, thereby improving the stability of the structural clamping effect.
[0029] 4. Start the first electric push rod to push the raw material placed on the push plate to rise. During the rising process, the outer wall of the raw material rubs against the frosted cushion layer to polish the burrs on the outer wall of the raw material, thereby speeding up the cutting process. When the cutting machine is cutting, the force first acts on the material. When the material feels the pressure, it begins to squeeze the compression spring. When the compression spring feels the pressure, it drives the sliding rod to slide in the sleeve, which plays a buffering role during the cutting work and improves the safety effect of the work.
[0030] Other features and advantages of the present invention will be described in the following description, and partly become apparent from the description, or understood by practicing the present invention. The purpose and other advantages of the present invention can be realized and obtained by the structures pointed out in the description, claims and drawings. BRIEF DESCRIPTION OF THE DRAWINGS
[0031] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative work.
[0032] Figure 1 A schematic diagram of the structure of a cutting machine body according to an embodiment of the present invention is shown;
[0033] Figure 2 It shows a schematic structural diagram of a pressure relief assembly according to an embodiment of the present invention;
[0034] Figure 3 A schematic cross-sectional view of a feeding assembly according to an embodiment of the present invention is shown;
[0035] Figure 4 A schematic diagram of the structure of an auxiliary component according to an embodiment of the present invention is shown;
[0036] Figure 5 A schematic diagram of the structure of a first disk according to an embodiment of the present invention is shown;
[0037] Figure 6 A schematic diagram of the structure of an adjustment component according to an embodiment of the present invention is shown;
[0038] Figure 7 A schematic diagram of the structure of compatible components according to an embodiment of the present invention is shown;
[0039] Figure 8 A schematic cross-sectional view of a mounting box according to an embodiment of the present invention is shown.
[0040] In the figure: 1. Cutting machine body; 2. Feeding assembly; 201. Storage box; 202. Cavity; 203. Frosted cushion layer; 204. First electric push rod; 205. Push plate; 206. Push box; 207. Second electric push rod; 208. Manipulator structure; 3. Auxiliary assembly; 301. First fixed plate; 302. Third electric push rod; 303. First fixed block; 304. Fourth electric push rod; 305. Second fixed block; 4. Pressure relief assembly; 401. First disc; 402. Socket; 403. Sliding rod; 404. Second disc; 405. Cutting disc; 406. Compression spring; 5. Adjustment Components; 501, third fixed block; 502, fifth electric push rod; 503, second fixed plate; 504, third fixed plate; 505, movable collar; 506, rotating rod; 507, fixed collar; 508, first motor; 6, compatible components; 601, mounting box; 602, sliding cavity; 603, mounting block; 604, connecting rod; 605, stopper; 606, tension spring; 607, sliding rectangular plate; 608, sixth electric push rod; 609, seventh electric push rod; 610, second motor; 611, fourth fixed plate; 612, slideway; 613, fourth fixed block; 614, elastic clamping plate. DETAILED DESCRIPTION
[0041] In order to make the purpose, technical solution and advantages of the embodiments of the present invention clearer, the technical solution in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0042] The embodiment of the present invention provides a device for cutting C angle using a cutting machine. It includes a cutting machine body 1, exemplarily, as Figure 1 and Figure 2 As shown, a feeding component 2 is installed on one side wall of the cutting machine body 1, an auxiliary component 3 is installed on the side wall of the cutting machine body 1 away from the feeding component 2, a pressure relief component 4 is installed on the top of the auxiliary component 3, and a plurality of groups of adjustment components 5 are distributed in a circular array on the top of the pressure relief component 4, and a group of compatible components 6 is installed on the top of each group of the adjustment components 5.
[0043] For example, Figure 3 As shown, the feeding assembly 2 includes a storage box 201, one end of the storage box 201 is installed on the outer wall of the cutting machine body 1, a cavity 202 is opened on one side wall of the storage box 201, a frosted pad layer 203 is installed on the inner wall of the storage box 201, a first electric push rod 204 is installed on the bottom inner wall of the storage box 201, a push plate 205 is installed on the output end of the first electric push rod 204, a push box 206 is connected to one side wall of the storage box 201, a second electric push rod 207 is installed on the inner wall of the push box 206 away from the storage box 201, and a manipulator structure 208 is installed on the output end of the second electric push rod 207.
[0044] Start conveying the raw materials, start the first electric push rod 204, and push the raw materials placed on the push plate 205 to rise. During the rising process, the outer wall of the raw materials rubs against the frosted pad layer 203 to polish the burrs on the outer wall of the raw materials and speed up the cutting process. Then start the second electric push rod 207 to push the manipulator structure 208 to clamp the raw materials to be cut, and then place them on the cutting disk 405 after passing through the cavity 202.
[0045] For example, Figure 4 As shown, the auxiliary component 3 includes a first fixed plate 301, one end of the first fixed plate 301 is installed on a side wall of the cutting machine body 1, a third electric push rod 302 is installed on the top of the first fixed plate 301, a first fixed block 303 is installed on the output end of the third electric push rod 302, a fourth electric push rod 304 is installed on a side wall of the first fixed block 303, and a second fixed block 305 is installed on the output end of the fourth electric push rod 304.
[0046] When the cutting machine is used for C-angle cutting, the third electric push rod 302 is first started to push the cutting disc 405 up to a specified height, and then the fourth electric push rod 304 is started to push the cutting disc 405 to move to just below the output end of the cutting machine body 1.
[0047] For example, Figure 5 As shown, the pressure relief assembly 4 includes a first disc 401, the bottom of which is mounted on the top of a second fixed block 305, a sleeve 402 is mounted on the top of the first disc 401, a sliding rod 403 is slidably connected inside the sleeve 402, a second disc 404 is mounted on the top of the sliding rod 403, a cutting disc 405 is mounted on the top of the second disc 404, and one end of a plurality of groups of compression springs 406 are distributed in a circular array at the top edge of the first disc 401, and the other end of each group of compression springs 406 is mounted on the bottom of the second disc 404.
[0048] When the cutting machine is cutting, the force first acts on the material. When the material feels the pressure, it starts to squeeze the compression spring 406. When the compression spring 406 feels the pressure, it drives the sliding rod 403 to slide in the sleeve 402, which plays a buffering effect during the cutting work.
[0049] For example, Figure 6 As shown, the adjustment component 5 includes a third fixed block 501, the bottom of each group of the third fixed blocks 501 is mounted on the top of the second disc 404, a group of fifth electric push rods 502 is mounted on the top of each group of the third fixed blocks 501, a group of second fixed plates 503 is mounted on the output end of each group of the fifth electric push rods 502, a group of third fixed plates 504 is arranged directly above each group of the second fixed plates 503, a number of groups of movable rings 505 are evenly spaced on the top of each group of the second fixed plates 503, a rotating rod 506 is rotatably connected in the movable rings 505, a number of groups of fixed rings 507 are evenly spaced and fixedly sleeved on the outer wall of the rotating rod 506, the outer wall of each group of the fixed rings 507 is mounted on the bottom of the third fixed plate 504, a group of first motors 508 are mounted on the top of each group of the second fixed plates 503, and the output end of each group of the first motors 508 is transmission-connected to the rotating rod 506.
[0050] When the material cannot pass through the outer wall limit clamping, the fifth electric push rod 502 is started to push the elastic clamping plate 614 to a specified height, and then the first motor 508 is started to drive the rotating rod 506 to rotate. The rotating rod 506 rotates in the movable ring 505 and drives the two sets of fixed rings 507 to start rotating. The fixed ring 507 drives the elastic clamping plate 614 to start rotating while rotating, so that the elastic clamping plate 614 is located directly above the cutting material. Then, the seventh electric push rod 609 is started to push the elastic clamping plate 614 to press and stabilize the surface of the material. In order to improve the stabilizing effect of the clamping, the second motor 610 can be started to drive the elastic clamping plate 614 to rotate and limit, thereby improving the cutting stability effect and the flexibility of the cutting structure limitation.
[0051] For example, Figure 7 and Figure 8As shown, the compatible component 6 includes a mounting box 601, the bottom of each group of the mounting boxes 601 is mounted on the top of the third fixed plate 504, a group of sliding cavities 602 are opened on one side wall of each group of the mounting boxes 601, a group of mounting blocks 603 are installed on the bottom inner wall of each group of the mounting boxes 601, a group of connecting rods 604 are installed on the top of each group of the mounting blocks 603, a group of blocking blocks 605 are installed on the top of each group of the connecting rods 604, one end of a group of tension springs 606 is installed on the top of each group of the mounting blocks 603, each group of the tension springs 606 is sleeved on the connecting rod 604, a group of sliding rectangular plates 607 are installed on the other end of each group of the tension springs 606, each group of the sliding rectangular plates 607 are movably sleeved on the connecting rod 604, and each group of The outer walls of the sliding rectangular plate 607 are slidably connected in the sliding cavity 602, a group of sixth electric push rods 608 are installed on the top inner wall of each group of the installation box 601, and the output end of each group of the sixth electric push rods 608 is located directly above the sliding rectangular plate 607, a group of seventh electric push rods 609 are installed on one side wall of each group of the sliding rectangular plate 607, a group of second motors 610 are installed on the output end of each group of the seventh electric push rods 609, and a group of fourth fixed plates 611 are transmission-connected to the output end of each group of the second motors 610, and two groups of slideways 612 are symmetrically opened on one side wall of each group of the fourth fixed plates 611, and a group of fourth fixed blocks 613 are slidably connected in each group of the slideways 612, and an elastic clamping plate 614 is connected between the two groups of the fourth fixed blocks 613.
[0052] After placing the raw material on the cutting disk 405, it is fixed and limited. Since the shape of the raw material is uncertain, several designated groups of seventh electric push rods 609 can be started to push the elastic clamping plate 614 to move towards the direction of the raw material. When the elastic clamping plate 614 is in contact with the surface of the raw material, it is continuously pushed, so that the elastic clamping plate 614 begins to deform according to the shape of the raw material, and drives the two groups of fourth fixed blocks 613 to slide in the slide 612, thereby improving the stability and compatibility of the structural clamping.
[0053] Since the surface conditions of the material to be C-angle cut are uncertain, in order to ensure the precise effect of C-angle cutting, before limiting the material by the elastic clamping plate 614, the sixth electric push rod 608 can be started to descend to press the sliding rectangular plate 607. After feeling the pressure, the sliding rectangular plate 607 begins to press the tension spring 606. When the tension spring feels the pressure, it drives the elastic clamping plate 614 to adjust its position. Subsequently, several groups of seventh electric push rods 609 are started to drive the designated elastic clamping plate 614 to support the designated position of the material, thereby improving the limiting compatibility and stability effect while improving the precise effect of the cutting machine in cutting the C angle.
[0054] Since the surface conditions of the material to be C-angle cut are uncertain, in order to ensure the precise effect of C-angle cutting, the sixth electric push rod 608 is started to descend and press the sliding rectangular plate 607. After feeling the pressure, the sliding rectangular plate 607 begins to press the tension spring 606. When the tension spring 606 feels the pressure, it drives the designated limit structure to adjust the position. Subsequently, several groups of seventh electric push rods 609 are started to drive the designated limit structure to support the designated position of the material, thereby improving the limit compatibility effect and the precise effect of the cutting machine in cutting the C angle.
[0055] Start the fifth electric push rod 502 to push the elastic clamping plate 614 up to the specified height, then start the first motor 508 to drive the elastic clamping plate 614 to start rotating, so that the elastic clamping plate 614 is located directly above the cutting material, then start the seventh electric push rod 609 to push the elastic clamping plate 614 to press and stabilize the surface of the material, and in order to improve the clamping stability effect, the second motor 610 can be started to drive the elastic clamping plate 614 to limit the rotation, thereby improving the flexibility of the cutting structure limit.
[0056] After placing the raw material on the cutting disk 405, it is fixed and limited. Since the shape of the raw material is uncertain, several designated groups of seventh electric push rods 609 can be started to push the elastic clamping plate 614 to move towards the direction of the raw material. When the elastic clamping plate 614 is in contact with the surface of the raw material, it is continuously pushed, so that the elastic clamping plate 614 begins to deform according to the shape of the raw material, and drives the two groups of fourth fixed blocks 613 to slide in the slide 612, thereby improving the stability of the structural clamping effect.
[0057] Start the first electric push rod 204 to push the raw material placed on the push plate 205 to rise. During the rising process, the outer wall of the raw material rubs against the frosted cushion layer 203 to polish the burrs on the outer wall of the raw material, thereby accelerating the progress of the cutting work. When the cutting machine is cutting, the force first acts on the material. When the material feels the pressure, it begins to squeeze the compression spring 406. When the compression spring 406 feels the pressure, it drives the sliding rod 403 to slide in the sleeve 402, which has a buffering effect during the cutting work and improves the safety effect of the work.
[0058] Based on the above-mentioned device for cutting a C angle using a cutting machine, an embodiment of the present invention further proposes a method for cutting a C angle using a cutting machine. Exemplarily, the method includes:
[0059] Start the third electric push rod to push the cutting disc up to a specified height, and then start the fourth electric push rod to push the cutting disc to move to just below the output end of the cutting machine body;
[0060] The first electric push rod is started to push the raw material placed on the push plate to rise, and the outer wall of the raw material rubs against the frosted cushion layer during the rising process;
[0061] The second electric push rod is started to push the manipulator structure to clamp the raw material to be cut, and then the raw material is placed on the cutting disc after passing through the cavity;
[0062] After placing the raw material on the cutting disc, it is fixed and limited, and several designated groups of seventh electric push rods are started to push the elastic clamping plate to move towards the direction of the raw material;
[0063] The elastic clamping plate is continuously pushed when it is attached to the surface of the raw material, so that the elastic clamping plate begins to deform according to the shape of the raw material;
[0064] The fifth electric push rod is started to push the elastic clamping plate up to a specified height, and then the first motor is started to drive the rotating rod to rotate. The rotating rod rotates in the movable ring and drives the two sets of fixed rings to start rotating;
[0065] The fixed collar rotates and drives the elastic clamping plate to rotate, so that the elastic clamping plate is located directly above the cutting material;
[0066] The seventh electric push rod is started to push the elastic clamping plate to press and stabilize the surface of the material, and the second motor is started to drive the elastic clamping plate to rotate and limit;
[0067] When the cutting machine is cutting, the force first acts on the material. When the material feels the pressure, it starts to squeeze the compression spring. When the compression spring feels the pressure, it drives the sliding rod to slide in the sleeve.
[0068] The sixth electric push rod is started to descend to press the sliding rectangular plate, and the sliding rectangular plate starts to press the tension spring after feeling the pressure;
[0069] When the stretch spring senses the pressure, it drives the elastic clamping plate to adjust its position, and then starts several groups of seventh electric push rods to drive the designated elastic clamping plate to support the designated position of the material.
[0070] Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or make equivalent substitutions for some of the technical features therein; and these modifications or substitutions do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.
Claims
1. A device for cutting C angle using a cutting machine, comprising a cutting machine body (1), characterized in that: A feeding assembly (2) is installed on one side wall of the cutting machine body (1); an auxiliary assembly (3) is installed on one side wall of the cutting machine body (1) away from the feeding assembly (2); a pressure relief assembly (4) is installed on the top of the auxiliary assembly (3); a plurality of groups of adjustment assemblies (5) are distributed in a circular array on the top of the pressure relief assembly (4); and a group of compatible assemblies (6) is installed on the top of each group of adjustment assemblies (5); The compatible component (6) comprises a mounting box (601) and a plurality of mounting blocks (603), one end of a group of tension springs (606) being mounted on the top of each group of the mounting blocks (603), a group of sliding rectangular plates (607) being mounted on the other end of each group of the tension springs (606), a group of sixth electric push rods (608) being mounted on the inner wall of the top of each group of the mounting box (601), and a group of seventh electric push rods (609) being mounted on one side wall of each group of the sliding rectangular plates (607); When the tension spring (606) is squeezed, it drives the designated limiting structure to adjust its position; The bottom of each group of the installation boxes (601) is mounted on the top of the third fixed plate (504); a group of sliding cavities (602) is opened on one side wall of each group of the installation boxes (601); the bottom of each group of the installation blocks (603) is mounted on the bottom inner wall of the installation box (601); a group of connecting rods (604) is mounted on the top of each group of the installation blocks (603); a group of blocking blocks (605) is mounted on the top of each group of the connecting rods (604); each group of the tension springs (606) is sleeved on the connecting rods (604); each group of the sliding rectangular plates (607) is movably sleeved on the connecting rods (604); the outer walls of each group of the sliding rectangular plates (607) are slidably connected in the sliding cavity (602); and the output end of each group of the sixth electric push rods (608) is located directly above the sliding rectangular plates (607).
2. The device for cutting C angle using a cutting machine according to claim 1, characterized in that: The feeding assembly (2) comprises a material storage box (201), one end of the material storage box (201) is mounted on the outer wall of the DISCO cutting machine body (1), a cavity (202) is opened on one side wall of the material storage box (201), a frosted pad layer (203) is mounted on the inner wall of the material storage box (201), a first electric push rod (204) is mounted on the bottom inner wall of the material storage box (201), and a push plate (205) is mounted on the output end of the first electric push rod (204).
3. The device for cutting C angle using a cutting machine according to claim 2, characterized in that: A push box (206) is connected to one side wall of the material storage box (201), a second electric push rod (207) is installed on the inner wall of the push box (206) away from the material storage box (201), and a manipulator structure (208) is installed on the output end of the second electric push rod (207).
4. The device for cutting C angle using a cutting machine according to claim 1, characterized in that: The auxiliary component (3) comprises a first fixing plate (301), one end of the first fixing plate (301) is mounted on a side wall of the DISCO cutting machine body (1), a third electric push rod (302) is mounted on the top of the first fixing plate (301), a first fixing block (303) is mounted on the output end of the third electric push rod (302), a fourth electric push rod (304) is mounted on a side wall of the first fixing block (303), and a second fixing block (305) is mounted on the output end of the fourth electric push rod (304).
5. The device for cutting C angle using a cutting machine according to claim 1, characterized in that: The pressure relief assembly (4) comprises a first disc (401), the bottom of which is mounted on the top of a second fixed block (305), a sleeve (402) being mounted on the top of the first disc (401), a sliding rod (403) being slidably connected inside the sleeve (402), a second disc (404) being mounted on the top of the sliding rod (403), a cutting disc (405) being mounted on the top of the second disc (404), one end of a plurality of groups of compression springs (406) being distributed in a circular array at the top edge of the first disc (401), and the other end of each group of compression springs (406) being mounted on the bottom of the second disc (404).
6. The device for cutting C angle using a cutting machine according to claim 1, characterized in that: The adjustment assembly (5) comprises a third fixed block (501), the bottom of each group of the third fixed blocks (501) is mounted on the top of the second disc (404), a group of fifth electric push rods (502) is mounted on the top of each group of the third fixed blocks (501), a group of second fixed plates (503) is mounted on the output end of each group of the fifth electric push rods (502), and a group of third fixed plates (504) is arranged directly above each group of the second fixed plates (503).
7. The device for cutting C angle using a cutting machine according to claim 6, characterized in that: A plurality of movable rings (505) are evenly spaced apart on the top of each group of the second fixed plates (503); a rotating rod (506) is rotatably connected inside the movable rings (505); a plurality of fixed rings (507) are evenly spaced apart and fixedly sleeved on the outer wall of the rotating rod (506); and the outer wall of each group of the fixed rings (507) is mounted on the bottom of the third fixed plate (504).
8. The device for cutting C angle using a cutting machine according to claim 1, characterized in that: A group of second motors (610) are installed on the output end of each group of the seventh electric push rods (609), and a group of fourth fixed plates (611) are drivingly connected to the output end of each group of the second motors (610). Two groups of slideways (612) are symmetrically opened on one side wall of each group of the fourth fixed plates (611), and a group of fourth fixed blocks (613) are slidably connected in each group of the slideways (612), and an elastic clamping plate (614) is connected between the two groups of the fourth fixed blocks (613).
9. A method for cutting using the device according to any one of claims 1 to 8, characterized in that: include: Start the auxiliary component to push the pressure relief component to move to the bottom of the cutting machine body; Start the feeding component to transport raw materials; Compatible components are used to clamp and limit the raw materials; Start the adjustment component to rotate and press the limit; Start the sixth electric push rod to descend and press the sliding rectangular plate; The sliding rectangular plate starts to press the extension spring after it senses the pressure; The tension spring senses the pressure and drives the clamping structure to adjust its position.
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