Die steel cutting device and using method
By introducing right-angle sound insulation panels and movable sound insulation mechanisms into the mold steel cutting device, the problems of noise leakage and sound insulation panel contact interference in the prior art are solved, and all-round sound insulation and debris collection in the mold steel cutting process are realized.
Patent Information
- Application Number
- CN202510777788.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-11
- Publication Date
- 2025-07-22
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing mold steel cutting devices have noise leakage problems during cutting, especially when cutting boards with long lengths, the sound insulation cover cannot be fully covered, and the sound insulation board is prone to squeeze and interference when it comes into contact with the product, so it cannot effectively insulate sound.
A mold steel cutting device is designed, using right-angle sound insulation panels and movable sound insulation mechanisms. The movement of the sound insulation panel is controlled through hydraulic cylinders and electric telescopic rods. The sound insulation position can be adjusted according to the width and height of the plate, ensuring full coverage of the cutting parts, and collecting cutting debris through the sound insulation frame.
It effectively reduces the hearing damage of noise to staff, improves the sound insulation effect, avoids contact interference between the sound insulation board and the product, and achieves all-round sound insulation for boards of different widths and heights.
Smart Images

Figure CN120347269A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of die steel cutting, and specifically to a die steel cutting device and a using method thereof. Background Art
[0002] When a die steel cutting device uses a cutting disc to cut die steel, it is easy to generate noise. Workers who work in a noisy environment for a long time are prone to damage to the auditory system. Covering a sound insulation cover outside the cutting device can reduce noise. However, when cutting a long plate, the size of the sound insulation cover is easily limited and cannot fully cover the plate, and there are still gaps at the bottom of the sound insulation cover, and noise is easily transmitted outward through the bottom gap of the sound insulation cover.
[0003] The defects of the existing cutting devices are as follows: 1. The prior art JP2016215372A discloses a cutting device, which does not have the function of sound insulation for the outside of the cut part of the cutting device. The noise during cutting is easy to cause harm to the human ear. Therefore, a die steel cutting device that can sound-insulate the cutting part of the workpiece is needed to solve this problem.
[0004] 2. The prior art JP2016203295A discloses a cutting device, which does not have the function of sound insulation for the cutting part. When a sound insulation board is set for sound insulation, when the sound insulation board cannot completely cover the product, the sound insulation board will contact the top of the workpiece to be cut. However, if the top of the product is uneven at this time, the movement of the product will cause extrusion and interference with the sound insulation board, resulting in the sound insulation board being unable to effectively contact the top of the product completely, and the sound insulation effect is limited. Therefore, a die steel cutting device that can sound-insulate the cutting part and does not prevent the product from moving is needed to solve this problem.
[0005] 3. The prior art JP2016157722A discloses a cutting device, which does not have the function of contact sound insulation for products of different widths. When using four sound insulation boards that move up and down to sound-insulate the four directions of the product, if one of the sound insulation boards moves down and touches the top of the product, it is easy to cause the adjacent sound insulation boards on both sides of the sound insulation board that touches the top of the product to have gaps with the product and cannot completely sound-insulate the product for air transmission. Therefore, a die steel cutting device that can adjust the left and right positions of the sound insulation board according to the width of the product is needed to solve this problem.
[0006] 4. The prior art CN105522656A discloses a cutting device, which does not have the function of sound insulation for the bottom of the product. Because the bottom of the product is to allow chips to fall, the noise at the bottom is easily transmitted outward. Therefore, a die steel cutting device that can sound-insulate the bottom of the workpiece to be cut is needed to solve this problem. Summary of the Invention
[0007] An object of the present application is to provide a die steel cutting device and a usage method, which can solve the technical problems raised in the prior art.
[0008] To achieve the above object, the present invention provides the following technical solution: A die steel cutting device includes a first plate body, a second plate body and a first hydraulic cylinder component. A controller component is installed on the top of the first plate body. A blanking port is penetrated through the top of the first plate body. A first motor component is installed at the bottom of the first plate body, and the first motor component is electrically connected to the controller component. A slicer is installed at the output end of the first motor component, and the slicer is located inside the blanking port. A second plate body is installed at the bottom of the first plate body. A second motor component is installed on the top of the second plate body, and the second motor component is electrically connected to the controller component. A lead screw is installed at the output end of the second motor component, and a moving plate is installed on the outside of the lead screw; A plurality of first hydraulic cylinder components are symmetrically installed on the top of the first plate body, and the first hydraulic cylinder components are electrically connected to the controller component. A first right-angle sound insulation plate component is installed at the output end of the first hydraulic cylinder component, and the first right-angle sound insulation plate component is located above the moving plate. An active sound insulation mechanism is symmetrically arranged on the top of the first right-angle sound insulation plate component.
[0009] Preferably, a plurality of struts are symmetrically installed at the bottom of the first plate body. A first support plate is installed on the top of the first plate body. The first support plate is located in front of the slicer. A second support plate is installed on the top of the first plate body, and the second support plate is located behind the slicer.
[0010] Preferably, a plurality of stop rods are symmetrically penetrated and installed on the top of the moving plate. A support block is installed on the top of the first plate body, and the support block is located on the outside of the lead screw.
[0011] Preferably, the active sound insulation mechanism includes a first right-angle plate, a lifting rod, a second sound insulation plate component, a block and a first rotating rod. Two first right-angle plates are symmetrically installed on the top of the first right-angle sound insulation plate component. A plurality of lifting rods are movably installed through the top of the first right-angle plate. A second sound insulation plate component is installed at one end of the lifting rod. The second sound insulation plate component is located in front of the first right-angle sound insulation plate component. A block is symmetrically installed at the bottom of the second sound insulation plate component. A first rotating rod is movably installed through the inside of the block.
[0012] Preferably, a second right-angle plate is symmetrically installed on one side of the first right-angle sound insulation plate component. A spring is installed on the inner wall of one side of the second right-angle plate. One end of the spring is installed with a third sound insulation plate component, and one side of the third sound insulation plate component penetrates through the inner wall of one side of the first right-angle sound insulation plate component.
[0013] Preferably, a plurality of electric telescopic rod components one are installed at the top of the right-angle sound insulation board component one, and the electric telescopic rod components one are electrically connected to the controller component. A piston rod one is installed at the output end of the electric telescopic rod components one. One end of the piston rod one penetrates through the inner wall of the top of the right-angle sound insulation board component one. A pressure sensor one is installed at one end of the piston rod one, and the pressure sensor one is electrically connected to the controller component. A frame one is installed at the bottom input end of the pressure sensor one. A rotating rod two is movably installed through the inside of the frame one.
[0014] Preferably, a plurality of electric telescopic rod components two are installed on one side of the right-angle sound insulation board component one. The electric telescopic rod components two are electrically connected to the controller component. A piston rod two is installed at the output end of the electric telescopic rod components two. One end of the piston rod two penetrates through the inside of one side of the right-angle sound insulation board component one. A pressure sensor two is installed at one end of the piston rod two, and the pressure sensor two is electrically connected to the controller component. A frame two is installed at the input end of one side of the pressure sensor two. A rotating rod three is movably installed through the inside of the frame two.
[0015] Preferably, a sound insulation frame is installed at the bottom of the plate body one, and the sound insulation frame is located outside the motor component one. A sound insulation door is movably installed on one side of the sound insulation frame through a hinge. A plurality of air inlet pipes one are installed through one side of the sound insulation door. A plurality of air inlet pipes two are installed through one side of the sound insulation frame. A blower is installed on the inner wall of one side of the sound insulation frame, and the blower is electrically connected to the controller component.
[0016] Preferably, the usage method of the die steel cutting device is as follows: S1. Place the die steel plate on the moving plate and make the die steel plate body enter the inside of the right-angle sound insulation board component one; S2. The right-angle sound insulation board component one moves inward to insulate the upper part of the die steel plate, and the sound insulation frame insulates the lower part of the die steel plate body; S3. Then the sound insulation board component two moves downward so that the rotating rod one contacts the top of the die steel plate body to insulate the front and rear of the cutting part of the die steel plate body; S4. Then the sound insulation board component three moves inward to contact both sides of the die steel plate body according to the width of the die steel plate body, and further supplements the insulation of the positions in the front and rear of the cutting part of the die steel plate body that are not insulated by the sound insulation board component two; S5. Then the motor component one drives the slicer to rotate to cut the die steel plate body moving backward. The cutting debris enters the sound insulation frame through the blanking port, and at the same time, the blower blows away the heat generated by the motor component one in the sound insulation frame.
[0017] Preferably, the following steps are further included in the S1: S11. The second rotating rod moves downward to limit the top of the die steel plate body, and at the same time, the third rotating rod moves inward to limit the two sides of the die steel plate body.
[0018] Compared with the prior art, the beneficial effects of the present invention are as follows: When the right-angled sound insulation board component I of the present invention moves inward, it can sound-insulate the upper part of the die steel plate material, thereby reducing the noise generated when the die steel component is cut, and thus reducing the harm to the hearing of the staff caused by the noise.
[0019] When the sound insulation board component II of the present invention moves downward, the first rotating rod contacts the top of the die steel plate body, sound-insulating the front and rear of the cutting part of the die steel plate body, and the sound insulation board component II can contact the top of the die steel plate body with different heights. When the top of the die steel plate body is irregularly high and low, the sound insulation board component II can also move up and down adaptively, avoiding the influence of the sound insulation board component II on the front and back movement of the die steel plate body. The second rotating rod moves downward to limit the top of the die steel plate body, and at the same time, the third rotating rod moves inward to limit the two sides of the die steel plate body, which can avoid unnecessary upward movement and left and right movement when the die steel is cut.
[0020] When the sound insulation board component III of the present invention moves inward, it can contact the two sides of the die steel plate body with different widths, further supplementing the sound insulation at the positions in the front and rear of the cutting part of the die steel plate body that are not sound-insulated by the sound insulation board component II, and the sound insulation effect is better.
[0021] The present invention can sound-insulate the lower part of the cutting part of the die steel through the sound insulation frame, further increasing the sound insulation effect. At the same time, the sound insulation frame can collect the cutting debris, facilitating the collection and treatment of the debris. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] Figure 1 is a three-dimensional view of the present invention; Figure 2 is a schematic structural view of the first plate body of the present invention; Figure 3 is a schematic structural view of the sound insulation frame of the present invention; Figure 4 is a schematic structural view of the first hydraulic cylinder component of the present invention; Figure 5 is a schematic structural view of the second sound insulation board component of the present invention; Figure 6 is a schematic structural view of the first right-angled sound insulation board component of the present invention; Figure 7 is a schematic structural view of the second right-angled plate of the present invention; Figure 8 is a schematic structural view of the first frame body and the second frame body of the present invention; Figure 9This is a flowchart of the usage method of the present invention.
[0023] In the figure: 1, the first plate body; 2, the support column; 3, the controller component; 4, the blanking port; 5, the first motor component; 6, the slice; 7, the first support plate; 8, the second support plate; 9, the second plate body; 10, the second motor component; 11, the lead screw; 12, the moving plate; 13, the support block; 14, the first hydraulic cylinder component; 15, the first right-angled sound insulation plate component; 16, the first right-angled plate; 17, the lifting rod; 18, the second sound insulation plate component; 19, the block; 20, the first rotating rod; 21, the second right-angled plate; 22, the spring; 23, the third sound insulation plate component; 24, the first electric telescopic rod component; 25, the first piston rod; 26, the first pressure sensor; 27, the first frame; 28, the second rotating rod; 29, the second electric telescopic rod component; 30, the second piston rod; 31, the second pressure sensor; 32, the second frame; 33, the third rotating rod; 34, the sound insulation frame; 35, the sound insulation door; 36, the first air inlet pipe; 37, the second air inlet pipe; 38, the fan; 39, the blocking rod. Specific embodiments
[0024] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0025] In the description of the present invention, it should be noted that the orientation or positional relationship indicated by the terms "upper", "lower", "inner", "outer", "front end", "rear end", "both ends", "one end", "the other end", etc. is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of the present invention. In addition, the terms "first" and "second" are only used for descriptive purposes and cannot be construed as indicating or implying relative importance.
[0026] In the description of the present invention, it should be noted that unless otherwise clearly specified and limited, the terms "installed", "provided with", "connected", etc. should be understood in a broad sense. For example, "connected" can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the communication inside two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.
[0027] Please refer to Figure 1 、 Figure 2And Figure 3 , an embodiment provided by the present invention: a die steel cutting device; It includes a first plate body 1 and a second plate body 9. A controller component 3 is installed on the top of the first plate body 1. A blanking port 4 is penetrated and opened on the top of the first plate body 1. A first motor component 5 is installed at the bottom of the first plate body 1, and the first motor component 5 is electrically connected to the controller component 3. An output end of the first motor component 5 is installed with a slicer 6, and the slicer 6 is located inside the blanking port 4. A second plate body 9 is installed at the bottom of the first plate body 1. A second motor component 10 is installed on the top of the second plate body 9, and the second motor component 10 is electrically connected to the controller component 3. An output end of the second motor component 10 is installed with a lead screw 11. A moving plate 12 is installed on the outer side of the lead screw 11. The first plate body 1 can provide an installation position for other components of the device. The controller component 3 can control the first motor component 5, the second motor component 10, the first hydraulic cylinder component 14, the first electric telescopic rod component 24, the second electric telescopic rod component 29 and the blower 38, and can receive signals from the first pressure sensor 26 and the second pressure sensor 31 at the same time. The blanking port 4 can provide an entry path for the debris generated by the slicer 6 cutting the die steel into the sound insulation frame 34, and at the same time provide a discharge path for the heat in the sound insulation frame 34 to be discharged. The first motor component 5 can convert electrical energy into kinetic energy, and then can drive the slicer 6 to rotate. The slicer 6 can cut the die steel by rotating. The second plate body 9 can provide an installation position for the second motor component 10. The second motor component 10 can convert electrical energy into kinetic energy, thereby driving the lead screw 11 to rotate. The lead screw 11 can drive the moving plate 12 to move back and forth by rotating. The moving plate 12 can drive the die steel plate body to move back and forth by moving back and forth.
[0028] Please refer to Figure 1 , Figure 2 , Figure 4 And Figure 5 , an embodiment provided by the present invention: a die steel cutting device; It includes a hydraulic cylinder component 14 and a movable sound insulation mechanism. A plurality of hydraulic cylinder components 14 are symmetrically installed at the top of the first plate body 1, and the hydraulic cylinder component 14 is electrically connected to the controller component 3. The output end of the hydraulic cylinder component 14 is installed with a right-angled sound insulation plate component 15, and the right-angled sound insulation plate component 15 is located above the moving plate 12. A movable sound insulation mechanism is symmetrically arranged at the top of the right-angled sound insulation plate component 15. The movable sound insulation mechanism includes a first right-angled plate 16, a lifting rod 17, a second sound insulation plate component 18, a block 19 and a first rotating rod 20. Two first right-angled plates 16 are symmetrically installed at the top of the right-angled sound insulation plate component 15. A plurality of lifting rods 17 are movably installed through the top of the first right-angled plate 16. One end of the lifting rod 17 is installed with a second sound insulation plate component 18. The second sound insulation plate component 18 is located in front of the right-angled sound insulation plate component 15. Blocks 19 are symmetrically installed at the bottom of the second sound insulation plate component 18. A first rotating rod 20 is movably installed through the inside of the block 19. The hydraulic cylinder component 14 can convert hydraulic energy into kinetic energy, thereby driving the right-angled sound insulation plate component 15 to move left and right. The right-angled sound insulation plate component 15 plays a role in sound insulation, and can weaken the noise generated by the cutting of the die steel by the slicer 6, reducing the impact of the noise on the human auditory system. The first right-angled plate 16 can provide an installation position for the lifting rod 17. The lifting rod 17 can provide an installation position for the second sound insulation plate component 18. At the same time, the lifting rod 17 can move up and down, enabling the second sound insulation plate component 18 to move up and down. When the second sound insulation plate component 18 moves down to contact the top of the die steel placed on the moving plate 12, it can weaken the noise in the front and rear directions generated by the cutting of the die steel by the slicer 6. The block 19 can provide an installation position for the first rotating rod 20. The first rotating rod 20 can reduce the frictional force received when the die steel moves by contacting the top of the die steel and rotating.
[0029] Please refer to Figure 1 and Figure 2 , an embodiment provided by the present invention: a die steel cutting device; It includes a support column 2 and a stop rod 39. A plurality of support columns 2 are symmetrically installed at the bottom of the first plate body 1. A first support plate 7 is installed at the top of the first plate body 1. The first support plate 7 is located in front of the slicer 6. A second support plate 8 is installed at the top of the first plate body 1, and the second support plate 8 is located behind the slicer 6. Stop rods 39 are symmetrically installed through the top of the moving plate 12. A support block 13 is installed at the top of the first plate body 1, and the support block 13 is located outside the lead screw 11. The support column 2 can provide support for the first plate body 1. The first support plate 7 and the second support plate 8 can provide support for the die steel. The stop rod 39 plays a role in limiting, and can prevent the die steel from sliding forward relative to the moving plate 12 above the moving plate 12. The support block 13 can provide support for one end of the lead screw 11, preventing one end of the lead screw 11 from bending downward.
[0030] Please refer to Figure 1 , Figure 2, Figure 4 , Figure 6 and Figure 7 , an embodiment provided by the present invention: a die steel cutting device; It includes a right-angle plate two 21. A right-angle plate two 21 is symmetrically installed on one side of the right-angle sound insulation plate component one 15. A spring 22 is installed on the inner wall of one side of the right-angle plate two 21. One end of the spring 22 is installed with a sound insulation plate component three 23, and one side of the sound insulation plate component three 23 penetrates through the inner wall of one side of the right-angle sound insulation plate component one 15. The right-angle plate two 21 can provide an installation position for the spring 22, and the spring 22 can apply pressure to the sound insulation plate component three 23, so that the sound insulation plate component three 23 can move inward to contact the side of the die steel.
[0031] Please refer to Figure 1 , Figure 2 , Figure 4 , Figure 6 and Figure 8 , an embodiment provided by the present invention: a die steel cutting device; It includes an electric telescopic rod component one 24. A plurality of electric telescopic rod components one 24 are installed on the top of the right-angle sound insulation plate component one 15, and the electric telescopic rod component one 24 is electrically connected to the controller component 3. The output end of the electric telescopic rod component one 24 is installed with a piston rod one 25. One end of the piston rod one 25 penetrates through the top inner wall of the right-angle sound insulation plate component one 15. One end of the piston rod one 25 is installed with a pressure sensor one 26, and the pressure sensor one 26 is electrically connected to the controller component 3. The bottom input end of the pressure sensor one 26 is installed with a frame one 27. A rotating rod two 28 is movably installed through the inside of the frame one 27. The electric telescopic rod component one 24 can convert electrical energy into kinetic energy, thereby driving the piston rod one 25 to move up and down. The piston rod one 25 can drive the rotating rod two 28 to move up and down by moving up and down. The pressure sensor one 26 can detect the pressure of the rotating rod two 28 on the die steel below. The frame one 27 can provide an installation position for the rotating rod two 28, and the rotating rod two 28 can move down to limit the top of the die steel, avoiding the die steel from moving up when being cut.
[0032] Please refer to Figure 1 , Figure 2 , Figure 4 , Figure 6 and Figure 8 , an embodiment provided by the present invention: a die steel cutting device; It includes the electric telescopic rod component two 29. On one side of the right-angle sound insulation board component one 15, multiple electric telescopic rod components two 29 are installed. The electric telescopic rod component two 29 is electrically connected to the controller component 3. At the output end of the electric telescopic rod component two 29, a piston rod two 30 is installed. One end of the piston rod two 30 penetrates the inside of one side of the right-angle sound insulation board component one 15. At one end of the piston rod two 30, a pressure sensor two 31 is installed, and the pressure sensor two 31 is electrically connected to the controller component 3. At the input end on one side of the pressure sensor two 31, a frame two 32 is installed. Inside the frame two 32, a rotating rod three 33 is installed through and movably. The electric telescopic rod component two 29 can convert electrical energy into kinetic energy, thereby driving the piston rod two 30 to move left and right. The piston rod two 30 can drive the rotating rod three 33 to move left and right through left and right movement. The pressure sensor two 31 can detect the pressure of the rotating rod three 33 on the side of the die steel. The frame two 32 can provide an installation position for the rotating rod three 33. The rotating rod three 33 can limit the two sides of the die steel to prevent the die steel from moving to both sides.
[0033] Please refer to Figure 1 , Figure 2 and Figure 3 , an embodiment provided by the present invention: a die steel cutting device; It includes a sound insulation frame 34. The sound insulation frame 34 is installed at the bottom of the plate body one 1, and the sound insulation frame 34 is located outside the motor component one 5. One side of the sound insulation frame 34 is movably installed with a sound insulation door 35 through a hinge. A plurality of air inlet pipes one 36 are installed through one side of the sound insulation door 35. A plurality of air inlet pipes two 37 are installed through one side of the sound insulation frame 34. A blower 38 is installed on the inner wall of one side of the sound insulation frame 34, and the blower 38 is electrically connected to the controller component 3. The sound insulation frame 34 can sound-insulate the lower part of the die steel being cut, and at the same time can collect the debris generated when cutting the die steel. The sound insulation door 35 can sound-insulate the lower right part of the die steel being cut. The air inlet pipes one 36 and the air inlet pipes two 37 can provide an entry path for external air to enter the sound insulation frame 34. The blower 38 can convert electrical energy into kinetic energy, thereby blowing away the heat generated by the motor component one 5 inside the sound insulation frame 34 through the blanking port 4.
[0034] The usage method of the die steel cutting device is as follows: S1. Place the die steel plate on the moving plate 12 and make the die steel plate body enter the inside of the right-angle sound insulation board component one 15; S2. The right-angle sound insulation board component one 15 moves inward to sound-insulate the upper part of the die steel plate, and the sound insulation frame 34 sound-insulates the lower part of the die steel plate body; S3. Then the sound insulation board component two 18 moves downward so that the rotating rod one 20 contacts the top of the die steel plate body to sound-insulate the front and rear of the cut part of the die steel plate body; S4. Then, the sound insulation board component three 23 moves inward to contact both sides of the die steel plate body according to the width of the die steel plate body, further supplementing the sound insulation for the positions in front of and behind the cut part of the die steel plate body that are not sound-insulated by the sound insulation board component two 18. S5. Then, the motor component one 5 drives the slicer 6 to rotate to cut the die steel plate body that moves backward. The cut debris enters the sound insulation frame 34 through the blanking port 4. At the same time, the fan 38 blows away the heat generated by the motor component one 5 in the sound insulation frame 34.
[0035] In S1, the following steps are further included: S11. The rotating rod two 28 moves downward to limit the top of the die steel plate body, and at the same time, the rotating rod three 33 moves inward to limit both sides of the die steel plate body.
[0036] Working principle: Before using the die steel cutting device, it should be checked first whether there are any problems affecting its use. Place the die steel plate on the moving plate 12, and make the die steel plate body enter the inside of the right-angle sound insulation board component one 15. The rotating rod two 28 moves downward to limit the top of the die steel plate body, and at the same time, the rotating rod three 33 moves inward to limit both sides of the die steel plate body. The right-angle sound insulation board component one 15 moves inward to insulate the upper part of the die steel plate. The sound insulation frame 34 insulates the lower part of the die steel plate body. Then, the sound insulation board component two 18 moves downward to make the rotating rod one 20 contact the top of the die steel plate body, insulating the front and back of the cut part of the die steel plate body. Then, the sound insulation board component three 23 moves inward to contact both sides of the die steel plate body according to the width of the die steel plate body, further supplementing the sound insulation for the positions in front of and behind the cut part of the die steel plate body that are not sound-insulated by the sound insulation board component two 18. Then, the motor component one 5 drives the slicer 6 to rotate to cut the die steel plate body that moves backward. The cut debris enters the sound insulation frame 34 through the blanking port 4. At the same time, the fan 38 blows away the heat generated by the motor component one 5 in the sound insulation frame 34.
[0037] For those skilled in the art, it is obvious that the present invention is not limited to the details of the above exemplary embodiments, and without departing from the spirit or basic characteristics of the present invention, the present invention can be implemented in other specific forms. Therefore, in any aspect, the embodiments should be regarded as exemplary and non-limiting. The scope of the present invention is defined by the appended claims rather than the above description. Therefore, it is intended to encompass all changes falling within the meaning and scope of the equivalent elements of the claims in the present invention, and any reference signs in the claims should not be regarded as limiting the rights involved.
Claims
1. A mold steel cutting device, characterized in that: It includes a first plate body (1), a second plate body (9) and a first hydraulic cylinder component (14). A controller component (3) is installed at the top of the first plate body (1). A blanking port (4) is formed through the top of the first plate body (1). A first motor component (5) is installed at the bottom of the first plate body (1), and the first motor component (5) is electrically connected to the controller component (3). A slicer (6) is installed at the output end of the first motor component (5), and the slicer (6) is located inside the blanking port (4). A second plate body (9) is installed at the bottom of the first plate body (1). A second motor component (10) is installed at the top of the second plate body (9), and the second motor component (10) is electrically connected to the controller component (3). A lead screw (11) is installed at the output end of the second motor component (10). A moving plate (12) is installed on the outer side of the lead screw (11). A plurality of first hydraulic cylinder components (14) are symmetrically installed at the top of the first plate body (1), and the first hydraulic cylinder components (14) are electrically connected to the controller component (3). A first right-angled sound insulation plate component (15) is installed at the output end of the first hydraulic cylinder components (14), and the first right-angled sound insulation plate component (15) is located above the moving plate (12). An active sound insulation mechanism is symmetrically arranged at the top of the first right-angled sound insulation plate component (15).
2. The cutting device for die steel according to claim 1, wherein: A plurality of support columns (2) are symmetrically installed at the bottom of the first plate body (1). A first support plate (7) is installed at the top of the first plate body (1), and the first support plate (7) is located in front of the slicer (6). A second support plate (8) is installed at the top of the first plate body (1), and the second support plate (8) is located behind the slicer (6).
3. The cutting device for die steel according to claim 1, characterized in that: A plurality of blocking rods (39) are symmetrically installed through the top of the moving plate (12). A support block (13) is installed at the top of the first plate body (1), and the support block (13) is located on the outer side of the lead screw (11).
4. A mold steel cutting device according to claim 1, characterized in that: The active sound insulation mechanism includes a first right-angled plate (16), a lifting rod (17), a second sound insulation plate component (18), a block (19) and a first rotating rod (20). Two first right-angled plates (16) are symmetrically installed at the top of the first right-angled sound insulation plate component (15). A plurality of lifting rods (17) are movably installed through the top of the first right-angled plate (16). A second sound insulation plate component (18) is installed at one end of the lifting rod (17), and the second sound insulation plate component (18) is located in front of the first right-angled sound insulation plate component (15). A block (19) is symmetrically installed at the bottom of the second sound insulation plate component (18). A first rotating rod (20) is movably installed through the inside of the block (19).
5. The cutting device for die steel according to claim 1, characterized in that: A second right-angled plate (21) is symmetrically installed on one side of the first right-angled sound insulation plate component (15). A spring (22) is installed on the inner wall of one side of the second right-angled plate (21). A third sound insulation plate component (23) is installed at one end of the spring (22), and one side of the third sound insulation plate component (23) penetrates through the inner wall of one side of the first right-angled sound insulation plate component (15).
6. The cutting device for die steel according to claim 1, characterized in that: A plurality of first electric telescopic rod components (24) are installed at the top of the first right-angled sound insulation board component (15), and the first electric telescopic rod components (24) are electrically connected to the controller component (3). A first piston rod (25) is installed at the output end of the first electric telescopic rod components (24). One end of the first piston rod (25) penetrates through the inner wall of the top of the first right-angled sound insulation board component (15). A first pressure sensor (26) is installed at one end of the first piston rod (25), and the first pressure sensor (26) is electrically connected to the controller component (3). A first frame (27) is installed at the bottom input end of the first pressure sensor (26). A second rotating rod (28) is installed through the inside of the first frame (27) in a movable manner.
7. A mold steel cutting device according to claim 1, characterized in that: A plurality of second electric telescopic rod components (29) are installed on one side of the first right-angled sound insulation board component (15). The second electric telescopic rod components (29) are electrically connected to the controller component (3). A second piston rod (30) is installed at the output end of the second electric telescopic rod components (29). One end of the second piston rod (30) penetrates through the inside of one side of the first right-angled sound insulation board component (15). A second pressure sensor (31) is installed at one end of the second piston rod (30), and the second pressure sensor (31) is electrically connected to the controller component (3). A second frame (32) is installed at the input end on one side of the second pressure sensor (31). A third rotating rod (33) is installed through the inside of the second frame (32) in a movable manner.
8. A cutting device for die steel according to claim 1, characterized in that: A sound insulation frame (34) is installed at the bottom of the first plate body (1), and the sound insulation frame (34) is located outside the first motor component (5). A sound insulation door (35) is movably installed on one side of the sound insulation frame (34) through a hinge. A plurality of first air inlet pipes (36) are installed through one side of the sound insulation door (35). A plurality of second air inlet pipes (37) are installed through one side of the sound insulation frame (34). A blower (38) is installed on the inner wall of one side of the sound insulation frame (34), and the blower (38) is electrically connected to the controller component (3).
9. The usage method of a die steel cutting device according to any one of claims 1-8, characterized in that: The usage method of the die steel cutting device is as follows: S1. Place the die steel plate on the moving plate (12), and make the die steel plate body enter the inside of the first right-angled sound insulation board component (15); S2. The first right-angled sound insulation board component (15) moves inward to insulate the upper part of the die steel plate, and the sound insulation frame (34) insulates the lower part of the die steel plate body; S3. Then the second sound insulation board component (18) moves downward so that the first rotating rod (20) contacts the top of the die steel plate body, and insulates the front and rear of the cutting part of the die steel plate body; S4. Then the third sound insulation board component (23) moves inward to contact both sides of the die steel plate body according to the width of the die steel plate body, and further supplements the insulation of the positions in the front and rear of the cutting part of the die steel plate body that are not insulated by the second sound insulation board component (18); S5. Then the first motor component (5) drives the slicing blade (6) to rotate to cut the die steel plate body moving backward. The cutting debris enters the sound insulation frame (34) through the blanking port (4). At the same time, the blower (38) blows away the heat generated by the first motor component (5) in the sound insulation frame (34).
10. The usage method of a die steel cutting device according to claim 9, characterized in that: In step S1, the following steps are further included: S11. The second rotating rod (28) moves downward to limit the top of the die steel plate body, and at the same time, the third rotating rod (33) moves inward to limit the two sides of the die steel plate body.
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