Stainless steel slide cutting device and cutting method
By introducing multiple sets of pressure wheels and drive components into the stainless steel slide cutting device, combined with infrared sensors and lifting components, the interference problem of cutting components caused by unstable steel plate fixation was solved, and stable fitting and high-precision cutting of the steel plate were achieved.
Patent Information
- Application Number
- CN202511308122.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-15
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2045-09-15
AI Technical Summary
In the existing stainless steel slide cutting device, when the sliding plate is fixed against the side of the steel plate, the steel plate cannot be stably attached to the surface of the cutting table, resulting in interference between the cutting assembly and the pressure wheel.
It adopts multiple sets of pressure wheels and square frame structure on the top of the cutting table. The movement of the pressure wheels is achieved through the driving components and telescopic units to avoid interference between the cutting components and the pressure wheels. The position of the pressure wheels is adjusted using infrared sensors and lifting components to keep the steel plate stable.
The steel plate is stably adhered to the cutting table surface during the cutting process, interference between the cutting component and the pressure wheel is avoided, and the cutting accuracy and stability are improved.
Smart Images

Figure CN120791196A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of steel plate cutting device, in particular to a stainless steel slide cutting device and cutting method. BACKGROUND
[0002] The stainless steel slide is assembled by a plurality of steel plates, so that in the processing process, the cutting device needs to be used to cut the steel plate.
[0003] The Chinese patent CN220240380U discloses a stainless steel plate fixing device for laser cutting, which can be adjusted according to the edge condition of the steel plate when facing the edge with unevenness, so as to make the fixing more stable and firm, improve the cutting accuracy, and bring convenience to the user.
[0004] The above-mentioned device abuts the sliding plate against the side edge of the steel plate to fix it, but it cannot make the steel plate stably adhere to the surface of the cutting table. If the sliding plate is arranged above the steel plate to press the side edge of the steel plate, the cutting assembly may interfere with the sliding plate during cutting off the side edge of the steel plate. In summary, the above-mentioned device still needs improvement.
[0005] Therefore, it is necessary to provide a stainless steel slide cutting device and cutting method to solve the above technical problems. SUMMARY
[0006] The present application aims to provide a stainless steel slide cutting device and cutting method to solve the problem that the existing device abuts the sliding plate against the side edge of the steel plate to fix it, but it cannot make the steel plate stably adhere to the surface of the cutting table.
[0007] Based on the above idea, the present application provides the following technical solution: a stainless steel slide cutting device, comprising a cutting table and a cross beam slidingly assembled on the cutting table, a cutting assembly is assembled on the cross beam, sliding rails are fixedly installed at both sides of the cutting table, a sliding block slidingly matched with the sliding rails is installed at the end of the cross beam, and a plurality of sets of pressing wheels are arranged at both sides of the top of the cutting table; A square frame is arranged at the top of the cutting table and outside the pressing wheels, so that the pressing wheels can be assembled on the square frame and move synchronously with the square frame. First and second baffles are arranged at both sides of the bottom of the square frame, and a driving assembly is arranged between the first and second baffles. When the sliding block passes through the driving assembly, the driving assembly can push the square frame away from the steel plate during rotation through the first baffle, so that the pressing wheels can move away from the surface of the steel plate.
[0008] As a further scheme of the present application: the driving assembly comprises a rotating drum arranged between the first baffle and the second baffle, a telescopic unit is arranged at the outer wall of the rotating drum, when the rotating drum drives the telescopic unit to rotate and extrude the first baffle, the square frame and the pressing wheel can be driven to move outward, a vertical shaft is fixedly arranged along the axis direction of the rotating drum, and the bottom end of the vertical shaft is in rotating connection with the slide rail, a straight gear is fixedly arranged at the outer side of the vertical shaft, and a rack in meshing connection with the straight gear is fixedly arranged at the inner side of the slide block, before the cutting assembly moves to the state of being collinear with the pressing wheel, the rack can be in meshing connection with the straight gear at the outer side of the vertical shaft.
[0009] As a further scheme of the present application: the top end of the vertical shaft is sleeved with a driving bevel gear, the telescopic unit comprises a square tube fixed to the outer wall of the rotating drum, a core tube is slidably arranged in the square tube, a rotating shaft is rotatably arranged on the rotating drum, the rotating shaft penetrates through the core tube and is in threaded connection with the core tube, a driven bevel gear in meshing connection with the driving bevel gear is fixedly arranged at the end of the rotating shaft inside the rotating drum, a core shaft is arranged at the axis of the vertical shaft, the bottom end of the core shaft is fixed to the slide rail, an end cover is arranged at the top end of the rotating drum, a fixed box is arranged at the top of the end cover, the top end of the core shaft is fixedly connected with the fixed box, a lifting assembly in cooperation with the driving bevel gear is arranged in the fixed box, and the driving bevel gear can be driven to move up and down through the lifting assembly.
[0010] As a further scheme of the present application: the pressing wheel is arranged on the support, the support is fixedly connected with the square frame, and infrared sensors are arranged on the two supports located at the two sides of the top of the cutting table and collinear with each other, when the side edge of the steel plate is raised and blocks the light of the infrared sensors, the lifting assembly can drive the driving bevel gear to move downward and mesh with the driven bevel gear.
[0011] As a further scheme of the present application: air holes or air grooves are uniformly arranged on the table surface of the cutting table, so that the steel plate can be adsorbed on the surface of the cutting table.
[0012] As a further scheme of the present application: slide rods are fixedly arranged at the two side surfaces of the square frame, support bars are slidably sleeved with the slide rods, and the support bars are fixed to the slide rail through vertical rods.
[0013] As a further scheme of the present application: rubber strips are arranged on the slide rods or the support bars, so as to increase the friction between the slide rods and the support bars, and the square frame can be kept stable after being moved by the telescopic unit.
[0014] As a further scheme of the present application: the cutting assembly is in sliding connection with the cross beam, so that the cutting assembly can move along the length direction of the cross beam.
[0015] As a further scheme of the present application: a lead screw is arranged at the slide rail, the lead screw penetrates through the slide block and is in threaded connection with the slide block.
[0016] A method for cutting using the stainless steel slide cutting device, comprising the following steps: placing the steel plate on the surface of the cutting table, cutting the steel plate by moving the cutting assembly in the X direction and the Y direction; using the pressing wheel to press the side edge of the steel plate, so that the steel plate can be stably attached to the surface of the cutting table; before the cutting assembly moves to the pressing wheel, the driving assembly can drive the pressing wheel to move outward, so as to avoid the interference between the cutting assembly and the pressing wheel.
[0017] Compared with the prior art, the beneficial effects of the present application are: through the threaded engagement of the rotating shaft and the core pipe, the rotating shaft can drive the core pipe to move outward relative to the square pipe during rotation, so that the telescopic unit can be further elongated, when the rotating drum drives the telescopic unit to rotate to the side of the second baffle, the extrusion of the elongated telescopic unit on the second baffle can promote the pressing wheel to move a further distance towards the direction close to the steel plate, so that the pressing wheel can press the remaining side of the steel plate, avoiding the side edge from being raised to affect cutting. BRIEF DESCRIPTION OF DRAWINGS
[0018] The present application will be further described below in conjunction with the drawings and examples: Figure 1 is a schematic diagram of the overall structure of the present application; Figure 2 is a schematic diagram of the overall structure of the present application; Figure 3 is a schematic diagram of the pressing wheel and the steel plate of the present application; Figure 4 is a schematic diagram of the driving assembly structure of the present application; Figure 5 is a schematic diagram of the driving assembly structure of the present application; Figure 2 is a schematic diagram of the driving assembly structure of the present application; Figure 6 Figure 4 is a schematic diagram of the driving assembly structure of the present application; Figure 7 is a schematic diagram of the rack structure of the present application; Figure 8 is a schematic diagram of the receiver and transmitter position of the present application; Figure 9 is a schematic diagram of the baffle structure of the present application; Figure 10 is a schematic diagram of the baffle structure of the present application;
[0019] In the figure: 1. Cutting table; 101. Slide rail; 2. Pressure wheel; 201. Bracket; 3. Slider; 4. Crossbeam; 5. Cutting assembly; 6. Steel plate; 7. Spur gear; 8. Square frame; 801. First baffle; 802. Second baffle; 9. Rotating drum; 901. Protrusion; 902. End cover; 10. Core tube; 11. Square tube; 12. Rotating shaft; 13. Rack; 14. Box body; 1401. Lifting unit; 15. Support bar; 16. First switch; 17. Second switch; 18. Vertical shaft; 19. Baffle; 20. Sliding rod; 21. Lifting assembly; 22. Active bevel gear; 2201. Protruding ring; 23. Core shaft; 24. Receiver; 25. Transmitter. DETAILED DESCRIPTION
[0020] like Figures 1-10 As shown, a stainless steel slide cutting device includes a cutting table 1 and a beam 4 that can slide along the length of the cutting table 1. A cutting assembly 5 is slidably mounted on the beam 4. In actual use, the table top of the cutting table 1 can be evenly provided with air holes or air grooves, so that a negative pressure can be formed between the table top of the cutting table 1 and the steel plate 6, thereby fixing the steel plate 6 on the table top of the cutting table 1. Of course, the steel plate 6 can also be fixed by a tooling fixture, etc. In this solution, the steel plate 6 is preferably fixed by negative pressure adsorption.
[0021] In order to enable the crossbeam 4 to slide relative to the cutting table 1, slide rails 101 are fixedly installed at both sides of the cutting table 1 by bolts, and sliders 3 are fixedly provided at both ends of the crossbeam 4, and the sliders 3 are slidably assembled on the slide rails 101. Specifically, a screw rod is arranged at the slide rail 101, which passes through the slider 3 and is threadedly connected to it, so as to drive the slider 3 to move along the slide rail 101, and the above-mentioned cutting assembly 5 can also cooperate with the crossbeam 4 through the same structure. When in use, the steel plate 6 is placed on the surface of the cutting table 1, and the steel plate 6 can be cut when the cutting assembly 5 moves in the X direction and the Y direction.
[0022] In order to further fix the side of the steel plate 6, the present invention arranges multiple sets of pressing wheels 2 on both sides of the top of the cutting table 1. When the side of the steel plate 6 is tilted, the pressing wheels 2 can press the side of the steel plate 6 to make it fit on the cutting table 1. Figures 2-6As shown, the cutting table 1 is provided with a square frame 8 at the top and outside the compression wheel 2, so that the compression wheel 2 can be assembled on the square frame 8 and move synchronously, the bottom of the square frame 8 is provided with a first baffle 801 and a second baffle 802 respectively, and a driving assembly is arranged between the first baffle 801 and the second baffle 802, during the movement of the sliding block 3 through the driving assembly, the driving assembly can push the square frame 8 away from the steel plate 6 by the first baffle 801 during rotation, so as to move the compression wheel 2 away from the surface of the steel plate 6, avoiding the interference between the cutting assembly 5 and the compression wheel 2 during cutting the steel plate 6.
[0023] Referring to Figures 3-6 As shown, the driving assembly includes a rotating drum 9 arranged between the first baffle 801 and the second baffle 802, and a telescopic unit is arranged on the outer wall of the rotating drum 9, which can drive the square frame 8 and the compression wheel 2 to move outward when the rotating drum 9 rotates and extrudes the first baffle 801, and similarly, when the rotating drum 9 drives the telescopic unit to extrude the second baffle 802, the square frame 8 and the compression wheel 2 can be reset; Further, in order to drive the rotating drum 9 to rotate during the movement of the sliding block 3 along the slide rail 101, a vertical shaft 18 is arranged in the axial direction of the rotating drum 9, the top end of the vertical shaft 18 extends upward into the rotating drum 9, and the vertical shaft 18 is fixedly connected with the rotating drum 9, the bottom end of the vertical shaft 18 is rotatably connected with the slide rail 101 through a bearing, a spur gear 7 is fixedly arranged on the outside of the vertical shaft 18, and a rack 13 is fixedly arranged on the inner side of the sliding block 3 and engaged with the spur gear 7, specifically, before the cutting assembly 5 moves to the state of being collinear with the compression wheel 2, the rack 13 can be engaged with the spur gear 7 on the outside of the vertical shaft 18, thereby driving the rotating drum 9 to rotate, so that the compression wheel 2 moves outward and is staggered with the steel plate 6, thereby avoiding the interference between the cutting assembly 5 and the compression wheel 2 during cutting the steel plate 6.
[0024] Through the above embodiment, the side edge of the steel plate 6 can be pressed and the interference with the compression wheel 2 during laser cutting can be avoided, but during actual cutting, the situation shown in Figure 10 As shown, a indicates the waste material cut down, and b indicates the remaining steel plate, when there is still an upwardly curved part on the side edge of the remaining steel plate, it is still possible to cause influence during the next cutting process, based on this, a driving bevel gear 22 is arranged at the top end of the vertical shaft 18, and the above-mentioned telescopic unit includes a square tube 11 fixed on the outer wall of the rotating drum 9, a square structure core tube 10 is slidably arranged in the square tube 11, and a rotating shaft 12 is rotatably arranged on the rotating drum 9, the rotating shaft 12 penetrates through the core tube 10 and is threadedly connected with the core tube 10, in combination with Figure 4 、 Figure 6 As shown, one end of the rotating shaft 12 inside the rotating drum 9 is fixedly provided with a driven bevel gear engaged with the driving bevel gear 22; Further, a mandrel 23 is installed at the axis of the vertical shaft 18 and penetrates the vertical shaft 18, the bottom end of the mandrel 23 is fixed on the slide rail 101, the top end of the said rotating drum 9 is provided with an end cover 902, the top of the end cover 902 is welded with a fixing box, the top end of the mandrel 23 is fixedly connected with the fixing box, the fixing box is provided with a lifting assembly 21 matched with the driving bevel gear 22, the setting of the lifting assembly 21 can control whether the driving bevel gear 22 is engaged with the driven bevel gear.
[0025] In actual use, the steel plate 6 is placed on the cutting table 1 and fixed, the steel plate 6 is cut by the cutting assembly 5, initially, the telescopic unit outside the rotating drum 9 is at the position close to the second baffle 802, before the cutting assembly 5 moves to be collinear with the pressure roller 2, the rack 13 on the slide block 3 can be engaged with the spur gear 7 outside the vertical shaft 18, so as to drive the rotating drum 9 to rotate, when the rotating drum 9 drives the telescopic unit to move to the side of the first baffle 801 and press the first baffle 801, it can promote the pressure roller 2 to move outward and be staggered with the steel plate 6, so as to avoid interference with the pressure roller 2 in the process of laser cutting, referring to Figure 10 When there is still a situation of the side of the remaining steel plate being buckled, the lifting assembly 21 can drive the driving bevel gear 22 to move downward to be engaged with the driven bevel gear at the end of the rotating shaft 12, so as to drive the rotating shaft 12 to rotate, and the rotating shaft 12 is engaged with the screw thread of the core pipe 10, so that the rotating shaft 12 can drive the core pipe 10 to move outward relative to the square tube 11 in the process of rotating, so that the telescopic unit can be further elongated, when the rotating drum 9 drives the telescopic unit to rotate to the side of the second baffle 802, the extrusion of the second baffle 802 by the elongated telescopic unit can promote the pressure roller 2 to move a further distance towards the steel plate 6, so that the pressure roller 2 can press the side of the remaining steel plate, avoiding the side being buckled to affect cutting, when the rack 13 completely passes through the spur gear 7, the rotating drum 9 just rotates one round and returns to the initial position.
[0026] Referring to Figure 4 , the pressure roller 2 is installed on the bracket 201, and the bracket 201 and the square frame 8 are fixedly connected through the fixing plate, combined with Figures 1-4 , Figure 8 , two infrared sensors are arranged on the two brackets 201 on the top of the cutting table 1 and are collinear, the light emitted by the infrared sensor can pass through the surface of the steel plate 6, specifically, the infrared sensor includes an emitter 25 and a receiver 24, from Figure 8 , it can be seen that the receiver 24 and the emitter 25 are installed on the bracket 201, specifically, the emitter 25 on the bracket 201 on one side of the cutting table 1 is aligned with and cooperates with the receiver 24 on the bracket 201 on the other side of the cutting table 1, the infrared sensor and the above-mentioned lifting assembly 21 are electrically connected through a single-chip microcomputer, combined withFigures 1-4 、 Figures 8-10 As shown in FIG. 9, when the side edge of the remaining steel plate is upturned, the light emitted by the emitter 25 is blocked by the upturned part of the steel plate 6, so that the receiver 24 cannot receive the light, and the lifting assembly 21 is controlled to drive the driving bevel gear 22 to move downward and engage with the driven bevel gear, so that the rotating shaft 12 can rotate during the rotation of the rotating drum 9, so as to elongate the telescopic unit, and through the cooperation of the telescopic unit and the second baffle 802, the pressure roller 2 can pass over the cut waste and press the side edge of the remaining steel plate 6 on the cutting table 1, so as to facilitate the stability of the remaining steel plate 6.
[0027] As shown in FIG. 8, the first baffle 801 and the second baffle 802 can be hinged with the square frame 8 during installation, and the hinged position is located at the outer side of the square frame 8, so that the first baffle 801 or the second baffle 802 can only be deflected outward relative to the square frame 8, and the box body 14 is fixedly installed at the top of the square frame 8, and the inside bottom end of the box body 14 is slidably provided with a baffle 19, when the baffle 19 moves downward and coincides with the first baffle 801 or the second baffle 802, the first baffle 801 or the second baffle 802 is locked, and at this time, through the cooperation of the telescopic unit and the first baffle 801 or the second baffle 802, the square frame 8 can be moved. Figures 4-9
[0028] Further, the lifting unit 1401 matched with the blocking strip 19 is arranged in the box body 14, the lifting unit 1401 can drive the blocking strip 19 to move in the vertical direction, the first switch 16 and the second switch 17 are arranged outside the rotating drum 9, the first switch 16 and the second switch 17 are centrally symmetrically distributed about the axis of the rotating drum 9, the first switch 16 and the second switch 17 are electrically connected with the lifting unit 1401 on both sides of the top of the square frame 8 through the PLC, and the semispherical protrusion 901 is fixedly arranged at the outer side circumferential wall of the rotating drum 9, initially, the telescopic unit is on one side of the second baffle 802, when the rack 13 is engaged with the spur gear 7 in the moving process of the sliding block 3, in the rotating process of the rotating drum 9, the protrusion 901 can first contact the second switch 17, so that the lifting unit 1401 on the square frame 8 close to the first baffle 801 drives the blocking strip 19 to move downward and coincide with the first baffle 801, and the lifting unit 1401 on the square frame 8 close to the second baffle 802 drives the blocking strip 19 to move upward and disengage from the second baffle 802, so that the telescopic unit drives the square frame 8 to move outward in cooperation with the first baffle 801, and the rotating drum 9 does not interfere with the second baffle 802; similarly, when the protrusion 901 triggers the first switch 16, the lifting unit 1401 on the square frame 8 close to the first baffle 801 can drive the blocking strip 19 to move upward and disengage from the first baffle 801, and the lifting unit 1401 on the square frame 8 close to the second baffle 802 drives the blocking strip 19 to move downward and coincide with the second baffle 802, in this way, the moving range of the telescopic unit driving the square frame 8 is increased.
[0029] As the first embodiment of the lifting assembly 21 and the lifting unit 1401, the lifting assembly 21 and the lifting unit 1401 can be air cylinders, specifically, the output end of the air cylinder located at the fixed box is fixedly connected with the driving bevel gear 22, the air cylinder at the fixed box can be controlled by the infrared sensor, so as to drive the driving bevel gear 22 to move upward and downward, and the output end of the air cylinder located in the box body 14 is fixedly connected with the blocking strip 19, the air cylinder in the box body 14 can be controlled to operate through the first switch 16 or the second switch 17, as the second embodiment of the lifting assembly 21 and the lifting unit 1401, the lifting assembly 21 and the lifting unit 1401 can be electromagnets, specifically, the top of the driving bevel gear 22 is fixedly provided with a convex ring 2201 (the convex ring 2201 is made of iron), the convex ring 2201 penetrates through the end cover 902 and extends to one side of the electromagnet in the fixed box, and a spring is connected between the convex ring 2201 and the electromagnet above it, as shown in the combination Figure 9 The blocking strip 19 is a T-shaped structure, and the blocking strip 19 penetrates through the box body 14 and is elastically matched with the box body 14 through the limiting spring, the blocking strip 19 is also made of iron, and when the electromagnet is controlled to be in the electrified state, the blocking strip 19 or the driving bevel gear 22 can be driven to move upward.
[0030] Referring to Figure 5 As shown, the first switch 16 and the second switch 17 are fixed on the slide rail 101 through the support frame, slide rods 20 are fixed at both sides of the square frame 8, and support bars 15 are sleeved outside the slide rods 20, the cross section of the slide rod 20 is T-shaped structure, so as to keep the connection between the slide rod 20 and the support bar 15 stable, the support bar 15 is fixed on the slide rail 101 through a vertical rod, in actual use, rubber strips can be arranged on the slide rod 20 or the support bar 15, so as to increase the friction between the slide rod 20 and the support bar 15, and after the square frame 8 is moved by the telescopic unit, the square frame 8 can be kept stable.
Claims
1. A stainless steel slide cutting device, comprising a cutting table and a crossbeam slidably mounted on the cutting table, the crossbeam being equipped with a cutting assembly, slide rails fixedly mounted on both sides of the cutting table, and sliders mounted at the ends of the crossbeam that slidably engage with the slide rails, characterized in that: Multiple sets of pressure wheels are arranged on both sides of the top of the cutting table; A square frame is provided at the top of the cutting table and at a position outside the pressure wheel, so that the pressure wheel can be assembled on the square frame and move synchronously with the square frame. A first baffle and a second baffle are respectively provided on both sides of the bottom of the square frame, and a driving assembly is provided between the first baffle and the second baffle. When the slider passes through the driving assembly, the driving assembly can push the square frame in a direction away from the steel plate through the first baffle during rotation, so that the pressure wheel can be moved away from the surface of the steel plate.
2. A stainless steel slide cutting device according to claim 1, characterized in that: The driving assembly includes a rotating drum arranged between the first baffle and the second baffle, and a telescopic unit is provided on the outer wall of the rotating drum. When the rotating drum drives the telescopic unit to rotate and squeezes the first baffle, it can drive the square frame and the pressure wheel to move outward. A vertical shaft is fixedly provided along the axial direction of the rotating drum, and the bottom end of the vertical shaft is rotatably matched with the slide rail. A spur gear is fixedly provided on the outer side of the vertical shaft, and a rack meshing with the spur gear is fixedly provided on the inner side of the slider. Before the cutting assembly moves to a state colinear with the pressure wheel, the rack can mesh with the spur gear on the outer side of the vertical shaft.
3. The stainless steel slide cutting device according to claim 2, characterized in that: A driving bevel gear is sleeved at the top position of the vertical shaft, and the telescopic unit includes a square tube fixed on the outer wall of the rotating drum, a core tube is slidably arranged in the square tube, and a rotating shaft is rotatably installed on the rotating drum, the rotating shaft passes through the core tube and is threadedly connected to the core tube, and one end of the rotating shaft located inside the rotating drum is fixedly provided with a driven bevel gear meshing with the driving bevel gear, a core shaft is installed at the axis of the vertical shaft, and the bottom end of the core shaft is fixed on the slide rail, an end cover is provided at the top position of the rotating drum, and a fixing box is provided on the top of the end cover, the top of the core shaft is fixedly connected to the fixing box, and a lifting assembly matching the driving bevel gear is provided in the fixing box, and the driving bevel gear can be controlled to move up and down by the lifting assembly.
4. The stainless steel slide cutting device according to claim 3, characterized in that: The pressure wheel is installed on the bracket, and the bracket is fixedly connected to the square frame. Infrared sensors are arranged on the two collinear brackets on both sides of the top of the cutting table. When the side of the steel plate is tilted and blocks the light of the infrared sensor, the lifting assembly can drive the active bevel gear to move downward and engage with the driven bevel gear.
5. The stainless steel slide cutting device according to claim 1, characterized in that: The table surface of the cutting table is evenly provided with air holes or air grooves, so that the steel plate can be adsorbed on the surface of the cutting table.
6. The stainless steel slide cutting device according to claim 2, characterized in that: Slide rods are fixedly arranged on both sides of the square frame, and support bars are provided on the sliding sleeves outside the slide rods. The support bars are fixed on the slide rails through vertical rods.
7. The stainless steel slide cutting device according to claim 6, characterized in that: The sliding rod or the supporting bar is provided with a rubber strip to increase the friction between the sliding rod and the supporting bar. When the telescopic unit drives the square frame to move, the square frame can remain stable.
8. The stainless steel slide cutting device according to claim 1, characterized in that: The cutting assembly is slidably matched with the crossbeam, so that the cutting assembly can move along the length direction of the crossbeam.
9. The stainless steel slide cutting device according to claim 1, characterized in that: A screw rod is arranged on the slide rail, and the screw rod passes through the slider and is threadedly connected to the slider.
10. A method for cutting using the stainless steel slide cutting device according to any one of claims 1 to 9, characterized in that: The process includes the following steps: placing a steel plate on the surface of a cutting table, and completing the cutting of the steel plate by moving the cutting assembly in the X and Y directions; using a pressure wheel to press the side of the steel plate so that the steel plate can be stably attached to the surface of the cutting table; before the cutting assembly moves to the pressure wheel, the driving assembly can drive the pressure wheel to move outward to avoid interference between the cutting assembly and the pressure wheel.
Citation Information
Patent Citations
Stainless steel plate fixing device for laser cutting
CN220240380U
Rotary cutoff device
CA2176282A1
Cockpit plate laser cutting device and using method thereof
CN117206711A
Template laser cutting equipment and method for high-speed railway bridge construction
CN117773362A
Laser cutting clamp
CN117961337A
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