A gantry laser cutting machine of bubble oil type
By combining the XY-axis dual-moving components and smoke exhaust components of the oil-immersed gantry laser cutting machine with electrostatic dust removal and suction fan components, the problems of low smoke exhaust efficiency and smoke emission of existing laser cutting equipment have been solved, achieving efficient smoke exhaust and smoke recovery, and protecting the health of operators.
Patent Information
- Application Number
- CN202411659593.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-20
- Publication Date
- 2026-01-27
- Estimated Expiration
- 2044-11-20
AI Technical Summary
Existing laser cutting equipment has low smoke extraction efficiency, and the smoke and dust emitted into the workshop can harm the health of operators, and the smoke and dust cannot be effectively recycled and treated.
The oil-immersion gantry laser cutting machine uses XY-axis dual moving components to automatically control the movement of the laser cutting head. Combined with the smoke exhaust component to absorb smoke, the electrostatic dust removal component and the suction fan component increase the airflow speed and change the direction of smoke diffusion. The electrostatic dust removal component adsorbs dust, the scraper component scrapes the dust to the dust collection plate, and the water tank dilutes the dust before discharge, achieving efficient smoke exhaust and smoke recovery.
It improves smoke extraction efficiency, prevents smoke and dust from harming the health of operators, and achieves effective recovery and treatment of smoke and dust.
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Figure CN119187945B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of laser cutting and welding technology, and in particular to an oil-immersed gantry laser cutting machine. Background Technology
[0002] Dust easily accumulates on the moving mechanism of existing laser cutting equipment during long-term processing of metal or wood workpieces, making it difficult to clean. Furthermore, the fumes generated during laser cutting, if not promptly removed, can harm the health of operators.
[0003] Currently, Chinese invention application number 201910374339.0 discloses a laser cutting machine. Although it uses magnetic components to attach to the workpiece to achieve cutting of workpieces with different radii and uses a fume extraction pipe to centrally absorb smoke and dust to prevent smoke and dust from spreading to the workshop, there are still problems such as the fume extraction equipment being covered on the fixture, which restricts the cutting space, makes cutting operations inconvenient, has low smoke extraction efficiency, and cannot recycle and process the smoke and dust. Summary of the Invention
[0004] The technical problem to be solved by this invention is that the smoke exhaust efficiency is low, the smoke and dust emitted into the workshop will harm the health of the operators, and the metal particles and dust cannot be recycled.
[0005] To solve the above-mentioned technical problems, the present invention provides the following technical solution: an oil-immersed gantry laser cutting machine, comprising a fixed frame, a worktable, four sets of fixed components, an XY-axis dual-moving component, a laser cutting head cylinder 51, and a smoke exhaust component. The fixed frame is connected to the worktable by the four sets of fixed components. The upper end of the fixed frame is fixedly connected to the cylinder 51. The cylinder 51 is fixedly connected to the XY-axis dual-moving component. The XY-axis dual-moving component is fixedly connected to the laser cutting head. A smoke exhaust component is provided at the lower end of the worktable for absorbing smoke.
[0006] As a preferred embodiment of the oil-immersion gantry laser cutting machine of the present invention, it further includes a main unit, which is electrically connected to an XY-axis dual-movement component, a cylinder and a smoke exhaust component, and the worktable surface is provided with support columns.
[0007] As a preferred embodiment of the oil-soaked gantry laser cutting machine of the present invention, the fixing frame is provided with a first cavity and a second cavity, the first cavity is provided with a first through groove, the second cavity is provided with a second through groove, the inner wall of the first through groove is provided with four sets of slots, and the fixing frame is provided with through holes.
[0008] As a preferred embodiment of the oil-soaked gantry laser cutting machine of the present invention, the fixing component includes a clamp head, a clamp tube, a spring, a clamp rod, and a clamping plate. The clamp tube is fixedly connected to the clamp head, the clamp head engages with the fixing frame, one end of the spring is fixedly connected to the bottom of the clamp tube, the other end of the spring is fixedly connected to the clamp rod, and the clamp rod is fixedly connected to the clamping plate.
[0009] As a preferred embodiment of the oil-immersion gantry laser cutting machine of the present invention, the XY-axis dual-movement component includes a first motor, a first pulley, a second belt, a second pulley, two sets of Y-axis moving components, a second motor, and an X-axis moving component. The output shaft of the first motor is rotatably connected to the first pulley. The first pulley is fixedly connected to one set of Y-axis moving components. The first pulley is rotatably connected to the belt. The second belt is rotatably connected to the second pulley. The second pulley is fixedly connected to the other set of Y-axis moving components. The X-axis moving component is slidably connected to the Y-axis moving components. The output shaft of the second motor is rotatably connected to the X-axis moving component. The two sets of Y-axis moving components and the X-axis moving component have the same structure. The Y-axis moving component includes an oil groove guide rail, a lead screw, and a slider. The lead screw and the slider are arranged in the oil groove guide rail, and the slider is rotatably connected to the lead screw.
[0010] As a preferred embodiment of the oil-immersion gantry laser cutting machine of the present invention, the smoke exhaust component includes an electrostatic dust removal component, a suction fan component, a dust collection plate, a water tank, a water intake port, a nozzle, and a drain port. The electrostatic dust removal component is fixedly connected to the inner wall of the fixed frame, the dust collection plate is slidably connected to the inner wall of the fixed frame, a water tank is provided at the bottom of the fixed frame, the water tank has a water intake port, and the first cavity has a drain port.
[0011] As a preferred embodiment of the oil-immersion gantry laser cutting machine of the present invention, the electrostatic dust removal assembly includes a touch switch, a touch block, a dust collection plate, a spring, and a scraper. One end of the dust collection plate is fixedly connected to the touch block, and the other end of the dust collection plate is fixedly connected to the spring. The spring is fixedly connected to the fixing frame. The touch block abuts against the touch switch, and the scraper is rotatably connected to the dust collection plate.
[0012] As a preferred embodiment of the oil-immersion gantry laser cutting machine of the present invention, the electrostatic dust removal assembly includes a touch switch, a touch block, a dust collection plate, a spring, and a scraper. One end of the dust collection plate is fixedly connected to the touch block, and the other end of the dust collection plate is fixedly connected to the spring. The spring is fixedly connected to the fixing frame. The touch block abuts against the touch switch, and the scraper is rotatably connected to the dust collection plate.
[0013] As a preferred embodiment of the oil-soaked gantry laser cutting machine of the present invention, it further includes two sets of iron vibrating hammers, a fixed frame and a rotating column. The fixed frame is fixedly connected to a dust collection plate, and the two sets of iron vibrating hammers are rotatably connected to the fixed frame through the rotating column. The fixed frame is provided with a rotating groove.
[0014] As a preferred embodiment of the oil-immersion gantry laser cutting machine of the present invention, the suction fan component includes a fan, a drive pulley, a first belt, a driven pulley, and a fourth rotating shaft. The first rotating shaft is fixedly connected to the drive pulley, the drive pulley is rotatably connected to the first belt, and the first belt is rotatably connected to the driven pulley.
[0015] The beneficial effects of this invention are as follows: The worktable is fixed to the fixed frame using a fixing component, facilitating disassembly and cleaning. The XY-axis dual-movement component automatically controls the laser cutting head to move along both the X and Y axes to cut the material. The lead screw and oil groove guide rail are constantly immersed in oil, providing 360-degree lubrication without dead angles, thus cooling, preventing rust, and cleaning dust. A third motor drives a magnetic scraper to reciprocate, wiping the dust collection plate. Simultaneously, the third motor drives a fan to rotate, increasing airflow and changing the direction of dust dispersion, making it easier for the dust collection plate to absorb dust. When powered, the dust collection plate absorbs dust, which is then scraped off by the scraper onto the dust collection plate, achieving dust collection. The dust collection plate moves downwards under load, increasing the pressure in the water tank. Water from the tank is sprayed out from the nozzle to dilute the dust, achieving dust removal and cooling. A drain can be opened to discharge the dust and water, thereby improving smoke extraction efficiency and achieving the function of recycling and treating smoke, preventing smoke from harming human health. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the overall structure of an oil-soaked gantry laser cutting machine according to an embodiment of the present disclosure;
[0017] Figure 2 This is a cross-sectional view of the fixing frame of an oil-soaked gantry laser cutting machine according to an embodiment of this disclosure;
[0018] Figure 3 This is a schematic diagram of the smoke exhaust component structure of an oil-soaked gantry laser cutting machine according to an embodiment of the present disclosure;
[0019] Figure 4 This is a schematic diagram of the scraper component structure of an oil-soaked gantry laser cutting machine according to an embodiment of the present disclosure;
[0020] Figure 5 This is a schematic diagram of the second helical gear structure of an oil-soaked gantry laser cutting machine according to an embodiment of the present disclosure;
[0021] Figure 6This is a schematic diagram of the vibratory hammer structure of an oil-soaked gantry laser cutting machine according to an embodiment of the present disclosure;
[0022] Figure 7 This is a schematic diagram of the fixing component structure of an oil-soaked gantry laser cutting machine according to an embodiment of this disclosure;
[0023] Figure 8 This is a schematic diagram of the Y-axis moving component structure of an oil-soaked gantry laser cutting machine according to an embodiment of this disclosure.
[0024] Reference numerals: Fixed frame 1; First cavity 101; Second cavity 102; First through groove 103; Second through groove 104; Slot 105; Through hole 106; Worktable 2; Support column 21; Fixed component 3; Clamp head 31; Clamp tube 32; Spring 33; Clamp rod 34; Clamping plate 35; XY axis dual movement component 4; First motor 41; First pulley 42; Second belt 43; Second pulley 44; Y axis movement assembly 45; Oil groove guide rail 451; Lead screw 452; Slider 453; Second motor 46; X movement assembly 47; Laser cutting head 5; Cylinder 51; Smoke exhaust component 6; Electrostatic dust removal component 61; Touch switch 611; touch block 612; dust suction plate 613; spring 614; suction fan component 62; fan 621; driving pulley 622; first belt 623; driven pulley 624; fourth rotating shaft 625; dust collection plate 63; water tank 64; water suction port 65; nozzle 66; drain port 67; scraper component 7; third motor 71; first rotating shaft 72; first helical gear 73; second helical gear 74; second rotating shaft 75; first connecting rod 76; second connecting rod 77; third rotating shaft 78; magnetic scraper 79; vibrating hammer 710; fixed frame 711; rotating column 712; eccentric protrusion 8; main unit 9. Detailed Implementation
[0025] To make the above-mentioned objects, features and advantages of the present invention more apparent and understandable, the specific embodiments of the present invention will be described in detail below with reference to the accompanying drawings.
[0026] Example
[0027] Reference Figures 1-7 This embodiment provides an oil-immersion type gantry laser cutting machine, including a fixed frame 1, a worktable 2, four sets of fixed components 3, an XY-axis dual-movement component 4, a laser cutting head 5, a cylinder 51, and a smoke exhaust component 6. The fixed frame 1 is connected to the worktable 2 by the four sets of fixed components 3. The upper end of the fixed frame 1 is fixedly connected to the XY-axis dual-movement component 4, the XY-axis dual-movement component 4 is fixedly connected to the cylinder 51, the cylinder 51 is fixedly connected to the laser cutting head 5, and the lower end of the worktable 2 is provided with a smoke exhaust component 6, which is used to absorb smoke.
[0028] In this preferred embodiment, the worktable 2 can be fixed to the fixed frame 1 by the fixing component 3, which facilitates the disassembly and cleaning of the worktable 2. The XY axis dual moving component 4 can automatically control the laser cutting head 5 to move and cut materials along the X and Y axes. The cylinder 51 can adjust the laser cutting head up and down. The smoke exhaust component 6 can absorb smoke and dust to prevent smoke and dust from harming human health.
[0029] Reference Figure 1 It also includes a host 9, which is electrically connected to the XY axis dual moving component 4, the cylinder 51 and the smoke exhaust component 6, and the worktable 2 has support columns 21 distributed on its surface.
[0030] In this preferred embodiment, the laser cutting head is automatically controlled by the host 9 to move up, down, left, and right to cut the workpiece. The support column 21 can be used to support the material, and the gap between the support columns 21 facilitates smoke exhaust and heat dissipation.
[0031] Reference Figure 2 , Figure 3 and Figure 7 The fixing frame 1 is provided with a first cavity 101 and a second cavity 102. The first cavity 101 is provided with a first through groove 103, and the second cavity 102 is provided with a second through groove 104. The inner wall of the first through groove 103 is provided with four sets of slots 105, and the fixing frame 1 is provided with through holes 106.
[0032] In this preferred embodiment, the first cavity 101 can hold the workbench 2 for cutting operations, the second cavity 102 can absorb smoke and dust, and the slot 105 can hold the fixing component 3.
[0033] Reference Figure 7 The fixing component 3 includes a clamp head 31, a clamp tube 32, a spring 33, a clamp rod 34, and a clamping plate 35. The clamp tube 32 is fixedly connected to the clamp head 31, and the clamp head 31 is engaged with the fixing frame 1. One end of the spring 33 is fixedly connected to the bottom of the clamp tube 32, and the other end of the spring 33 is fixedly connected to the clamp rod 34. The clamp rod 34 is fixedly connected to the clamping plate 35.
[0034] In this preferred embodiment, the clamp 31 is clamped in the slot 105, fixing the clamp 31. The material workpiece squeezes the clamp 35, and the clamp 35 squeezes the spring 33. The spring 33 is compressed and then rebounds. The rebound force can push the clamp 35. The clamps 35 at both ends generate opposing thrusts, thereby fixing the worktable 2.
[0035] Reference Figure 1The XY-axis dual-movement component 4 includes a first motor 41, a first pulley 42, a second belt 43, a second pulley 44, two sets of Y-axis moving components 45, a second motor 46, and an X-axis moving component 47. The output shaft of the first motor 41 is rotatably connected to the first pulley 42. The first pulley 42 is fixedly connected to one set of Y-axis moving components 45. The first pulley 42 is rotatably connected to the belt 43. The second belt 43 is rotatably connected to the second pulley 44. The second pulley 44 is fixedly connected to the other set of Y-axis moving components 45. The X-axis moving component 47 is slidably connected to the Y-axis moving components 45. The output shaft of the second motor 46 is rotatably connected to the X-axis moving component 47. The two sets of Y-axis moving components 45 and X-axis moving component 47 have the same structure. The Y-axis moving component 45 includes an oil groove guide rail 451, a lead screw 452, and a slider 453. The lead screw 452 and the slider 453 are arranged inside the oil groove guide rail 451. The slider 453 is rotatably connected to the lead screw 452.
[0036] In this preferred embodiment, the first motor 41 can drive one set of Y-axis moving components 45 to rotate. The first motor 41 drives the first pulley 42 to rotate. The first pulley 42 drives the second pulley 44 to rotate via the second belt 43. The second pulley 44 drives the other set of Y-axis moving components 45 to rotate. The two sets of Y-axis moving components 45 can drive the X-axis moving component 47 to move. The second motor 46 drives the X-axis moving component 47 to rotate. The X-axis moving component 41 and the Y-axis moving component 42 are both cast in one piece using a cast iron mold. The X-axis moving component 47 drives the laser cutting head 5 to move along the X-axis direction. The two sets of Y-axis moving components 45 drive the laser cutting head 5 to move along the Y-axis direction, making the cutting work more convenient and efficient. The lead screw 452 and the oil groove guide rail 451 are immersed in oil for a long time, which can lubricate 360 degrees without dead angles, and can cool down, prevent rust, and clean dust.
[0037] Reference Figure 2 The smoke exhaust component 6 includes an electrostatic dust removal component 61, a suction fan component 62, a dust collection plate 63, a water tank 64, a water intake port 65, a nozzle 66, and a drain port 67. The electrostatic dust removal component 61 is fixedly connected to the inner wall of the fixed frame 1, the dust collection plate 63 is slidably connected to the inner wall of the fixed frame 1, the bottom of the fixed frame 1 is provided with a water tank 64, the water tank 64 has a water intake port 66, and the first cavity 101 has a drain port 67.
[0038] In this preferred embodiment, the suction fan 62 increases the airflow speed and changes the direction of smoke and dust diffusion. The electrostatic dust removal component 61 can absorb the generated smoke and dust, which accumulates and falls onto the dust collection plate 63. The dust collection plate 63 moves downward under the load, which increases the pressure of the water tank 64. The water in the water tank 64 is sprayed out from the nozzle 66 to dilute the dust, achieving the effects of dust removal and cooling. The drain outlet 67 can be opened to discharge the dust and water.
[0039] Reference Figure 3 The electrostatic dust removal assembly 61 includes a touch switch 611, a touch block 612, a dust collection plate 613, a spring 614, and a scraper 7. One end of the dust collection plate 613 is fixedly connected to the touch block 612, and the other end of the dust collection plate 613 is fixedly connected to the spring 614. The spring 614 is fixedly connected to the fixing frame 1. The touch block 612 abuts against the touch switch 611, and the scraper 7 is rotatably connected to the dust collection plate 613.
[0040] In this preferred embodiment, the dust-collecting plate 613 can absorb dust when energized. As the dust-collecting plate 613 absorbs more and more dust, the spring 614 contracts under force, the touch switch 611 and the touch block 612 disconnect, and the absorbed dust falls onto the dust collection plate, thus collecting smoke and dust. After the dust falls, the spring 614 resets, the touch block 612 and the touch switch 611 abut against each other, and the dust-collecting plate 613 can continue to absorb smoke and dust when energized.
[0041] Reference Figure 4 and Figure 5 The scraper component 7 includes a third motor 71, a first rotating shaft 72, a first helical gear 73, a second helical gear 74, a second rotating shaft 75, a first connecting rod 76, a second connecting rod 77, a third rotating shaft 78, and a magnetic scraper 79. The output shaft of the third motor 71 is rotatably connected to the first rotating shaft 72. The first rotating shaft 72 is fixedly connected to the first helical gear 73. The first helical gear 73 meshes with the second helical gear 74. The second helical gear 74 is fixedly connected to the second rotating shaft 75. The second rotating shaft 75 is rotatably connected to the dust collection plate 613. The second helical gear 74 is eccentrically rotatably connected to the first connecting rod 76. The first connecting rod 76 is rotatably connected to the second connecting rod 77. The second connecting rod 77 is rotatably connected to the third rotating shaft 78. The third rotating shaft 78 is rotatably connected to the magnetic scraper 79. The second helical gear 74 is provided with an eccentric protrusion 8.
[0042] In this preferred embodiment, the third motor 71 drives the first rotating shaft 72 to rotate, the first rotating shaft 72 drives the first helical gear 73 to rotate, the first helical gear 73 drives the second helical gear 74 to rotate, the second helical gear 74 drives the first connecting rod 76 to rotate through the eccentric protrusion 8, the first connecting rod 76 pushes the second connecting rod 77 to swing back and forth, and the second connecting rod 77 drives the magnetic scraper 79 to perform reciprocating motion to wipe the dust collection plate 613.
[0043] Reference Figure 6 It also includes two sets of iron vibrating hammers 710, a fixed frame 711 and a rotating column 712. The fixed frame 711 is fixedly connected to the dust collection plate 613. The two sets of iron vibrating hammers 710 are rotatably connected to the fixed frame 711 through the rotating column 712. The fixed frame 711 is provided with a rotating groove 713.
[0044] In this preferred embodiment, the magnetic scraper 79 performs a reciprocating motion to wipe the dust collection plate 613. When the motion trajectory passes the iron vibrating hammer 710, the iron vibrating hammer 710 is struck by the magnetic scraper 79 on the dust collection plate 613, thereby further knocking the dust absorbed by the dust collection plate 613 onto the dust collection plate 63.
[0045] Reference Figure 4 The suction fan component 62 includes a fan 621, a drive pulley 622, a first belt 623, a driven pulley 624, and a fourth rotating shaft 625. The first rotating shaft 62 is fixedly connected to the drive pulley 623, the drive pulley 622 is rotatably connected to the first belt 623, and the first belt 623 is rotatably connected to the driven pulley 624.
[0046] In this preferred embodiment, the first rotating shaft 72 drives the active pulley 622 to rotate, the active pulley 622 drives the driven pulley 624 to rotate via the first belt 623, and the driven pulley 624 drives the fan 621 to rotate, thereby absorbing smoke and dust.
[0047] Working principle: The worktable 2 can be fixed to the fixed frame 1 using the fixing component 3, facilitating the disassembly and cleaning of the worktable 2. Starting the first motor 41 drives one set of Y-axis moving components 45 to rotate. The first motor 41 drives two sets of Y-axis moving components 45 to move the laser cutting head 5 along the Y-axis. The two sets of Y-axis moving components 45 can move the X-axis moving component 47. The second motor 46 drives the X-axis moving component 47 to rotate, and the X-axis moving component 47 moves the laser cutting head 5 along the X-axis, making the cutting operation more convenient and efficient. Effectively, the lead screw 452 and oil groove guide rail 451 are constantly immersed in oil, providing 360-degree lubrication without dead angles. This also helps to cool down, prevent rust, and clean dust. Starting the third motor 71 drives the first rotating shaft 72 to rotate, which in turn drives the first helical gear 73 to rotate. The first helical gear 73 then drives the second helical gear 74 to rotate. The second helical gear 74, through the eccentric protrusion 8, drives the first connecting rod 76 to rotate. The first connecting rod 76 pushes the second connecting rod 77 to swing back and forth, which in turn drives the magnetic scraper 79 to perform a reciprocating motion to wipe the dust collection plate 613. The third motor 71 simultaneously drives the active pulley 622 to rotate via the first rotating shaft 72. The active pulley 622 drives the driven pulley 624 to rotate via the first belt 623. The driven pulley 624 drives the fan 621 to rotate, increasing the airflow speed and changing the direction of dust dispersion, making it easier for the suction plate 613 to absorb dust. The suction plate 613 can absorb dust when powered on. As the suction plate 613 absorbs more and more dust, the spring 614 contracts under force, the touch switch 611 and the touch block 612 disconnect, and the absorbed dust falls to the ground. The dust collection plate collects smoke and dust. When the dust falls, the spring 614 resets, and the contact block 612 and the contact switch 611 abut. When the dust collection plate 613 is energized, it can continue to absorb smoke and dust. The generated smoke and dust accumulate and fall onto the dust collection plate 63. The dust collection plate 63 moves downward under the load. The downward movement increases the pressure of the water tank 64. The water in the water tank 64 is sprayed out from the nozzle 66 to dilute the dust, achieving the effects of dust removal and cooling. The drain outlet 67 can be opened to discharge the dust and water, thereby achieving the effect of absorbing and treating smoke and dust and preventing smoke and dust from harming human health.
Claims
1. An oil-immersion type gantry laser cutting machine, characterized in that: The device includes a fixed frame (1), a worktable (2), four sets of fixed components (3), an XY-axis dual-movement component (4), a laser cutting head (5), a cylinder (51), and a smoke exhaust component (6). The fixed frame (1) is connected to the worktable (2) by the four sets of fixed components (3). The upper end of the fixed frame (1) is fixedly connected to the XY-axis dual-movement component (4). The XY-axis dual-movement component (4) is fixedly connected to the cylinder (51). The cylinder (51) is fixedly connected to the laser cutting head (5). The lower end of the worktable (2) is provided with a smoke exhaust component (6), which is used to absorb smoke. The smoke exhaust component (6) includes an electrostatic dust removal component (61), a suction fan component (62), a dust collection plate (63), a water tank (64), a water intake port (65), a nozzle (66), and a drain port (67). The electrostatic dust removal component (61) is fixedly connected to the inner wall of the fixed frame (1), and the dust collection plate (63) is slidably connected to the inner wall of the fixed frame (1). A water tank (64) is provided at the bottom of the fixed frame (1). The water tank (64) has a water intake port (65), and the first cavity (101) has a drain port (67). The electrostatic dust removal assembly (61) includes a touch switch (611), a touch block (612), a dust collection plate (613), a spring (614), and a scraper (7). One end of the dust collection plate (613) is fixedly connected to the touch block (612), and the other end of the dust collection plate (613) is fixedly connected to the spring (614). The spring (614) is fixedly connected to the fixing frame (1). The touch block (612) abuts against the touch switch (611), and the scraper (7) is rotatably connected to the dust collection plate (613). The scraper component (7) includes a third motor (71), a first rotating shaft (72), a first helical gear (73), a second helical gear (74), a second rotating shaft (75), a first connecting rod (76), a second connecting rod (77), a third rotating shaft (78), and a magnetic scraper (79). The output shaft of the third motor (71) is rotatably connected to the first rotating shaft (72). The first rotating shaft (72) is fixedly connected to the first helical gear (73). The first helical gear (73) meshes with the second helical gear (74). The second helical gear (74) is fixedly connected to the second rotating shaft (75). The second rotating shaft (75) is rotatably connected to the dust collection plate (613). The second helical gear (74) is eccentrically rotatably connected to the first connecting rod (76). The first connecting rod (76) is rotatably connected to the second connecting rod (77). The second connecting rod (77) is rotatably connected to the third rotating shaft (78). The third rotating shaft (78) is rotatably connected to the magnetic scraper (79). The second helical gear (74) is provided with an eccentric protrusion (8). It also includes two sets of iron vibrating hammers (710), a fixed frame (711) and a rotating column (712). The fixed frame (711) is fixedly connected to the dust collection plate (613). The two sets of iron vibrating hammers (710) are rotatably connected to the fixed frame (711) through the rotating column (712). The fixed frame (711) is provided with a rotating groove (713).
2. The oil-immersion type gantry laser cutting machine as described in claim 1, characterized in that: It also includes a host (9), which is electrically connected to the XY axis dual moving component (4), cylinder (51) and smoke exhaust component (6), and the worktable (2) has support columns (21) distributed on its surface.
3. The oil-immersion gantry laser cutting machine as described in claim 1, characterized in that: The fixing frame (1) is provided with a first cavity (101) and a second cavity (102). The first cavity (101) is provided with a first through groove (103), and the second cavity (102) is provided with a second through groove (104). The inner wall of the first through groove (103) is provided with four sets of slots (105), and the fixing frame (1) is provided with a through hole (106).
4. The oil-immersion type gantry laser cutting machine as described in claim 1, characterized in that, The fixing component (3) includes a clamp head (31), a clamp tube (32), a spring (33), a clamp rod (34), and a clamp plate (35). The clamp tube (32) is fixedly connected to the clamp head (31), and the clamp head (31) is engaged with the fixing frame (1). One end of the spring (33) is fixedly connected to the bottom of the clamp tube (32), and the other end of the spring (33) is fixedly connected to the clamp rod (34). The clamp rod (34) is fixedly connected to the clamp plate (35).
5. The oil-immersion type gantry laser cutting machine as described in claim 1, characterized in that: The XY-axis dual-movement component (4) includes a first motor (41), a first pulley (42), a second belt (43), a second pulley (44), two sets of Y-axis moving components (45), a second motor (46), and an X-axis moving component (47). The output shaft of the first motor (41) is rotatably connected to the first pulley (42). The first pulley (42) is fixedly connected to one set of Y-axis moving components (45). The first pulley (42) is rotatably connected to the belt (43). The second belt (43) is rotatably connected to the second pulley (44). 44) Another set of Y-axis moving components (45) is fixedly connected. The X-axis moving component (47) is slidably connected to the Y-axis moving component (45). The output shaft of the second motor (46) is rotatably connected to the X-axis moving component (47). The two sets of Y-axis moving components (45) and X-axis moving components (47) have the same structure. The Y-axis moving component (45) includes an oil groove guide rail (451), a lead screw (452) and a slider (453). The oil groove guide rail (451) is provided with a lead screw (452) and a slider (453). The slider (453) is rotatably connected to the lead screw (452).
6. The oil-immersion type gantry laser cutting machine as described in claim 1, characterized in that: The suction fan component (62) includes a fan (621), a drive pulley (622), a first belt (623), a driven pulley (624), and a fourth rotating shaft (625). The first rotating shaft (72) is fixedly connected to the drive pulley (622), the drive pulley (622) is rotatably connected to the first belt (623), and the first belt (623) is rotatably connected to the driven pulley (624).
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