Laser cutting machine for metal product production

By setting up the combination of triangle inclined blocks and movable plates in the laser cutting machine, the lifting and stable clamping of the metal plate is achieved, and the iron slag is automatically removed by knocking unloading and slag shaking components, which solves the problem of iron slag stickiness and improves processing efficiency and yield.

CN120502891AActive Publication Date: 2025-08-19XUZHOU JIAJING CONSTR MASCH MFG CO LTD

Patent Information

Application Number
CN202510930362.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-07
Publication Date
2025-08-19
Estimated Expiration
2045-07-07

AI Technical Summary

Technical Problem

When existing laser cutting machines cut metal plates, the iron slag generated at the bottom of the metal plate is easily sticky to the surface of the transmission roller, affecting processing efficiency.

Method used

By setting up the coordination of the triangular oblique block and the movable plate, the metal plate is lifted and stable clamped, preventing the iron slag from sticking to the conveyor surface, and automatically removing the iron slag by hitting the unloading component and the slag shaking component to reduce manual intervention.

Benefits of technology

Effectively prevent iron slag from sticking, improve equipment processing efficiency and yield, reduce manual intervention, and improve work efficiency.

✦ Generated by Eureka AI based on patent content.

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    Figure CN120502891A_ABST
Patent Text Reader

Abstract

The invention discloses a laser cutting machine for metal product production, and relates to the technical field of automobile part manufacturing. The laser cutting machine for metal product production comprises a telescopic base. The top of the conveyor is fixedly connected with front-back moving equipment, and the outer side of the front-back moving equipment is movably connected with a movable frame; an electric telescopic rod; the outer side of the movable frame is fixedly connected with a first hydraulic block through a first fixing block, the outer side of the first hydraulic block is fixedly connected with a second hydraulic block through a first hose, the top of the electric telescopic rod is fixedly connected with a clamping plate, the rear side of the clamping plate is fixedly connected with the second hydraulic block through a first L-shaped support, and the top of the second hydraulic block is movably connected with a triangular inclined block through a second push block. The second hydraulic block is movably connected with the movable plate through a transmission piece. According to the laser cutting machine for metal product production, when the laser cutting machine is used, an electric air cylinder is started, a triangular inclined block and a movable plate are matched, a metal plate is lifted and fixed, and adhesion between iron slag and a conveyor is reduced.
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Description

Technical Field

[0001] The present invention relates to the technical field of laser cutting machines, in particular to a laser cutting machine for producing metal products. Background Art

[0002] A laser cutting machine is a device that focuses the laser light emitted from a laser into a high-power density laser beam through an optical path system. The laser beam irradiates the surface of the workpiece, causing the workpiece to reach its melting point or boiling point. At the same time, high-pressure gas coaxial with the beam melts or vaporizes the metal. As the relative position of the beam and the workpiece moves, a slit is eventually formed in the material. When performing precision metal processing, corresponding laser cutting machines are usually used to improve cutting efficiency.

[0003] Chinese patent CN117943708A, authorized and announced on April 30, 2024, discloses a laser cutting machine for the production of metal products, which includes a support frame, a transmission roller is installed on the inner side of the support frame, and a plurality of transmission rollers are evenly distributed on the inner side of the support frame at equal intervals, a servo motor is fixedly connected to the inside of the cross plate, and the output end of the servo motor is fixedly connected to a transmission screw, a moving rod is installed on the transmission screw, and the lower end of the moving rod is fixedly connected to a laser cutting head; it also includes: a pressure rod is fixedly connected to the front and rear sides of the lower end of the cross plate, and a limiting block is provided on the inner side of the lower end of the pressure rod, and the limiting block is fixed to the upper end of the correction plate. In the above application document, when the laser cutting head cuts the metal plate, iron slag is easily generated at the bottom of the metal plate, which easily causes the surface of the transmission roller to stick to the cut parts, affecting the processing efficiency. Summary of the Invention

[0004] In view of the shortcomings of the existing technology, the present invention provides a laser cutting machine for metal product production, which solves the problems raised in the above background technology. To achieve the above objectives, the present invention is implemented through the following technical solutions: A laser cutting machine for metal product production, comprising: A telescopic base, wherein the top of the telescopic base is fixedly connected to a conveyor, the top of the conveyor is fixedly connected to a front and rear moving device, the outer side of the front and rear moving device is movably connected to a movable frame, the interior of the movable frame is fixedly connected to an electric cylinder, the top of the electric cylinder is fixedly connected to a horizontal moving device, and the inner side of the conveyor is fixedly connected to an electric telescopic rod; The outer side of the movable frame is fixedly connected to the hydraulic block 1 through a fixed block 1, the top of the hydraulic block 1 is movably connected to a push block 1, the outer side of the hydraulic block 1 is fixedly connected to the hydraulic block 2 through a hose 1, the top of the electric telescopic rod is fixedly connected to a splint, the rear side of the splint is fixedly connected to an L-shaped bracket 1, the front side of the L-shaped bracket 1 is fixedly connected to a hydraulic block 2, the top of the hydraulic block 2 is movably connected to a push block 2, the front side of the push block 2 is fixedly connected to a triangular oblique block, and the hydraulic block 2 is movably connected to the movable plate through a transmission member. The triangular oblique block is set so that when the equipment starts cutting, the triangular oblique block moves inward to lift the metal plate, and then the movable plate moves downward to stably clamp the metal plate, so that when the subsequent equipment performs laser cutting, the iron slag generated at the bottom of the metal plate will not stick to the conveyor surface, thereby not affecting the processing efficiency of the equipment.

[0005] Preferably, the transmission component includes hose 2, slide 1, hydraulic block 3, spring 1, and push block 3. The outer side of the hydraulic block 2 is fixedly connected to one end of the hose 2, and the other end of the hose 2 is fixedly connected to the outer side of the hydraulic block 3. The hydraulic block 3 is fixedly connected to the top of the slide 1. The bottom of the hydraulic block 3 is movably connected to the push block 3. The bottom of the push block 3 is fixedly connected to a movable plate. The movable plate is slidably connected to the splint through a slide 1 opened inside the splint. A spring 1 is fixedly connected between the top of the movable plate and the top of the slide 1.

[0006] Preferably, the top of the conveyor is fixedly connected to a knocking and unloading assembly, the bottom of the conveyor is movably connected to a slag shaking assembly, the side of the conveyor is rotatably connected to a rotating shaft 1, the rear side of the rotating shaft 1 is fixedly connected to a motor, the bottom of the horizontal moving device is movably connected to a laser cutter, the interior of the laser cutter is fixedly connected to a dust removal device, and both sides of the laser cutter are movably connected to shading devices.

[0007] Preferably, the number of the push blocks 1 is two, the number of the hydraulic blocks 1 is two, the number of the hoses 1 is four, and every two hoses 1 form a group, the number of the L-shaped brackets 1 is four, and every two L-shaped brackets 1 form a group, the number of the hydraulic blocks 2 is four, the number of the push blocks 2 is four, the number of the slide slots 1 is four, the number of the hydraulic blocks 3 is four, the number of the springs 1 is four, the number of the movable plates is four, and the number of the splints is two.

[0008] Preferably, the knocking unloading assembly includes a hose three, a hydraulic block four, a rack one, a gear one, an L-shaped bracket two, an L-shaped bracket three, a ratchet, a limit block, a ratchet, a rotating shaft two, a gear two, a rack two, a knocking hammer, and a spring two. The outer side of the hydraulic block one is fixedly connected to one end of the hose three, and the other end of the hose three is fixedly connected to the side of the hydraulic block four. The front side of the hydraulic block four is movably connected to the rack one, the top of the conveyor is fixedly connected to the L-shaped bracket two, the interior of the L-shaped bracket two passes through and is rotatably connected to the rotating shaft two, and the top of the rotating shaft two is fixedly connected A ratchet is connected, and the outer side of the ratchet is movably connected to a ratchet wheel, and the inner side of the ratchet is movably connected to a limit block, and the outer side of the ratchet wheel is fixedly connected to gear 1, and gear 1 is meshed with rack 1. The bottom of the rotating shaft 2 is fixedly connected to gear 2, and the top of the L-shaped bracket 2 is fixedly connected to L-shaped bracket 3, and the bottom of the L-shaped bracket 3 is fixedly connected to rack 2 through spring 2. The rack 2 is slidably connected to the L-shaped bracket 2 through the chute 2 opened on the top of the L-shaped bracket 2, and the rack 2 is meshed with gear 2. The bottom of the rack 2 is fixedly connected to a hammer. A knocking and unloading assembly is provided so that after the equipment completes laser cutting, the knocking hammer automatically knocks the surface of the metal plate, so that the parts inside the metal plate that are stuck due to iron slag are knocked off, thereby reducing the subsequent manual knocking and improving the working efficiency of the equipment.

[0009] Preferably, the number of the hoses three is two, the number of the hydraulic blocks four is two, the number of the racks one is two, the number of the gears one is two, and the number of the hammers is two.

[0010] Preferably, the number of teeth of the gear 2 is three.

[0011] Preferably, the slag shaking assembly includes a fixed plate, a push block 4, a hydraulic block 5, a hose 4, a hydraulic block 6, a rack 3, a gear 3, a rotating shaft 3, an inclined plate, and a screen. The fixed plate is fixedly connected to the outer side of the movable frame, and the outer side of the horizontal moving device is fixedly connected to the hydraulic block 5 through a fixed block 2. The top of the hydraulic block 5 is movably connected to a push block 4. The outer side of the hydraulic block 5 is fixedly connected to one end of the hose 4, and the other end of the hose 4 is fixedly connected to the outer side of the hydraulic block 6. The outer side of the hydraulic block 6 is movably connected to a rack 3. The side of the hydraulic block 6 is fixedly connected to the side of the conveyor. The interior of the conveyor is rotatably connected to the inclined plate through a rotating shaft 3. The two ends of the rotating shaft 3 are fixedly connected to the gear 3. The gear 3 is meshed with the rack 3. The interior of the inclined plate is fixedly connected to a plurality of screens. The slag shaking assembly is set up to make the processed parts fall onto the inclined plate. The inclined plate rotates back and forth to shake off the large particles of iron slag on the surface of the parts, and at the same time, the iron slag is separated from the parts, thereby improving the yield rate.

[0012] Preferably, the number of the fixed plates is two, the number of the push blocks four is two, the number of the hydraulic blocks five is two, the number of the hoses four is two, the number of the hydraulic blocks six is two, and the number of the racks three is two.

[0013] Preferably, a discharge port is provided at the center of the conveyor, and the size of the inclined plate is larger than the discharge port.

[0014] The present invention provides a laser cutting machine for metal product production. It has the following beneficial effects: (1) The laser cutting machine for the production of metal products starts the electric cylinder and cooperates with the horizontal moving device, push block 1, hydraulic block 1, hose 1, hydraulic block 2, push block 2, triangular oblique block, hose 2, hydraulic block 3, and push block 3 to move the movable plate downward and the triangular oblique block inward, thereby lifting and fixing the metal plate workpiece, so that the iron slag generated at the bottom of the metal plate will not stick to the surface of the conveyor, thereby not affecting the processing efficiency of the equipment.

[0015] (2) The laser cutting machine for the production of metal products starts the electric cylinder, which cooperates with hydraulic block 1, hose 3, hydraulic block 4, rack 1, gear 1, ratchet, ratchet, limit block, rotating shaft 2, and gear 2 to gradually move rack 2 upward to accumulate force. When rack 2 and gear 2 stop engaging, the hammer is released, thereby shaking off the sticky parts on the metal plate, reducing labor and improving equipment work efficiency.

[0016] (3) The laser cutting machine for the production of metal products, when the horizontal moving device moves upward, cooperates with push block 4, hydraulic block 5, hose 4, hydraulic block 6, rack 3, gear 3, and shaft 3 to make the inclined plate rotate back and forth, so that the large particles of iron slag on the surface of the parts are shaken off, and at the same time the iron slag is separated from the parts, thereby improving the yield rate. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 This is a schematic diagram of the overall front three-dimensional structure of the present invention; Figure 2 This is a schematic diagram of the overall back three-dimensional structure of the present invention; Figure 3 For the present invention Figure 2 A in the middle is an enlarged structural diagram; Figure 4 It is a schematic cross-sectional view of the whole of the present invention; Figure 5 It is a schematic diagram of the structure of some components of the present invention; Figure 6 This is a schematic structural diagram of a workpiece orientation adjustment assembly according to the present invention; Figure 7 A schematic diagram of the internal structure of a workpiece orientation adjustment assembly of the present invention; Figure 8It is a schematic structural diagram of the stirring component of the present invention.

[0018] In the picture: 100, telescopic base; 200, conveyor; 300, rotating shaft 1; 400, horizontal moving device; 500, electric cylinder; 600, front and rear moving device; 700, movable frame; 800, electric telescopic rod; 900, laser cutter; 1000, dust removal device; 1100, light shielding device; 1201, push block 1; 1202, hydraulic block 1; 1203, hose 1; 1204, L-shaped bracket 1; 1205, hydraulic block 2; 1206, push block 2; 1207, triangular bevel block; 1208, hose 2; 1209, slide 1; 1210, hydraulic block 3; 1211, spring 1; 1212, push block 3; 1213, movable plate; 1214, clamping plate; 1300, knock unloading assembly; 1301, hose three; 1302, hydraulic block four; 1303, rack one; 1304, gear one; 1305, L-shaped bracket two; 1306, L-shaped bracket three; 1307, ratchet; 1308, stop block; 1309, ratchet; 1310, rotating shaft two; 1311, gear two; 1312, rack two; 1313, knock hammer; 1314, spring two; 1400, slag shaking assembly; 1401, fixed plate; 1402, push block four; 1403, hydraulic block five; 1404, hose four; 1405, hydraulic block six; 1406, rack three; 1407, gear three; 1408, rotating shaft three; 1409, inclined plate; 1410, screen. DETAILED DESCRIPTION

[0019] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.

[0020] For example 1, please refer to Figure 1-Figure 4 , a laser cutting machine for metal product production, comprising: The telescopic base 100 is fixedly connected to the top of the telescopic base 100 with a conveyor 200. The conveyor 200 is provided so that the metal plate workpiece can be driven to move forward and backward. The top of the conveyor 200 is fixedly connected to a knocking unloading assembly 1300. The bottom of the conveyor 200 is movably connected to a slag shaking assembly 1400. The side of the conveyor 200 is rotatably connected to a rotating shaft 300. The rear side of the rotating shaft 300 is fixedly connected to a motor. The bottom of the horizontal moving device 400 is movably connected to a laser cutter 900. The laser cutter 900 is provided so that the required parts can be cut out of the workpiece surface. The interior of the laser cutter 900 is fixedly connected to a dust removal device 1000. The dust removal device 1000 is provided so that the smoke generated during the laser cutting process is removed by the dust removal device. 1000 absorption, both sides of the laser cutter 900 are movably connected with shading devices 1100, and the shading devices 1100 are provided to block the strong light generated during the laser cutting process, thereby reducing the harm to the staff. The top of the conveyor 200 is fixedly connected with a front and rear moving device 600, and the front and rear moving device 600 is provided so that the laser cutter 900 can move forward and backward. The outer side of the front and rear moving device 600 is movably connected with a movable frame 700, and the interior of the movable frame 700 is fixedly connected with an electric cylinder 500. The top of the electric cylinder 500 is fixedly connected with a horizontal moving device 400, and the horizontal moving device 400 is provided so that the laser cutter 900 can move horizontally. The inner side of the conveyor 200 is fixedly connected with an electric telescopic rod 800;The outer side of the movable frame 700 is fixedly connected to the hydraulic block 1202 through the fixed block 1, and the top of the hydraulic block 1202 is movably connected to the push block 1201. The outer side of the hydraulic block 1202 is fixedly connected to the hydraulic block 2 1205 through the hose 1203. The top of the electric telescopic rod 800 is fixedly connected to the splint 1214. The rear side of the splint 1214 is fixedly connected to the L-shaped bracket 1204. The front side of the L-shaped bracket 1204 is fixedly connected to the hydraulic block 2 1205. The top of the hydraulic block 2 1205 is movably connected to the push block 2 1206. The front side of the push block 2 1206 is fixed. It is connected with a triangular oblique block 1207, and the hydraulic block 2 1205 is movably connected to the movable plate 1213 through a transmission member. The transmission member includes a hose 2 1208, a slide 1209, a hydraulic block 3 1210, a spring 1211, and a push block 3 1212. The outer side of the hydraulic block 2 1205 is fixedly connected to one end of the hose 2 1208, and the other end of the hose 2 1208 is fixedly connected to the outer side of the hydraulic block 3 1210. The hydraulic block 3 1210 is fixedly connected to the top of the slide 1209, and the bottom of the hydraulic block 3 1210 is movably connected to the push block 3 1212. The bottom is fixedly connected with a movable plate 1213, which is slidably connected to the clamping plate 1214 through a slide groove 1209 opened inside the clamping plate 1214. A spring 1211 is fixedly connected between the top of the movable plate 1213 and the top of the slide groove 1209. There are two push blocks 1201, two hydraulic blocks 1202, four hoses 1203, and every two hoses 1203 form a group. There are four L-shaped brackets 1204, and every two L-shaped brackets 1204 form a group. There are four hydraulic blocks 1205. There are four push blocks 1206, four chute 1209, four hydraulic blocks 1210, four springs 1211, four movable plates 1213, and two clamping plates 1214. Triangular bevel blocks 1207 are provided so that when the equipment starts cutting, they move inward, lifting the metal plate. The movable plates 1213 then move downward to firmly clamp the metal plate. This prevents slag from sticking to the surface of the conveyor 200 during subsequent laser cutting, thus minimizing processing efficiency.

[0021] During use, the conveyor 200 is started to move the metal plate workpiece to the processing area, and then the electric cylinder 500 is started to move the horizontal moving device 400 downward, so that the push block 1201 moves downward, the internal pressure of the hydraulic block 1202 increases, and the internal pressure of the hydraulic block 1202 is transmitted to the inside of the hydraulic block 2 1205 through the hose 1203, so that the internal pressure of the hydraulic block 2 1205 increases, and the push block 2 1206 moves outward, so that the triangular oblique block 1207 moves outward, so that the metal plate is lifted to a certain height. At this time, the excess pressure inside the hydraulic block 2 1205 is transmitted to the inside of the hydraulic block 3 1210 through the hose 2 1208, so that the internal pressure of the hydraulic block 3 1210 increases, so that the push block 3 1212 moves downward, and the movable plate 1213 moves downward until it contacts the top of the metal plate, so that the two sides of the metal plate are fixed after being lifted, so that when the subsequent equipment performs laser cutting, the iron slag generated at the bottom of the metal plate will not stick to the surface of the conveyor 200, thereby not affecting the processing efficiency of the equipment.

[0022] For example 2, please refer to Figures 1-6On the basis of the first embodiment, the knocking unloading assembly 1300 includes a hose 3 1301, a hydraulic block 4 1302, a rack 1303, a gear 1304, an L-shaped bracket 2 1305, an L-shaped bracket 3 1306, a ratchet 1307, a limit block 1308, a ratchet 1309, a rotating shaft 2 1310, a gear 2 1311, a rack 2 1312, a knocking hammer 1313, and a spring 2 1314. The outer side of the hydraulic block 1202 is fixedly connected to one end of the hose 3 1301, and the other end of the hose 3 1301 is fixedly connected to the side of the hydraulic block 4 1302. The hose is set. The third 1301 makes the interior of the hydraulic block 4 1302 communicate with the interior of the hydraulic block 1 1202. The front side of the hydraulic block 4 1302 is movably connected to the rack 1303. The top of the conveyor 200 is fixedly connected to the L-shaped bracket 2 1305. The interior of the L-shaped bracket 2 1305 passes through and is rotatably connected to the rotating shaft 2 1310. The top of the rotating shaft 2 1310 is fixedly connected to the ratchet 1309. The outer side of the ratchet 1309 is movably connected to the ratchet 1307. The inner part of the ratchet 1309 is movably connected to the limit block 1308. The outer side of the ratchet 1307 is fixedly connected to the gear 1304. The wheel 1307 and the ratchet 1309 make the rotating shaft 2 1310 rotate in only one direction, so that the subsequent knocking and charging process proceeds smoothly. The gear 1 1304 is meshed with the rack 1 1303. The bottom of the rotating shaft 2 1310 is fixedly connected with the gear 2 1311. The number of teeth of the gear 2 1311 is three. The top of the L-shaped bracket 2 1305 is fixedly connected with the L-shaped bracket 3 1306. The bottom of the L-shaped bracket 3 1306 is fixedly connected to the rack 2 1312 through the spring 2 1314. The rack 2 1312 is connected to the L-shaped bracket 2 1305 through the slide groove 2 opened on the top of the L-shaped bracket 2 1305. 5 sliding connection, rack 2 1312 is meshed with gear 2 1311, and a knocking hammer 1313 is fixedly connected to the bottom of rack 2 1312. There are two hoses 3 1301, two hydraulic blocks 4 1302, two racks 1303, two gears 1304, and two knocking hammers 1313. A knocking unloading assembly 1300 is provided so that after the equipment completes laser cutting, the knocking hammer 1313 automatically knocks the surface of the metal plate, so that the parts inside the metal plate that are stuck to the iron slag are knocked off, thereby reducing the subsequent manual knocking and improving the working efficiency of the equipment.

[0023] During use, based on the first embodiment, when the internal pressure of the hydraulic block 1202 increases, the excess pressure inside the hydraulic block 1202 is transmitted to the inside of the hydraulic block 4 1302 through the hose 3 1301, so that the internal pressure of the hydraulic block 4 1302 increases, the rack 1303 is pushed outward, the gear 1304 rotates clockwise, the ratchet 1307 rotates clockwise, and due to the limiting effect of the limit block 1308, the ratchet 1309 rotates clockwise along with the ratchet 1307, so that the rotating shaft 2 1310 rotates clockwise, the gear 2 1311 rotates clockwise, and the rack 2 1312 rotates clockwise. Move upward to accumulate force. When rack 2 1312 and gear 2 1311 finish meshing, spring 2 1314 releases elastic potential energy, causing rack 2 1312 to move downward quickly, causing the hammer 1313 to automatically strike the surface of the metal plate, knocking off the parts inside the metal plate that are stuck with iron slag, thereby reducing subsequent manual knocking and improving equipment work efficiency. When gear 1 1304 rotates counterclockwise, due to the action of the limit block 1308, the ratchet 1309 does not rotate counterclockwise with the ratchet 1307, so that the rotating shaft 2 1310 does not rotate, thereby not affecting the next force accumulation process of rack 2 1312.

[0024] For example three, please refer to Figures 1-8On the basis of the first and second embodiments, the slag shaking assembly 1400 includes a fixed plate 1401, a push block 4 1402, a hydraulic block 5 1403, a hose 4 1404, a hydraulic block 6 1405, a rack 3 1406, a gear 3 1407, a rotating shaft 3 1408, an inclined plate 1409, and a screen 1410. The fixed plate 1401 is fixedly connected to the outer side of the movable frame 700, and the outer side of the horizontal moving device 400 is fixedly connected to the hydraulic block 5 1403 through the fixed block 2. The hydraulic The top of the pressure block 5 1403 is movably connected to the push block 4 1402, the outer side of the hydraulic block 5 1403 is fixedly connected to one end of the hose 4 1404, and the other end of the hose 4 1404 is fixedly connected to the outer side of the hydraulic block 6 1405. The hose 4 1404 is provided so that the interior of the hydraulic block 6 1405 is communicated with the interior of the hydraulic block 5 1403. The outer side of the hydraulic block 6 1405 is movably connected to the rack 3 1406. The side of the hydraulic block 6 1405 is fixedly connected to the side of the conveyor 200. The interior of the conveyor 200 is connected to the inclined plate 1409 by rotating the shaft 3 1408. The two ends of the shaft 3 1408 are fixedly connected to the gear 3 1407. The gear 3 1407 is engaged with the rack 3 1406. The interior of the inclined plate 1409 is fixedly connected to multiple screens 1410. The screens 1410 are set to make the iron slag fall from the screens 1410, thereby separating the iron slag from the parts. A discharge port is opened in the center of the conveyor 200, and the size of the inclined plate 1409 is larger than the discharge port. The number of fixed plates 1401 is two, the number of push blocks 4 1402 is two, the number of hydraulic blocks 5 1403 is two, the number of hoses 4 1404 is two, the number of hydraulic blocks 6 1405 is two, the number of racks 3 1406 is two, and a slag shaking assembly 1400 is provided to make the processed parts fall onto the inclined plate 1409. The inclined plate 1409 rotates back and forth to shake off the large particles of iron slag on the surface of the parts, and at the same time separate the iron slag from the parts to improve the yield rate.

[0025] During use, based on Example 1 and Example 2, the electric cylinder 500 drives the horizontal moving device 400 to move upward, so that the push block four 1402 is squeezed by the fixed plate 1401 and moves downward, increasing the internal pressure of the hydraulic block five 1403, and transmitting the internal pressure of the hydraulic block five 1403 to the inside of the hydraulic block six 1405 through the hose four 1404, so that the internal pressure of the hydraulic block six 1405 increases, and the rack three 1406 moves forward, and the gear three 1407 rotates, and the rotating shaft three 1408 rotates, and the inclined plate 1409 rotates, so that the processed parts fall onto the inclined plate 1409, so that the large particles of iron slag on the surface of the parts are shaken off, and the iron slag is separated from the parts, thereby improving the yield rate.

[0026] The above are only preferred specific embodiments of the present invention, but the scope of protection of the present invention is not limited thereto. Any technician familiar with this technical field, within the technical scope disclosed by the present invention, who makes equivalent replacements or changes based on the technical solutions and inventive concepts of the present invention, should be covered by the scope of protection of the present invention.

Claims

1. A laser cutting machine for metal product production, characterized in that: include: A telescopic base, wherein the top of the telescopic base is fixedly connected to a conveyor, the top of the conveyor is fixedly connected to a front and rear moving device, the outer side of the front and rear moving device is movably connected to a movable frame, the interior of the movable frame is fixedly connected to an electric cylinder, the top of the electric cylinder is fixedly connected to a horizontal moving device, and the inner side of the conveyor is fixedly connected to an electric telescopic rod; The outer side of the movable frame is fixedly connected to the hydraulic block 1 through the fixed block 1, the top of the hydraulic block 1 is movably connected to the push block 1, the outer side of the hydraulic block 1 is fixedly connected to the hydraulic block 2 through the hose 1, the top of the electric telescopic rod is fixedly connected to the plywood, the rear side of the plywood is fixedly connected to the L-shaped bracket 1, the front side of the L-shaped bracket 1 is fixedly connected to the hydraulic block 2, the top of the hydraulic block 2 is movably connected to the push block 2, the front side of the push block 2 is fixedly connected to the triangular oblique block, and the hydraulic block 2 is movably connected to the movable plate through a transmission member.

2. A laser cutting machine for metal product production according to claim 1, characterized in that: The transmission part includes hose 2, slide 1, hydraulic block 3, spring 1, and push block 3. The outer side of the hydraulic block 2 is fixedly connected to one end of the hose 2, and the other end of the hose 2 is fixedly connected to the outer side of the hydraulic block 3. The hydraulic block 3 is fixedly connected to the top of the slide 1. The bottom of the hydraulic block 3 is movably connected to the push block 3. The bottom of the push block 3 is fixedly connected to a movable plate. The movable plate is slidably connected to the splint through a slide 1 opened inside the splint. A spring 1 is fixedly connected between the top of the movable plate and the top of the slide 1.

3. The laser cutting machine for metal product production according to claim 1, characterized in that: The top of the conveyor is fixedly connected to a knocking and unloading assembly, the bottom of the conveyor is movably connected to a slag shaking assembly, the side of the conveyor is rotatably connected to a rotating shaft 1, the rear side of the rotating shaft 1 is fixedly connected to a motor, the bottom of the horizontal moving device is movably connected to a laser cutter, the interior of the laser cutter is fixedly connected to a dust removal device, and both sides of the laser cutter are movably connected to shading devices.

4. The laser cutting machine for metal product production according to claim 1, characterized in that: The number of the push blocks 1 is two, the number of the hydraulic blocks 1 is two, the number of the hoses 1 is four, and every two hoses 1 form a group, the number of the L-shaped brackets 1 is four, and every two L-shaped brackets 1 form a group, the number of the hydraulic blocks 2 is four, the number of the push blocks 2 is four, the number of the slide slots 1 is four, the number of the hydraulic blocks 3 is four, the number of the springs 1 is four, the number of the movable plates is four, and the number of the splints is two.

5. The laser cutting machine for metal product production according to claim 3, characterized in that: The knocking unloading assembly includes a hose three, a hydraulic block four, a rack one, a gear one, an L-shaped bracket two, an L-shaped bracket three, a ratchet, a limit block, a ratchet, a rotating shaft two, a gear two, a rack two, a knocking hammer, and a spring two. The outer side of the hydraulic block one is fixedly connected to one end of the hose three, and the other end of the hose three is fixedly connected to the side of the hydraulic block four. The front side of the hydraulic block four is movably connected to the rack one. The top of the conveyor is fixedly connected to the L-shaped bracket two. The interior of the L-shaped bracket two passes through and is rotatably connected to the rotating shaft two. The top of the rotating shaft two is fixedly connected to Ratchet, the outer side of the ratchet is movably connected to a ratchet, the inner side of the ratchet is movably connected to a limit block, the outer side of the ratchet is fixedly connected to gear 1, the gear 1 is meshed with rack 1, the bottom of the rotating shaft 2 is fixedly connected to gear 2, the top of the L-shaped bracket 2 is fixedly connected to L-shaped bracket 3, the bottom of the L-shaped bracket 3 is fixedly connected to the rack 2 through spring 2, the rack 2 is slidably connected to the L-shaped bracket 2 through the slide groove 2 opened at the top of the L-shaped bracket 2, the rack 2 is meshed with gear 2, and the bottom of the rack 2 is fixedly connected to a hammer.

6. The laser cutting machine for metal product production according to claim 5, characterized in that: The number of the hoses three is two, the number of the hydraulic blocks four is two, the number of the racks one is two, the number of the gears one is two, and the number of the hammers is two.

7. The laser cutting machine for metal product production according to claim 5, characterized in that: The number of teeth of the gear 2 is three.

8. The laser cutting machine for metal product production according to claim 5, characterized in that: The slag shaking assembly includes a fixed plate, a push block four, a hydraulic block five, a hose four, a hydraulic block six, a rack three, a gear three, a rotating shaft three, an inclined plate, and a screen. The fixed plate is fixedly connected to the outer side of the movable frame, and the outer side of the horizontal moving device is fixedly connected to the hydraulic block five through a fixed block two. The top of the hydraulic block five is movably connected with a push block four, the outer side of the hydraulic block five is fixedly connected to one end of the hose four, and the other end of the hose four is fixedly connected to the outer side of the hydraulic block six. The outer side of the hydraulic block six is movably connected with a rack three, and the side of the hydraulic block six is fixedly connected to the side of the conveyor. The interior of the conveyor is rotatably connected to the inclined plate through a rotating shaft three, and both ends of the rotating shaft three are fixedly connected to gear three, and the gear three is meshed with the rack three. The interior of the inclined plate is fixedly connected with a plurality of screens.

9. The laser cutting machine for metal product production according to claim 8, characterized in that: The number of the fixed plates is two, the number of the push blocks four is two, the number of the hydraulic blocks five is two, the number of the hoses four is two, the number of the hydraulic blocks six is two, and the number of the racks three is two.

10. The laser cutting machine for metal product production according to claim 8, characterized in that: A discharge port is provided at the center of the conveyor, and the size of the inclined plate is larger than that of the discharge port.

Citation Information

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