Multifunctional laser cutting machine for sensor machining

Through the combination of movable blocks, plates, movable frames and drive motors, the laser cutting head can achieve multi-shape cutting, solving the problem that only straight line cutting can be achieved in the existing technology. The air pump sucks out harmful gases and debris, realizing a safe and efficient cutting process.

CN223382791UActive Publication Date: 2025-09-26NANJING NANYU SENSING INSTRUMENT CO LTD
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Patent Information

Application Number
CN202422683434.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-05
Publication Date
2025-09-26
Estimated Expiration
2034-11-05

AI Technical Summary

Technical Problem

The existing multifunctional laser cutting machine can only perform straight-line cutting when cutting materials, and it is difficult to achieve arc cutting of materials.

Method used

The combination of movable blocks, plates, movable frames and drive motors enables the laser cutting head to move horizontally and vertically, and the rotation of the circular plate enables curved cutting. At the same time, an air pump generates negative pressure to suck out harmful gases and debris during the cutting process.

Benefits of technology

It realizes multi-shape cutting of materials, especially curved shapes, and effectively collects harmful gases and debris during the cutting process to protect the safety of operators.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223382791U_ABST
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Abstract

The utility model relates to the technical field of sensor processing, in particular to a multifunctional laser cutting machine for sensor processing, which comprises a base, two notches are arranged inside the base, an air pump is fixedly connected inside a cavity, and clamping plates are slidably connected inside two sides of the upper end of the base. A movable frame is slidably connected to the upper end of the movable block, a plate block is slidably connected to the interior of the lower end of the movable frame, a circular plate is rotatably connected to the lower end of the plate block, and a laser cutting head is fixedly connected to the lower end of the circular plate. The laser cutting head is driven by the movable block to move transversely, then the laser cutting head is driven by the plate to move longitudinally, the laser cutting head is moved to a designated position, the laser cutting head is driven by the movable frame to slide downwards, so that materials are cut by the laser cutting head, and meanwhile, the circular plate is driven by the driving motor to rotate; and the laser cutting head cuts the material into a curve shape, so that the material can be conveniently cut into different shapes.
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Description

Technical Field

[0001] The utility model relates to the technical field of sensor processing, in particular to a multifunctional laser cutting machine for sensor processing. Background Art

[0002] Versatile laser cutting machines offer a variety of features to suit the cutting needs of diverse sensor materials. They are typically equipped with a high-power laser that produces a stable, high-intensity laser beam for fast, precise cutting of a wide range of materials. Furthermore, these machines feature intelligent control systems that automatically adjust and optimize cutting parameters based on varying sensor shapes and sizes, ensuring high-quality and efficient cutting.

[0003] After searching, the utility model patent with Chinese patent publication number CN215545930U discloses a multifunctional laser cutting machine, including a processing platform, a base, a movable bracket and a movable block, the base is fixedly connected to the bottom of the processing platform, the movable bracket is sleeved on the left and right sides of the top of the processing platform, the movable block is sleeved in the middle of the top of the movable bracket, the top of the movable bracket is provided with a groove, the top and bottom of the inner cavity of the groove are fixedly connected with a second rack, the inner cavity of the groove is keyed to a first gear, and the first gear is meshed with the second rack. The multifunctional laser cutting machine has a reasonable structural design. By adding a sliding bracket, a sliding block, a conveyor belt, an infrared sensing device, a controller and a control box, the flexibility of the laser cutting nozzle is improved, which is conducive to the processing of different products and different materials, and saves processing costs.

[0004] The above patents have been searched and have been found to have processed the laser cutting of materials. However, when cutting materials, the device can only perform straight-line cutting on the materials, which makes it inconvenient for the device to perform arc-cutting on the materials. Utility Model Content

[0005] The purpose of the utility model is to provide a multifunctional laser cutting machine for sensor processing, which can facilitate cutting raw materials into different shapes, thereby solving the problem in the prior art that it is inconvenient to cut raw materials into different shapes.

[0006] In order to achieve the above purpose, the present invention adopts the following technical solutions:

[0007] A multifunctional laser cutting machine for sensor processing comprises a base, a cavity is provided inside the base, two notches are provided inside the base, the ends of the notches are communicated with the side walls of the cavity, an air pump is fixedly connected to the inside of the cavity, the output end of the air pump is fixedly connected to the side walls of the base, and clamps are slidably connected to the inside of both sides of the upper end of the base; a movable block, the movable block is provided at the upper end of the base, the upper end of the movable block is slidably connected to a movable frame, the lower end of the movable frame is slidably connected to a plate, the plate is fixedly connected to the inside of a drive motor, the lower end of the plate is rotatably connected to a circular plate, the upper end of the circular plate is fixedly connected to the output end of the drive motor, and the lower end of the circular plate is fixedly connected to a laser cutting head.

[0008] Preferably, a movable plate is slidably connected to the side wall of the base, a filter is fixedly connected inside the movable plate, and the filter is located inside the cavity.

[0009] Preferably, the side wall of the base is fixedly connected to a motor 1, the interior of the base is rotatably connected to a screw, the output end of the motor 1 is fixedly connected to the end of the screw, and the screw is rotatably connected to the movable block through a thread.

[0010] Preferably, the movable block is fixedly connected to the second motor inside, the movable block is rotatably connected to a rod body inside, the end of the rod body is fixedly connected to the output end of the second motor, and the rod body is rotatably connected to the movable frame through a thread.

[0011] Preferably, the end of the movable frame is fixedly connected to the motor three, the interior of the movable frame is rotatably connected to a rotating rod, the end of the rotating rod is fixedly connected to the output end of the motor three, and the rotating rod is rotatably connected to the plate thread.

[0012] Preferably, the inner walls on both sides of the base are provided with sliding grooves, the clamping plate is slidably connected to the sliding grooves, and a plurality of springs are fixedly connected between the top of the sliding groove and the upper end of the clamping plate.

[0013] Compared with the prior art, the advantages of the present invention are:

[0014] 1. The laser cutting head is driven to move horizontally by the movable block, and then driven to move longitudinally by the plate. The laser cutting head is moved to the specified position, and the laser cutting head is driven to slide downward by the movable frame so that the laser cutting head cuts the material. At the same time, the circular plate is driven to rotate by the driving motor so that the laser cutting head cuts the material into a curved shape, thereby facilitating cutting of materials in different shapes.

[0015] 2. During the material cutting process, the air pump is used to suck the inside of the cavity to generate negative pressure inside the cavity. The harmful gases and debris generated during the material cutting process are then sucked into the cavity through the notch. At the same time, the harmful gases and debris sucked into the cavity are filtered and collected through the filter to prevent the harmful gases and debris from causing harm to the operator's body. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 This is a front view schematic diagram of the external structure of a multifunctional laser cutting machine for sensor processing proposed by the present invention.

[0017] Figure 2 This is a rear cross-sectional structural schematic diagram of a multifunctional laser cutting machine for sensor processing proposed by the present invention.

[0018] Figure 3 This is a schematic diagram of the right side sectional structure of a multifunctional laser cutting machine for sensor processing proposed by the present invention.

[0019] Figure 4 This is a schematic diagram of the left side sectional structure of a multifunctional laser cutting machine for sensor processing proposed by the present invention.

[0020] In the figure: 1 base, 2 motor 1, 3 screw, 4 movable block, 5 motor 2, 6 rod body, 7 movable frame, 8 motor 3, 9 rotating rod, 10 plate, 11 drive motor, 12 circular plate, 13 laser cutting head, 14 cavity, 15 notch, 16 air pump, 17 movable plate, 18 filter, 19 slide, 20 clamping plate, 21 spring. DETAILED DESCRIPTION

[0021] The technical solutions in the embodiments of the present invention will be described clearly and completely 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.

[0022] Reference Figure 1-4A multifunctional laser cutting machine for sensor processing includes a base 1, a cavity 14 is provided inside the base 1, two notches 15 are provided inside the base 1, the ends of the notches 15 are communicated with the side walls of the cavity 14, an air pump 16 is fixedly connected to the inside of the cavity 14, the output end of the air pump 16 is fixedly connected to the side walls of the base 1, and both sides of the upper end of the base 1 are slidably connected with the clamping plates 20; a movable block 4 is provided at the upper end of the base 1, the upper end of the movable block 4 is slidably connected to the movable frame 7, the lower end of the movable frame 7 is slidably connected to the plate 10, the plate 10 is fixedly connected to the driving motor 11, the lower end of the plate 10 is rotatably connected to the circular plate 12, the upper end of the circular plate 12 is fixedly connected to the output end of the driving motor 11, the lower end of the circular plate 12 is fixedly connected to the laser cutting head 13, the lower end of the clamping plate 20 is tilted, the operator slides the raw material for sensor production to the upper end of the base 1, and passes through the two clamps The plate 20 clamps and limits the material from both ends, drives the laser cutting head 13 to move horizontally through the movable block 4, and then drives the laser cutting head 13 to move longitudinally through the plate 10, moves the laser cutting head 13 to the specified position, drives the laser cutting head 13 to slide downward through the movable frame 7, so that the laser cutting head 13 cuts the material, and at the same time drives the circular plate 12 to rotate through the drive motor 11, so that the laser cutting head 13 cuts the material into a curved shape, thereby facilitating cutting of materials in different shapes. The laser cutting head 13 is located in the front half of the lower end of the circular plate 12. During the material cutting process, the inside of the cavity 14 is sucked by the air pump 16 to generate a negative pressure inside the cavity 14, and then the harmful gases and debris generated during the material cutting process are sucked into the cavity 14 through the slot 15 to prevent the harmful gases and debris from causing harm to the operator's body.

[0023] A movable plate 17 is slidably connected to the side wall of the base 1 , and a filter 18 is fixedly connected to the inside of the movable plate 17 . The filter 18 is located inside the cavity 14 and filters and collects harmful gases and debris sucked into the cavity 14 through the filter 18 .

[0024] The side wall of the base 1 is fixedly connected to a motor 2, and the interior of the base 1 is rotatably connected to a screw 3. The output end of the motor 2 is fixedly connected to the end of the screw 3, and the screw 3 is rotatably connected to the movable block 4. The screw 3 is driven to rotate by the motor 2, so that the movable block 4 slides horizontally.

[0025] The movable block 4 is fixedly connected to a motor 2 5 inside, and a rod body 6 is rotatably connected inside the movable block 4. The end of the rod body 6 is fixedly connected to the output end of the motor 2 5, and the rod body 6 is threadedly rotatably connected to the movable frame 7. The motor 2 5 drives the rod body 6 to rotate, so that the movable frame 7 slides up and down.

[0026] The end of the movable frame 7 is fixedly connected to the motor three 8, and the inside of the movable frame 7 is rotatably connected to the rotating rod 9. The end of the rotating rod 9 is fixedly connected to the output end of the motor three 8. The rotating rod 9 is threadedly connected to the plate 10. The rotating rod 9 is driven to rotate by the motor three 8, so that the plate 10 slides longitudinally.

[0027] Slide grooves 19 are provided on the inner walls on both sides of the base 1, and the splint 20 is slidably connected to the slide grooves 19. A plurality of springs 21 are fixedly connected between the top of the slide groove 19 and the upper end of the splint 20. Through the elasticity of the plurality of springs 21, the splint 20 sliding upward inside the slide groove 19 is pushed downward.

[0028] In the present invention, the operator slides the raw material for sensor production to the upper end of the base 1, and at the same time, the clamping plate 20 slides upward inside the slide groove 19. Through the elasticity of multiple springs 21, the clamping plate 20 is pushed downward, so that the two clamping plates 20 clamp and limit the material from both ends.

[0029] After the material is fixed, the laser cutting head 13 is driven to move horizontally by the movable block 4, and then driven to move longitudinally by the plate 10, and the laser cutting head 13 is moved to the specified position. The laser cutting head 13 is driven to slide downward by the movable frame 7, so that the laser cutting head 13 cuts the material. At the same time, the circular plate 12 is driven to rotate by the driving motor 11, so that the laser cutting head 13 can cut the material into a curved shape.

[0030] During the material cutting process, the air pump 16 is used to suck the inside of the cavity 14, so that a negative pressure is generated inside the cavity 14, and then the harmful gases and debris generated during the material cutting process are sucked into the cavity 14 through the slot 15. At the same time, the harmful gases and debris sucked into the cavity 14 are filtered and collected by the filter 18.

[0031] The above is only a preferred specific implementation method of the present invention, but the protection scope of the present invention is not limited to this. Any technician familiar with the technical field within the technical scope disclosed by the present invention can make equivalent replacements or changes based on the technical solution and utility model concept of the present invention, which should be covered by the protection scope of the present invention.

Claims

1. A multifunctional laser cutting machine for sensor processing, characterized in that: include A base (1), wherein a cavity (14) is provided inside the base (1), two notches (15) are provided inside the base (1), the ends of the notches (15) are communicated with the side walls of the cavity (14), an air pump (16) is fixedly connected inside the cavity (14), an output end of the air pump (16) is fixedly connected to the side walls of the base (1), and clamping plates (20) are slidably connected inside both sides of the upper end of the base (1); A movable block (4) is provided at the upper end of the base (1); the upper end of the movable block (4) is slidably connected to a movable frame (7); the lower end of the movable frame (7) is internally slidably connected to a plate (10); the plate (10) is internally fixedly connected to a drive motor (11); the lower end of the plate (10) is rotatably connected to a circular plate (12); the upper end of the circular plate (12) is fixedly connected to the output end of the drive motor (11); and the lower end of the circular plate (12) is fixedly connected to a laser cutting head (13).

2. The multifunctional laser cutting machine for sensor processing according to claim 1, characterized in that: A movable plate (17) is slidably connected to the side wall of the base (1), a filter screen (18) is fixedly connected inside the movable plate (17), and the filter screen (18) is located inside the cavity (14).

3. The multifunctional laser cutting machine for sensor processing according to claim 1, characterized in that: The side wall of the base (1) is fixedly connected to a motor 1 (2), the interior of the base (1) is rotatably connected to a screw rod (3), the output end of the motor 1 (2) is fixedly connected to the end of the screw rod (3), and the screw rod (3) is rotatably connected to the movable block (4).

4. The multifunctional laser cutting machine for sensor processing according to claim 1, characterized in that: The movable block (4) is fixedly connected to the second motor (5) inside, and the movable block (4) is rotatably connected to the rod body (6) inside. The end of the rod body (6) is fixedly connected to the output end of the second motor (5), and the rod body (6) is rotatably connected to the movable frame (7) via a thread.

5. The multifunctional laser cutting machine for sensor processing according to claim 1, characterized in that: The end of the movable frame (7) is fixedly connected to the motor three (8), the interior of the movable frame (7) is rotatably connected to a rotating rod (9), the end of the rotating rod (9) is fixedly connected to the output end of the motor three (8), and the rotating rod (9) is rotatably connected to the plate (10) via a thread.

6. The multifunctional laser cutting machine for sensor processing according to claim 1, characterized in that: The inner walls on both sides of the base (1) are provided with sliding grooves (19), the clamping plate (20) is slidably connected to the sliding grooves (19), and a plurality of springs (21) are fixedly connected between the top of the sliding groove (19) and the upper end of the clamping plate (20).

Citation Information

Patent Citations

  • Multifunctional laser cutting machine

    CN215545930U