Fiber laser professional pipe cutting machine

Through the automatic continuous transmission assembly and the circumferential fiber laser cutting assembly, combined with the drive motor and the rotary motor, the problem of single functionality of the pipe clamping mechanism in the prior art during the multi-stage cutting process is solved, and automatic continuous cutting and efficient cutting of the pipe are realized.

CN223289188UActive Publication Date: 2025-09-02WUHAN KEBEIER LASER TECH CO LTD
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Patent Information

Application Number
CN202422429940.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-09
Publication Date
2025-09-02
Estimated Expiration
2034-10-09

AI Technical Summary

Technical Problem

The existing pipe clamping mechanism is relatively single in functionality during multi-stage cutting, and cannot achieve automatic continuous cutting, resulting in low cutting efficiency.

Method used

The automatic continuous transmission assembly and the circumferential fiber laser cutting assembly are adopted, combined with the drive motor, rotating motor and controller to realize the automatic continuous transmission and circumferential cutting of the pipe, and the stable movement and cutting of the pipe is achieved through the suction cup and the push-out assembly.

Benefits of technology

Automatic continuous multi-stage cutting of the pipeline is realized, cutting efficiency is improved, and equipment damage is prevented by high-hardness laser cutting strips, improving the practicality and efficiency of cutting.

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Patent Text Reader

Abstract

The utility model discloses an optical fiber laser professional pipe cutting machine which comprises a cutting installation table, an automatic continuous transmission assembly is arranged above the cutting installation table, a circumferential optical fiber laser cutting assembly is arranged on one side of the automatic continuous transmission assembly, and a pipe pushing-out assembly is arranged on one side of the circumferential optical fiber laser cutting assembly. According to the utility model, the prior art is improved, in actual use, through the automatic continuous transmission assembly and the circumferential optical fiber laser cutting assembly, automatic continuous multi-section cutting of the pipeline is realized, and the problems that most of the existing pipe clamping mechanisms have single clamping and fixing effects, are single in function, and are inconvenient to use are solved. And the pipeline cutting device is high in practicability, and the cutting efficiency is greatly improved.
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Description

Technical Field

[0001] The utility model relates to the field of optical fiber laser professional tube cutting, and specifically to a optical fiber laser professional tube cutting machine. Background Art

[0002] Laser cutting is the process of using the energy released when a laser beam is irradiated onto the surface of a workpiece to melt and evaporate the workpiece to achieve the purpose of cutting and engraving. It has the characteristics of high precision, fast cutting, no restrictions on cutting patterns, automatic typesetting to save materials, smooth incisions, and low processing costs.

[0003] At present, in the process of pipe cutting, the pipe is first placed on the pipe clamping mechanism, and then the pipe clamping mechanism clamps and fixes it. After it is fixed, the laser pipe cutting machine cuts it. However, during the pipe cutting process, it is sometimes necessary to cut a long pipe into multiple sections to form multiple short pipes of the same length. However, in actual use, when a long pipe is cut into multiple sections, it is often necessary to adjust the position of the pipe and cut it again after the initial cutting. Most of the existing pipe clamping mechanisms only have a clamping and fixing effect, and the functionality is relatively simple. It is not convenient to automatically and continuously cut the pipe during the multi-section cutting process, and the practicality is poor and the cutting efficiency is low. Utility Model Content

[0004] In response to the problems in the related technology, the utility model proposes a fiber laser professional tube cutting machine to overcome the above technical problems existing in the existing related technology.

[0005] To this end, the specific technical solutions adopted in this utility model are as follows:

[0006] A fiber laser professional tube cutting machine includes a cutting installation table, an automatic continuous transmission component is provided above the cutting installation table, a circumferential fiber laser cutting component is provided on one side of the automatic continuous transmission component, and a tube material pushing component is provided on one side of the circumferential fiber laser cutting component;

[0007] The transmission mechanism that this transmission mechanism is used for isolating is arranged on the support frame, and this transmission mechanism is that the transmission mechanism that this transmission mechanism is used for isolating is arranged on the support frame.

[0008] Furthermore, a controller is installed on one side of the cutting installation table, and the driving motor and the trigger switch are electrically connected to the controller.

[0009] Furthermore, in order to achieve the effect of circumferential fiber laser cutting, the circumferential fiber laser cutting assembly includes a circumferential mounting frame, which is connected to the cutting mounting table. A rotating hollow cylinder is movably installed inside the circumferential mounting frame. Transmission teeth are connected to the outer periphery of the rotating hollow cylinder. A driving gear is engaged with one side of the transmission teeth. A rotating motor is connected to the middle of the driving gear. The rotating motor casing is connected to the circumferential mounting frame. A fiber laser head and a laser cutting bar are installed around the inside of the rotating hollow cylinder.

[0010] Furthermore, the fiber laser and the rotary motor electrically connected to the fiber laser head are electrically connected to the controller respectively.

[0011] Furthermore, in order to achieve the function of pushing out the pipe material, the pipe pushing out assembly includes a pipe pushing out frame, which is connected to the cutting mounting table. An electric pushing rod is installed inside the pipe pushing out frame, and an arc plate is connected to the output end of the electric pushing rod.

[0012] Furthermore, the electric push rod is electrically connected to the controller.

[0013] Furthermore, a support column is provided at the bottom of the cutting installation platform, and the support column is connected to the cutting installation platform.

[0014] Furthermore, the position adjustment component includes a position adjustment groove, which starts inside the cutting mounting table. An adjustment threaded rod is provided inside the position adjustment groove. The adjustment threaded rod is movably connected to the cutting mounting table. One end of the adjustment threaded rod is connected to an adjustment motor. The outer periphery of the adjustment threaded rod is threadedly connected to a moving slider, and the moving slider is connected to the trigger mounting plate.

[0015] The beneficial effects of the utility model are:

[0016] (1) The present invention improves the existing technology. In actual use, the present invention solves the problem of automatic continuous multi-segment cutting of pipes through the automatic continuous transmission component and the circumferential fiber laser cutting component. It solves the problem that most of the existing pipe clamping mechanisms only have a clamping and fixing effect, are relatively simple in functionality, and are not convenient for automatic continuous cutting of pipes in the multi-segment cutting process. The present invention has high practicality and greatly improves cutting efficiency.

[0017] (2) In actual use, by setting a rotating motor, the rotating motor can drive the driving gear to rotate. When the driving gear rotates, the rotating hollow cylinder can be driven to rotate in the circumferential mounting frame through the transmission teeth. When the rotating hollow cylinder rotates, it can drive the fiber laser head to rotate forward and then reverse in the circumference, thereby achieving the effect of circumferential cutting. The laser cutting bar has high hardness and wear resistance, and can withstand the high temperature and high pressure environment generated during the laser cutting process, so that the laser cutting bar can prevent damage to the circumferential mounting frame. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0019] Figure 1 This is a schematic diagram of the main structure of a fiber laser professional tube cutting machine according to an embodiment of the utility model;

[0020] Figure 2 It is a three-dimensional diagram of a fiber laser professional tube cutting machine according to an embodiment of the present utility model.

[0021] Figure 3 This is one of the structural schematic diagrams of an automatic continuous transmission component in a professional fiber laser tube cutting machine according to an embodiment of the present utility model;

[0022] Figure 4 This is the second structural diagram of the automatic continuous transmission component in a professional fiber laser tube cutting machine according to an embodiment of the present utility model;

[0023] Figure 5 It is a structural schematic diagram of a circumferential fiber laser cutting component in a fiber laser professional tube cutting machine according to an embodiment of the present utility model.

[0024] In the picture:

[0025] 1. Cutting installation table; 2. Automatic continuous transmission assembly; 201. Transmission installation plate; 202. Driven rotating rod; 203. Pipe transmission wheel; 204. Drive installation frame; 205. Drive transmission wheel; 206. Active rotating rod; 207. Drive motor; 208. Trigger installation plate; 209. Trigger switch; 210. Mounting slot; 211. Suction cup mounting rod; 212. Thrust spring; 213. Rotating shaft; 214. Pipe suction cup; 3. Circular fiber laser cutting assembly; 3 01. Circumferential mounting frame; 302. Rotating hollow cylinder; 303. Transmission teeth; 304. Driving gear; 305. Rotating motor; 306. Fiber laser head; 307. Laser cutting bar; 4. Pipe ejection assembly; 401. Pipe ejection frame; 402. Ejection electric push rod; 403. Ejection arc plate; 5. Controller; 6. Support column; 7. Position adjustment assembly; 701. Position adjustment slot; 702. Adjustment threaded rod; 703. Adjustment motor; 704. Moving slider. DETAILED DESCRIPTION

[0026] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0027] According to an embodiment of the present utility model, a professional fiber laser tube cutting machine is provided, including a cutting mounting table 1, an automatic continuous transmission component 2 is provided above the cutting mounting table 1, a circumferential fiber laser cutting component 3 is provided on one side of the automatic continuous transmission component 2, and a tube material pushing component 4 is provided on one side of the circumferential fiber laser cutting component 3.

[0028] like Figure 1-5As shown, according to the embodiment of the present invention, the optical fiber laser professional pipe cutting machine, the automatic continuous transmission component 2 includes a plurality of transmission mounting plates 201, and the plurality of transmission mounting plates 201 are symmetrically mounted above the cutting mounting table 1. The transmission mounting plates 201 are symmetrically and movably connected with driven rotating rods 202 inside, and the driven rotating rods 202 are connected with pipeline transmission wheels 203. A driving mounting frame 204 is connected above one of the transmission mounting plates 201, and a driving transmission wheel 205 is provided inside the driving mounting frame 204. Active rotating rods 206 are symmetrically connected on both sides of the driving transmission wheel 205. The active rotating rod 206 is movably connected to the driving mounting frame 204, and a driving motor 207 is connected to one side of the active rotating rod 206. The motor 207 housing is connected to the drive mounting frame 204, a trigger mounting plate 208 is provided above the cutting mounting table 1, a position adjustment component 7 is provided at the bottom of the trigger mounting plate 208, a trigger switch 209 is installed on one side of the trigger mounting plate 208, and mounting grooves 210 are respectively opened around the inside of the driving transmission wheel 205 and the pipeline transmission wheel 203, and a suction cup mounting rod 211 is slidably fitted inside the mounting groove 210, one end of the suction cup mounting rod 211 is connected to a thrust spring 212, and the end of the suction cup mounting rod 211 away from the thrust spring 212 is movably connected to the pipeline suction cup 214 through a rotating shaft 213, a controller 5 is installed on one side of the cutting mounting table 1, and the driving motor 207 and the trigger switch 209 are electrically connected to the controller 5.

[0029] By the above technical solution, the pipe is first placed between the pipe transmission wheel 203 and the driving transmission wheel 205, and the pipe suction cup 214 is used to adsorb the pipe. By setting the driving mounting frame 204, it is convenient to movably install the driving transmission wheel 205 through the active rotating rod 206. The driving motor 207 drives the active rotating rod 206 to drive the driving transmission wheel 205 to rotate in the driving mounting frame 204. When the driving transmission wheel 205 rotates, the pipe suction cup 214 can be driven to rotate through the suction cup mounting rod 211. At this time, when multiple pipe suction cups 214 rotate, the pipe can be driven to move. When the pipe suction cup 214 contacts the pipe to be cut, the pipe suction cup 214 will drive the suction cup mounting rod 211 to squeeze the thrust spring 212. As the pipe suction cup 214 rotates in a circle, the pipe suction cup 214 will gradually move away from the pipe. At the same time, the thrust spring 212 generates a thrust on the suction cup mounting rod 211, so that the suction cup mounting The rod 211 is pushed out along the mounting groove 210, so that the pipe suction cup 214 can tightly adsorb the pipe. Then, as the pipe suction cup 214 rotates circumferentially, the pipe suction cup 214 is separated from the pipe, and the pipe suction cup 214 and the suction cup mounting rod 211 can move slightly through the rotating shaft 213, thereby facilitating the pipe suction cup 214 to transport the pipe. At the same time, the pipe will also drive the pipe transmission wheel 203 through the driven rotating rod 202 to rotate in the transmission mounting plate 201 through the pipe suction cup 214, thereby achieving the effect of stable movement of the pipe. After that, the pipe collides with the trigger switch 209 fixed on the mounting plate 208, and the trigger switch 209 controls the drive motor 207 to stop through the controller 5. Then, the controller 5 controls the circumferential fiber laser cutting component 3 to cut the pipe. After cutting, the controller 5 controls the pipe material pushing component 4 to push the pipe out, and the drive motor 207 continues to start to automatically and continuously cut multiple sections of the pipe.

[0030] like Figure 1-5 As shown, according to the fiber laser professional tube cutting machine of the embodiment of the present invention, the circumferential fiber laser cutting assembly 3 includes a circumferential mounting frame 301, the circumferential mounting frame 301 is connected to the cutting mounting table 1, and a rotating hollow cylinder 302 (which can be through a bearing) is movably installed inside the circumferential mounting frame 301, and the outer periphery of the rotating hollow cylinder 302 is connected with a transmission tooth 303, and a driving gear 304 is engaged with one side of the transmission tooth 303. A rotating motor 305 is connected to the middle of the driving gear 304. The rotating motor 305 is a forward and reverse motor, and its rotation angle each time is 125°. The outer shell of the rotating motor 305 is connected to the circumferential mounting frame 301, and a fiber laser head 306 and a laser cutting baffle 307 are installed around the rotating hollow cylinder 302. The fiber laser electrically connected to the fiber laser head 306 and the rotating motor 305 are respectively electrically connected to the controller 5.

[0031] Through the above technical solution, by setting up a rotating motor 305, the rotating motor 305 can drive the driving gear 304 to rotate. When the driving gear 304 rotates, it can drive the rotating hollow cylinder 302 to rotate in the circumferential mounting frame 301 through the transmission teeth 303. When the rotating hollow cylinder 302 rotates, it can drive the fiber laser head 306 to rotate forward and then reverse in a circular motion, thereby achieving the effect of circumferential cutting. The laser cutting baffle 307 has high hardness and wear resistance, and can withstand the high temperature and high pressure environment generated during the laser cutting process, so that the laser cutting baffle 307 can prevent damage to the circumferential mounting frame 301.

[0032] like Figure 1-5 As shown, according to the embodiment of the present utility model, the fiber laser professional pipe cutting machine, the pipe material pushing component 4 includes a pipe pushing frame 401, the pipe pushing frame 401 is connected to the cutting installation table 1, the pipe pushing frame 401 is internally installed with a pushing electric push rod 402, the output end of the pushing electric push rod 402 is connected to a pushing arc plate 403, the pushing electric push rod 402 is electrically connected to the controller 5, the bottom of the cutting installation table 1 is provided with a support column 6, the support column 6 is connected to the cutting installation table 1, the position adjustment component 7 includes a position adjustment groove 701, the position adjustment groove 701 Starting from the inside of the cutting mounting table 1, an adjustment threaded rod 702 is provided inside the position adjustment groove 701, and the adjustment threaded rod 702 is movably connected to the cutting mounting table 1. One end of the adjustment threaded rod 702 is connected to the adjustment motor 703, and the outer periphery of the adjustment threaded rod 702 is threadedly connected to a moving slider 704, and the moving slider 704 is connected to the trigger mounting plate 208. In actual use, a pulley is provided under the trigger mounting plate 208, and a slide groove is provided on the cutting mounting table 1. The pulley slides in the slide groove, making the movement of the mounting plate 208 smoother.

[0033] Through the above technical solution, by providing the pipe pushing frame 401, it is convenient to fix the pushing electric push rod 402, and the pushing electric push rod 402 can drive the pushing arc plate 403 to move, so that the pushing arc plate 403 can push the cut pipe out. After being pushed out, it can be received by a special receiving device. By providing the support column 6, the cutting installation table 1 is supported.

[0034] By setting up the adjustment motor 703, the adjustment motor 703 can drive the adjustment threaded rod 702 to rotate in the position adjustment groove 701. When the adjustment threaded rod 702 rotates, the trigger mounting plate 208 can be driven to move by moving the slider 704, thereby facilitating the adjustment of the position of the trigger mounting plate 208.

[0035] In order to facilitate understanding of the above technical solutions of the present invention, the working principle or operation method of the present invention in actual process is described in detail below.

[0036] First, the pipe is placed between the pipe transmission wheel 203 and the driving transmission wheel 205, and the pipe is adsorbed by the pipe suction cup 214. By setting the driving mounting frame 204, it is convenient to install the driving transmission wheel 205 through the active rotating rod 206. The driving motor 207 drives the active rotating rod 206 to drive the driving transmission wheel 205 to rotate in the driving mounting frame 204. When the driving transmission wheel 205 rotates, the pipe suction cup 214 can be driven to rotate through the suction cup mounting rod 211. At this time, when multiple pipe suction cups 214 rotate, the pipe can be driven to move. When the pipe suction cup 214 contacts the pipe to be cut, the pipe suction cup 214 will drive the suction cup mounting rod 211 to squeeze the thrust spring 212. As the pipe suction cup 214 rotates in a circle, the pipe suction cup 214 will gradually move away from the pipe. At the same time, the thrust spring 212 generates a thrust on the suction cup mounting rod 211, so that the suction cup mounting rod 211 The pipe is pushed out along the mounting groove 210, thereby achieving the effect of the pipe suction cup 214 adsorbing the pipe tightly. Then, as the pipe suction cup 214 rotates circumferentially, the pipe suction cup 214 is separated from the pipe, and the pipe suction cup 214 and the suction cup mounting rod 211 can move slightly through the rotating shaft 213, thereby achieving the effect of facilitating the pipe suction cup 214 to transport the pipe. At the same time, the pipe will also drive the pipe transmission wheel 203 through the driven rotating rod 202 to rotate in the transmission mounting plate 201 through the pipe suction cup 214, thereby achieving the effect of stable movement of the pipe. After that, when the pipe collides with the trigger switch 209 fixed on the mounting plate 208, the trigger switch 209 controls the driving motor 207 to stop through the controller 5. Then, the controller 5 controls the circumferential fiber laser cutting assembly 3 to cut the pipe. After cutting, the controller 5 controls the pipe material pushing assembly 4 to push the pipe out, and the driving motor 207 continues to start to automatically and continuously cut the pipe in multiple sections.

[0037] By setting up a rotating motor 305, the rotating motor 305 can drive the driving gear 304 to rotate. When the driving gear 304 rotates, it can drive the rotating hollow cylinder 302 to rotate in the circumferential mounting frame 301 through the transmission teeth 303. When the rotating hollow cylinder 302 rotates, it can drive the fiber laser head 306 to rotate forward and then reverse in a circular motion, thereby achieving the effect of circumferential cutting. The laser cutting bar 307 has high hardness and wear resistance and can withstand the high temperature and high pressure environment generated during the laser cutting process, so that the laser cutting bar 307 can prevent damage to the circumferential mounting frame 301.

[0038] By providing the pipe pushing frame 401, it is convenient to fix the pushing electric push rod 402. The pushing electric push rod 402 can drive the pushing arc plate 403 to move, so that the pushing arc plate 403 can push the cut pipe out. By providing the support column 6, the cutting installation table 1 is supported.

[0039] By setting up the adjustment motor 703, the adjustment motor 703 can drive the adjustment threaded rod 702 to rotate in the position adjustment groove 701. When the adjustment threaded rod 702 rotates, the trigger mounting plate 208 can be driven to move by moving the slider 704, thereby facilitating the adjustment of the position of the trigger mounting plate 208.

[0040] The above are only preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. A fiber laser professional tube cutting machine, characterized in that: The invention comprises a cutting installation platform (1), an automatic continuous transmission component (2) is provided above the cutting installation platform (1), a circumferential fiber laser cutting component (3) is provided on one side of the automatic continuous transmission component (2), and a tube material pushing component (4) is provided on one side of the circumferential fiber laser cutting component (3); The automatic continuous transmission assembly (2) comprises a plurality of transmission mounting plates (201), wherein the plurality of transmission mounting plates (201) are symmetrically mounted above the cutting mounting table (1), wherein the transmission mounting plates (201) are internally symmetrically and movably connected to driven rotating rods (202), wherein pipeline transmission wheels (203) are connected between the driven rotating rods (202), wherein a driving mounting frame (204) is connected above one of the transmission mounting plates (201), wherein a driving transmission wheel (205) is provided inside the driving mounting frame (204), wherein active rotating rods (206) are symmetrically connected to both sides of the driving transmission wheel (205), wherein the active rotating rods (206) are movably connected to the driving mounting frame (204), and wherein one side of the active rotating rod (206) is connected to a driving motor. The cutting machine (207) is provided with a driving motor (207) having a housing connected to the driving mounting frame (204). A trigger mounting plate (208) is provided above the cutting mounting table (1). A position adjustment assembly (7) is provided at the bottom of the trigger mounting plate (208). A trigger switch (209) is installed on one side of the trigger mounting plate (208). Mounting grooves (210) are respectively provided around the interiors of the driving transmission wheel (205) and the pipeline transmission wheel (203). A suction cup mounting rod (211) is slidably fitted inside the mounting groove (210). One end of the suction cup mounting rod (211) is connected to a thrust spring (212). The end of the suction cup mounting rod (211) away from the thrust spring (212) is movably connected to a pipeline suction cup (214) via a rotating shaft (213).

2. A fiber laser professional tube cutting machine according to claim 1, characterized in that: A controller (5) is installed on one side of the cutting installation table (1), and the driving motor (207) and the trigger switch (209) are electrically connected to the controller (5).

3. The fiber laser professional tube cutting machine according to claim 2, characterized in that: The circumferential fiber laser cutting assembly (3) comprises a circumferential mounting frame (301), the circumferential mounting frame (301) is connected to the cutting mounting table (1), a rotating hollow cylinder (302) is movably mounted inside the circumferential mounting frame (301), a transmission tooth (303) is connected around the periphery of the rotating hollow cylinder (302), a driving gear (304) is meshed on one side of the transmission tooth (303), a rotating motor (305) is connected to the middle of the driving gear (304), the housing of the rotating motor (305) is connected to the circumferential mounting frame (301), and a fiber laser head (306) and a laser cutting bar (307) are mounted around the interior of the rotating hollow cylinder (302).

4. The fiber laser professional tube cutting machine according to claim 3, characterized in that: The fiber laser and the rotary motor (305) electrically connected to the fiber laser head (306) are respectively electrically connected to the controller (5).

5. The fiber laser professional tube cutting machine according to claim 4, characterized in that: The pipe material pushing assembly (4) comprises a pipe pushing frame (401), the pipe pushing frame (401) is connected to the cutting installation table (1), an pushing electric push rod (402) is installed inside the pipe pushing frame (401), and an output end of the pushing electric push rod (402) is connected to a pushing arc plate (403).

6. The fiber laser professional tube cutting machine according to claim 5, characterized in that: The ejection electric push rod (402) is electrically connected to the controller (5).

7. The fiber laser professional tube cutting machine according to claim 6, characterized in that: A support column (6) is provided at the bottom of the cutting installation platform (1), and the support column (6) is connected to the cutting installation platform (1).

8. The fiber laser professional tube cutting machine according to claim 1, characterized in that: The position adjustment assembly (7) comprises a position adjustment groove (701), the position adjustment groove (701) starting from the inside of the cutting installation table (1), an adjustment threaded rod (702) being provided inside the position adjustment groove (701), the adjustment threaded rod (702) being movably connected to the cutting installation table (1), one end of the adjustment threaded rod (702) being connected to an adjustment motor (703), the outer periphery of the adjustment threaded rod (702) being threadedly connected to a moving slider (704), and the moving slider (704) being connected to the trigger mounting plate (208).