一种激光切管设备
By introducing Y-axis and Z-axis motion mechanisms and material receiving components into the laser tube cutting equipment, the problems of tube deformation and movement interference were solved, and high-precision automated cutting was achieved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- FOSHAN HUIBAISHENG LASER TECH CO LTD
- Filing Date
- 2025-04-22
- Publication Date
- 2026-07-17
AI Technical Summary
Traditional horizontal laser tube cutting equipment is prone to deformation of long or thin-walled tubes due to gravity or laser thermal effect when cutting them, which affects the cutting accuracy. In addition, manual intervention is required to adjust the position of the receiving plate when cutting the tail material to avoid movement interference.
The Y-axis and Z-axis motion mechanism, together with the chuck assembly and the receiving assembly, is used. The first receiving assembly moves along the Z-axis to adjust its position, and the second receiving assembly avoids the chuck assembly, realizing a cutting process without manual intervention. The stability and accuracy of the tube are ensured by the lifting slide and the drive cylinder.
The cutting process keeps the tube material from deforming, improves cutting accuracy, avoids interference between the chuck assembly and the receiving assembly, achieves automated cutting, and reduces manual intervention.
Smart Images

Figure CN224508740U_ABST
Abstract
Claims
1. A laser tube cutting apparatus, characterized by, include: frame; The Y-axis motion mechanism is mounted on the frame. Z-axis motion mechanism, which is mounted on the frame; A chuck assembly is mounted on the Y-axis motion mechanism, which drives the chuck assembly to move along the Y-axis. A laser cutting head, wherein the laser cutting head is mounted on the Z-axis motion mechanism, and the Z-axis motion mechanism drives the laser cutting head to move along the Z-axis; A first receiving component is movably mounted on the frame and moves along the Z-axis. The second receiving component is rotatably connected to the first receiving component and is used to avoid the chuck component.
2. The laser pipe cutting apparatus of claim 1, wherein, The first receiving assembly includes a first receiving plate and a first driving component. The first driving component includes a lifting guide rail, a lifting slide plate, a transmission shaft, a guide rack, a transmission gear, a lifting drive motor, and a first driving cylinder. The lifting guide rail is mounted on the frame, the lifting slide plate is movably mounted on the lifting guide rail and moves along the Z-axis, the guide rack is mounted on the lifting slide plate, the lifting drive motor is mounted on the frame, the transmission shaft is connected to the lifting drive motor, the transmission gear is mounted on the transmission shaft and meshes with the guide rack, the first receiving plate is hinged to the lifting slide plate, and the first driving cylinder is mounted on the frame, with its driving end hinged to the first receiving plate.
3. The laser pipe cutting apparatus of claim 2, wherein, The lifting slide plate includes a vertical part, a rear-flipping part, and a horizontal plate. The vertical part is connected to the rear-flipping part. The top of the vertical part forms an avoidance slope. The horizontal plate is disposed on the top of the rear-flipping part. The first receiving plate is hinged to the horizontal plate.
4. The laser pipe cutting apparatus of claim 2, wherein, The first driving element is provided in at least two sets, and the at least two sets of the first driving element are arranged at intervals along the Y-axis direction.
5. The laser pipe cutting apparatus of claim 1, wherein, The second receiving assembly includes a first connecting seat, a second connecting seat, and a second driving cylinder. The first connecting seat is disposed on the frame, the second connecting seat is disposed on the second receiving plate, and the second driving cylinder is disposed on the first connecting seat, with the driving end of the second driving cylinder hinged to the second connecting seat.
6. The laser pipe cutting apparatus of claim 1, wherein, The first receiving assembly is provided with a roller, which is used to convey tube material along the Y-axis on the first receiving assembly.
7. The laser pipe cutting apparatus of claim 1, wherein, The frame is equipped with an exhaust vent, which removes the pipe cutting debris.
8. The laser pipe cutting apparatus of claim 1, wherein, The laser tube cutting equipment also includes a feeding mechanism, which is mounted on the frame and is used to transport the tube material to the chuck assembly.
9. The laser tube cutting apparatus of claim 8, wherein, The feeding mechanism includes a material racking assembly, a material separating assembly, and a material supporting assembly. The material racking assembly is mounted on the frame and is used to store pipe materials. The material separating assembly is mounted on the frame and is used to separate multiple pipe materials from the material racking assembly into single pipe materials and transport them to the material supporting assembly. The material supporting assembly is mounted on the frame and is located below the Y-axis motion mechanism. The material supporting assembly is used to support single pipe materials and transport them to the chuck assembly.
10. The laser tube cutting apparatus of claim 9, wherein, The feeding mechanism is provided in at least two sets, and the at least two sets of the feeding mechanism are arranged at intervals along the Y-axis direction.