一种镭射支架固定装置

By introducing X-axis and Y-axis adjustment mechanisms and angle sensors into the laser bracket fixing device, and combining them with a PLC control system, the laser angle is automatically adjusted, solving the problem of inconvenient laser angle adjustment in the existing technology and realizing the convenience of real-time adjustment.

CN224509174UActive Publication Date: 2026-07-17

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Filing Date
2025-08-04
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

The existing laser bracket fixing device is difficult to adjust in real time during equipment operation, which makes it inconvenient to adjust the laser angle.

Method used

The X-axis and Y-axis adjustment mechanisms are combined with an angle sensor, and automatic angle adjustment is achieved through a PLC control system. The laser angle is automatically adjusted to track the feedback mirror by using a worm gear structure and servo motor drive.

Benefits of technology

It enables automatic real-time adjustment of the laser angle, improving the convenience of laser adjustment and avoiding the hassle of stopping the machine for adjustment.

✦ Generated by Eureka AI based on patent content.

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Abstract

本实用新型公开了一种镭射支架固定装置,包括底座,底座上设置有X轴向调节机构,X轴向调节机构上设置有Y轴向调节机构,Y轴向调节机构上活动连接有镭射器,镭射器的一侧设置有反馈镜,反馈镜设置在车床的三维运动机构上,反馈镜用于接收镭射器发出的镭射光,Y轴向调节机构上设置有角度传感器,X轴向调节机构、Y轴向调节机构与角度传感器电性连接在同一个PLC控制系统上,通过X轴向调节机构、Y轴向调节机构与角度传感器的设置,使得角度传感器能够对镭射光线的角度进行检测,并根据光线角度情况触发X轴向调节机构与Y轴向调节机构自动工作,有效避免了现有技术中调节不便且需要停机进行实时调整的问题,进一步提高了镭射器调节的便利性。
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Claims

1. A laser support fixing device comprising a base (1), characterized in that: The base (1) is provided with an X-axis adjustment mechanism (2), the X-axis adjustment mechanism (2) is provided with a Y-axis adjustment mechanism (3), the Y-axis adjustment mechanism (3) is movably connected with a laser (5), a feedback mirror (6) is provided on one side of the laser (5), the feedback mirror (6) is provided on the three-dimensional motion mechanism of the lathe, and the feedback mirror (6) is used to receive the laser light emitted by the laser (5). The Y-axis adjustment mechanism (3) is provided with an angle sensor (7), and the X-axis adjustment mechanism (2), the Y-axis adjustment mechanism (3) and the angle sensor (7) are electrically connected to the same PLC control system.

2. The laser support fixture of claim 1, wherein: The X-axis adjustment mechanism (2) includes a worm gear (201) mounted on a base (1). One end of the worm gear (201) is connected to a first servo motor (202). A worm wheel (203) meshes on the worm gear (201). The worm wheel (203) is rotatably connected to the base (1) and parallel to the base (1). The axis of the worm wheel (203) is connected to the Y-axis adjustment mechanism (3).

3. The laser support fixture of claim 2, wherein: The X-axis adjustment mechanism (2) also includes a protective shell (204), a first servo motor (202) is installed on the outer wall of the protective shell (204), and the worm gear (203) and the worm (201) are both inside the protective shell (204).

4. The laser support fixture of claim 1, wherein: The Y-axis adjustment mechanism (3) includes a base plate (301) coaxially connected to the worm gear (203). One end of the base plate (301) is rotatably connected to a device plate (302). The laser (5) is set on the device plate (302). Both ends of the base plate (301) are provided with uprights (303). The two uprights (303) are rotatably connected to the same threaded rod (304). One end of the threaded rod (304) is connected to the output end of a second servo motor (305). The second servo motor (305) is connected to one of the uprights (303). A moving block (306) is threadedly connected to the threaded rod (304). A connecting rod (307) is rotatably connected to the moving block (306). The other end of the connecting rod (307) is rotatably connected to the device plate (302).

5. The laser support fixture of claim 4, wherein: The bottom of the movable block (306) is provided with a connecting block (308), and a limiting groove (309) is provided on the device plate (302). The direction of the limiting groove (309) is the same as the direction of the threaded rod (304), and the connecting block (308) slides and adapts to the limiting groove (309).

6. The laser support fixture of claim 4, wherein: Two connecting plates (310) are symmetrically arranged at one end of the base plate (301). One end of the connecting device plate (302) is hinged to the connecting plate (310). The height of the hinge point between the connecting plate (310) and the device plate (302) is greater than the height of the upright (303).

7. The laser support fixture of any of claims 1-6, wherein: The Y-axis adjustment mechanism (3) is provided with a clamping mechanism (4), and the laser (5) is mounted on the Y-axis adjustment mechanism (3) through the clamping mechanism (4).