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Multi-faceted prism ultrahigh uniform-speed scanning-based uniform-speed linear light spot optical path system

A multi-faceted prism and optical path system technology, applied in the field of optical path systems, can solve the problems of laser cleaning, large-area and high-speed processing of optical paths, and achieve the effects of protection, dispersed energy distribution, and uniform energy distribution

Active Publication Date: 2015-12-02
SHANGHAI EMPOWER AUTOMATION TECH CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

[0008] In order to overcome the fact that the existing laser quenching, laser cladding and laser cleaning optical paths cannot effectively perform large-area high-speed processing, and taking into account the characteristics of laser quenching, the present invention provides a scanning line spot that can obtain uniform energy distribution over hundreds of millimeters. Technical solutions for large-area laser hardening, laser cladding and laser cleaning:

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  • Multi-faceted prism ultrahigh uniform-speed scanning-based uniform-speed linear light spot optical path system

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Embodiment Construction

[0032] In order to make the objectives, technical solutions, and advantages of the present invention clearer, the embodiments of the present invention will be described in further detail below in conjunction with the accompanying drawings.

[0033] Such as figure 1 As shown in —9, a uniform line spot optical path system based on ultra-high uniform speed scanning of a polygonal prism, all lenses are reflective lenses, and the optical path structure is based on an uncoated mirror, which is an off-axis parabolic collimator 1, Off-axis parabolic mirror 2, oblique polygonal prism 3, oblique cylindrical parabolic mirror 4 and off-axis parabolic cylindrical mirror 5, off-axis parabolic mirror 1, off-axis parabolic cylindrical mirror 2, and oblique polygonal prism 3 have beam centers at On the same plane, the beam transmission direction after focusing by the off-axis parabolic mirror 2 is perpendicular to the central axis of the polygonal prism 3. The beam centers of the oblique cylindric...

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Abstract

The invention provides a multi-faceted prism ultrahigh uniform-speed scanning-based uniform-speed linear light spot optical path system. The system is composed of an off-axis parabolic mirror, an off-axis parabolic cylindrical mirror, an oblique multi-faceted prism, an oblique cylindrical parabolic mirror and an off-axis parabolic cylindrical mirror; the system is suitable for optical fiber output-class lasers with a wide power range and wide-range lasers such as CO2 lasers. With the system adopted, an elongated linear light spot of which the energy distribution is basically uniform can be obtained, the transmission directions of focusing beams being consistent, and the positions of focusing light spots being basically coplanar; the problem of the generation of a softened layer which is caused by light spot superposition in laser quenching, long interval time and extremely short cooling time can be alleviated or eliminated, and hardening strength can be ensured; the length of the obtained linear light spot can be hundreds of millimeters, and the energy distribution of the obtained linear light spot is uniform; and the scanning speed of the multi-faceted prism is ultra high. The system can be applied to high-speed large-area laser quenching, laser cladding and laser cleaning of two-dimensional planes or three-dimensional hook surfaces with focal depth ensured.

Description

Technical field: [0001] The invention relates to an optical path system based on a polygonal prism ultra-high uniform speed scanning for large-range power and large-range lasers, in particular to a uniform line spot optical path system based on a polygonal prism ultra-high uniform speed scanning. Background technique: [0002] In the laser processing industry, laser quenching uses a focused laser beam to quickly heat the surface of steel materials to cause a phase change to form a martensite hardened layer; laser cladding adds cladding materials to the surface of the substrate and uses high energy The high-density laser beam fuses it together with the thin layer on the surface of the substrate, forming a metallurgical bonding additive cladding layer on the surface of the substrate; laser cleaning is an efficient and fast removal of rust and pollutants on the surface of the material. Purify the surface. [0003] The above three laser processes, especially laser quenching and laser ...

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G02B27/09
CPCG02B27/0966G02B27/0972
Inventor 邵华江李思佳李思泉
Owner SHANGHAI EMPOWER AUTOMATION TECH CO LTD