Volume 47 Issue 10
Oct.  2018
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Zhang Xinting, Kang Lei, An Zhiyong, Wang Ruofan. Improved laser triangulation probe design[J]. Infrared and Laser Engineering, 2018, 47(10): 1018002-1018002(5). doi: 10.3788/IRLA201847.1018002
Citation: Zhang Xinting, Kang Lei, An Zhiyong, Wang Ruofan. Improved laser triangulation probe design[J]. Infrared and Laser Engineering, 2018, 47(10): 1018002-1018002(5). doi: 10.3788/IRLA201847.1018002

Improved laser triangulation probe design

doi: 10.3788/IRLA201847.1018002
  • Received Date: 2018-05-07
  • Rev Recd Date: 2018-06-12
  • Publish Date: 2018-10-25
  • An improved laser triangulation probe was designed based on the traditional direct laser triangulation method. A new single lens design was proposed based on general direct laser triangulation ranging method. The optical path was improved. In optical systems, a beam splitter was used to replace the focusing lens and imaging lens of traditional laser triangular probe, making it coaxial with concentrator lens and photo detector, which made the system structure more compact, and the Scheimpflug condition was deduced to meet the structure. While taking advantage of Zemax optical design software to simulate the optical system, pupil diameter of 4 mm, focal length of 20 mm, total length of 20.5 mm, can achieve miniaturization of measuring system. Together with the appropriate light source and detector, a larger scope of work can be obtained in ensuring high measurement accuracy of the premise, and improving the environmental adaptability of measurement system. It can be widely used in industrial real time online testing and military fields.
  • [1] Sun Changku. Optical Measurement Technology[M]. Tianjin:Tianjin University Press, 2001. (in Chinese)孙长库. 光测量技术[M]. 天津:天津大学出版社, 2001.
    [2] Bostjan Perdan, Drago Bracun, Janez Diaci, et al. Online assessment of power transmission belt geometry by using laser triangulation and profile parameterisation[J]. Int J Adv Manuf Technol, 2010, 49:177-184.
    [3] Joao L Vilaca, Jaime C Fonseca, Antonio M Pinho. Non-contact 3D acquisition system based on stereo vision and laser triangulation[J]. Machine Vision and Applications, 2010, 21(3):341-350.
    [4] Kazuhiko Ishikawa, Hitomi Yamanob, Kiichiro Kagawa, et al. Measurement of thickness of a thin film by means of laser interference at many incident angles[J]. Optics and Lasers in Engineering, 2004, 41:19-29.
    [5] Feng Junyan, Feng Qibo, Kuang Cuifang. High-precision laser triangulation displacement sensor technology[J]. Applied Optics, 2004, 25(3):33-36. (in Chinese)冯俊艳, 冯其波, 匡翠方. 高精度激光三角位移传感器的技术[J]. 应用光学, 2004, 25(3):33-36.
    [6] Li Kuangye. Research on high-precision displacement sensor based on the PSD[D]. Changchun:Changchun University of Science and Technology, 2010. (in Chinese)李旷野. 基于PSD的高精度位移传感器的研究[D]. 长春:长春理工大学, 2010.
    [7] Zhu Shangming, Ge Yunjian. Design and implementation of laser triangulation distance sensors[J]. Automation Instrumentation, 1998, 19(12):10-12. (in Chinese)朱尚明, 葛运建. 激光三角法测距传感器的设计与实现[J]. 自动化仪表, 1998, 19(12):10-12.
    [8] Koulakezian A, Ohannessian R, Hovig Denkikian. Wireless sensor node for real-time thickness measurement and localization of oil spills[C]//Proceedings of the 2008 IEEE/ASME International Conference on Advanced Intelligent Mechatronics, 2008, 7:631-636.
    [9] Pu Jinya. PSD laser triangulation system design[D]. Wuhan:Huazhong University of Science and Technology, 2008. (in Chinese)普晋亚. PSD激光三角测距系统设计[D]. 武汉:华中科技大学,2008.
    [10] Cai Guoyin, Wu Jian, Xue Yong. Oil spill detection from thermal anomaly using aster data in Yinggehai of Hainan, China[C]//Geoscience andRemote Sensing Symposium, 2007, 23-28:898-900.
    [11] Reddyhoff T,Kasolang S,Dwyer-Joyce R, et al. The phase shift of an ultrasonic pulse at an oil layer and determination of film thickness[J]. Proceedings of the Institution of Mechanical Engineers, Part J:Journal of Engineering Tribology, 2005, 219(6):387-400.
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Improved laser triangulation probe design

doi: 10.3788/IRLA201847.1018002
  • 1. School of Optical and Electronic Information,Changchun University of Science and Technology,Changchun 130012,China;
  • 2. CRRC Changchun Railway Vehicles Co.,Ltd,Changchun 130062,China;
  • 3. College of Optoelectronic Engineering,Changchun University of Science and Technology,Changchun 130022,China

Abstract: An improved laser triangulation probe was designed based on the traditional direct laser triangulation method. A new single lens design was proposed based on general direct laser triangulation ranging method. The optical path was improved. In optical systems, a beam splitter was used to replace the focusing lens and imaging lens of traditional laser triangular probe, making it coaxial with concentrator lens and photo detector, which made the system structure more compact, and the Scheimpflug condition was deduced to meet the structure. While taking advantage of Zemax optical design software to simulate the optical system, pupil diameter of 4 mm, focal length of 20 mm, total length of 20.5 mm, can achieve miniaturization of measuring system. Together with the appropriate light source and detector, a larger scope of work can be obtained in ensuring high measurement accuracy of the premise, and improving the environmental adaptability of measurement system. It can be widely used in industrial real time online testing and military fields.

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