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Development of a laser-scattering-based probe for on-line measurement of surface roughness

机译:基于激光散射的探头的在线粗糙度测量

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摘要

The design and properties of an optical probe for on-line measurement of surface roughness are discussed. Based on light scattering, a probe that consists of a laser diode, a measuring lens, and a linear photodiode array was designed to detect surface roughness, in which the light scattered from a test surface at a relatively large scattering angle φ (=28°) can be collected to enhance measuring range and repeatability. A coaxial design that incorporates a dual-laser probe and compressed air makes the proposed system insensitive to the position of the test surface and to surface conditions such as the presence of debris, vibration, and lubricants that result from machining. The results from measurements of several sets of specimens have demonstrated the feasibility of measuring surface roughness by using light scattering. On-line measurement on a diamond-turning lathe has shown that the proposed technique is stable and compact enough to be applicable to on-line measurement of surface roughness of an engineering surface.
机译:讨论了用于在线测量表面粗糙度的光学探头的设计和性能。基于光散射,设计了由激光二极管,测量透镜和线性光电二极管阵列组成的探头,以检测表面粗糙度,其中从测试表面以相对较大的散射角φ(= 28° )可以收集以增强测量范围和可重复性。同轴设计结合了双激光探头和压缩空气,使所提出的系统对测试表面的位置以及表面条件(例如因加工而产生的碎屑,振动和润滑剂)不敏感。几组样品的测量结果证明了通过使用光散射测量表面粗糙度的可行性。金刚石车床的在线测量表明,所提出的技术稳定,紧凑,足以应用于工程表面的表面粗糙度的在线测量。

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    《Applied optics》 |2003年第7期|共7页
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  • 正文语种 eng
  • 中图分类 光学;
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