Autocorrelation analysis of spectral dependency of surface roughness speckle patterns

E. Kayahan, O. Gundogdu, F. Hacizade, H. Nasibov
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引用次数: 7

Abstract

When a surface is illuminated with a highly coherent light such as a laser beam, the speckle pattern of bright and dark regions is observed. It depends on the surface parameters and carries important information about the roughness of the surface. Various methods and techniques are employed for the determination of surface roughness parameters from speckle pattern properties. In this paper, an experimental approach for surface roughness evaluation based on the autocorrelation analysis of the spectral properties of speckle patterns caused by milled metal surfaces is reported. The speckles at three 633, 604 and 543 nm wavelengths of He-Ne laser were analyzed. It was found that autocorrelation analysis is very sensitive to small variations in speckle sizes, caused by spectral properties of speckle patterns such as increasing the wavelength lead to increased speckle sizes. The results are in good agreement with the results obtained from the mechanical stylus profilometer for the milled metal surfaces with roughness values Ra; 0.36µm (low roughness) and 1.98µm (high roughness). The technique reported here has a great potential for precise and non-contact optical measurements of rough surfaces.
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表面粗糙度散斑图光谱依赖性的自相关分析
当一个表面被高度相干的光(如激光束)照射时,就会观察到明暗区域的斑点图案。它取决于表面参数,并携带有关表面粗糙度的重要信息。各种方法和技术被用于从散斑图案特性中确定表面粗糙度参数。本文报道了一种基于金属表面铣削后散斑光谱特性自相关分析的表面粗糙度评价实验方法。分析了He-Ne激光在633、604和543 nm波长下的斑点。发现自相关分析对散斑尺寸的微小变化非常敏感,这是由散斑图案的光谱特性引起的,如增加波长会导致散斑尺寸增大。对粗糙度值为Ra的金属表面进行铣削加工,所得结果与机械触针轮廓仪的结果吻合较好;0.36µm(低粗糙度)和1.98µm(高粗糙度)。本文报道的技术在粗糙表面的精确和非接触光学测量方面具有很大的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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