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Multi-dimensional Assessment of Precision Machined Surface Texture Based on Laser Speckle Pattern Analysis

机译:基于激光散斑图案分析的精密加工表面纹理的多维评估

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Surface texture of precision machined surfaces plays an important role in providing various functions to product surfaces. This paper presents a surface texture assessment method based on a laser speckle pattern analysis. Considered as simple light scattering phenomenon, laser speckle intensity can represent surface roughness. On the other hand, considered as diffraction phenomenon, the period of anisotropic pattern on a laser speckle is estimated to be inversely proportional to the period of micro structure. The proposed method evaluates multiple properties of surface texture from a laser speckle pattern, such as roughness, period, and degree of similarity in periodic micro surface structures. By investigating experimentally the relation between surface texture and laser speckle pattern of machined surfaces, several characteristic parameters of laser speckle, such as the mean intensity, the autocorrelation length of intensity distribution, and the degree of similarity between adjacent speckle patterns are proposed for evaluating surface texture properties. In addition, the anisotropy of micro surface structure is assessed by using the proposed parameters of laser speckle pattern.
机译:精密加工表面的表面纹理在为产品表面提供各种功能方面起着重要作用。本文提出了一种基于激光散斑图案分析的表面纹理评估方法。被视为简单的光散射现象,激光散斑强度可以代表表面粗糙度。另一方面,考虑到衍射现象,估计激光散斑上的各向异性图案的周期与微结构的周期成反比。所提出的方法从激光散斑图案评估表面纹理的多个属性,例如粗糙度,周期和周期性微表面结构中的相似度。通过实验研究表面纹理与加工表面的激光斑点图案之间的关系,提出了激光斑点的几个特征参数,例如平均强度,强度分布的自相关长度以及相邻斑点图案之间的相似度,以评估表面。纹理属性。此外,通过使用建议的激光散斑图案参数可以评估微表面结构的各向异性。

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