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Industrial surface finish method comparison for fine finish measurements

机译:工业表面光洁度方法比较,可进行精细光洁度测量

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Measurement of surface finish in industrial manufacturing has traditionally been done by means of either visual comparison with reference plates or by the use of contact stylus based profilers. There are many challenges associated with contact profilers such as stability during measurement in an industrial environment, damage and wear of the tip, measurement in tight spaces or on curved surfaces and just the limited amount of data obtained by a linear scan of the stylus. Many alternative methods have become available such as white light interferometry, focus based systems, and even laser scatter. This paper will present the result of testing of the commercially available methods with particular emphasis on the fine surface finishes demanded in today's manufacturing, then presents some alternative methods that show strong potential to address some of the challenges mentioned above that are not in wide use today. The analysis will specifically explore some of the physical mechanisms that affect the stylus based measurement, as well as the limitations of many of the optical approaches related to view angle and diffraction limited resolution consequences. The area of confocal imaging will be specifically explored as to how it might be used to obtain more complete data on very fine surface finishes.
机译:传统上,工业制造中的表面光洁度的测量是通过与参考板的视觉比较或使用基于接触笔的轮廓仪进行的。接触轮廓分析仪存在许多挑战,例如在工业环境中进行测量时的稳定性,尖端的损坏和磨损,在狭窄空间或曲面上的测量以及通过笔的线性扫描获得的数据量有限。许多替代方法已经可用,例如白光干涉测量,基于焦点的系统,甚至是激光散射。本文将介绍商用方法的测试结果,特别强调当今制造业所需的精细表面光洁度,然后提出一些替代方法,这些方法显示出解决上述某些挑战的强大潜力,而这些挑战今天并未广泛使用。 。该分析将专门探讨影响基于测针的测量的一些物理机制,以及与视角和衍射受限的分辨率后果相关的许多光学方法的局限性。共焦成像领域将被特别探讨,以确定如何将其用于获得非常精细的表面光洁度的更完整数据。

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