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Use of Morphological Method to Investigate the Influence of Surface Texture on Dimensional Measurement of Additively Manufactured Parts

机译:用形态学方法研究表面纹理对加工件尺寸测量的影响

摘要

The high level of surface roughness of additively manufactured (AM) parts post challenges to the applicability of different dimensional measurement techniques, including tactile, optical and XCT. Tactile measurement is traditionally considered to have the best accuracy and traceability. However, tactile measurement can be significantly affected by the mechanical filtering effect. This work sets out to investigate the influence of the mechanical filtering effect of tactile measurement on AM parts. Both experiential and simulation work are unitised to reveal this effect. Particularly the numerical simulation based on the morphological method allows the single influence factor, i.e., the tip diameter to be investigated. The maximum measurement errors caused by the stylus tip mechanical effect are determined by the convex hull points of the measurement profile, which is equivalent to using an infinitely large stylus tip. The CMM and XCT results of measuring the AM cylinder diameters are compared, along with the application of morphological method to “compensate” the mechanical filtering effect of the stylus tip.
机译:增材制造(AM)零件的高表面粗糙度对各种尺寸的测量技术(包括触觉,光学和XCT)的适用性提出了挑战。传统上,触觉测量被认为具有最佳的准确性和可追溯性。但是,触觉测量会受到机械过滤效果的显着影响。这项工作着手研究触觉测量的机械过滤效果对增材制造零件的影响。经验和模拟工作都被结合在一起以揭示这种效果。特别地,基于形态学方法的数值模拟允许研究单个影响因素,即尖端直径。由测针尖端机械效应引起的最大测量误差由测量轮廓的凸包点确定,这等效于使用无限大的测针尖端。比较了测量AM圆柱直径的CMM和XCT结果,以及使用形态学方法“补偿”笔尖的机械过滤效果的方法。

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