Preprocessing method for robust topography reconstruction of surfaces of metal additive manufactured parts based on focus variation microscopy

Xin Xu, T. Pahl, H. Serbes, P. Krooss, Thomas Niendorf, Peter Lehmann
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Abstract

When using an areal measuring optical instrument to measure rough surfaces, especially surfaces generated by metal additive manufacturing (e.g. laser and electron beam powder bed fusion), topographical artifacts such as spikes on a reconstructed surface are nearly unavoidable. These artifacts may affect the determination of surface roughness parameters and lead to erroneous surface features. This paper proposes a new preprocessing method to eliminate most artifacts before extracting surface heights of rough surfaces measured by focus variation microscopy. In this method, the axial region where a surface height value is located with the highest probability is estimated, based on datasets of planes parallel to the axial scanning direction. Results regarding height measurements with and without the preprocessing method are compared by measuring a Rubert Microsurf 329 comparator test panel for reference and workpieces produced by metal additive manufacturing.
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基于聚焦变化显微镜的金属添加剂制造部件表面稳健形貌重建预处理方法
使用光学等距测量仪测量粗糙表面,尤其是金属增材制造(如激光和电子束粉末床融合)产生的表面时,几乎不可避免地会出现地形伪影,如重建表面上的尖峰。这些伪影可能会影响表面粗糙度参数的确定,并导致错误的表面特征。本文提出了一种新的预处理方法,可在提取焦距变化显微镜测量的粗糙表面高度之前消除大部分伪影。在这种方法中,根据平行于轴向扫描方向的平面数据集,估算出表面高度值最有可能位于的轴向区域。通过测量 Rubert Microsurf 329 比较器测试面板上的参照物和金属增材制造生产的工件,比较了使用和不使用预处理方法进行高度测量的结果。
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