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How to select the most relevant 3D roughness parameters of a surface

机译:如何选择曲面最相关的3D粗糙度参数

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摘要

In order to conduct a comprehensive roughness analysis, around sixty 3D roughness parameters are created to describe most of the surface morphology with regard to specific functions, properties or applications. In this paper, a multiscale surface topography decomposition method is proposed with application to stainless steel (AISI 304), which is processed by rolling at different fabrication stages and by electrical discharge tool machining. Fifty-six 3Droughness parameters defined in ISO, EUR, and ASME standards are calculated for the measured surfaces. Then, expert software 'MesRug' is employed to perform statistical analysis on acquired data in order to find the most relevant parameters characterizing the effect of both processes (rolling and machining), and to determine the most appropriate scale of analysis. For the rolling process: The parameter Vmc (the Core Material Volume-defined as volume of material comprising the texture between heights corresponding to the material ratio values of p=10% and q=80%) computed at the scale of 3 mm is the most relevant parameter to characterize the cold rolling process. For the EDM Process, the best roughness parameter is SPD that represents the number of peaks per unit area after segmentation of a surface into motifs computed at the scale of 8 mm. SCANNING 9999:1-11, 2013. (c) Wiley Periodicals, Inc.
机译:为了进行全面的粗糙度分析,创建了约六十个3D粗糙度参数,以描述有关特定功能,特性或应用的大多数表面形态。本文提出了一种多尺度的表面形貌分解方法,并将其应用于不锈钢(AISI 304),该方法通过在不同的制造阶段进行轧制并通过放电工具加工来进行处理。根据测量的表面计算出ISO,EUR和ASME标准中定义的56个3Doughness参数。然后,使用专家软件“ MesRug”对获取的数据进行统计分析,以便找到表征两个过程(轧制和机加工)效果的最相关参数,并确定最合适的分析规模。对于轧制过程:以3毫米的比例计算得出的参数Vmc(核心材料体积定义为包括在高度之间的纹理的材料体积,该纹理对应于p = 10%和q = 80%的材料比率值)是最相关的参数来表征冷轧过程。对于EDM工艺,最佳粗糙度参数是SPD,它表示将表面分割为8 mm比例的图案后,每单位面积的峰数。 2013年扫描9999:1-11。(c)Wiley Periodicals,Inc.

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