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Reverse Problem in Surface Texture Analysis—One-Process Profile Modeling on the Basis of Measured Two-Process Profile after Machining or Wear

机译:表面纹理分析中的逆向问题-基于机加工或磨损后测得的两工序轮廓的一工序轮廓建模

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摘要

The method of the base (valley) one-process profile modeling on the basis of the measured two-process profile was developed. The base one-process random profile of the Gaussian ordinate distribution is characterized by the standard deviation of the profile height and the correlation length. The problem of estimation of the correlation length of this one-process profile exists. In the procedure of the correlation length estimation, information about the averaged shape of the autocorrelation functions of many one-process profiles after the same type of machining is required. The correlation length of the base one-process profile can be obtained on the basis of the vertical truncation of the measured two-process profile. The average error of the correlation length estimation was not higher than 7%, while the maximum error was not larger than 14%. This method can be extended to simulate the one-process texture of 3D (areal) surface topography.
机译:提出了基于实测的两工序剖面的基础(谷)一工序剖面建模的方法。高斯坐标分布的基本一过程随机轮廓的特征是轮廓高度和相关长度的标准偏差。存在估计该单过程曲线的相关长度的问题。在相关长度估计的过程中,需要有关同一类型加工后许多单过程轮廓的自相关函数的平均形状的信息。基本的单过程轮廓的相关长度可以基于所测量的两过程轮廓的垂直截断而获得。相关长度估计的平均误差不大于7%,而最大误差不大于14%。该方法可以扩展为模拟3D(区域)表面地形的单过程纹理。

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