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Surface topography characterization of automotive cylinder liner surfaces using fractal methods

机译:用分形方法表征汽车缸套表面的表面形貌

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This paper explores the use of fractal approaches for the possible characterization of automotive cylinder bore surface topography by employing methods such as differential box counting method, power spectral method and structure function method. Three stage plateau honing experiments were conducted to manufacture sixteen cylinder liner surfaces with different surface topographies, for the study. The three fractal methods are applied on the image data obtained using a computer vision system and 3-D profile data obtained using vertical scanning white light interferometer from the cylinder liner surfaces. The computed fractal parameters (fractal dimension and topothesy) are compared and correlated with the measured 3-D Abbott-Firestone curve parameters (S_k, S_(pk), S_(vk), S_(r1) and S_(r2)) that are currently used for the surface topography characterization cylinder liner surfaces. The analyses of the results indicated that the fractal dimension (D) computed using the vision data as well as 3-D profile data by employing three different fractal methods consistantly showed a negative correlation with the functional surface topographical parameters that represents roughness at peak (S_(pk)),core (S_k) and valley (S_(vk)) regions and positive correlation with the upper bearing area (S_(r1)) and lower bearing area (S_(r2)) of the automotive of cylinder bore surface.
机译:本文探讨了使用分形方法通过微分盒计数法,功率谱法和结构函数法等方法表征汽车缸孔表面形貌的方法。为了进行研究,进行了三个阶段的高原珩磨实验,以制造具有不同表面形貌的十六个气缸套表面。将三种分形方法应用于使用计算机视觉系统获得的图像数据和使用垂直扫描白光干涉仪从气缸套表面获得的3-D轮廓数据。比较计算的分形参数(分形维数和全粘性),并将其与测量的3-D Abbott-Firestone曲线参数(S_k,S_(pk),S_(vk),S_(r1)和S_(r2))相关联。目前用于表面形貌表征的气缸套表面。结果分析表明,使用视觉数据以及3-D轮廓数据通过三种不同的分形方法计算出的分形维数(D)始终与代表表面粗糙度的功能表面形貌参数呈负相关(S_ (pk)),核心(S_k)和谷底(S_(vk))区域与汽缸孔表面汽车的上轴承区域(S_(r1))和下轴承区域(S_(r2))正相关。

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