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Scale-invariant analysis of wear particle surface morphology I: theoretical background, computer implementation and technique testing

机译:磨损颗粒表面形态的尺度不变分析I:理论背景,计算机实现和技术测试

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摘要

Reliable numerical characterization of wear particle surface morphology is an important and still unresolved engineering problem. Since the shape and surface topography of wear particles often exhibits a fractal nature, fractal methods are frequently employed in their characterization. However, the fractal methods used in the particle analysis ignore the fundamental property that fractal objects can be described by a small set of mathematical rules. Finding those rules that describe a particular fractal image is a difficult problem and no general solution exists to date. In this paper, a new method for the characterization of wear particle morphology is proposed and described. The method is based on a partitioned iterated function system (PIFS) which is a collection of contractive affine transformations. Each affine transformation converts one part of a wear particle image onto another part of the same image. PIFSs were constructed for both computer-generated and scanning electron microscope images of wear particles. Results obtained in this study clearly demonstrate that the morphology of wear particles can be effectively characterized by the PIFS method.
机译:磨损颗粒表面形态的可靠数值表征是一个重要且仍未解决的工程问题。由于磨损颗粒的形状和表面形貌通常表现出分形性质,因此在表征时经常采用分形方法。但是,粒子分析中使用的分形方法忽略了基本属性,即分形对象可以通过一小组数学规则来描述。寻找描述特定分形图像的规则是一个难题,并且迄今为止还没有通用的解决方案。本文提出并描述了一种表征磨损颗粒形态的新方法。该方法基于分区迭代功能系统(PIFS),该系统是收缩仿射变换的集合。每个仿射变换都会将磨损粒子图像的一部分转换为同一图像的另一部分。 PIFS用于磨损颗粒的计算机生成和扫描电子显微镜图像。这项研究获得的结果清楚地表明,PIFS方法可以有效地表征磨损颗粒的形态。

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