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Evaluating the role of particle distribution and shape in two-body abrasion by statistical simulation

机译:通过统计模拟评估颗粒分布和形状在两体磨损中的作用

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摘要

Previous work suggests that particle shape - specifically, its variation with particle size - is unlikely to be the dominant cause of the particle size effect (PSE) encountered in abrasion. In theory, the statistically similar nature of particle geometry implies that wear rate in two-body abrasion should be independent of particle size when all other conditions are unchanged and boundary effects are negligible. In practice, however, the severity of wear can be influenced substantially by the cumulative effect of relatively small variations of each governing factor. This paper deals with numerous issues related to the shape of abrasive particles and surfaces, with the view of understanding how shape contributes to wear and the manifestation of the PSE. It has been discovered, for example, that among the various solids of revolution used in the past to model the asperities of particles, the most representative possesses a power-law generatrix. Particle shape alone, however, constitutes a modest part in determining the properties of abrasive tools, such as grinding wheels and abrasive coated paper. Consequently, the density and distribution of the particles on the surface must also be given due consideration. To this end a statistical simulation of two-body abrasion has been developed. The effects of varying asperity shape and distribution on wear rate are clearly demonstrated and compared to results obtained from two-body experiments.
机译:先前的工作表明,颗粒形状-特别是其随颗粒尺寸的变化-不太可能是磨损中遇到的颗粒尺寸效应(PSE)的主要原因。从理论上讲,粒子几何学的统计学相似性质意味着,在所有其他条件不变且边界效应可忽略的情况下,两体磨损的磨损率应与粒径无关。然而,实际上,磨损的严重程度会受到每个控制因素相对较小变化的累积影响的影响。本文旨在探讨与磨料颗粒和表面形状有关的许多问题,以了解形状如何导致磨损和PSE的表现。例如,已经发现,在过去用来模拟颗粒的粗糙的各种旋转固体中,最具代表性的是幂律母线。但是,仅颗粒形状在确定研磨工具(例如砂轮和涂布有磨料的纸)的性能中仅占很小的一部分。因此,还必须适当考虑表面上颗粒的密度和分布。为此,已经开发了两体磨损的统计模拟。清楚地证明了粗糙形状和分布的变化对磨损率的影响,并将其与两体实验的结果进行了比较。

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