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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Assessing the role of particle shape and scale in abrasion using 'sharpness analysis' - Part II: technique evaluation
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Assessing the role of particle shape and scale in abrasion using 'sharpness analysis' - Part II: technique evaluation

机译:使用“清晰度分析”评估颗粒形状和结垢在磨损中的作用-第二部分:技术评估

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摘要

In this paper, the sharpness analysis technique-as developed and described in Part I-is applied to real particles for the express purpose of understanding the role of particle shape and size in abrasion. The shape of particles is measured by shape properties; and these are compared to determine whether the notorious particle size effect is indeed caused by changes of particle shape with scale. The experiments conducted thus far suggest that this is not the case, and that the particle size effect is more likely to be caused by other phenomena; i.e. abrasive clogging, scale-dependent material strengthening, and changes to the spatial distribution of particles and their asperities as a result of the manufacturing process. The particles tested demonstrated no distinct relationship between shape and size. In fact, within the confines of sampling error, it is possible to suggest that the particles exhibited geometrical similarity at different scales. This interesting result explains why wear-rate is independent of particle size above the critical size, but also eliminates particle shape as a direct cause of the particle size effect.
机译:在本文中,将在第一部分中开发和描述的清晰度分析技术应用于真实颗粒,以明确理解颗粒形状和尺寸在磨损中的作用。颗粒的形状是通过形状特性来测量的。并进行比较,以确定臭名昭著的粒径效应是否确实是由于粒径随尺度变化而引起的。到目前为止进行的实验表明情况并非如此,粒径影响更可能是由其他现象引起的。就是说,由于制造过程的原因,磨料堵塞,与比例有关的材料强化以及颗粒的空间分布及其不平整度的变化。测试的颗粒显示出形状和尺寸之间没有明显的关系。实际上,在采样误差的范围内,有可能暗示颗粒在不同尺度上表现出几何相似性。这个有趣的结果解释了为什么磨损率与临界尺寸以上的粒度无关,而且消除了颗粒形状作为粒度效应的直接原因的原因。

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