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A new technique for measuring particle angularity using cone fit analysis

机译:锥度拟合分析法测量颗粒角度的新技术

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The classical abrasion model, proposed by Rabinowicz, is founded on the premise that abrasive surfaces are composed of protrusions that are approximately conical. This premise is supported by Kruschov's experiments which show that the wear resistance of pure metals in two body abrasion is linearly related to hardness. This leads to an important question do most abrasive types exhibit conical behaviour or is it coincidental that the abrasives used by Kruschov conformed to the idealised model? To answer this question, a new particle characterisation technique has been developed. By fitting cones to projected particle profiles at different penetration depths, it is possible to judge how closely the protrusions resemble cones. This technique is also useful for assessing the directional properties of particles and characterising the angularity of particle samples in relation to wear rate. The technique has been called cone fit analysis (CFA) its development and application are discussed in this paper, together with an experimental assessment of some common types of abrasive particles.
机译:Rabinowicz提出的经典磨耗模型是在以下前提下建立的:磨料表面由近似圆锥形的突起组成。克鲁斯霍夫(Kruschov)的实验证明了这一前提,该实验表明,纯金属在两次磨损中的耐磨性与硬度成线性关系。这引起了一个重要的问题,大多数磨料类型是否表现出圆锥形的行为,或者Kruschov使用的磨料符合理想模型是巧合吗?为了回答这个问题,已经开发了一种新的颗粒表征技术。通过在不同的穿透深度将圆锥体装配到投影的粒子轮廓上,可以判断突起与圆锥体的紧密程度。该技术还可用于评估颗粒的方向性以及表征与磨损率有关的颗粒样品的角度。该技术被称为圆锥拟合分析(CFA),在本文中讨论了其开发和应用,以及对一些常见类型的磨料颗粒的实验评估。

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