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Developments in incremental rock breakage testing methodologies and modelling

机译:增量岩石破损测试方法和建模的发展

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摘要

In most standard comminution tests, particles are broken in relatively high energy single impact events. However many of the breakage events inside industrial mills are due to relatively low energy collisions, accumulating internal damage resulting in body or surface breakage of particles. Incremental breakage, as it is known, occurs across a wide range of equipment and milling operations. The authors have investigated the probability of breakage during these repetitive impacts. A standardised procedure has been developed for incremental breakage testing where unbroken particles are selected for re-breakage after each breakage event Breakage probability is then calculated from the relative mass of broken particles. The test results show that incremental breakage occurs under repetitive impacts and the JKRBT is a suitable device for incremental testing. The Vogel and Peukert method, for multiple impacts has been modified to more accurately account for size dependency. The influence of particle shape, on the minimum energy of comminution, or threshold energy, E-min, and the applicability of the proposed approach to model the breakage probabilities are discussed. (C) 2016 Elsevier B.V. All rights reserved.
机译:在大多数标准粉碎测试中,粒子在相对高的能量单次冲击事件中被打破。然而,工业厂房内的许多破损事件是由于相对较低的能量碰撞,累积内部损伤导致的内部损伤或颗粒的表面破裂。增量破损,因为它已知,横跨各种设备和铣削操作发生。作者已经调查了这些重复影响期间破损的概率。已经开发了标准化程序,用于增量破损测试,其中选择未破坏的粒子以在每个断裂事件破裂概率之后从破碎颗粒的相对质量计算。测试结果表明,在重复的影响下发生增量破损,JKRBT是用于增量测试的合适装置。 Vogel和Peukert方法已被修改为更准确地依赖于大小依赖性。讨论了粒子形状对粉碎的最小能量,e-min,e-min的影响,以及所提出的模拟破坏概率的方法的适用性。 (c)2016年Elsevier B.v.保留所有权利。

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