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Quantifying of impact breakage of cylindrical rock particles on an impact load

机译:量化圆柱形岩石颗粒对冲击载荷的影响

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The detailed understanding of rock impact breakage represents a key challenge in the development of comminution models. Semi-empirical properties have been used to describe ore competencies, such as the JK breakage index t(10) and Axb values, but are not able to estimate mechanical properties linked with particle fracture. The information derived from particle breakage testing on impact load cells devices, have the potential estimates such mechanical properties. However, the large intrinsic natural variability of rocks and ores composition and shape makes the results difficult to analyze and difficult to compare against each other for particles with similar properties. This study investigates the effect of rock shape on the variability of the impact breakage test conducted on impact load cells. The test methodology was modified to account for shape when testing regular shape samples such as drilled mini-cores, with objective of reducing the intrinsic variability caused by rock shape, using a controlled shaped sample. The promising results open new avenues for establishing relationships between rock composition, texture and mechanical properties. (C) 2017 Elsevier B.V. All rights reserved.
机译:对岩石冲击破裂的详细了解代表了粉碎模型的发展中的关键挑战。半经验性质已经用于描述矿石竞争力,例如JK破损指数T(10)和AXB值,但不能估计与颗粒骨折连接的机械性能。在冲击载荷单元装置上源自粒子破损测试的信息具有潜在的估计这种机械性能。然而,岩石和矿石组成和形状的大型固有自然可变性使得结果难以分析,并且难以将彼此与具有相似性质的颗粒进行比较。本研究研究了岩体形状对冲击载体细胞对冲击破裂试验的可变性的影响。在测试诸如钻孔迷你芯等规则形状样本的定期形状样本时,修改了测试方法,以实现使用受控形状的岩体形状引起的内在变异性。有前途的结果开辟了建立岩石组成,质地和机械性能之间的关系的新途径。 (c)2017 Elsevier B.v.保留所有权利。

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