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A numerical study of rock scratch tests using the particle-based numerical manifold method

机译:基于粒子数值流形方法的岩石划痕试验的数值研究

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摘要

A better understanding of the rock-tool interaction is necessary to improve the cutting efficiency. In this paper, we present a numerical study of rock scratching using a newly developed particle-based numerical manifold method (PNMM). The scratching processes with different cutting depths are first simulated, where the failure pattern and cutting force are discussed. The transition of brittle-ductile failure with an increased cutting depth is reproduced. It is validated that when the cutting depth is intermediate, rock scratching presents a transitional mode between ductile and brittle failure. Then, a parametric study is performed by a series of numerical simulations. The effect of cutter operational parameters on the cutting force and energy consumed by the cutter are studied. Three operational parameters of the cutter are considered in this study, including the cutting depth, cutting speed, and cutter rake angle. An estimation of the transitional cutting depth range is given by the result of the mechanical specific energy of the cutter. Besides, some advice is provided to improve the efficiency of rock cutting in engineering practice.
机译:必须更好地了解岩石工具的相互作用,以提高切削效率。在本文中,我们使用新开发的基于粒子的数值流形方法(PNMM)对岩石刮擦进行了数值研究。首先模拟了不同切削深度的刮擦过程,并讨论了破坏模式和切削力。再现了随着切削深度的增加而脆性延展性破坏的过渡。可以证实,当切削深度为中等时,岩石刮擦呈现出韧性和脆性破坏之间的过渡模式。然后,通过一系列数值模拟进行参数研究。研究了刀具的工作参数对切削力和刀具消耗的能量的影响。在这项研究中考虑了刀具的三个操作参数,包括切削深度,切削速度和刀具前角。过渡切削深度范围的估算由刀具的机械比能给出。此外,还提供了一些建议,以提高工程实践中的岩石切割效率。

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