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Investigation of the influence mechanism of rock damage on rock fragmentation and cutting performance by the discrete element method

机译:离散元法研究岩石破坏对岩石破碎和切削性能的影响机理

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摘要

Rock damage is one of the key factors in the design and model choice of mining machinery. In this paper, the influence of rock damage on rock fragmentation and cutting performance was studied using PFC2D. In PFC2D software, it is feasible to get rock models with different damage factors by reducing the effective modulus, tensile and shear strength of bond by using the proportional factors. A linear relationship was obtained between the proportion factor and damage factor. Furthermore, numerical simulations of rock cutting with different damage factors were carried out. The results show that with the increase of damage factor, the rock cutting failure mode changes from tensile failure to brittle failure, accompanied by the propagation of macro cracks, the formation of large debris and a notable decrease in the peak cutting force. The mean cutting force is negatively correlated with the damage factor. Besides this, the instability of cutting force was evaluated by the fluctuation index and the pulse number of unit displacement. It was found that the cutting force was quite stable when the damage factor was 0.3, which improves the reliability of cutting machines. Finally, the cutting energy consumption of rock cutting with different damage factors was analysed. The results reveal that an increase of damage factor can raise the rock cutting efficiency. The aforementioned findings play a significant role in the development of assisted rock-breaking technologies and the design of cutting head layout of mining machinery.
机译:岩石损伤是采矿机械设计和选型的关键因素之一。本文利用PFC 2D 研究了岩石损伤对岩石破碎和切削性能的影响。在PFC 2D 软件中,通过使用比例因子降低粘结的有效模量,拉伸强度和剪切强度,可以得到具有不同破坏因子的岩石模型。在比例因子和损伤因子之间获得线性关系。此外,对不同破坏因素的岩石切割进行了数值模拟。结果表明,随着破坏因子的增加,岩石切割破坏模式从拉伸破坏变为脆性破坏,伴随着宏观裂纹的扩展,大碎片的形成以及最大切削力的降低。平均切削力与损伤系数负相关。除此之外,还通过波动指数和单位位移的脉冲数来评估切削力的不稳定性。发现当损伤因子为0.3时切削力相当稳定,这提高了切削机的可靠性。最后,分析了不同破坏因子的岩石切割的切割能耗。结果表明,增加损伤因子可以提高切石效率。上述发现在辅助破碎技术的开发和采矿机械的切割头布局设计中起着重要作用。

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