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Establishment of Coal-rock Constitutive Models for Numerical Simulation of Coal-rock Cutting by Conical Picks

机译:锥形煤层煤岩煤岩构成模型的建立

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One of the key points in numerical simulation of coal-rock cutting by conical picks is to select a proper coal-rock constitutive model. In order to find a reasonable coal-rock constitutive model, a uniaxial compression test was conducted to obtain the constitutive model. The several stages for linear elastic deformation and creep, plastic yielding, hardening, and finally brittle cracking of the constitutive units were studied, and the coal-rock constitutive model was established. As a result, the coal-rock cutting by one conical pick or two conical picks was simulated and the results were compared with coal-rock cutting experiment on a Coal-rock Cutting Machine. According to the simulation and experimental results, it is believed that the numerical simulation can reveal coal-rock crushing process. And the total error rate of coal-rock cutting by one conical pick between the simulation and experiment is 8.5%. The maximum deviation of coal-rock cutting by two conical picks between the simulation and experiment is 9.8%. All simulation values are within a reasonable range. The comparison indicates that the coal-rock constitutive model should better be defined considering the coal-rock crushing process by conical picks.
机译:锥形镐的煤岩切割数值模拟中的一个关键点是选择适当的煤岩本构模型。为了找到合理的煤岩本构型模型,进行单轴压缩试验以获得本构模型。研究了线性弹性变形和蠕变,塑料产量,硬化和最终脆性裂缝的几个阶段,并建立了煤岩本构模型。结果,模拟了一个锥形镐或两个锥形挑选的煤岩切割,并将结果与​​煤凿切割机上的煤岩切割实验进行了比较。根据仿真和实验结果,据信数值模拟可以揭示煤矸石破碎过程。仿真和实验之间的一个锥形挑选的煤岩切割的总误差率为8.5%。煤岩切割在模拟和实验之间两根锥形选择的最大偏差为9.8%。所有模拟值都在合理的范围内。比较表明,应更好地定义煤岩本构模型通过锥形挑选煤岩破碎过程。

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