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Dynamic Compressive Test of Gas-Containing Coal Using a Modified Split Hopkinson Pressure Bar System

机译:使用改进的分裂Hopkinson压力棒系统的含气煤的动态压缩试验

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In deep mine, coal is usually subjected to coupled high gas pressure and static compressive stress. The coal may be also subjected to dynamic loading due to the sudden fracture of hard roof during mining. In our previous study, the behaviour of gas-containing coals with initial gas pressure was investigated subjected to uniaxial static compression. In this study, the dynamic compressive behaviour of gas-containing coals with gas pressure and static axial preloading is investigated using a modified Split Hopkinson Pressure Bar (SHPB) system. The dynamic behaviours of gas-containing coals under SHPB tests are studied by varying initial gas pressure and axial static preloading. The testing results include strain measurements and energy dissipation. In addition, the wave impedance method is used to quantify damage of gas-containing coals under coupled gas-static-dynamic load. It is found that the dynamic compressive strength of gas-containing coal under coupled load decreases with the increasing initial gas pressure. The gas-containing coal with higher gas pressure and axial static preloading is more vulnerable to dynamic loading. The findings can be applied to mining design or support design in deep mining of high-gas-containing coal seam.
机译:在深矿井中,煤通常会耦合高气体压力和静态压缩应力。由于在采矿过程中,煤可能也可能受到突然的硬顶突然骨折的动态载荷。在我们以前的研究中,研究了含有初始气体压力的含气体的煤的行为进行了单轴静态压缩。在该研究中,使用改进的分裂霍普金森压棒(SHPB)系统研究了含气体煤的动态压缩行为和静态轴向预载。通过改变初始气体压力和轴向静态预加载,研究了SHPB测试下的含气体煤的动态行为。测试结果包括应变测量和能量耗散。此外,波阻抗方法用于量化耦合气体静动载荷下的含气体的煤的损伤。发现耦合负载下的含气煤的动态抗压强度随着初始气体压力的增加而降低。含气煤具有较高的气体压力和轴向静态预加载更容易受到动态载荷的伤害。该研究结果可应用于含高气煤层的深部采矿设计或支撑设计。

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