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不同加载速率下煤岩采动力学响应及破坏机制 被引量:33
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作者 薛东杰 周宏伟 +3 位作者 王子辉 任伟光 张淼 刘亚群 《煤炭学报》 EI CAS CSCD 北大核心 2016年第3期595-602,共8页
研究煤岩在不同加载模式与不同加载速率下采动力学响应及破坏机制对认清煤矿动力灾害本质具有指导意义。基于塔山煤样,先后设计与开展了单轴拉伸与压缩、常规三轴及采动力学试验。获得了不同加载模式下煤样的力学特征参量和变形破坏特... 研究煤岩在不同加载模式与不同加载速率下采动力学响应及破坏机制对认清煤矿动力灾害本质具有指导意义。基于塔山煤样,先后设计与开展了单轴拉伸与压缩、常规三轴及采动力学试验。获得了不同加载模式下煤样的力学特征参量和变形破坏特性。进一步对比分析了常规三轴试验与采动力学试验煤样变形特征的差异。得到煤样破坏前吸收能量密度随着轴向加载速率的关系,揭示了应力偏量是造成试样破坏强度和吸收能量密度提高的原因,是破坏产生的本质原因,但其受控于围压的临界值,及煤样损伤发生具有的时间效应。建立了采动力学条件下考虑加卸载过程中材料损伤的煤岩黏弹性模型屈服准则,包含有效体积应力的影响、应力差的影响、轴向加载速率的影响及围压卸载速率的影响,新的黏弹性模型屈服准则可以很好地解释加卸载速率引起的材料屈服强度变化。 展开更多
关键词 加载速率 采动力学响应 常规三轴试验 能量密度
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Nonlinear multi body dynamic modeling and vibration analysis of a double drum coal shearer 被引量:1
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作者 ZHANG Xiao-li YAO Guo ZHANG Yi-min 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第7期2120-2130,共11页
The double drum coal shearer is widely applied for the underground coal exploration in the mining industry.The vibration and noise control are significant factors for the stability design of the double drum coal shear... The double drum coal shearer is widely applied for the underground coal exploration in the mining industry.The vibration and noise control are significant factors for the stability design of the double drum coal shearer.In this paper,the vibration properties of a double drum coal shearer are firstly investigated.The horizontal,transverse and torsional vibrations of the motor body and the angle displacements of the rockers are taken into account.The walking units and the hydraulic units are modeled by the stiffness-damping systems.The nonlinear equation of motion of the double drum coal shearer is established by applying the Lagrange’s equation.The nonlinear vibration response of the system is calculated by using the Runge Kutta numerical method.The effects of the shearing loads,the equivalent damping and stiffness of the walking units,the inclination angels of the rockers and the equivalent damping and stiffness of the hydraulic units on the vibration properties of the system are discussed. 展开更多
关键词 coal shearer VIBRATION multi body dynamics transient response
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