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Study on Dynamic Behavior and Energy Dissipation of Rock considering Initial Damage Effect

机译:考虑初始损伤效应的岩石动态行为和能量耗散研究

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To explore the influence of initial damage on the dynamic characteristics of rock mass, the Φ 50?mm split Hopkinson pressure bar (SHPB) test system was used, and the uniaxial impact compression tests on yellow sandstone specimens with different damage degrees were conducted, and then the variation law of mechanical properties of rock specimens with the initial damage was determined. The test results show that the dynamic stress-strain curve of rock specimens with initial damage can be roughly divided into compaction stage, elastic deformation stage, crack evolution stage, and strain-softening stage; the higher the initial damage degree of rock mass, the more significant the compaction stage. With the increase of the initial damage degree, the dynamic elastic modulus and peak stress of rock mass decrease gradually in a power number, while the peak strain of rock mass increases exponentially. With the increase of the initial damage degree, both the reflected energy ratio and the dissipated energy ratio decrease linearly, while the transmitted energy ratio increases linearly; the increasing rate of the transmitted energy ratio is greater than the decreasing rate of the reflected energy ratio.
机译:为了探讨初始损伤对岩体动态特性的影响,使用φ50?mm分裂霍普金森压杆(SHPB)测试系统,并进行了不同损伤度的黄色砂岩样本上的单轴冲击压缩试验,然后确定具有初始损伤的岩石标本的机械性能变化规律。测试结果表明,具有初始损伤的岩石标本的动态应力 - 应变曲线可以大致分为压实阶段,弹性变形阶段,裂纹演化阶段和菌株软化阶段;岩体初始损伤程度越高,压实阶段越大。随着初始损伤程度的增加,岩体质量的动态弹性模量和峰值应力在功率数中逐渐降低,而岩体质量的峰值应变呈指数增长。随着初始损伤程度的增加,反射能量比和耗散的能量比均线性降低,而传输的能量比线性增加;透射能比的增加率大于反射能量比的降低率。

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