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Mechanical Behavior and Damage Evolution for Granite Subjected to Cyclic Loading

机译:循环荷载作用下花岗岩的力学行为和损伤演化

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This paper focuses on the mechanical behavior and damage evolution of Huashan granite subjected to cyclic loading. Four levels of confining pressure (0, 15, 25, and 35 MPa) were applied during cyclic axial loading by using a Rock Test System (MTS815) along with an acoustic emission (AE) monitoring device. Experimental results indicate that the number of AE activities is higher under cyclic triaxial loading compared to that under cyclic uniaxial loading. The measured stress-strain curves of both uniaxial and triaxial tests under cyclic loading are concave-up, but the degree of concavity is mild for the latter. As the cycle number rises, elastic modulus of the granite sample under different confining pressures increases. The slope of the peak strength versus confining pressure plot for the cyclic loading is larger than that for the monotonic loading. Besides, it is found that the dissipated energy increases with the increase of cyclic stress, but it hardly increases in proportion with the confining pressure. The damage parameters defined in terms of the plastic strain can be extended for the whole cyclic loading process, and they agree well with the energy-based damage parameters.
机译:本文重点研究了循环荷载作用下华山花岗岩的力学行为和损伤演化。通过使用岩石测试系统(MTS815)和声发射(AE)监测装置,在循环轴向载荷过程中施加了四个级别的围压(0、15、25和35 MPa)。实验结果表明,在循环三轴载荷下,AE活性的数量高于在循环单轴载荷下的AE活性。在循环载荷下单轴和三轴试验的实测应力-应变曲线是凹入向上的,但后者的凹度较小。随着循环次数的增加,花岗岩样品在不同围压下的弹性模量增加。循环荷载的峰值强度与围压曲线的斜率大于单调荷载的斜率。此外,发现耗散能量随着循环应力的增加而增加,但几乎不随围压的增加而增加。可以将根据塑性应变定义的损伤参数扩展到整个循环加载过程,并且它们与基于能量的损伤参数非常吻合。

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