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Study on the effect of the lower limit of cyclic stress on the mechanical properties and acoustic emission of sandstone under cyclic loading and unloading

机译:循环应力下限对循环加载下砂岩机械性能和声学发射的影响

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This study is aimed at exploring the effect of the lower limit of cyclic stress (LLCS) on the loading and unloading failure process of sandstone. First, cyclic loading and unloading experiments were performed on sandstone samples under different stress paths. Furthermore, the variations of mechanical properties and acoustic emission (AE) signals of samples during cyclic loading and unloading were analyzed. The results show that the equivalent residual strain produced by a single loading and unloading with a low LLCS is larger than the residual strain produced by that with a high LLCS. Under cyclic loading and unloading, the loading elastic moduli of samples grow as the number of cycles increases. In the loading failure stage, the loading elastic modulus under a high LLCS is greater than that under a low LLCS. In the 2nd and 3rd stages, the AE counts, main frequency signals and high-amplitude signals generated under loading and unloading with a high LLCS all account for smaller proportions than those generated under loading and unloading with a low LLCS. Low-frequency and high-amplitude signals appear in both the third stage and the loading failure stage under a low LLCS, while they only appear in the loading failure stage under a high LLCS. In the 2nd and 3rd stages, the b value first grows and then decreases under a low LLCS, while it keeps rising under a high LLCS. A high LLCS is conducive to suppressing the axial deformation of sandstone and reducing the amount of damage caused during a single loading and unloading. This study boasts theoretical reference value for the monitoring of coal rock stability and the prevention of dynamic disasters.
机译:本研究旨在探索循环应力(LLC)下限对砂岩装载和卸载失效过程的影响。首先,在不同应力路径下对砂岩样品进行循环加载和卸载实验。此外,分析了循环加载和卸载期间样品的机械性能和声学发射(AE)信号的变化。结果表明,通过单一负载和低LLC卸载产生的等效残留应变大于通过高LLC产生的残余应变。在循环加载和卸载下,随着循环次数的增加,样品的装载弹性模量增长。在负载故障阶段,高LLC下的加载弹性模量大于低LLC下的加载弹性模量。在第2和第3阶段,使用高LLC在加载和卸载下产生的AE计数,主频率信号和高幅度信号,所有帐户都是比在加载和卸载下的低LLC下产生的比例。低频和高幅度信号在低LLC下的第三阶段和负载故障阶段都出现在,而它们仅在高LLC下出现在负载故障阶段。在第2和第3阶段中,B值首先增长,然后在低LLC下减小,而在高LLC下保持上升。高LLC有利于抑制砂岩的轴向变形,降低单个装载和卸载过程中造成的损坏量。本研究拥有理论参考价值,用于监测煤炭稳定性和防止动态灾害。

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