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Dynamic Mechanical Behavior of Dry and Water Saturated Igneous Rock with Acoustic Emission Monitoring

机译:利用声发射监测的干水饱和火成岩动力力学行为

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The uniaxial cyclic loading tests have been conducted to study the mechanical behavior of dry and water saturated igneous rock with acoustic emission (AE) monitoring. The igneous rock samples are dried, naturally immersed, and boiled to get specimens with different water contents for the testing. The mineral compositions and the microstructures of the dry and water saturated igneous rock are also presented. The dry specimens present higher strength, fewer strains, and rapid increase of AE count subjected to the cyclic loading, which reflects the hard and brittle behavior and strong burst proneness of igneous rock. The water saturated specimens have lower peak strength, more accumulated strains, and increase of AE count during the cyclic loading. The damage of the igneous rocks with different water contents has been identified by the Felicity Ratio Analysis. The cyclic loading and unloading increase the dislocation between the mineral aggregates and the water-rock interactions further break the adhesion of the clay minerals, which jointly promote the inner damage of the igneous rock. The results suggest that the groundwater can reduce the burst proneness of the igneous rock but increase the potential support failure of the surrounding rock in igneous invading area. In addition, the results inspire the fact that the water injection method is feasible for softening the igneous rock and for preventing the dynamic disasters within the roadways and working faces located in the igneous intrusion area.
机译:已经进行了单轴循环载荷试验,以通过声发射(AE)监测研究干燥和含水饱和火成岩的力学行为。将火成岩样品干燥,自然浸泡并煮沸,以得到具有不同含水量的样品进行测试。还介绍了干和水饱和火成岩的矿物成分和微观结构。干试样在循环载荷下表现出更高的强度,更少的应变以及AE数量的快速增加,这反映了火成岩的坚硬和脆性以及强烈的爆裂倾向。含水饱和的样品在循环加载过程中具有较低的峰值强度,更大的累积应变以及AE数量增加。通过Felicity Ratio分析确定了不同含水量的火成岩的破坏。周期性的装卸增加了矿物聚集体之间的位错,水-岩相互作用进一步破坏了黏土矿物的附着力,共同促进了火成岩的内部破坏。结果表明,地下水可以降低火成岩的爆发倾向,但增加火成侵入区围岩的潜在支撑破坏。另外,该结果激发了以下事实:注水方法对于软化火成岩以及防止位于火成侵入区的巷道和工作面内的动态灾害是可行的。

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