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STUDY ON TEST METHOD AND FORMATION MECHANISM OF CLASS Ⅱ ROCK BEHAVIOR

机译:Ⅱ类岩石行为试验方法及形成机制研究

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Class Ⅱ curve is the manifestation of rock sample' unstable failure, which is important for the prediction of geotechnical engineering calamities such as rock burst etc.. In this paper, several typical sedimentary rocks' class Ⅱ curves are obtained by combined loading control mode of axial-displacement and circumferential-displacement on MTS test system. The formation mechanism of class Ⅱ curve is analyzed based on test results. The occurrence of class Ⅱ curve needs two conditions. The first one is appropriate loading mode. The circumferential displacement should be used as the loading control variable in sample failure process. The second condition is that the rock presents brittleness property and can amass some elastic energy. Only when the variable with maximum change rate is used as the loading control parameter in different stages of the whole stress-stain curve, the class Ⅱ curve may be obtained. For the post-peak phase of class II curve, the elastic energy amassed in the rock can cause the sample collapse, when the circumferential displacement increases rapidly without loading. In the meantime, if the loading rate of circumferential displacement is less than the change rate caused by its broken down, the MTS will unload. At the same time, the sample failure caused by elastic energy released makes the circumferential strain increasing and the axial strain reducing. Rock samples with the same mechanical properties are characterized as Class Ⅰ or Ⅱ, which are controlled by different loading control mode.
机译:Ⅱ类曲线是岩石样品的表现不稳定故障,这对于预测岩土工程灾难等岩石爆裂等的重要性是重要的。在本文中,通过组合加载控制模式获得了几种典型的沉积岩Ⅱ类曲线MTS测试系统轴向排量和周向位移。基于测试结果分析了Ⅱ类曲线的形成机制。 Ⅱ类曲线的发生需要两个条件。第一个是适当的装载模式。圆周位移应用作样品故障过程中的加载控制变量。第二种条件是岩石呈现出脆性性能,可以使一些弹性能量充满。只有当当使用最大变化率的变量用作整个应力曲线的不同阶段时,才能获得Ⅱ类曲线。对于II类曲线的后峰值相,当圆周位移在没有加载时迅速增加时,岩石中的弹性能量会导致样品塌陷。与此同时,如果圆周位移的装载速率小于其破碎引起的变化率,则MTS将卸载。同时,由弹性能量引起的样品失效释放使得周向应变增加和轴向应变减少。具有相同机械性能的岩石样品的特征在于Ⅰ或Ⅱ类,其由不同的负载控制模式控制。

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