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Investigation of mechanical and energy evolution characteristics for sandstone after high temperature damage under cyclic loading

机译:循环加载后高温损伤后砂岩机械和能量演化特性研究

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During the production of underground engineering, investigating the mechanical behaviors of rock materials after high temperature damage is of great importance for controlling the stability of the underground structure. In this paper, for revealing the deformation and energy evolution laws of rock materials after high temperature damage under cyclic loading, a series of uniaxial compressive and cyclic loading experiments were conducted on sandstone after various high temperature damages, i.e., 200, 300, 400, 500, 600, 700, 800, and 900°C, to study the effect of high temperature on primary wave velocity, microstructure, deformation, strength, energy, etc. It can be observed that the primary wave velocity and microstructure weakened seriously with the development of high temperature damage and the uniaxial compressive strength of samples increases toward the maximum value with a high temperature damage of 300°C and then decreases gradually. The energy proportion index?was established to characterize the influence of high temperature damage and cyclic stress levels on energy evolution laws of samples. With an increase in temperature, compared with input energy, elastic strain energy proportion decreases and dissipated energy proportion rises up, which indicate that the property of samples transforms from elasticity to plasticity. Finally, the variation laws between the burst tendency of the sample and high temperature damage were well described by presenting the average elastic energy index, which provides references for studying failure characteristics of rock materials.
机译:在地下工程生产过程中,在高温损伤后调查岩石材料的机械行为对于控制地下结构的稳定性非常重要。在本文中,为了揭示在循环载荷下高温损伤后岩石材料的变形和能量演化定律,在各种高温损伤后,在砂岩中进行了一系列单轴压缩和循环载荷实验,即200,300,400, 500,600,700,800和900°C,研究高温对初级波速度,微观结构,变形,强度,能量等的影响。它可以观察到主波速度和微观结构严重减弱高温损坏的发展和样品的单轴抗压强度朝向最大值增加300℃,然后逐渐降低。能量比例指数是建立的,以表征高温损伤和循环应力水平对样品的能量演化定律的影响。随着温度的增加,与输入能量相比,弹性应变能量比例降低,能量比例升高,这表明样品的性质从弹性转化为可塑性。最后,通过呈现平均弹性能指数,通过呈现平均弹性能指数良好地描述了样品和高温损伤的突发趋势之间的变异定律,这提供了研究岩石材料的失效特性的参考。

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