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首页> 外文期刊>Bulletin of engineering geology and the environment >Experimental study on dynamic fatigue properties of dolomite samples under triaxial multilevel cyclic loading
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Experimental study on dynamic fatigue properties of dolomite samples under triaxial multilevel cyclic loading

机译:三轴多型循环载荷下白云岩样品动态疲劳性能的试验研究

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摘要

In an earthquake, the initiation, movement, and deposit characteristics of a rockslide are closely related to the dynamic responses of rock masses, which constitute slope materials. In this study, considering time-varying amplitudes of earthquake wave, dolomite samples collected from the source area of Donghekou rockslide, triggered by the 2008 Wenchuan earthquake, were tested under triaxial multilevel cyclic loading to investigate the dynamic fatigue properties. For three samples considered herein, cyclic loadings reduced the fatigue strength by 33.1%, 29.8%, and 39.9% in comparison with static compressive strength. Based on the hysteresis loops of the axial stress-strain curve, cumulative residual strain, dynamic elastic modulus, dynamic damping ratio, and damping coefficient were obtained, and their response to increasing number of cycles or stress amplitude revealed a significant three-phase evolution process for the fatigue behavior of dolomite subjected to multilevel cyclic loading. At each level of cyclic loading, the cracks and pores generated in the prior level of loading were closed, which resulted in the recovery of the stiffness of the rock sample in the initial period, thereby causing the dynamic damping to initially decrease and then increase. In the last phase before failure, a sharp increase was observed in the cumulative residual strain, whereas a significant decrease was observed in the dynamic elastic modulus, indicating severe unrecoverable damage in rock samples. Compared with the fatigue failure mode under static loading, cyclic loading resulted in an extremely rough shear surface, with shearing powders in the shear zone and local crushing at the two ends of the shearing surface. The generation of shear surfaces was significantly influenced by the development of pre-existing quartz veins in rock samples.
机译:在地震中,岩石下的启动,运动和沉积特性与岩体的动态反应密切相关,构成斜坡材料。在这项研究中,考虑到地震波的时变幅度,由2008年汶川地震引发的东海口岩石岩石灯水源区收集的白云岩样品在三轴多级循环载荷下进行了测试,研究了动态疲劳性能。对于本文认为的三个样品,与静态抗压强度相比,循环载体将疲劳强度降低33.1%,29.8%和39.9%。基于轴向应力 - 应变曲线的滞后环,获得累积的残留应变,动态弹性模量,动态阻尼比和阻尼系数,并且它们对越来越多的循环或应力幅度的响应显示了显着的三相进化过程用于多粒子循环载荷的白云石的疲劳行为。在每种级别的循环加载中,闭合在载荷级别的裂缝和孔中,导致初始时段中岩石样品的刚度回收,从而使动态阻尼最初减小然后增加。在失败前的最后一阶段中,在累积的残留菌株中观察到急剧增加,而在动态弹性模量中观察到显着降低,表明岩石样品中的严重不可恢复损伤。与静电负载下的疲劳失效模式相比,循环加载导致极粗糙的剪切表面,剪切区中的剪切粉末和局部碎在剪切表面的两端。剪切表面的产生受岩石样本中的预先存在的石英静脉的发展受到显着影响。

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