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首页> 外文期刊>Shock and vibration >Experimental Investigation of Sandstone under Cyclic Loading: Damage Assessment Using Ultrasonic Wave Velocities and Changes in Elastic Modulus
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Experimental Investigation of Sandstone under Cyclic Loading: Damage Assessment Using Ultrasonic Wave Velocities and Changes in Elastic Modulus

机译:循环载荷下砂岩的实验研究:利用超声波速度和弹性模量变化评估损伤

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This laboratory study investigated the damage evolution of sandstone specimens under two types of cyclic loading by monitoring and analyzing changes in the elastic moduli and the ultrasonic velocities during loading. During low-level cyclic loading, the stiffness degradation method was unable to describe the damage accumulations but the ultrasonic velocity measurements clearly reflected the damage development. A crack density parameter is introduced in order to interpret the changes in the tangential modulus and the ultrasonic velocities. The results show the following. (1) Low-level cyclic loading enhanced the anisotropy of the cracks. This results from the compression of intergranular clay minerals and fatigue failure. (2) Irreversible damage accumulations during cyclic loading with an increasing upper stress limit are the consequence of brittle failure in the sandstone’s microstructure.
机译:该实验室研究通过监测和分析加载过程中的弹性模量和超声速度的变化,研究了两种循环加载条件下砂岩标本的损伤演化。在低水平的循环荷载作用下,刚度降级方法无法描述损伤的累积,但是超声速度测量清楚地反映了损伤的发展。引入裂纹密度参数以解释切向模量和超声速度的变化。结果显示如下。 (1)低水平的循环载荷增强了裂纹的各向异性。这是由于晶间粘土矿物的压缩和疲劳破坏所致。 (2)在循环载荷下,不可逆的损伤累积是应力上限的增加,这是砂岩微结构脆性破坏的结果。

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