Measurements of elastic properties and their dependencies within a damage mechanics workflow

Erik P. Knippel, Qiquan Xiong, Ana Paula Villaquiran Vargas, Jesse C. Hampton
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引用次数: 1

Abstract

Experimental rock mechanics testing provides a controlled and effective method for measuring physical properties, their dependencies, and their evolution due to the addition of localized microcracks. To understand the contributions of microcracks to first order changes in compliance, the behavior of initial undamaged properties of a material should be comprehensively investigated as a function of stress, load path, and load history. We perform a comprehensive study of elastic properties and their dependence on a variety of materials exhibiting nonlinearity, and varying levels of anisotropy in elastic stiffnesses. We programmatically perturb the testing environment of the specimens under triaxial stresses. Elastic moduli are measured within each test, and along multiple discrete loading paths for multistage tests as a function of stress, focusing on a set launch point. Four single stage triaxial tests per rock type are performed to calculate Mohr-Coulomb failure criteria, and ultrasonic velocities are captured during compression for establishing the upper bound of elastic behavior. Shear wave velocity for granite experiences a maximum value at a lower differential stress than maximum volumetric strain. Sandstone displays a similar trend at the highest confining pressure, while these two maxima converge under the lowest confining pressure.

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在损伤力学工作流程中测量弹性特性及其相关性
实验岩石力学测试提供了一种可控且有效的方法来测量物理性质、它们的相关性以及由于局部微裂纹的增加而导致的它们的演变。为了了解微裂纹对一阶柔度变化的贡献,应将材料初始未损伤性能的行为作为应力、载荷路径和载荷历史的函数进行全面研究。我们对弹性特性及其对各种材料的依赖性进行了全面的研究,这些材料表现出非线性和不同程度的弹性刚度各向异性。我们通过程序干扰三轴应力下试样的测试环境。弹性模量在每次测试中进行测量,并沿着多个离散的加载路径进行多级测试,作为应力的函数,重点放在设定的启动点上。每种岩石类型进行四次单阶段三轴试验,以计算莫尔-库仑破坏准则,并在压缩过程中捕捉超声速度,以建立弹性行为的上限。花岗岩的剪切波速在比最大体积应变更低的微分应力下达到最大值。砂岩在最高围压下表现出相似的趋势,而这两个最大值在最低围压下收敛。
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2.40
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