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Experimental investigation of surface energy and subcritical crack growth in calcite

机译:方解石表面能和亚临界裂纹扩展的实验研究

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Subcritical cracking behavior and surface energies are important factors in geological processes, as they control time-dependent brittle processes and the long-term stability of rocks. In this paper, we present experimental data on subcritical cracking in single calcite crystals exposed to glycol-water mixtures with varying water content. We find upper bounds for the surface energy of calcite that decrease with increasing water concentration and that are systematically lower than values obtained from molecular dynamics simulations. The relation of surface energy to water concentration can explain water weakening in chalks. The rate of subcritical crack growth in calcite is well described by a reaction rate model. The effect of increasing water on crack velocity is to lower the threshold energy release rate required for crack propagation. The slope of the crack velocity curve remains unaffected, something which strongly suggests that the mechanism for subcritical cracking in calcite does not depend on the water concentration.
机译:亚临界开裂行为和表面能是地质过程中的重要因素,因为它们控制着随时间变化的脆性过程和岩石的长期稳定性。在本文中,我们提供了暴露于不同水含量的乙二醇-水混合物中的方解石晶体中亚临界裂纹的实验数据。我们发现方解石表面能的上限随水浓度的增加而降低,并且系统地低于从分子动力学模拟获得的值。表面能与水浓度的关系可以解释白垩中水的减弱。方解石中亚临界裂纹的生长速率可以通过反应速率模型很好地描述。增加水对裂纹速度的影响是降低裂纹扩展所需的阈值能量释放速率。裂纹速度曲线的斜率不受影响,这强烈表明方解石中亚临界裂纹的机理与水浓度无关。

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