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Experimental Study on Mixed Mode Fracture Behavior of Sandstone under Water–Rock Interactions

机译:水岩相互作用砂岩混合模式断裂行为的实验研究

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摘要

Water⁻rock interactions can significantly deteriorate the physical and mechanical properties of rocks, and it has been identified as one of the significant factors influencing the stability and safety of structures in rock⁻soil engineering. In this study, the fracture mechanical properties of sandstone under periodic water⁻rock interactions and long-term immersion have been studied with central cracked Brazilian disk specimens. The degradation mechanism of water⁻rock interactions was also studied using a scanning electron microscope (SEM). Finally, the generalized maximum tangential stress and generalized maximum tangential strain criteria were adopted to evaluate the experimental results. The results show that periodic water⁻rock interactions can remarkably affect the fracture resistance of sandstone. With the increase in the number of cycles, the pure mode I, pure mode II, and mixed mode fracture toughness decreases greatly, however, the values of KIf/KIC and KIIf/KIC decrease slightly. Furthermore, the fracture resistance of sandstone influenced by cyclic wetting⁻drying is more significant than long-term immersion. Moreover, the fracture criteria, which considers the effect of T-stress, can reproduce the test results very well.
机译:Water 1 rock相互作用可以显着恶化岩石的物理和力学性质,并且已经被确定为影响岩石工程中结构稳定性和安全性的重要因素之一。在这项研究中,中央破裂的巴西盘样本研究了周期性水筏相互作用和长期浸没下的砂岩骨折机械性能。还使用扫描电子显微镜(SEM)研究了水牌相互作用的降解机制。最后,采用广义最大切向应力和广义最大切向应变标准来评估实验结果。结果表明,周期性水化合物相互作用可以显着影响砂岩的抗冲击性。随着循环次数的增加,纯模式I,纯模式II和混合模式断裂韧性大大降低,但是KIF / KIC和KIIF / KIF的值略微降低。此外,通过循环湿润培解的砂岩的裂缝抗性比长期浸没更显着。此外,考虑T型应力的效果的裂缝标准可以非常好地再现测试结果。

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