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The Physicomechanical Deterioration Characteristics and Mesoscopic Damage Analysis of Sandstone under Acidic Environment

机译:酸性环境下砂岩的物理机械劣化特性及思科损伤分析

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The physicomechanical deterioration characteristics of sandstone subjected to H2SO4, HCl, and H2O solutions of different pH values are studied by the method of long-term accelerated immersion. The quantitative relationships between the damage variables based on CT (computer tomographic identification technology) numbers and the immersion time, the uniaxial compressive strength, the peak point strain, and the elastic modulus of rock samples are analyzed. The test results indicate that the pH value of immersion solutions, the dissolution rate of Ca2+ and Na+, and the quality change of rock samples show visible stage characteristics under acidic environment. With the soaking time extended, the pH value of solutions increases gradually, and the quality change of rock samples decreases gradually. The smaller the pH value of immersion solutions is, the higher the dissolution rate of Ca2+ and Na+ is. However, the cation dissolution rate under a weak acid environment with a high pH value has little difference with that under the distilled water (pH?=?7). With the increase of the soaking time and the acidity, the compaction stage of rock samples becomes longer, the elastic stage becomes shorter, the deterioration degree of mechanical parameters becomes more extensive, and the destruction of sandstone samples shows ductility characteristics increasingly. The corrosion degree of corroded sandstone samples is quantitatively represented by microscopic damage variables based on CT numbers. The regression analysis results show that damage variables of acid-corroded sandstone samples have a power function relationship with soaking time and an exponential function relationship with peak strength, peak point strain, and elastic modulus.
机译:通过长期加速浸没的方法研究了对H2SO4,HCl和不同pH值的H2O4,HCl和H 2 O溶液的砂岩的物理机械劣化特性。分析了基于CT(计算机断层识别技术)数和浸入时间,单轴抗压强度,峰值点应变和岩石样品弹性模量之间的定量关系。测试结果表明浸渍溶液的pH值,Ca2 +和Na +的溶出速率,以及岩石样品的质量变化显示酸性环境下的可见阶段特征。随着浸泡时间延伸,溶液的pH值逐渐增加,岩石样品的质量变化逐渐降低。浸渍溶液的pH值越小,Ca 2+和Na +的溶解速率越高。然而,在具有高pH值的弱酸环境下的阳离子溶解速率与蒸馏水下的差异几乎没有差异(pH?=α7)。随着浸泡时间和酸度的增加,岩石样品的压实阶段变得更长,弹性级变短,机械参数的劣化程度变得更加广泛,并且砂岩样品的破坏显示延展性特征。基于CT号的微观损伤变量定量表示腐蚀砂岩样品的腐蚀程度。回归分析结果表明,酸腐蚀砂岩样品的损伤变量具有与浸泡时间和峰强度,峰值点应变和弹性模量的指数函数关系的功率函数关系。

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