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Quantifying Microstructural Damage of Sandstone after Hydrochemical Corrosion

机译:量化水化学腐蚀后砂岩的微结构破坏

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摘要

Rock microstructure changes after hydrochemical reactions, which, in turn, leads to deterioration of mechanical properties. Thus, a quantification study on rock microstructural damage after chemical corrosion is necessary. Quantification of the microstructural damage of rocks after chemical corrosion was carried out in this study. We presented a proposal that included formulae for calculating the damage variable by analyzing the porosity changes of sandstone. The plastic deformation of sandstone specimens after soaking in chemical solution was observed. Plastic deformation can be divided into distinct stages over time. Results showed that the prepeak incremental deformation after chemical corrosion was partially due to the increase in plastic deformation before reaching the peak and to the deformation caused by pore compression. Plastic deformation is an indirect indicator of the degree of chemical corrosion of sandstone specimens. After chemical corrosion, the porosity of sandstone specimens changed consistently with the velocity of longitudinal wave. Therefore, the calculation formula of the damage variable can be used to calculate the porosity of sandstone specimens at different time periods. The chemical damage of sandstone specimens was highly consistent with the peak strain. Therefore, the damage variable based on porosity can be used to quantitatively describe the damage caused by chemical corrosion. (c) 2018 American Society of Civil Engineers.
机译:水化学反应后岩石的微观结构发生变化,进而导致机械性能下降。因此,有必要对化学腐蚀后岩石的微观结构破坏进行定量研究。在这项研究中,对岩石的微观结构破坏进行了量化。我们提出了一项建议,其中包括通过分析砂岩孔隙率变化来计算破坏变量的公式。观察了化学溶液浸泡后砂岩标本的塑性变形。随着时间的推移,塑性变形可以分为不同的阶段。结果表明,化学腐蚀后的峰前增量变形部分归因于在达到峰值之前塑性变形的增加以及孔压缩引起的变形。塑性变形是砂岩样品化学腐蚀程度的间接指标。化学腐蚀后,砂岩试样的孔隙度与纵波速度一致。因此,损伤变量的计算公式可用于计算不同时间段砂岩试样的孔隙度。砂岩标本的化学损伤与峰值应变高度一致。因此,基于孔隙率的损伤变量可用于定量描述由化学腐蚀引起的损伤。 (c)2018年美国土木工程师学会。

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