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Research on the mechanical behaviour of shale based on multiscale analysis

机译:基于多尺度分析的页岩力学行为研究

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摘要

In view of the difficulty in obtaining the mechanical properties of shale, the multiscale analysis of shale was performed on a shale outcrop from the Silurian Longmaxi Formation in the Changning area, Sichuan Basin, China. The nano-/micro-indentation test is an effective method for multiscale mechanical analysis. In this paper, effective criteria for the shale indentation test were evaluated. The elastic modulus was evaluated at a multiscale and the engineering validation of drilling cuttings was performed. The porosity tests showed that the pore distribution of shale from the nanoscale to macro-pore could be better displayed by the nuclear magnetic resonance test. The micro-scale elastic modulus and hardness increased nonlinearly with the increase in the clay packing density. It was observed that the size effect of the micro-hardness was based on porosity and composition. The partial spalling of shale at the micro-scale could lead to irregular bulges or steps in a load–displacement curve. The elastic modulus of pure clay minerals was 24.2 GPa on the parallel bedding plane and 15.8 GPa on the vertical bedding plane. The contact hardness (pure clay minerals) was 0.51 GPa. The indentation results showed that the micro-elastic modulus of shale obeyed the normal distribution, and the statistical average could predict the macro-mechanical properties effectively. The present work can provide a new way to recognize the mechanical behaviour of shale.
机译:鉴于难以获得页岩的力学性能,对中国四川盆地长宁地区志留系龙马溪组页岩露头进行了多尺度页岩分析。纳米/微压痕测试是进行多尺度机械分析的有效方法。本文对页岩压痕试验的有效标准进行了评估。在多尺度上评估弹性模量,并进行钻屑的工程验证。孔隙度测试表明,通过核磁共振测试可以更好地显示页岩从纳米尺度到大孔隙的孔隙分布。微观尺度的弹性模量和硬度随着粘土堆积密度的增加而非线性地增加。观察到,显微硬度的尺寸效应基于孔隙率和组成。页岩在微尺度上部分剥落可能导致载荷-位移曲线中不规则的凸起或台阶。纯粘土矿物的弹性模量在平行层理面上为24.2 GPa,在垂直层理面上为15.8 GPa。接触硬度(纯粘土矿物)为0.51 GPa。压痕结果表明,页岩的微弹性模量服从正态分布,统计平均值可以有效地预测宏观力学性能。本工作可以提供一种识别页岩力学行为的新方法。

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