首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >The Brittle-Ductile Transition in Porous Limestone: Failure Mode, Constitutive Modeling of Inelastic Deformation and Strain Localization
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The Brittle-Ductile Transition in Porous Limestone: Failure Mode, Constitutive Modeling of Inelastic Deformation and Strain Localization

机译:多孔石灰岩中的脆性韧性过渡:失效模式,无弹性变形的本构模拟和应变局部化

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Understanding of the mechanics of the brittle-ductile transition (BDT) in porous limestone is significantly more challenging than for sandstone because of the lack of consistent acoustic emission activity in limestone, meaning that one must rely on alternative techniques. In this paper, we investigate systematically the failure modes in Indiana limestone using X-ray microComputed Tomography imaging (mu CT) and Digital Volume Correlation (DVC). Our new mechanical data show that the envelope for the onset of shear-enhanced compaction can be well approximated by an elliptical cap. The DVC analysis revealed the development of shear bands through the BDT, but no evidence of compaction bands. The shear band angles were between 29 degrees and 46 degrees with respect to the maximum principal stress. Compiling these new results with published data on Purbeck and Leitha limestones, we showed that inelastic compaction in each of these dual porosity allochemical limestones was in a good agreement with the normality condition, as defined in plasticity theory. Comparison of the observed failure modes with predictions based on bifurcation analysis showed that the shear band angles are consistently smaller than the theoretical predictions.
机译:由于石灰岩中缺乏一致的声发射活动,多孔石灰岩中脆塑性转变(BDT)的力学理解比砂岩更具挑战性,这意味着必须依赖替代技术。本文利用X射线微计算机断层成像(mu-CT)和数字体积相关(DVC)技术系统地研究了印第安纳州石灰岩的破坏模式。我们的新力学数据表明,剪切增强压实开始的包络线可以很好地近似于椭圆帽。DVC分析揭示了剪切带通过BDT的发展,但没有压实带的证据。相对于最大主应力,剪切带角度在29度到46度之间。将这些新结果与已发表的Purbeck和Leitha石灰岩数据相结合,我们发现,这些双重孔隙变化学石灰岩中的非弹性压实与塑性理论中定义的正常状态非常一致。将观测到的失效模式与基于分叉分析的预测进行比较,结果表明剪切带角始终小于理论预测。

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