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Quantifying 'transitional' soil behaviour

机译:量化“过渡”土壤行为

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The last decade has seen an increasing amount of research on so called "transitional" soils that are characterised by incomplete convergence to unique normal compression lines and/or critical state lines in simple laboratory tests. This topic has often provoked reaction, perhaps because some have seen it as a challenge to critical state frameworks of soil behaviour. A particular issue is whether incomplete testing or other test defects might cause such an apparent behaviour. Confusion around the topic has not been helped by the wide range of degrees of convergence seen for different materials and differences seen between convergence in compression and shearing. This paper proposes a unifying means of plotting laboratory test data from such soils that will hopefully provide a rational framework for such discussions, since it makes explicit the degree of convergence towards unique volumetric states for different forms of loading. Data are examined for three "transitional" soils. The results show that bringing about convergence for these soils would require strains beyond those that may easily be applied and that the lack of convergence cannot solely be an artefact of test defects. Plastic volumetric strain was found to cause much faster convergence than plastic shear strain. (C) 2019 Production and hosting by Elsevier B.V. on behalf of The Japanese Geotechnical Society.
机译:过去十年已经看到了对所谓的“过渡”土壤的研究越来越多,其特征在于在简单的实验室测试中对独特的正常压缩线和/或临界状态线的不完全收敛性。这一话题经常引发反应,也许是因为有些人认为这是对临界国家框架的土壤行为的挑战。特定问题是对测试或其他测试缺陷是否可能导致这种明显的行为。对于不同材料和剪切在收敛之间看到的不同材料和差异的广泛收敛程度,围绕该话题的混乱尚未得到帮助。本文提出了一种统一手段,可以从这些土壤中绘制实验室测试数据,这些土壤希望为这种讨论提供合理框架,因为它为不同形式的载荷形式明确到唯一的体积状态。对三个“过渡”土壤检查数据。结果表明,带来这些土壤的收敛需要超出那些可能很容易应用的菌株,并且缺乏收敛不能仅仅是测试缺陷的人工制品。发现塑料体积菌株比塑料剪切菌株更快地造成更快的收敛性。 (c)2019年Elsevier B.V的生产和托管代表日本岩土工会。

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