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Interaggregate Forces and Energy Potential Effect on Clay Deformation

机译:集聚力和能量对粘土变形的影响

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This study aims to propose a new model for clay behavior by incorporating physical-chemical effects acting between clay clusters using the Chang and Hicher micromechanical approach. Local mechanisms are thus introduced through repulsive and attractive forces similar to double-layer van der Waals forces, which are obtained from the derivation of energy potentials. A specific study of local parameters and their evolution is conducted using experimental data from the mineralogy variation provoked by the variation of a remolded saturated reconstituted clayey mixture consisting of kaolinite and montmorillonite ranging from 0 to 100% montmorillonite. Using scale transition, the results of micro-macrocalculations under an isotropic loading path show a very good agreement with experimental results. (C) 2015 American Society of Civil Engineers.
机译:这项研究旨在通过使用Chang和Hicher微力学方法,通过结合作用于粘土团簇之间的物理化学效应,提出一种新的粘土行为模型。因此,通过类似于双层范德华力的排斥力和吸引力来引入局部机制,这是从能量势的推导中获得的。局部参数及其演变的具体研究是使用由矿物学变化引起的实验数据进行的,矿物学变化是由高岭石和蒙脱石组成的重塑的饱和复水粘土混合物的变化引起的,变化范围为0%至100%蒙脱石。使用尺度转换,在各向同性载荷路径下的微观计算结果与实验结果非常吻合。 (C)2015年美国土木工程师学会。

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