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首页> 外文期刊>International Journal of Solids and Structures >A micromechanical model of elastoplastic and damage behavior of a cohesive geomaterial
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A micromechanical model of elastoplastic and damage behavior of a cohesive geomaterial

机译:粘性土工材料弹塑性和损伤行为的微力学模型

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The present study is devoted to the development and validation of a nonlinear homogenization approach of the mechanical behavior of Callovo-Oxfordian argillites. The material is modeled as an heterogeneous composite composed of an elastoplastic clay matrix and of linear elastic or elastic damage inclusions. The macroscopic constitutive law is obtained by adapting the incremental method proposed by Hill [Hill, R., 1965. Continuum micro-mechanics of elastoplastic polycrystals. J. Mech. Phys. Solids 13, 89-101]. The approach consists in formulating the macroscopic tangent operator of the material by considering the nonlinear local behavior of each phase. Due to the matrix/inclusion morphology of the microstructure of the argillite, a Mori-Tanaka scheme is considered for the localization step. The developed model is first compared to Finite Element calculations and then validated and applied for the prediction of the macroscopic stress-strain responses of argillites. (C) 2007 Elsevier Ltd. All rights reserved.
机译:本研究致力于Callovo-Oxfordian泥岩的力学行为的非线性均质化方法的开发和验证。该材料建模为由弹塑性粘土基质和线性弹性或弹性损伤夹杂物组成的异质复合材料。宏观本构律是通过采用Hill [Hill,R.,1965.提出的。弹塑性多晶的连续微力学。 J.机甲物理固体13,89-101]。该方法包括通过考虑每个相的非线性局部行为来制定材料的宏观切线算子。由于硅藻土微结构的基体/包裹体形态,因此在定位步骤中考虑了Mori-Tanaka方案。首先将开发的模型与有限元计算进行比较,然后将其验证并应用于预测斜晶石的宏观应力-应变响应。 (C)2007 Elsevier Ltd.保留所有权利。

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