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Constitutive microplane model for geotechnical materials

机译:岩土材料的本构微平面模型

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摘要

Microplane theory represents an efficient and realistic numerical tool for the analysis of engineering materials that require models accounting for anisotropy (inherent, induced, or both), manifested in soils, rocks and other quasi-brittle materials. An important family of microplane models focused on the study of the behaviour of concrete has passed through a long period of evolution and actually posses a robust and powerful formulation. However, the use of this theory to represent the behaviour of geotechnical materials is still lacking its complete implementation within a strong constitutive framework like the theory of elastoplasticity. Many fundamental features related with such implementation will be discussed throughout this paper and some important conclusions from our ongoing research will be presented.
机译:微平面理论代表了一种有效而现实的数值工具,用于分析工程材料,该工程材料需要考虑土,岩石和其他准脆性材料中表现出的各向异性(固有的,诱发的或两者兼有)的模型。专注于研究混凝土性能的重要的微平面模型家族已经经历了漫长的发展过程,实际上具有稳健而强大的公式。然而,在像弹塑性理论这样的强大本构框架下,仍然缺乏使用这种理论来表示岩土材料行为的完整方法。与这种实现相关的许多基本特征将在本文中进行讨论,并将提出我们正在进行的研究的一些重要结论。

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