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Coupled modelling of moisture transport and damage in porous materials

机译:多孔材料中水分传输和破坏的耦合模型

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The presence of water significantly influences the cyclic response of porous materials due to the activation of molecular forces and surface energy phenomena. Among other effects, moisture causes a decrease in stiffness and a reduction of the tensile strength of the material. Cyclic loading is characterized by stiffness degradation and the occurrence of permanent deformations after unloading. All these phenomena can be adequately described by a combined damage-plasticity model coupled to a moisture transport model. In the present paper we will first derive the governing equations for a discrete damage-plasticity model and discuss their implementation in a fully coupled multi-physics model. The capabilities of the coupled model and the effects of moisture on the cyclic response of porous materials will be illustrated with two numerical examples.
机译:由于分子力和表面能现象的激活,水的存在显着影响多孔材料的循环响应。除其他影响外,水分导致刚度降低和材料的拉伸强度降低。循环加载的特征是刚度下降和卸载后出现永久变形。所有这些现象都可以通过结合了湿气传输模型的组合损伤-可塑性模型来充分描述。在本文中,我们将首先导出离散损伤-塑性模型的控制方程,并讨论它们在完全耦合的多物理场模型中的实现。耦合模型的功能以及水分对多孔材料循环响应的影响将通过两个数值示例进行说明。

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