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The interphase elasto-plastic damaging model

机译:相间弹塑性破坏模型

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Heterogeneous materials present a mechanical response strongly dependent on the static and kinematic phenomena occurring in the constituents and at their joints.In order to analyze this kind of materials it is a common practice to distinguish a macroscopic length scale of interest from a mesoscopic one,where the mesoscopic length scale is of the order of the typical dimensions of the constituents.At the mesoscopic level the interaction between the units is simulated by mean of apposite mechanical devices.Among these devices is popular the zero thickness interface model where contact tractions and displacement discontinuities are the primary static and kinematic variables respectively.However,in heterogeneous materials the response also depends on joint internal stresses as much as on contact stresses.The introduction of internal stresses brings to the interphase model or an enhancement of the classical zero-thickness interface.With the term ‘interphase' we shall mean a layer separated by two physical interfaces from the bulk material or a multilayer structure with varying properties and several interfaces.Different failure conditions can be introduced for the physical interfaces and for the joint material.The interphase model has been implemented in an open-source research-oriented finite element analysis program for 2D applications.Numerical simulations are provided to show the main features of the model
机译:非均质材料表现出强烈的机械响应,强烈依赖于在构件及其接头处发生的静态和运动学现象。为了分析这类材料,通常的做法是将感兴趣的宏观长度尺度与介观的尺度区别开来。介观长度尺度大约是成分的典型尺寸。在介观层面上,单元之间的相互作用是通过适当的机械装置来模拟的。在这些装置中,零接触面模型非常流行,其中接触牵引力和位移不连续分别是主要的静态和运动学变量。但是,在非均质材料中,响应也取决于接头内部应力以及接触应力。内部应力的引入带来了相间模型或经典零厚度界面的增强。术语“相间”是指分离的一层由散装材料或具有不同特性的多层结构中的两个物理界面和多个界面组成。可以为物理界面和接头材料引入不同的破坏条件。相间模型已在面向研究的开源有限元中实现2D应用程序的元素分析程序。提供了数值模拟,以显示模型的主要特征

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