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A virtual element and interface based concurrent multiscale method for failure analysis of quasi brittle heterogeneous composites

机译:基于虚拟元素和基于界面的拟合异构复合材料故障分析的并发多尺度方法

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The use of multiscale schemes for computational failure evaluations of quasi-brittle composites, particularly concrete, has become a promising challenge for evaluating the complex degradation mechanisms at different scales of observations. In the framework of standard finite element procedures, both concurrent and semi-concurrent multiscale procedures have so far been considered for analysing failure behaviour of quasi-brittle materials. When it comes to composite materials like concrete with heterogeneous meso-structures due to the presence of highly irregular inclusions regarding both size and geometry, the material meso-structure critically determines the macroscopic mechanical properties and thus the mechanical response to external loading. In this work a concurrent multiscale method is proposed for numerical analysis of the failure behaviour of heterogeneous and quasi-brittle materials like concrete. This is based on combining a discretization based on the Virtual Element Method (VEM) and Interface Elements (IEs) in the framework of the discrete crack approach using a mixed augmented Lagrangian for the interfaces. Mesoscale numerical simulations of 3 point beam specimens are presented to assess the quality of the proposed concurrent multiscale procedure to accurately and effectively capture the relevant features of their failure mechanisms, highlighting the advantages of using the VEM technology. (C) 2020 Elsevier Ltd. All rights reserved.
机译:使用多尺度方案进行准脆性复合材料,特别是具体的准复合材料的计算失败评估已经成为评估不同观测范围内复杂的降解机制的有希望的挑战。在标准有限元程序的框架中,到目前为止已经考虑了同时和半同时的多尺寸程序,以分析准脆性材料的失效行为。由于存在关于尺寸和几何形状的高度不规则夹杂物的具有多均匀间隙结构的混凝土的复合材料,因此材料中间结构主要确定宏观机械性能,从而确定对外部负荷的机械响应。在这项工作中,提出了一种同时的多尺度方法,用于多均匀和准脆性材料的失效行为的数值分析。这是基于基于虚拟元素方法(VEM)和接口元素(IES)的离散化,在离散裂缝方法的框架中使用混合增强的Lagrangian进行接口。提出了3点光束标本的Messcore数值模拟,以评估所提出的并发多尺度程序的质量,以准确且有效地捕获其失效机制的相关特征,突出了使用VEM技术的优势。 (c)2020 elestvier有限公司保留所有权利。

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