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首页> 外文期刊>Composites >A multiscale damage analysis of periodic composites using a couple-stress/ Cauchy multidomain model: Application to masonry structures
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A multiscale damage analysis of periodic composites using a couple-stress/ Cauchy multidomain model: Application to masonry structures

机译:使用耦合应力/柯西多域模型的周期性复合材料多尺度损伤分析:在砌体结构中的应用

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摘要

A novel multiscale strategy is proposed for the damage analysis of masonry structures modeled as periodic composites. Such a computational strategy, whose aim is to reduce the typically high computational cost exhibited by fully microscopic numerical analyses, is based on a multiscale/multidomain model equipped with an adaptive capability, which allows to automatically zoom-in the zones incipiently affected by damage onset. The associated model refinement criterion requires the determination of microscopically informed first failure surfaces, which take into account both classical and bending deformation effects, by taking advantage of a couple-stress based homogenization technique. In order to assess the efficacy of the proposed multiscale modeling strategy, some numerical simulations are presented, involving a medium-sized wall test subjected to combined shear and flexure loading conditions. The related accuracy and computational performances of this methodology are investigated via suitable comparisons with a purely discrete model of masonry. Special attention is devoted to the analysis of the bending macroscopic deformation effects. Further comparisons with experimental results taken from the literature are carried out in order to validate its predictive capability in terms of peak and post-peak mechanical behavior.
机译:提出了一种新颖的多尺度策略,对周期性复合材料砌体结构的损伤分析。这种计算策略的目的是减少完全微观数值分析所表现出的通常较高的计算成本,该策略基于具有自适应功能的多尺度/多域模型,该模型可以自动放大最初受损坏发作影响的区域。相关的模型细化标准要求通过利用基于偶应力的均化技术来确定考虑了经典变形和弯曲变形影响的微观知觉的第一破坏面。为了评估所提出的多尺度建模策略的有效性,提出了一些数值模拟,其中包括承受组合剪力和挠曲荷载条件的中型墙试验。通过与砖石的纯离散模型进行适当的比较,研究了该方法的相关精度和计算性能。特别注意的是弯曲宏观变形影响的分析。为了从峰值和峰后力学行为方面验证其预测能力,与文献中的实验结果进行了进一步的比较。

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