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A multiscale XFEM approach to investigate the fracture behavior of bioinspired composite materials

机译:多尺度XFEM方法研究生物启发复合材料的断裂行为

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摘要

In the setting of emerging approaches for material design, we investigate the use of the extended finite element method (XFEM) to predict the behavior of a newly designed bone-inspired fiber-reinforced composite and to elucidate the role of the characteristic microstructural features and interfaces on the overall fracture behavior. The outcome of the simulations, showing a good agreement with the experimental results, reveals the fundamental role played by the heterogeneous microstructure in altering the stress field, reducing the stress concentration at the crack tip, and the crucial role of the interface region (i.e. cement line) in fostering the activation of characteristic toughening mechanisms, thus increasing the overall flaw tolerance of the composite.
机译:在新兴的材料设计方法中,我们调查了扩展有限元方法(XFEM)的使用,以预测新设计的骨启发性纤维增强复合材料的行为,并阐明特征性微结构特征和界面的作用关于整体断裂行为。模拟结果与实验结果吻合良好,揭示了异质微观结构在改变应力场,降低裂纹尖端应力集中以及界面区域(即水泥)的关键作用方面的基本作用。线),以促进特征增韧机制的激活,从而提高复合材料的整体缺陷耐受性。

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