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Strength Analysis of Syntactic Foams Using a Three-Dimensional Continuum Damage Finite Element Model

机译:基于三维连续谱损伤有限元模型的句法泡沫强度分析

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摘要

The failure behavior of the syntactic foams is investigated based on a three-dimensional (3D) micromechanical finite element (FE) model, by varying the volume fraction, the wall thickness of the hollow particles, and the interfacial strength. The maximum principal stress criterion is adopted to determine the state (damaged or undamaged) for both interface and matrix. Material property degradation is used to describe the mechanical behavior of those damaged elements. The current model can reasonably predict the tensile strength of the syntactic foams with high volume fractions (40%-60%). The failure mechanism of the syntactic foam under uniaxial tension is captured by analyzing the stress-strain curves and the contours of damaging evolution process. Results from the quantitative simulations demonstrate that the tensile strength of the syntactic foam can be improved effectively by enhancing the interfacial strength.
机译:通过改变体积分数,中空粒子的壁厚和界面强度,基于三维(3D)微机械有限元(FE)模型研究了复合泡沫的破坏行为。采用最大主应力准则来确定界面和基体的状态(损坏或未损坏)。材料性能下降用于描述那些受损元件的机械性能。当前模型可以合理地预测具有高体积分数(40%-60%)的复合泡沫的拉伸强度。通过分析应力-应变曲线和破坏性演化过程的轮廓,可以得出复合泡沫在单轴拉伸下的破坏机理。定量模拟的结果表明,通过增强界面强度可以有效地提高复合泡沫的拉伸强度。

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