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首页> 外文期刊>Journal of the European Ceramic Society >A micromechanical model for quasi-brittle compressive failure of glass-microballoons/thermoset-matrix syntactic foams
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A micromechanical model for quasi-brittle compressive failure of glass-microballoons/thermoset-matrix syntactic foams

机译:玻璃-微气球/热固性基体复合泡沫准脆性压缩破坏的微力学模型

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We propose a micromechanical model for the quasi-brittle failure of syntactic foams subject to uniaxial compression. We focus on a failure characterised by shear bands inclined of about 45° with respect to the loading axis, often observed in thermoset polymers filled with glass microballoons. Our objective is to develop a three-dimensional Finite Element (FE) model for the effective compressive strength. Towards this aim, we extend our previous FE models, which include fifty randomly placed balloons and were developed to assess the accuracy of linear elastic homogenisation procedures for syntactic foams. Here, we account for the filler polydispersion and introduce a novel structural failure criterion for the glass microballoons. The proposed models are shown to be macroscopically isotropic with respect to the effective strength. We find good agreement with experimental results from the literature on syntactic foams with filler volume fraction of 60%, for which we assume the matrix to be linear elastic.
机译:我们提出了一种用于单轴压缩的句法泡沫准脆性破坏的微力学模型。我们着眼于以剪切带相对于加载轴倾斜约45°为特征的失效,这种现象通常在充满玻璃微气球的热固性聚合物中观察到。我们的目标是为有效抗压强度开发三维有限元(FE)模型。为了实现这一目标,我们扩展了以前的有限元模型,其中包括五十个随机放置的球囊,其开发目的是评估语法泡沫的线性弹性均质化程序的准确性。在这里,我们考虑了填料的多分散性,并介绍了玻璃微气球的新型结构破坏准则。所提出的模型在有效强度方面表现出宏观各向同性。我们发现填料体积分数为60%的复合泡沫的实验结果与文献的实验结果吻合良好,为此我们假定基质为线性弹性。

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