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The 3D failure process in polymeric syntactic foams with different cenosphere volume fractions

机译:聚合物句法泡沫中的3D失败过程不同的斜影体积分数

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摘要

The previous work (Huang and Li, Compos. Part B, 2015) proposed the failure mechanism in syntactic foams with low and high hollow microsphere volume fractions, based on the finite element simulation of localized stresses in the foam. In this work, in situ X-ray microtomography of uniaxial compression tests was performed to provide the direct experimental evidence to the proposed mechanism by tracking the internal three-dimensional failure process in epoxy syntactic foams with different cenosphere volume fractions (V). It was found that for both the low and high V, microcracks initiate in the matrix in the top and bottom of crushed cenospheres where the tensile stress concentrates, and then propagate longitudinally to become macrocracks. Increasing the cenosphere volume fraction also leads to the formation of matrix microcracks in the connection zone where the stress concentrates significantly; the matrix microcracks thus propagate diagonally and longitudinally in the high V foam. (c) 2019 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2019, 136, 47491.
机译:以前的工作(Huang和Li,Compos。B部分B,2015)基于泡沫中局部应力的有限元模拟,提出了句法泡沫的句法泡沫的失效机制。在这项工作中,在原位X射线微观图中进行了单轴压缩试验,通过跟踪具有不同天线体积分数(V)的环氧语法泡沫中的内部三维失效过程,为提出的机制提供直接实验证据。结果发现,对于低和高V,微裂纹在碎屑浓缩物的碎透镜的顶部和底部的基质中引发,然后纵向繁殖以成为MacRecrack。增加天线圈体积分数也导致连接区域中的基质微裂纹的形成,其中应力显着浓缩;因此,基质微裂纹在高V泡沫中对角线和纵向传播。 (c)2019 Wiley期刊,Inc.J.Phill。聚合物。 SCI。 2019,136,47491。

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