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Effective thermoelastic moduli of brittle matrix composite with interfacial debonding

机译:用界面剥离的脆性基质复合材料的有效热弹性模

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The effects of interfacial debonding and fiber volume fraction on the mechanical and thermal properties of brittle matrix composite material were studied by using finite element method. Representative volume element of uni-symmetric debonding was used for the modeling of fibers and matrix constituting the Nicalon/Glass composite and numerical results were compared with those in case of doubly-symmetric debonding. In order to obtain the elastic, thermal moduli and Poisson's ratios of composite material, stiffness constants were inverted. In case of symmetric geometry about x-axis, the properties according to symmetry axis were similar to those in case of double-symmetry but those in other directions were slightly different. It was found that the properties of brittle matrix composite were affected not only by the degree of debonding but also by the configuration of debonding between fibers and matrix in the composite materials.
机译:通过使用有限元法研究了界面剥离和纤维体积分数对脆性基质复合材料的机械和热性能的影响。单对称剥离的代表性体积元素用于构成尼克顿/玻璃复合材料的纤维和基质的建模,与双重对称剥离的情况进行比较数值结果。为了获得弹性,热模育和泊松的复合材料的比例,逆转刚度常数。在关于X轴的对称几何形状的情况下,根据对称轴的性质类似于双对称情况下的性质,但是其他方向的那些略有不同。结果发现,脆性基质复合物的性质不仅受到剥离程度的影响,而且通过在复合材料中的纤维和基质之间的剥离来构造。

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