Study of the Matrix Shrinkage on a Polymer Matrix Composite under a Drop of Temperature

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Abstract

A polymer composite material consists of two different phases with very different mechanical properties. Thus, there is a shrinkage when a decrease in temperature appears. This paper focuses on the matrix shrinkage of a unidirectional polymer matrix composite under a temperature drop. A Rayleigh-Ritz method is used to rapidly determine the matrix displacement (matrix shrinkage) field of virgin samples (initial state, without thermo oxidation). Additionally, numerical simulations are also carried out. A comparison of maximum matrix shrinkages is carried out among the experiment measurement, the Rayleigh-Ritz method, and the numerical simulation method. The numerical results of the matrix displacement are compared to the experiment and the Rayleigh-Ritz method. There is a good correlation between the results obtained by the two methods. Then, an assessment of the reliability of numerical simulations is given. The numerical simulations are then used to analyze the evolution of stress along the different paths on the sample to predict the damage behavior.
温度下降下聚合物基复合材料基体收缩的研究
高分子复合材料由两种具有不同力学性能的相组成。因此,当温度下降时,就会出现收缩。本文主要研究了单向聚合物基复合材料在温度下降下的基体收缩。采用瑞利-里兹法快速测定原始试样(初始状态,未热氧化)的基体位移(基体收缩)场。此外,还进行了数值模拟。比较了实验测量法、瑞利-里兹法和数值模拟法对最大矩阵收缩的影响。将矩阵位移的数值计算结果与实验结果和瑞利-里兹法进行了比较。两种方法所得结果具有良好的相关性。然后,对数值模拟的可靠性进行了评价。利用数值模拟分析了试样上应力沿不同路径的演化规律,预测了试样的损伤行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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