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Simulation of thermal cycle aging process on fiber-reinforced polymers by extended finite element method

机译:延伸有限元法通过延长有限元法模拟纤维增强聚合物的热循环老化过程

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摘要

The simulation of long life behavior and environmental aging effects on composite materials are subjects of investigation for future aerospace applications (i.e. supersonic commercial aircrafts). Temperature variation in addition to matrix oxidation involves material degradation and loss of mechanical properties. Crack initiation and growth is the main damage mechanism. In this paper, an extended finite element analysis is proposed to simulate damage on carbon fiber reinforced polymer as a consequence of thermal fatigue between -50? and 150? under atmospheres with different oxygen content. The interphase effect on the degradation process is analyzed at a microscale level. Finally, results are correlated with the experimental data in terms of material stiffness and, hence, the most suitable model parameters are selected.
机译:长寿命行为和环境老化对复合材料的仿真是对未来航空航天应用(即超音速商用飞机)的调查的主题。 除了基质氧化之外,温度变化涉及物质降解和机械性能的损失。 裂纹启动和增长是主要损害机制。 在本文中,提出了一种延长的有限元分析,以模拟碳纤维增强聚合物的损伤在-50之间的热疲劳之后? 和150? 在具有不同氧气含量的大气下。 在微尺度水平下分析对劣化过程的差异效应。 最后,结果与材料刚度方面的实验数据相关,因此选择了最合适的模型参数。

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