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Evaluate the Fatigue Life of CFRC Subjected to Coupled Thermo–Mechanical Loading

机译:评估热-机械耦合作用下CFRC的疲劳寿命

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摘要

Mechanical properties of composites manufactured by high-temperature polymer polyether ether ketone (PEEK) with continuous reinforced fibers are closely dependent on ambient temperature variations. In order to effectively study fatigue failure behaviors of composites under the coupled thermo–mechanical loading, a well-established microscopic model based on a representative volume element (RVE) is proposed in this paper. Stiffness degradation behaviors of the composite laminates at room and elevated temperatures are firstly investigated, and their failure strengths are compared with experimental data. To describe the fatigue behaviors of composites with respect to complex external loading and ambient temperature variations, a new fatigue equation is proposed. A good consistency between theoretical results and experimental data was found in the cases. On this basis, the temperature cycling effects on the service life of composites are also discussed. Microscopic stress distributions of the RVE are also discussed to reveal their fatigue failure mechanisms.
机译:由高温聚合物聚醚醚酮(PEEK)与连续增强纤维制成的复合材料的机械性能与环境温度变化密切相关。为了有效地研究热-机械耦合作用下复合材料的疲劳破坏行为,本文提出了一种基于代表性体积元(RVE)的成熟的微观模型。首先研究了复合层压板在室温和高温下的刚度降解行为,并将其破坏强度与实验数据进行了比较。为了描述复合材料相对于复杂的外部载荷和环境温度变化的疲劳行为,提出了一个新的疲劳方程。在这些案例中,理论结果与实验数据之间具有很好的一致性。在此基础上,还讨论了温度循环对复合材料使用寿命的影响。还讨论了RVE的微观应力分布,以揭示其疲劳破坏机理。

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