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Strategies and Numerical Implementation of Fatigue Life Models for Continuous Fiber Reinforced Polymers

机译:连续纤维增强聚合物疲劳寿命模型的策略和数值实现

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Structural components made of continuous fiber reinforced polymers are exposed to repeatedly-applied loads leading to fatigue failure during the service life. To predict the lifetime and achieve the proper industrial part design against fatigue failure, the development of numerical simulation tool is crucial. Even though fatigue phenomena in composites have been intensively investigated, having a unique and reliable numerical simulation strategy remains a great challenge. The primary issue to address is to establish a robust constitutive modeling including non-linear behaviors, namely progressive damage mechanism and inelastic behavior of constituents at micro and meso scales. Nonetheless, the complexity increases when time-dependent or cyclic behavior is involved. These issues on material modeling and lifetime prediction for composite materials were addressed in this work. Implementation is performed in environmental solution for structural design (Virtual Performance Solution. Solver Notes Manual, ESI Group, Paris, France. 2013).
机译:由连续纤维增强聚合物制成的结构部件暴露于反复施加的负载,导致在使用寿命期间的疲劳失效。为了预测寿命并实现适当的工业部件设计对抗疲劳失效,数值模拟工具的发展至关重要。尽管复合材料中的疲劳现象被密集地调查,但具有独特且可靠的数值模拟策略仍然是一个巨大的挑战。地址的主要问题是建立一种强大的本构模型,包括非线性行为,即微观和中央级尺度的成分的渐进损伤机制和非弹性行为。尽管如此,当涉及时间依赖或循环行为时,复杂性增加。在这项工作中解决了这些关于复合材料的材料建模和寿命预测的问题。实施是在结构设计的环境解决方案中进行的(虚拟性能解决方案。索盘笔记手册,ESI集团,巴黎,法国。2013)。

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