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首页> 外文期刊>Journal of Composite Materials >Fatigue-driven model for mode II interlaminar delamination propagation of fibre/epoxy-reinforced composite laminates under three-point end-notched flexure
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Fatigue-driven model for mode II interlaminar delamination propagation of fibre/epoxy-reinforced composite laminates under three-point end-notched flexure

机译:疲劳驱动模型三点端部弯曲下纤维/环氧树脂增强复合材料层压板的层间分层II传播

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摘要

This paper deals with mode II interlaminar delamination properties and failure mechanisms of composite laminates in three-point end-notched flexure (3-ENF) tests under fixed cyclic loading. The results for fracture toughness, fatigue driving force and delamination propagation behaviours of three different types of carbon and E-glass fibre/epoxy resin-reinforced composite laminates are evaluated and compared with each other for providing an insight into fatigue damage development in composites and for constituting a fundamental basis for the development of a characterization model. A new characterization formulation is presented for mode II interlaminar delamination propagation based on controlling fatigue stress. Finally, the model is applied to experimental data, demonstrating the practical and effective use of the proposed model. It is shown that fatigue-driven strength for mode II interlaminar delamination propagation can be obtained realistically from experimental data using the new formulae.
机译:本文研究了在固定循环载荷下三点末端切口挠曲(3-ENF)测试中复合材料层压板的模式II层间分层特性和破坏机理。评估并比较了三种不同类型的碳纤维和环氧树脂玻璃纤维/环氧树脂增强复合材料层压板的断裂韧性,疲劳驱动力和分层传播行为的结果,以便对复合材料的疲劳损伤发展以及构成表征模型开发的基础。提出了一种新的表征公式,用于基于控制疲劳应力的模式II层间分层传播。最后,将该模型应用于实验数据,证明了该模型的实际和有效使用。结果表明,使用新公式可以从实验数据中实际获得II型层间分层传播的疲劳驱动强度。

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