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Empirical Models for Matrix Cracking in a CFRP Cross-Ply Laminate Under Static- and Cyclic-Fatigue Loadings

机译:静态和循环疲劳载荷下CFRP交叉层压板基体开裂的经验模型

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摘要

This paper presents empirical models for predicting matrix crack density in a carbon fiber reinforced plastic (CFRP) cross-ply laminate under static-fatigue and cyclic-fatigue loadings. First, a modified slow crack growth (SCG) law, that covers the whole range of stress ratio R of tension-tension fatigue (0 ≤ R ≤ 1), was proposed. The modified SCG law and three conventional SCG laws were then combined with Weibull's probabilistic failure concept for predicting fatigue matrix crack density in a cross-ply laminate. Matrix crack density was expressed as a function of R, the maximum stress in the transverse ply and the number of cycles. Next, fatigue tests were performed for R of 0, 0.2, 0.4, 0.6, and 1 to determine the applicability of these four models. Finally, constant fatigue life (CFL) diagrams were investigated based on the modified model.
机译:本文介绍了经验模型,用于预测碳纤维增强塑料(CFRP)交叉层压板在静态疲劳和循环疲劳载荷下的基体裂纹密度。首先,提出了一种修正的慢速裂纹扩展(SCG)定律,该定律涵盖了拉-拉疲劳的应力比R的整个范围(0≤R≤1)。然后将修改后的SCG法则和三个常规SCG法则与Weibull概率失效概念相结合,以预测交叉层压板中的疲劳矩阵裂纹密度。基体裂纹密度表示为R,横向层的最大应力和循环次数的函数。接下来,针对0、0.2、0.4、0.6和1的R进行疲劳测试,以确定这四个模型的适用性。最后,基于修正模型研究了恒定疲劳寿命(CFL)图。

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