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Fatigue Life Prediction for Transverse Crack Initiation of CFRP Cross-Ply and Quasi-Isotropic Laminates

机译:CFRP交叉层和准各向同性层板横向裂纹萌生的疲劳寿命预测

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摘要

Carbon fiber reinforced plastic (CFRP) laminates are used as main structural members in many applications. Transverse cracks that form in 90° layers of CFRP laminates are mostly initial damage in the case where tensile loading is vertically applied to the 90° layers of CFRP laminates, and they are the origin of more serious damage of delamination and fiber breakage. It is thus important to predict quantitatively the transverse crack initiation of CFRP laminates subjected to cyclic loading to ensure the long-term reliability of the laminates. The initiation and multiplication behaviors of transverse cracks strongly depend on the laminate configuration, thickness, and thermal residual stress. Therefore, a model based on the Walker model was proposed to predict transverse crack initiation in CFRP cross-ply and quasi-isotropic laminates under cyclic loading in the present study. The usefulness of the proposed model was verified with 10 different CFRP laminates formed from four different prepregs with epoxy resin matrices. The analysis results were in good agreement with experimental results. The fatigue life was expressed with three constants, which related to the fatigue strength reduction, the normalized fatigue strength at N = 1 cycle, and the contribution of stress amplitude to the fatigue life, and they are independent of the laminate configuration.
机译:碳纤维增强塑料(CFRP)层压板在许多应用中用作主要结构构件。在CFRP层压板的90°层上垂直施加拉伸载荷的情况下,在90°CFRP层压板中形成的横向裂纹大多数是初始损坏,并且它们是更严重的分层和纤维断裂损坏的根源。因此,重要的是定量预测承受循环载荷的CFRP层压板的横向裂纹,以确保层压板的长期可靠性。横向裂纹的萌生和扩展行为在很大程度上取决于层压板的构型,厚度和热残余应力。因此,本研究提出了一种基于Walker模型的模型,以预测循环荷载作用下CFRP多层板和准各向同性层压板的横向裂纹萌生。用10种不同的CFRP层压板验证了该模型的有效性,该层压板由四种不同的预浸料与环氧树脂基体形成。分析结果与实验结果吻合良好。疲劳寿命用三个常数表示,这三个常数与疲劳强度降低,N = 1循环时的归一化疲劳强度以及应力振幅对疲劳寿命的影响有关,它们与层压板的构型无关。

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