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Characterization of the effect of CFRP reinforcement on the fatigue strength of aluminium alloy plates with fastener holes

机译:CFRP增强对带扣孔铝合金板疲劳强度的影响

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摘要

In this paper the characteristics of CFRP reinforcement on the improvement of the fatigue strength of aluminium alloy plates with fastener holes are investigated. The CFRP reinforcement schemes including the number of laminate layers, single-sided and double-sided strengthening are taken into account. Fatigue tests with constant loading amplitude were conducted to compare different failure mechanisms involved with such structural details. The stiffness degradation of test specimen failed by interfacial debonding is shown to be relatively gradual prior to plate rupture while the propagation of the fatigue crack at the transition of the punching surface appears to be retarded to some extent due to the tensile strengthening of the carbon fibre. The contributions of carbon fibre and adhesive interface to the strength improvement are quantified. Discussions are also made for the fatigue life of similar details with some other hole forming methods reported in the literature. Recommendations are given for the assessment of the fatigue life of CFRP reinforced specimens studied herein with appropriate detail classes codified in the BS8118 standard. Finally, a new formula allowing for the contributions of the plate and carbon fibre in tension, the adhesive interface in shear and additional secondary bending effect is proposed in the evaluation of the improvement fatigue endurance. The proposed formula is verified from a good correlation with finite element analytical results and from original test data with a notable reduction of scatters. Its application scope is also discussed.
机译:本文研究了CFRP增强材料对改善带紧固件孔的铝合金板的疲劳强度的特性。考虑了CFRP加固方案,包括层数,单面和双面加固。进行了具有恒定载荷振幅的疲劳测试,以比较涉及此类结构细节的不同破坏机理。界面断裂导致试样断裂的刚度退化显示出在板破裂之前是相对缓慢的,而由于碳纤维的抗拉强度,疲劳裂纹在冲孔表面过渡处的传播似乎受到一定程度的阻碍。 。量化了碳纤维和粘合剂界面对强度提高的贡献。还讨论了文献中报道的其他一些成孔方法,对类似细节的疲劳寿命进行了讨论。给出了评估本文研究的CFRP增强试样疲劳寿命的建议,并采用了BS8118标准中编入的适当详细等级。最后,提出了一种新的公式,该公式考虑了板和碳纤维在张力中的贡献,剪切中的粘合剂界面以及附加的二次弯曲效果,用于评估改善的疲劳强度。通过与有限元分析结果的良好相关性以及从原始测试数据得到的散射显着减少,验证了所提出的公式。还讨论了其应用范围。

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