首页> 外文期刊>International Journal of Adhesion & Adhesives >Interfacial failure analysis of functionally graded adhesively bonded double supported tee joint of laminated FRP composite plates
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Interfacial failure analysis of functionally graded adhesively bonded double supported tee joint of laminated FRP composite plates

机译:FRP层压复合板功能梯度胶粘双支撑三通的界面破坏分析

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This paper deals with three-dimensional non-linear finite element analyses to assess the structural behavior of adhesively-bonded double supported tee joint of laminated FRP composites having embedded interfacial failures. The onset of interfacial failures is predicted by using Tsai-Wu coupled stress failure criterion with pre-determined stress values. The concept of fracture mechanics principle is utilized to study the sustainability of the tee joint having interfacial failures pre-existed at the critical locations. Individual modes of the strain energy release rates (SERR) G(I), G(II) and G(III), are considered as the damage growth parameters and, are evaluated using the Modified crack closure integral (MCCI) technique based on the concept of linear elastic fracture mechanics (LEFM). Based on the stress analyses, it has been observed that the interfacial failures in tee joint structure trigger at the interface of base plate and adhesive layer from both ends of base plate. Depending on the SERR magnitudes, it has been noticed that the interfacial failure propagates under mixed mode condition. Therefore total SERR (G(T)) is considered as the governing parameter for damage propagation. Furthermore, efforts have been made to retard damage propagation rate by employing functionally graded adhesive (FGA) instead of monolithic adhesive material. Series of numerical simulations have been performed for varied interfacial failure length in functionally graded adhesively bonded double supported tee joint structure in order to achieve the significant effect of FGA with various modulus ratios on SERR. Material gradation of adhesive indicates significant SERR reduction at the incipient stage of failure which necessitates the use of functionally graded adhesive for the tee joint and prolong the service life of the structure. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文进行了三维非线性有限元分析,以评估具有嵌入式界面破坏的层压FRP复合材料的胶粘双支撑三通接头的结构性能。通过使用Tsai-Wu耦合应力破坏准则和预定的应力值来预测界面破坏的发生。断裂力学原理的概念用于研究在关键位置处预先存在界面破坏的三通的可持续性。应变能释放率(SERR)G(I),G(II)和G(III)的各个模式被认为是损伤增长参数,并使用改进的闭合裂纹积分(MCCI)技术基于线性弹性断裂力学(LEFM)的概念。基于应力分析,已经发现,三通接头结构的界面破坏从基板的两端在基板和粘合剂层的界面处触发。根据SERR的大小,已经注意到界面破坏在混合模式条件下传播。因此,总SERR(G(T))被视为损害传播的控制参数。此外,已通过采用功能梯度粘合剂(FGA)代替整体式粘合剂材料来努力降低损伤的传播速度。为了实现功能梯度的胶粘双支撑三通接头结构中不同的界面破坏长度,已进行了一系列数值模拟,以实现具有不同模量比的FGA对SERR的显着影响。粘合剂的材料等级表明,在失效初期,SERR显着降低,这需要在三通接头上使用功能渐变的粘合剂,并延长结构的使用寿命。 (C)2015 Elsevier Ltd.保留所有权利。

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