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Mechanical behaviour of bonded joints including viscoelasticity for the adhesive under triangular pulse loading and harmonic loading

机译:粘结接头的力学行为,包括三角形脉冲负载下粘合剂的粘弹性和谐波载荷

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The constitutive law of the interface is a prime issue when evaluating the strength of adhesively bonded joints. The polymer-based adhesives exhibit loading rate sensitivity and damping properties owing to their viscous nature, especially at high temperatures or under water. This paper aims to establish a shear-lag model to elucidate the mechanical behaviour of adhesively bonded joints under triangular pulse loading and harmonic loading. The extended shear-lag model is focused on improving the previous shear-lag models by including viscoelastic behaviour using the Kelvin model for the adhesive. Analytical expressions of the slip and interfacial shear stress distribution have been respectively presented for pull-push joint and pull-pull joint under triangular pulse loading. Compared with finite element simulation, the predictive model shows an excellent agreement with the FEA results. The damping properties including the storage modulus, loss modulus and loss factor for these two bonded joints subjected to harmonic loading are theoretically derived. Finally, results obtained from the predictive model are presented to illustrate how the bond length, loading rate and loading frequency affect the behaviour of such bonded joints.
机译:当评估粘合接头的强度时,界面的本构剖视义是一种主要问题。聚合物基粘合剂由于其粘性性质而表现出负载率敏感性和阻尼性能,特别是在高温下或水下。本文旨在建立剪切滞后模型,以阐明三角形脉冲载荷和谐波载荷下粘接接头的力学行为。扩展剪切滞后模型专注于改善先前的剪切滞后模型,包括使用Kelvin模型用于粘合剂的粘弹性行为。在三角形脉冲负载下,分别为拉链接头和拉拉接头呈现了滑动和界面剪切应力分析的分析表达。与有限元模拟相比,预测模型显示出与FEA结果的良好协议。理论上衍生,包括储存谐波负载的这两个粘合接头的储存模量,损耗模量和损耗因子的阻尼性能。最后,提出了从预测模型获得的结果以说明键合长度,装载速率和负载频率如何影响这种粘合接头的行为。

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