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首页> 外文期刊>International Journal of Adhesion & Adhesives >Numerical analysis on load-bearing capacity and damage of double scarf adhesive joints subjected to combined loadings of tension and bending
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Numerical analysis on load-bearing capacity and damage of double scarf adhesive joints subjected to combined loadings of tension and bending

机译:拉伸和弯曲共同作用下双丝巾粘结点承载能力和破坏的数值分析

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摘要

The load-bearing capacity and the damage level of the double scarf joint (DSJ) under combined loadings of tension and bending were investigated numerically, which takes into account the effects of scarf angle and adhesive type. A finite element method (FEM), which includes a mixed-mode cohesive zone model (CZM) with a bilinear shape, was employed to govern the interface separation behaviors. At the point corresponding to the ultimate loading, it was observed that the interface damage level of DSJ with the ductile adhesive is higher and more uniform than that of the joint with the brittle one. More than that, the numerical results illustrated that the failure of DSJ is controlled not only by the ultimate loading, but also by the applied displacement until complete failure. Therefore, the failure energy, which is defined as the integral of the loading with respect to the displacement, was adopted to estimate the joint performance. Subsequently, the numerical results showed that the failure energy of the joint with the ductile adhesive is higher than that of the joint with the brittle one. Furthermore, all the discussed characteristic parameters of a DSJ with a given adhesive, including ultimate loading, the von-Mises equivalent stress and interface damage level corresponding to the ultimate loading, and the failure energy, were inversely proportional to the scarf angle. Finally, through comparing with the existing experimental measurements, the adoptive method was validated.
机译:数值研究了双丝巾接缝(DSJ)在拉力和弯曲力共同作用下的承载能力和损伤程度,并考虑了丝巾角度和胶粘剂类型的影响。有限元方法(FEM)包括具有双线性形状的混合模式内聚区模型(CZM),用于控制界面分离行为。在对应于极限载荷的点上,观察到与易碎粘合剂的DSJ的界面损伤水平比与易碎粘合剂的DSJ的界面损伤水平更高且更均匀。不仅如此,数值结果还表明,DSJ的破坏不仅受极限载荷的控制,而且还受施加位移直至完全破坏的控制。因此,采用失效能量(定义为载荷相对于位移的积分值)来估算联合性能。随后,数值结果表明,具有韧性粘合剂的接头的失效能量高于具有脆性粘合剂的接头的失效能量。此外,具有给定粘合剂的DSJ的所有已讨论的特征参数,包括极限载荷,与极限载荷相对应的von-Mises等效应力和界面损伤水平以及破坏能量,均与领角成反比。最后,通过与现有的实验测量结果进行比较,验证了采用方法。

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