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Analysis of adhesively-bonded T-joints by experimentation and cohesive zone models

机译:通过实验和内聚区模型分析粘接T型接头

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摘要

Within the scope of adhesively-bonded joints, one of the joint types having industrial application is the T-joint, for example, in marine applications (joining of panels to the hull and connecting the glass-fibre composite hull with anti-flood panels) and aeronautical applications (wing panels, fuselage sections). This work aims to experimentally and numerically study, by cohesive zone models (CZM), the behaviour of T-joints under peel loads. The experimentally evaluated adhesives are the Araldite((R)) AV138 (high ultimate strength but brittle) and Araldite((R)) 2015 (less stress to failure but ductile and more flexible). The joint strength is evaluated with different L-shaped adherends' thickness (t(P2)). With the numerical analysis, the stress distributions, damage evolution and strength are studied. Additionally, a purely numerical study compared joints with or without adhesive filling at the curvature of the L-shaped adherends, and an extremely ductile adhesive (Sikaforce((R)) 7752) was additionally evaluated. The experimental tests validated the numerical results and showed that CZM is an accurate technique for the study of T-joints. It was also shown that the geometry of the L-parts, the presence of filler adhesive and the type of adhesive have a direct influence on the joint strength. In fact, in this particular joint configuration, the ductile but with lower ultimate strength adhesive Sikaforce((R)) 7752 clearly outperforms the two adhesives with higher mechanical properties but less ductility.
机译:在粘接接头的范围内,具有工业应用的接头类型之一是T型接头,例如,在船舶应用(将面板连接到船体并将玻璃纤维复合材料船体与防洪板连接)和航空应用(翼板,机身部分)。本工作旨在通过内聚区模型 (CZM) 对剥离载荷下 T 形接头的行为进行实验和数值研究。实验评估的粘合剂是 Araldite((R)) AV138(极限强度高但易脆)和 Araldite((R)) 2015(失效应力较小,但延展性强且柔韧性更强)。用不同L形粘附物的厚度(t(P2))来评估接缝强度。通过数值分析,研究了应力分布、损伤演变和强度。此外,一项纯数值研究比较了在L形被粘件曲率处有或没有粘合剂填充的接头,并额外评估了一种延展性极强的粘合剂(Sikaforce((R))7752)。实验验证了数值结果,表明CZM是研究T型接头的准确技术。研究还表明,L型零件的几何形状、填充胶粘剂的存在和胶粘剂的类型对接缝强度有直接影响。事实上,在这种特殊的接头配置中,延展性强但极限强度较低的粘合剂 Sikaforce((R)) 7752 明显优于机械性能较高但延展性较低的两种粘合剂。

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