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Experimental and numerical analysis of hybrid adhesively-bonded scarf joints

机译:杂交粘粘粘合围巾关节的实验性和数值分析

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摘要

Adhesive joints have been largely used in many areas such as automotive and aeronautic industries, navy, electronic components and construction, among others. The increased application of this joining technique is due to an easy manufacturing, lower costs, easiness to joint different materials, more uniform distribution of stresses and higher fatigue strength. The scarf joint is one of the possible joint configurations and it excels in not requiring to change the initial shape of the component. Improved stress distributions over single and double-lap joints are obtained, although it has some complexity in the manufacturing process. In many practical applications, joining between different adherend materials is required due to design constraints, which poses additional difficulties because of the different stiffness of the materials. This work presents an experimental and numerical study on hybrid scarf joints, between composite and aluminium adherends, and considering different scarf angles (alpha) and adhesives (the brittle Araldite(center dot) AV138 and the moderately ductile Araldite(center dot) 2015). Comparison with joints having material balanced adherends is also performed numerically. The numerical analysis by Finite Elements (FE) enabled obtaining peel (sigma(y)) and shear (tau(xy)) stresses using the software Abaqus(center dot), which are then used to discuss the strength between different joint configurations. Cohesive Zone Models (CZM) were used to predict the joint strength and the results were compared with experiments for validation. A significant variation of the joints' behaviour was found depending on a and the applied adhesive, which was directly linked to the stresses developed in the adhesive layer during loading. CZM were found to be an accurate design tool for the hybrid scarf joints.
机译:胶粘剂在很大程度上用于许多领域,例如汽车和航空工业,海军,电子元件和建筑等。这种加入技术的应用增加是由于易于制造,降低成本,易于接触不同的材料,更均匀的应力分布和更高的疲劳强度。围巾关节是可能的关节配置之一,并且它不需要改变组件的初始形状。获得了单圈和双圈接头的改进的应力分布,尽管它在制造过程中具有一些复杂性。在许多实际应用中,由于设计限制,需要在不同的粘物材料之间接纳,这是由于材料的不同刚度造成额外的困难。该工作介绍了杂交围巾关节的实验性和数值研究,复合和铝粘附在粘附之间,并考虑不同的围巾角度(α)和粘合剂(脆性亚alaldite(中心点)AV138和中度延性亚亚尔(Center Dot)2015)。与具有物质平衡粘物的关节的比较也在数值上进行。使用软件ABAQUS(中心点),通过ABAQU(中心点)的剪切(SIGMA(Y))和剪切(TAU(XY))和剪切(TAU(XY))应力进行有限元(FE)的数值分析。粘性区模型(CZM)用于预测关节强度,并将结果与​​实验进行比较。根据A和施加的粘合剂发现关节行为的显着变化,该粘合剂直接连接到装载期间粘合剂层中的应力。 CZM被发现是混合围巾关节的准确设计工具。

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