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Material and adhesive effect in adhesively-bonded composite stepped-lap joints

机译:粘粘合复合阶梯式接头中的材料和粘合效果

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摘要

Adhesive bonding is a predominant bonding technique in the aeronautical and automotive industries. Cohesive zone models, used together with the finite element method, are a viable tool to predict the strength of adhesive joints. The main objective of this study is to evaluate experimentally and numerically (by cohesive zone model) the mechanical performance of carbon-fiber reinforced polymer stepped-lap bonded joints submitted to tensile loads, for different overlap lengths (L-O) and adhesives. The failure mode analysis showed a predominant failure type for all adhesives and good correspondence with the numerical predictions. Normalized peel (sigma(y)) and shear (tau(xy)) stresses in the adhesive highly increased withL(O), which then reflected on different maximum load (P-m) evolution withL(O), depending on the adhesive's ductility. The damage variable SDEG (stiffness degradation) was also evaluated and emphasized on the smaller damage zone atP(m)for the brittle adhesive. A significant geometry and material effect were found onP(m)of the stepped-lap joints, with benefit for largeL(O). In this regard, cohesive zone model revealed to be a suitable tool in determining the behavior of different joints. Comparison with joints with aluminum showed that, provided that no carbon-fiber reinforced polymer delamination occurs, stepped-lap joints between carbon-fiber reinforced polymer adherends give better results due to the higher composite stiffness.
机译:粘合剂粘合是航空和汽车工业中的主要粘合技术。与有限元方法一起使用的凝聚区型号是一种可行的工具,可以预测粘合接头的强度。本研究的主要目的是通过实验和数值(通过凝聚区域模型)进行评估,碳纤维增强聚合物的机械性能载入拉伸载荷的碳纤维增强聚合物键合接头,用于不同的重叠长度(L-O)和粘合剂。故障模式分析显示所有粘合剂的主要失效类型和与数值预测的良好对应。在粘合剂中的归一化剥离(Sigma(y))和剪切(Tau(xy))应力高度增加,随后反映在不同的最大载荷(p-m)进化上,与粘合剂的延展性相反。还评估损伤变量SDEG(刚度降解)并强调脆性粘合剂的较小损伤区ATP(M)。阶梯式接头的ONP(M)发现了显着的几何形状和材料效果,具有Largel(O)的益处。在这方面,粘性区域模型显示是确定不同关节行为的合适工具。与铝的关节相比表明,如果没有发生碳纤维增强聚合物分层,则碳纤维增强聚合物之间的阶梯式圈接头由于较高的复合刚度而导致效果更好。

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