首页> 外文期刊>The Journal of Adhesion >Finite Element Analysis of an Adhesive Joint Using the Cohesive Zone Model and Surface Pattern Design of Bonding Surfaces
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Finite Element Analysis of an Adhesive Joint Using the Cohesive Zone Model and Surface Pattern Design of Bonding Surfaces

机译:粘接区域的有限元分析,采用内聚力区域模型和粘结面的表面图案设计

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摘要

Adhesive joints have been widely used in the automotive and aerospace fields in order to reduce the weights of products. The strength of adhesive joints, accordingly, needs to be increased and their behaviour should be predicted in order to achieve accurate designs. Studies to improve the strength of adhesive joints via surface treatment methods or by using two adhesives with different mechanical properties have been conducted. Various modeling methods also have been studied to predict the behaviour of adhesive joints. Unfortunately, the relationship between the bonding surf ace roughness and adhesive joint strength needs to be further clarified in order to be applied in practical design. As analyzing the relationship through a conventionalfinite element method assuming perfect bonding is challenging, the behaviour of the adhesive joints may be analyzed using a cohesive zone model or interface modeling methods from an integrating released energy point of view. The strength of adhesive joints can be improved via micro-patterning due to the mechanical interlocking effect. Therefore, in this study, a micro-pattern was fabricated to improve the strength of adhesive joints. Various pattern-sized single leg bending joints and end notched flexure joints were manufactured and experimented upon. In this study, characteristics of each pattern surface were independently classified and modeled with a cohesive zone model. Finite element analyses were then performed and simulation results were compared with experimental results. The numerical results satisfactorily describe the experimental results, and failure loads were predicted with a maximum relative error of 8%. From these results, it may be concluded that the present findings can be applied to practical design and that the failure load can be predicted via a finite element analysis.
机译:粘合接头已广泛用于汽车和航空航天领域,以减轻产品的重量。因此,需要增加粘合接头的强度,并且应该预测其行为,以实现精确的设计。已经进行了通过表面处理方法或使用两种具有不同机械性能的粘合剂来提高粘合接头强度的研究。还研究了各种建模方法来预测胶粘接头的行为。不幸的是,粘合表面粗糙度和粘合接头强度之间的关系需要进一步阐明,以便在实际设计中应用。当假设常规粘结是挑战性的通过常规有限元方法分析关系时,可以使用粘结区模型或界面建模方法从积分释放的能量角度分析粘结接头的行为。由于机械互锁的作用,可以通过微图案提高粘合接头的强度。因此,在这项研究中,制作了微图案以提高粘合接头的强度。制造并试验了各种图案尺寸的单腿弯曲接头和端部切口挠性接头。在这项研究中,每个图案表面的特征被独立分类,并使用内聚区模型进行建模。然后进行有限元分析,并将仿真结果与实验结果进行比较。数值结果令人满意地描述了实验结果,并且预测了故障载荷,最大相对误差为8%。从这些结果可以得出结论,本发现可以应用于实际设计,并且可以通过有限元分析来预测失效载荷。

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