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Analysis of overlaminated double-lap joints

机译:叠层双搭接接头分析

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Adhesively bonded joints are frequently used in aircraft and aerospace structures. A bonding technique called overlamination, where the parts to be joined are connected by adherends that are laminated directly upon the assembly, is more common in the marine industry, and there is a need to assess the stress distribution in such joints. In the present paper, the interfacial stress distribution in overlaminated double-lap joints is investigated. New analytical models of the shear and transverse (through-thickness) normal stresses are derived. The analytical solutions are validated through comparison with finite element calculations, and the accuracy is shown to be high for the unbalanced steel-composite joints as well as the (nearly) balanced composite-composite joints considered. In the former case, the load transfer between the inner and outer adherends is concentrated to a single joint end, while the transfer is distributed to both ends in the latter balanced case. The analysis of the transverse normal stresses demonstrates that the critical failure mode in overlaminated double-lap joints may be related to excessive peel stresses. However, this problem may be alleviated by, e.g. tapering the end of the outer adherends.
机译:胶接接头常用于飞机和航空航天结构。在海洋工业中,一种称为过层压的粘合技术非常普遍,在这种技术中,待连接的零件通过直接层压在组件上的被粘物进行连接,这在海洋工业中更为普遍,因此需要评估此类接头的应力分布。本文研究了叠层双搭接接头的界面应力分布。得出了剪切和横向(贯穿厚度)法向应力的新分析模型。通过与有限元计算进行比较,验证了解析解的正确性,并且对于不平衡的钢-复合节点以及考虑的(几乎)平衡的复合-复合节点,其精度都很高。在前一种情况下,内外被粘物之间的载荷传递集中在单个接头端,而在后者的平衡情况下,载荷则分布在两端。横向法向应力的分析表明,叠层双搭接接头的临界破坏模式可能与过度剥离应力有关。然而,该问题可以通过例如减轻。使外部被粘物的末端逐渐变细。

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