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An experimental and numerical study on adhesive joints for composites

机译:复合材料粘接接头的实验与数值研究

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摘要

In many composites structures the use of joints allows not only more versatility during the assemblage process but also reduces the cost during the manufacturing. As joints are considered regions of weakness, their study has been conducted since late 1930s. Researchers have been working on new joint designs looking for better performances. One of these new designs is the bonded wavy-lap joint presented by Zeng and Sun in 2001. This paper addresses the advantages and disadvantages of the wavy-lap joint and a modified wavy-lap joint design is studied. To be able to guarantee the data consistency a statistical study is performed considering not only the sample size population but also the statistical differences between the single-lap and wavy-lap joints. Besides, the experimental tests, a finite element simulation is carried out to analyze the stress fields inside the joints. The results show an average increase on loading to failure close to 41%. This fact could be due to the compressive stress field developed inside the wavy-lap joint. In addition, this stress field distribution can also be the reason for the adherent delamination observed on the wavy-lap joints. So far, the modified wavy-lap joint seems to lead to stronger joints.
机译:在许多复合材料结构中,使用接头不仅在装配过程中具有更多用途,而且还降低了制造过程中的成本。由于关节被认为是脆弱的区域,因此他们的研究自1930年代后期开始进行。研究人员一直在研究新的关节设计,以寻求更好的性能。这些新设计之一是Zeng和Sun在2001年提出的粘结波浪搭接。本文探讨了波浪搭接的优缺点,并研究了一种改进的波浪搭接设计。为了保证数据的一致性,进行统计研究时不仅要考虑样本数量,还要考虑单圈和波浪圈接头之间的统计差异。此外,通过实验测试,进行了有限元模拟,以分析接头内部的应力场。结果表明,加载到故障的平均增加率接近41%。这个事实可能是由于波浪形搭接接头内部产生了压应力场。此外,这种应力场分布也可能是在波浪搭接处观察到粘附分层的原因。到目前为止,改进的波浪搭接似乎可以使关节更坚固。

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