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Numerical investigation on novel geometrical configuration for adhesively bonded T-joint between aluminum and sandwich panel

机译:铝与夹芯板之间粘接T型接头的新型几何构型的数值研究

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摘要

One of the applications of adhesive joints in marine structures can be the attaching of superstructure to main hull, which classifies as T-joint. Although previous researches have covered T-joint between similar materials (composite to composite and aluminum to aluminum), joining aluminum and sandwich panels has not been considered yet. In this paper, the common lightweight T-joint with triangle fillets were investigated and based on the FEM results, the geometry was modified in order to increase the load bearing capacity subject to tension load. Results show that change in joint geometry can dramatically enhance the strength, and it was observed that the modifications made by authors caused vertical failure load of the joint to rise by 725%. However, in order to utilize full capacity of the joint strength, materials with high strength features should be used, unless the joint components will fail before debonding. Load carrying capacity of joint was increased while the applied adhesive decreased by 10% compared to the common lightweight T-joint. The results of numerical analyses were in a good agreement with experimental tests and confirm the accuracy of numerical analyses. Adhesion interfaces were modeled with contact elements along with Cohesive Zone Model in ANSYS. Contact stress and contact gap at the instance of collapse are also presented to provide the reader with the better understanding of the joint performance and the behavior of various components of the joint in load bearing and force transition.
机译:胶粘接头在海洋结构中的应用之一可以是将上层结构固定在主船体上,这被归类为T型接头。尽管先前的研究已经涵盖了相似材料(复合材料和铝与铝的复合材料)之间的T型接头,但尚未考虑将铝和夹心板连接起来。本文研究了常见的带有三角形圆角的轻质T型接头,并根据有限元结果对几何形状进行了修改,以增加承受拉伸载荷的承载能力。结果表明,接头几何形状的变化可以显着提高强度,并且观察到作者进行的修改导致接头的垂直破坏载荷增加了725%。但是,为了充分利用接头强度,应使用具有高强度特征的材料,除非接头组件在剥离前会失效。与普通的轻质T型接头相比,接头的承载能力提高了,而所施加的粘合剂却降低了10%。数值分析的结果与实验测试吻合良好,证实了数值分析的准确性。使用ANSYS中的接触单元以及内聚区模型对粘合界面进行建模。还介绍了塌陷时的接触应力和接触间隙,以使读者更好地了解关节的性能以及关节的各个组件在承重和力转换中的行为。

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