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Friction stir welding of aluminium alloy AA5754 to steel DX54: Lap joints with conventional and new solution

机译:铝合金AA5754与DX54钢之间的搅拌摩擦焊:采用传统和新解决方案的搭接接头

摘要

The demand for joining of aluminum to steel is increasing in the automotive industry. There are solutions based on Friction Stir Welding (FSW) implemented to join these two dissimilar metals but these have not yet resulted in a reliable joint for the automotive industrial applications. The main reason is the brittle intermetallic compounds (IMCs) that are prone to form in the weld region. The objective of this thesis was to develop and test an innovative overlap joint concept, which may improve the quality of the FSW between aluminum alloy AA5754-H22 (2 mm) and steel DX54 (1.5 mm) for automotive applications.The innovative overlap joint concept consists of an interface with a wave shape produced on the steel side. The protrusion part of the shape will be directly processed by the tip of the probe with the intention of improving the mechanical resistance of the joint due to localized heat generation, extensive chemically active surfaces and extra mechanical interlocking. The innovative overlap joint concept was tested with three different travel speeds and axial forces. The welds were evaluated by visual inspection, microstructure observation and mechanical tests. Conventional overlap joints concept were produced to enable the evaluation of the efficiency of the innovative concept. Furthermore, multi-pass welds, with 2 and 3 passes, for both overlap joint concepts were conducted to verify the improvement of microstructure and mechanical performance. With a single-pass weld the conventional overlap joint concept presented higher strength than the innovative concept. The main mechanisms governing this result were the formation of IMCs and higher reduction of effective thickness in the aluminium alloy sheet for the innovative lap joint concept. The multi-pass welds with 2 passes have shown the best tensile shear strength for both overlap joint concepts, about 50 % efficiency in relation to the aluminium alloy base material. One issue affecting the results is the fact that the method applied to produce the pre-weld deformation in the steel sheet, at the contact interface, did not yield the originally planned geometric shape for the innovative overlap joint concept.
机译:在汽车工业中,将铝连接到钢的需求正在增加。有一些基于摩擦搅拌焊接(FSW)的解决方案可以将这两种异种金属连接在一起,但是这些解决方案尚未为汽车工业应用提供可靠的连接。主要原因是易在焊接区域形成的脆性金属间化合物(IMC)。本文的目的是开发和测试一种创新的搭接接头概念,该概念可以提高AA5754-H22铝合金(2毫米)和DX54钢(1.5毫米)铝合金之间的FSW质量。由在钢面上产生波形的界面组成。形状的突出部分将由探针的尖端直接处理,目的是由于局部生热,广泛的化学活性表面和额外的机械互锁而提高接头的机械阻力。创新的搭接接头概念通过三种不同的行进速度和轴向力进行了测试。通过目视检查,显微组织观察和机械测试对焊缝进行评估。产生了传统的搭接接头概念,以便能够评估创新概念的效率。此外,对两种搭接接头概念进行了2和3道焊道的多道焊,以验证组织和机械性能的提高。对于单道焊,传统的搭接接头概念比创新的概念具有更高的强度。决定这一结果的主要机制是IMC的形成以及铝合金板有效搭接概念的更高有效厚度减小。对于两种搭接接头概念,具有2道焊道的多道焊道均显示出最佳的拉伸剪切强度,相对于铝合金基材,效率约为50%。影响结果的一个问题是,用于在接触界面处在钢板中产生预焊接变形的方法并未产生创新的搭接接头概念最初计划的几何形状。

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  • 作者

    Wang Hao;

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  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 en
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