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Friction Stir Lap Welding of Light Alloys

机译:轻合金的搅拌摩擦焊

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摘要

Friction stir welding (FSW) has been widely applied and studied intensively in recent times. The majority of FSW studies have been based on butt joint configuration. Joining with lap configuration is also widely used in rail, automotive and aerospace industries. Thus, various FS material flow related joint features and deformation and fracture behaviours of the joints under loading need to be better understood for FSLW to be more widely applied particularly for light weight structure applications. In this paper, features of hooking formed during FSLW of Al-to-Al and Mg-to-Mg will be quantified. These features are the results of two sequential material flows during FS which, as will be shown, are speeds dependent and alloy deformation behaviour dependent. Strength values of the welds will be presented and it has been found that hooking affects Al and Mg FSL welds very differently, due to the different modes of local plastic deformation. FSLW study has been extended to Al-to-Ti alloy, for which we will show that under a well controlled FSLW condition a thin and continuous interface intermetallic layer forms and this layer can bear a high shear load. As a result, the strength of the lap weld is very high.
机译:搅拌摩擦焊(FSW)近年来得到了广泛的应用和深入的研究。大部分FSW研究都基于对接结构。搭接配置的连接也广泛用于铁路,汽车和航空航天行业。因此,为了使FSLW更广泛地应用,特别是在轻型结构应用中,需要更好地理解各种FS材料流动相关的接头特征以及接头在载荷下的变形和断裂行为。在本文中,将定量分析铝对铝和镁对镁的FSLW过程中形成的挂钩特征。这些特征是在FS期间两次连续材料流动的结果,这将显示出速度和合金变形行为的关系。将给出焊缝的强度值,并且已经发现,由于局部塑性变形的方式不同,钩挂对Al和Mg FSL焊缝的影响也大不相同。 FSLW研究已经扩展到Al-to-Ti合金,为此我们将显示,在FSLW受到良好控制的条件下,会形成薄而连续的界面金属间层,并且该层可以承受高剪切载荷。结果,搭接焊缝的强度非常高。

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