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首页> 外文期刊>Science and Technology of Welding and Joining >Homogenisation of chemical composition and microstructure in laser filler wire welding of AA 6009 aluminium alloy by in situ electric current stirring
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Homogenisation of chemical composition and microstructure in laser filler wire welding of AA 6009 aluminium alloy by in situ electric current stirring

机译:AA 6009铝合金激光填充焊中化学成分和组织的均匀化。

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摘要

Owing to the rapid cooling rates, the deposited and base metals could be mixed incompletely during laser welding of Al alloys in most cases. The objective of this research is to explore a possible method to promote the mixing of materials inside the molten pool by making use of the magnetofluid dynamic effect of electric current. Full penetration CO2 laser welding of 3 mm thick alloy 6009 sheets was performed with an external electric current simultaneously into the weld pool via a filler wire. It is found that the deposited metal is mainly concentrated on the upper part of the weld fusion zone, and the weld zone microstructure is non-uniform without the electric current addition. With the application of an electric current, the weld fusion zone geometry is reshaped, and the chemical composition and microstructure of the weld metal are homogenised. The mechanism is found to be electromagnetic force stirring of the molten pool.
机译:由于快速的冷却速度,在大多数情况下,在铝合金的激光焊接过程中,沉积的金属和贱金属可能不完全混合。这项研究的目的是探索一种利用电流的磁流体动力效应来促进熔池内部材料混合的方法。将3毫米厚的6009合金板进行全熔透CO2激光焊接,同时利用外部电流通过填充丝同时将其焊接到熔池中。发现沉积的金属主要集中在焊接熔合区的上部,并且在没有增加电流的情况下,焊接区的微观结构是不均匀的。随着电流的施加,焊接熔合区的几何形状被改变,并且焊接金属的化学成分和微观结构被均化。发现该机制是熔池的电磁力搅拌。

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