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Effects of external electric field on microstructure and property of friction welded joint between copper and stainless steel

机译:外部电场对铜不锈钢摩擦焊接头组织和性能的影响

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摘要

Formability is a key factor which influences the friction weldability of dissimilar materials. Resistance to formability of metals can be reduced by the electric induced plasticity under an external electric field. Friction welding of T2 Copper and 1Cr18Ni9Ti stainless steel was carried out under the electric fields with an attempt to improve the friction welclability of these two materials. Effects of different types of external electric field on the microstructure of the welded joints were investigated and distributions of the dominating elements in the weld zone were analyzed using EDX Torsion strength of the joints obtained from different welding parameters was tested. It was indicated that the dynamic recrystallization of the weld metal was enhanced by the applying electric fields. For the specimen connected to the cathode of the power supply (referring to negative field), much homogenous distribution of the recrystallized grains in the weld zone appeared. The diffusion distance of the dominating elements increased under either an AC electric field or a negative field. The torsion strength of the welding joints was improved with applying the external electric field, especially with the AC electric field. (c) 2006 Springer Science + Business Media, Inc.
机译:成型性是影响异种材料摩擦焊接性的关键因素。通过在外部电场下的电感应可塑性,可以降低金属的可成形性。 T2铜和1Cr18Ni9Ti不锈钢的摩擦焊接是在电场下进行的,试图提高这两种材料的摩擦可焊性。研究了不同类型的外部电场对焊接接头组织的影响,并利用EDX分析了焊接区中主要元素的分布。测试了不同焊接参数得到的接头的抗扭强度。结果表明,施加电场增强了焊缝金属的动态再结晶。对于连接到电源阴极的样品(称为负场),在焊接区中出现了重结晶晶粒的均匀分布。在交流电场或负电场下,主要元素的扩散距离增加。施加外部电场,尤其是施加交流电场,可提高焊接接头的抗扭强度。 (c)2006年Springer Science + Business Media,Inc.

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