Induction Assisted Hybrid Friction Stir Welding of Dissimilar Materials AA5052 Aluminium Alloy and X12Cr13 Stainless Steel

IF 1.5 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY Advances in Materials Science Pub Date : 2021-09-01 DOI:10.2478/adms-2021-0015
Dhanesh G. Mohan, J. Tomków, S. Gopi
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引用次数: 25

Abstract

Abstract This research aimed to study the induction in-situ heated hybrid friction stir welding (IAFSW) method to join AA5052 aluminium alloy with X12Cr13 stainless steel (SS) to enhance joint strength. The potency of this method on the mechanical properties and microstructural characterizations were also investigated. The results show that the transverse tensile strength gained was 94% of the AA5052 base metal that is 229.5 MPa. This superior strength was achieved due to the annealing that happened to the AA 5052 region and elevated plastic flow in the weld zone by the in-situ induction heating, which resulted in the elongation of the weld region. The microstructure characterization indicates that a refined grain structure was gained in the nugget zone without defects.
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异种材料AA5052铝合金与X12Cr13不锈钢的感应辅助混合搅拌摩擦焊接
摘要:本研究旨在研究AA5052铝合金与X12Cr13不锈钢(SS)的感应原位加热混合搅拌摩擦焊接(IAFSW)方法,以提高接头强度。研究了该方法对材料力学性能和显微组织表征的影响。结果表明,该材料的横向抗拉强度是AA5052母材229.5 MPa的94%。这种优异的强度是由于对AA 5052区域进行了退火处理,并通过原位感应加热提高了焊缝区域的塑性流动,从而提高了焊缝区域的伸长率。显微组织表征表明,在熔核区获得了细化的晶粒结构,无缺陷。
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Advances in Materials Science
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