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Effect of oscillating laser beam offset on the microstructure and mechanical properties of dissimilar stainless steels joints

机译:振荡激光束偏移对不同不锈钢胶囊显微结构和机械性能的影响

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摘要

Laser oscillating welding of AISI 304 austenitic stainless steel (ASS) and AISI 420 martensitic stainless steel (MSS) was carried out. The effect of laser offset (O-L) on the element distribution, grain growth mode, phase composition, and the consequent mechanical properties were investigated. Epitaxial growth or columnar growth was mainly presented neighboring the fusion boundary, which was depended on the crystal similarity of the fusion zone and the base metals. With the laser beam shifting from the martensitic side to the austenitic side, the fraction of misorientation at 60 degrees within the martensite decreased from 22% to 9%. Correspondingly, that at 45 degrees distributed on the phase boundaries first increased to maximum of 38%, accompanied with the formation of austenite when the O-L increased to 0.6 mm, and then linearly decreased to 6% with the formation of pure austenite. The evolutions in phase composition, misorientation and mechanical properties were closely related to the element distribution within the welds, which could be accurately predicted by the proposed energy distribution model of the laser beam. The related mechanisms were discussed according to the martensitic transformation and the crystal orientation.
机译:进行AISI 304奥氏体不锈钢(ASI)和AISI 420马氏体不锈钢(MSS)的激光振荡焊接。研究了激光偏移(O-L)对元素分布,晶粒生长模式,相组合物和随后的机械性能的影响。外延生长或柱状生长主要呈现融合边界,其依赖于融合区和贱金属的晶体相似性。利用激光束从马氏体侧移向奥氏体侧,马氏体内60度在60度下的误诊分数从22%降至9%。相应地,在相边界上分布的45度,首先增加至最大38%,当O-L增加到0.6mm时,伴有奥氏体的形成,然后通过形成纯奥氏体线性降低至6%。相组成,错位和机械性能的进化与焊缝内的元素分布密切相关,这可以通过激光束的所提出的能量分布模型来精确预测。根据马氏体转换和晶体取向讨论了相关机制。

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