首页> 外文期刊>Vacuum: Technology Applications & Ion Physics: The International Journal & Abstracting Service for Vacuum Science & Technology >Microstructure and hardness studies of electron beam welded Inconel 625 and stainless steel 304L
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Microstructure and hardness studies of electron beam welded Inconel 625 and stainless steel 304L

机译:电子束焊接Inconel 625和304L不锈钢的组织和硬度研究

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摘要

In this study, electron beam welding of dissimilar Inconel 625 and SS 304L alloys was successfully performed by employing optimized electron beam welding parameters. The welded joint was characterized using SEM/EDS, XRD and micro-hardness tester. The welded joint was found homogeneous, well bonded and defect free. Two types of microstructure i.e. columnar dendritic and cellular dendritic were observed in the fusion zone. The development of different microstructures in the fusion zone was attributed to the localized cooling effects during solidification. Few micro-cracks along with dendrites splitting were observed in the vicinity of end crater that was mainly due to the segregation of S element. A significant variation of Ni and Fe was observed across Inconel/FZ and FZ/SS interfaces due to their fast diffusion in the melt pool. Micro-hardness measurements across Inconel/FZ and FZ/SS interfaces showed an increasing trend in the FZ from SS 304L towards Inconel base alloy.
机译:在这项研究中,通过采用优化的电子束焊接参数成功地进行了异种Inconel 625和SS 304L合金的电子束焊接。使用SEM / EDS,XRD和显微硬度测试仪对焊接接头进行表征。发现焊接接头均匀,粘结良好且无缺陷。在融合区观察到两种类型的微观结构,即柱状树突和细胞树突。熔合区不同组织的发展归因于凝固过程中的局部冷却效应。在末端陨石坑附近几乎没有观察到微裂纹和树枝状裂纹的破裂,这主要是由于S元素的偏析。由于镍和铁在熔池中的快速扩散,在整个Inconel / FZ和FZ / SS界面处观察到Ni和Fe的显着变化。跨Inconel / FZ和FZ / SS界面的显微硬度测量表明,FZ从SS 304L向Inconel基合金的趋势有所增加。

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