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Microstructure and mechanical properties of electron beam welded dissimilar steel to Fe-Al alloy joints

机译:电子束焊接异种钢与Fe-Al合金接头的组织和力学性能

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摘要

Electron beam welding (EBW) technique was used to perform dissimilar joining of plain carbon steel to Fe-7%Al alloy under three different weld conditions such as with beam oscillation, without beam oscillation and at higher welding speed. The effect of weld parameters on the microstructure and mechanical properties of dissimilar joints was studied using optical microscopy, SEM, EBSD, hardness, tensile and erichsen cup tests. Microstructure results show that the application of beam oscillation resulted in uniform and homogeneous microstructure compared to without beam oscillations and higher welding speed. Further, it was observed that weld microstructure changes from equiaxed to columnar grains depending on the weld speed. High weld speed results in columnar grain structure in the weld joint. Erichsen cup test results show that the application of beam oscillation results in excellent formability as compared to high weld speed. Tensile test results show no significant difference in strength properties in all three weld conditions, but the ductility was found to be highest for joints obtained with the application of weld beam oscillation as compared to without beam oscillation and high weld speed. This study shows that the application of beam oscillations plays an important role in improving the weld quality and performance of EBW dissimilar steel to Fe-Al joints.
机译:电子束焊接(EBW)技术用于在三种不同的焊接条件下,例如在有光束振荡,无光束振荡且焊接速度较高的情况下,将普通碳素钢与Fe-7%Al合金进行异种连接。使用光学显微镜,SEM,EBSD,硬度,拉伸和埃里克森杯试验研究了焊接参数对异种接头组织和力学性能的影响。显微组织结果表明,与没有射线束振荡和更高的焊接速度相比,采用射线束振荡可产生均匀而均匀的显微组织。此外,观察到,焊接组织根据焊接速度从等轴晶粒变为柱状晶粒。高焊接速度会导致焊接接头出现柱状晶粒结构。埃里克森杯的测试结果表明,与高焊接速度相比,光束振荡的应用可实现出色的可成形性。拉伸试验结果表明,在所有三种焊接条件下,强度性能均无显着差异,但与没有梁振动和高焊接速度的情况相比,发现采用焊接梁振动获得的接头的延展性最高。研究表明,束流振动的应用对于改善EBW异种钢与Fe-Al接头的焊接质量和性能起着重要作用。

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