材料科学
电子束焊接
纳米压痕
焊接
微观结构
等轴晶
冶金
高温合金
热影响区
钨极气体保护焊
母材
复合材料
焊缝
阴极射线
电弧焊
电子
物理
量子力学
作者
Xin Wen,Shuai Liu,Xinyu Gao,Bing Zhang,Yongqiang Wang,Yipeng Chen,Shichang Qiao,Fengzhen Wang,Na Li,Yuanbao Shi,Chao Yuan
标识
DOI:10.1016/j.jmrt.2023.08.254
摘要
This research investigates the relationship between the microstructure and mechanical properties of electron beam welding joints, with a particular emphasis on the influence of varying electron beam currents on AISI 410L stainless steel plates and NS163 Co-based superalloy wires, which is a rare and novel form of welding. An increase in beam current led to a gradual transformation of the weld microstructure from columnar to equiaxed grains, creating finer and more homogeneous grains. Macrosegregation was also observed, a consequence of the liquidus temperature difference between the weld metal (WM) and base metal (BM). The segregation structure exhibited irregularly shaped beaches near the fusion line and islands of unmixed and partially mixed NS163 within the WM. This phenomenon was more pronounced in samples with a lower beam current. Given the limitations in BM shape and WM size, nanoindentation was employed to characterize the strength of welded joints. In conjunction with microhardness measurements, it was confirmed that the weld is strengthened under different electron beam currents, with higher current resulting in a more significant strengthening effect. This study also underscores the value of nanoindentation in evaluating the weld strength of brush seals without destruction.
科研通智能强力驱动
Strongly Powered by AbleSci AI