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Investigation of the Weld Properties of Inconel 625 based on Nb Content

机译:基于Nb含量研究Inconel 625的焊接性能

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In this study, shielded metal arc welding was performed on Inconel 625 as a function of Nb content at 2.24 wt%, 3.25 wt%, and 4.26 wt%. The microstructure was observed using scanning electron microscopy/energy dispersive X-ray spectroscopy(SEM/EDS) and showed the development of a columnar dendrite structure in the specimen having the least Nb content. From the hardness test, the hardness value was confirmed to reduce with decreasing Nb content. From electron backscatter diffraction(EBSD) analysis, the largest grain size was found in the specimen with Nb content of 2.24 wt%. The potentiodynamic polarization test was carried out to determine the pitting corrosion resistance; there was no significant difference in the pitting corrosion resistance with increasing Nb content. To evaluate the degree of sensitization for intergranular corrosion, the Double Loop Electrochemical Potentiodynamic Reactivation(DL-EPR test) was conducted. A similar degree of sensitization was found in two specimens except with a Nb content of 2.24 wt%, while a relatively high degree of sensitization was found in the specimen with a Nb content of 2.24 wt%.
机译:在这项研究中,对Inconel 625进行了屏蔽金属电弧焊,该焊接是Nb含量为2.24 wt%,3.25 wt%和4.26 wt%的函数。使用扫描电子显微镜/能量色散X射线光谱法(SEM / EDS)观察其显微结构,并显示出在具有最小Nb含量的样品中柱状枝晶结构的发展。从硬度试验可以确认,随着Nb含量的降低,硬度值降低。通过电子背散射衍射(EBSD)分析,发现样品中的最大晶粒尺寸为Nb含量为2.24 wt%。进行电位动力学极化试验以确定耐点蚀性。随着Nb含量的增加,抗点蚀性能没有显着差异。为了评估对晶间腐蚀的敏感程度,进行了双回路电化学电位动力学活化(DL-EPR测试)。在两个样品中发现了相似的敏化度,但Nb含量为2.24 wt%,而在样品中发现了相对较高的敏化度,其Nb含量为2.24 wt%。

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