Martensitic transformation during electrochemical polishing of metastable austenitic stainless steel

被引:12
|
作者
Gwon, Hojun [1 ]
Chae, Junyoung [2 ]
Jeong, Chanwoo [2 ]
Lee, Hyukjae [2 ]
Kim, Dong Hwi [1 ]
Anaman, Sam Yaw [3 ]
Jeong, Dameul [4 ]
Cho, Hoon-Hwe [3 ]
Kwon, Young-Kyun [4 ]
Kim, Sung-Joon [1 ]
Han, Heung Nam [2 ]
机构
[1] Pohang Univ Sci & Technol, Grad Inst Ferrous Technol, Pohang 37673, South Korea
[2] Seoul Natl Univ, Res Inst Adv Mat, Dept Mat Sci & Engn, Seoul 08826, South Korea
[3] Hanbat Natl Univ, Dept Mat Sci & Engn, Daejeon 34158, South Korea
[4] Kyung Hee Univ, Res Inst Basic Sci, Dept Phys, Seoul 02447, South Korea
基金
新加坡国家研究基金会;
关键词
Martensitic transformation; Electrochemical polishing; Electroplasticity; Multiphysics simulation; First-principles calculations; ELECTRIC-CURRENT; DEFORMATION-BEHAVIOR; ALLOY; METALS; ZR;
D O I
10.1016/j.actamat.2022.118612
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
We found that remarkable martensitic transformation occurs during electrochemical polishing (EP) in 16Cr-5Ni metastable austenitic stainless steel. It was observed through EBSD measurement that the alpha' martensite fraction increases as the applied voltage and EP time increase. Interestingly, upon comparing EBSD, XRD, and ferrite scope measurements, it was confirmed that the martensitic transformation is confined to the surface where EP took place. To investigate the mechanism by which the EP process induces the martensitic transformation, COMSOL Multiphysics was used to calculate the electric charge distribution on the specimen surface under various applied voltages. In order to accurately consider the surface shape of the specimen, we used AFM for measurement of the three-dimensional space distribution of asperities, which was utilized as an initial condition of COMSOL Multiphysics simulation. Finally, through the first-principles calculations reflecting the obtained charge distribution in the surface region, it was concluded that significant stress could be developed due to the charge build-up on the surface, resulting in stress-induced martensitic transformation on the surface of the metastable austenitic stainless steel during EP.
引用
收藏
页数:11
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