TY - JOUR
T1 - Enhancing the mechanical and anticorrosion properties of 316L stainless steel via a cathodic plasma electrolytic nitriding treatment with added PEG
AU - Zhang, Tianyi
AU - Wu, Junsheng
AU - Jin, Lei
AU - Zhang, Zhan
AU - Rong, Wan
AU - Zhang, Bowei
AU - Wang, Yi
AU - He, Yedong
AU - Liu, Wei
AU - Li, Xiaogang
N1 - Publisher Copyright:
© 2019
PY - 2019/11
Y1 - 2019/11
N2 - A cathodic plasma electrolytic nitriding (CPEN) treatment with a urea aqueous solution was performed on 316L stainless steel to rapidly improve its surface properties in this work. Test results show that the PEG2000 macromolecules increased the nitriding energy via enhancing the ability to bond the produced gas film to the metal/electrolyte interface. The cross-sectional morphologies indicate that a thick nitrided layer was obtained when the urea concentration was 543 g l−1, corresponding to a Vickers hardness 450 HV0.1, which was 3.5 times larger than that of the substrate. The nitrided layer mainly contained expanded austenite (γN), oxides and iron nitrides (e.g., Fe3O4 and FeN0.076). In terms of its performance, coefficient of friction (COF) of the nitride layer decreased to nearly two-thirds that of the untreated layer, and the passivation current densities of the nitrided sample in a 3.5% NaCl solution decreased by an order of magnitude compared to that of the substrate. Therefore, the approach presented herein provides an attractive way to modify the effect of CPEN in a urea aqueous solution.
AB - A cathodic plasma electrolytic nitriding (CPEN) treatment with a urea aqueous solution was performed on 316L stainless steel to rapidly improve its surface properties in this work. Test results show that the PEG2000 macromolecules increased the nitriding energy via enhancing the ability to bond the produced gas film to the metal/electrolyte interface. The cross-sectional morphologies indicate that a thick nitrided layer was obtained when the urea concentration was 543 g l−1, corresponding to a Vickers hardness 450 HV0.1, which was 3.5 times larger than that of the substrate. The nitrided layer mainly contained expanded austenite (γN), oxides and iron nitrides (e.g., Fe3O4 and FeN0.076). In terms of its performance, coefficient of friction (COF) of the nitride layer decreased to nearly two-thirds that of the untreated layer, and the passivation current densities of the nitrided sample in a 3.5% NaCl solution decreased by an order of magnitude compared to that of the substrate. Therefore, the approach presented herein provides an attractive way to modify the effect of CPEN in a urea aqueous solution.
KW - 316L stainless steel
KW - Cathodic plasma electrolytic nitriding
KW - Coefficient of friction
KW - Polarization curves
UR - https://www.scopus.com/pages/publications/85072272718
U2 - 10.1016/j.jmst.2019.07.031
DO - 10.1016/j.jmst.2019.07.031
M3 - 文章
AN - SCOPUS:85072272718
SN - 1005-0302
VL - 35
SP - 2630
EP - 2637
JO - Journal of Materials Science and Technology
JF - Journal of Materials Science and Technology
IS - 11
ER -