Folgen
wenjun kuang
wenjun kuang
Professor, Xi'an Jiaotong University
Bestätigte E-Mail-Adresse bei umich.edu
Titel
Zitiert von
Zitiert von
Jahr
Microstructural characteristics of the oxide scale formed on 304 stainless steel in oxygenated high temperature water
W Kuang, EH Han, X Wu, J Rao
Corrosion Science 52 (11), 3654-3660, 2010
1262010
The oxidation behaviour of 304 stainless steel in oxygenated high temperature water
W Kuang, X Wu, EH Han
Corrosion Science 52 (12), 4081-4087, 2010
1232010
The mechanism of oxide film formation on Alloy 690 in oxygenated high temperature water
W Kuang, X Wu, EH Han, J Rao
Corrosion science 53 (11), 3853-3860, 2011
1202011
Influence of dissolved oxygen concentration on the oxide film formed on 304 stainless steel in high temperature water
W Kuang, X Wu, EH Han
Corrosion science 63, 259-266, 2012
952012
Turning a native or corroded Mg alloy surface into an anti-corrosion coating in excited CO2
Y Wang, B Liu, X Zhao, X Zhang, Y Miao, N Yang, B Yang, L Zhang, ...
Nature communications 9 (1), 4058, 2018
882018
The effects of grain boundary carbide density and strain rate on the stress corrosion cracking behavior of cold rolled Alloy 690
W Kuang, GS Was
Corrosion Science 97, 107-114, 2015
792015
Insights into the stress corrosion cracking of solution annealed alloy 690 in simulated pressurized water reactor primary water under dynamic straining
W Kuang, M Song, GS Was
Acta Materialia 151, 321-333, 2018
772018
Stress corrosion crack initiation in Alloy 690 in high temperature water
T Moss, W Kuang, GS Was
Current Opinion in Solid State and Materials Science 22 (1), 16-25, 2018
742018
Influence of dissolved oxygen concentration on the oxide film formed on Alloy 690 in high temperature water
W Kuang, X Wu, EH Han
Corrosion science 69, 197-204, 2013
722013
Effect of nickel ion from autoclave material on oxidation behaviour of 304 stainless steel in oxygenated high temperature water
W Kuang, X Wu, EH Han, L Ruan
Corrosion Science 53 (3), 1107-1114, 2011
662011
The effect of grain boundary structure on the intergranular degradation behavior of solution annealed alloy 690 in high temperature, hydrogenated water
W Kuang, GS Was
Acta Materialia 182, 120-130, 2020
532020
The effect of cold rolling on grain boundary structure and stress corrosion cracking susceptibility of twins in alloy 690 in simulated PWR primary water environment
W Kuang, GS Was, C Miller, M Kaufman, T Alam, B Gwalani, R Banerjee
Corrosion Science 130, 126-137, 2018
452018
The oxidation of alloy 690 in simulated pressurized water reactor primary water
W Kuang, M Song, P Wang, GS Was
Corrosion Science 126, 227-237, 2017
452017
Probing long-range ordering in nickel-base alloys with proton irradiation
M Song, Y Yang, M Wang, W Kuang, CR Lear, GS Was
Acta Materialia 156, 446-462, 2018
442018
A high-resolution characterization of the initiation of stress corrosion crack in Alloy 690 in simulated pressurized water reactor primary water
W Kuang, GS Was
Corrosion Science 163, 108243, 2020
392020
Effect of alternately changing the dissolved Ni ion concentration on the oxidation of 304 stainless steel in oxygenated high temperature water
W Kuang, X Wu, EH Han, J Rao
Corrosion science 53 (8), 2582-2591, 2011
392011
The effect of post-irradiation annealing on the stress corrosion crack growth rate of neutron-irradiated 304L stainless steel in boiling water reactor environment
W Kuang, J Hesterberg, GS Was
Corrosion Science 161, 108183, 2019
242019
Corrosion behavior of ceramic-coated ZIRLO™ exposed to supercritical water
KK Mandapaka, RS Cahyadi, S Yalisove, W Kuang, K Sickafus, MK Patel, ...
Journal of Nuclear Materials 498, 495-504, 2018
232018
The intergranular oxidation behavior of low-angle grain boundary of alloy 600 in simulated pressurized water reactor primary water
X Feng, J Xie, M Huang, W Kuang
Acta Materialia 224, 117533, 2022
212022
Corrosion behaviors of heat-resisting alloys in high temperature carbon dioxide
L Yang, H Qian, W Kuang
Materials 15 (4), 1331, 2022
202022
Das System kann den Vorgang jetzt nicht ausführen. Versuchen Sie es später erneut.
Artikel 1–20