TY - JOUR
T1 - SCC investigation of low alloy ultra-high strength steel 30CrMnSiNi2A in 3.5wt% NaCl solution by slow strain rate technique
AU - Liu, Jianhua
AU - Guo, Qiang
AU - Yu, Mei
AU - Li, Songmei
N1 - Publisher Copyright:
© 2014 Production and hosting by Elsevier Ltd. on behalf of CSAA & BUAA.
PY - 2014
Y1 - 2014
N2 - To evaluate stress corrosion cracking (SCC) mechanism of low alloy ultra-high strength steel 30CrMnSiNi2A in environment containing NaCl, SCC behavior of the steel in 3.5wt% NaCl solution is investigated by slow strain rate technique (SSRT) with various strain rates and applied potentials, surface analysis technique, and electrochemical measurements. SCC susceptibility of the steel increases rapidly with strain rate decreasing from 1 × 10-5 s-1 to 5 × 10-7 s-1, and becomes stable when strain rate is lower than 5 × 10-7 s-1. SCC propagation of the steel in the solution at open circuit potential (OCP) needs sufficient hydrogen which is supplied at a certain strain rate. Fracture surface at OCP has similar characteristics with that at cathodic polarization -1000 mVSCE, which presents characteristic fractography of hydrogen induced cracking (HIC). All of these indicate that SCC behavior of the steel in the solution at OCP is mainly controlled by HIC rather than anodic dissolution (AD).
AB - To evaluate stress corrosion cracking (SCC) mechanism of low alloy ultra-high strength steel 30CrMnSiNi2A in environment containing NaCl, SCC behavior of the steel in 3.5wt% NaCl solution is investigated by slow strain rate technique (SSRT) with various strain rates and applied potentials, surface analysis technique, and electrochemical measurements. SCC susceptibility of the steel increases rapidly with strain rate decreasing from 1 × 10-5 s-1 to 5 × 10-7 s-1, and becomes stable when strain rate is lower than 5 × 10-7 s-1. SCC propagation of the steel in the solution at open circuit potential (OCP) needs sufficient hydrogen which is supplied at a certain strain rate. Fracture surface at OCP has similar characteristics with that at cathodic polarization -1000 mVSCE, which presents characteristic fractography of hydrogen induced cracking (HIC). All of these indicate that SCC behavior of the steel in the solution at OCP is mainly controlled by HIC rather than anodic dissolution (AD).
KW - Hydrogen
KW - NaCl solution
KW - Slow strain rate technique
KW - Stress corrosion cracking
KW - Ultra-high strength steel
UR - https://www.scopus.com/pages/publications/84921654608
U2 - 10.1016/j.cja.2014.03.025
DO - 10.1016/j.cja.2014.03.025
M3 - 文章
AN - SCOPUS:84921654608
SN - 1000-9361
VL - 27
SP - 1327
EP - 1333
JO - Chinese Journal of Aeronautics
JF - Chinese Journal of Aeronautics
IS - 5
ER -