TY - JOUR
T1 - Effect of tungsten on microstructures of annealed electrodeposited Ni-W alloy and its corrosion resistance
AU - Jinlong, Lv
AU - Zhuqing, Wang
AU - Tongxiang, Liang
AU - Suzuki, Ken
AU - Hideo, Miura
PY - 2018/3/15
Y1 - 2018/3/15
N2 - The ultrafine grained pure Ni and Ni-W alloy were obtained by electrodeposition technique and subsequent annealing treatment. The effects of annealing on the microstructures, the mechanical properties and the corrosion resistance of pure nickel and Ni-W alloy were investigated. The EBSD analyses showed that annealed pure Ni displayed preferred grain orientation, while annealed Ni-W alloy showed relatively more random grain orientation. Moreover, abnormal grain growth was observed in annealed pure Ni, while annealed Ni-W alloy displayed a more uniform grain size distribution. It could be predicted that solid solution of tungsten significantly suppressed grain growth and induced uniform grain size distribution during low temperature annealing process. Moreover, comparing with annealed pure Ni, the tungsten in annealed Ni-W alloy changed the semiconducting characteristic of surface passive films. Annealed Ni-W alloy showed higher corrosion resistance than annealed pure Ni in 3.5 wt% NaCl solution and in borate buffer solution.
AB - The ultrafine grained pure Ni and Ni-W alloy were obtained by electrodeposition technique and subsequent annealing treatment. The effects of annealing on the microstructures, the mechanical properties and the corrosion resistance of pure nickel and Ni-W alloy were investigated. The EBSD analyses showed that annealed pure Ni displayed preferred grain orientation, while annealed Ni-W alloy showed relatively more random grain orientation. Moreover, abnormal grain growth was observed in annealed pure Ni, while annealed Ni-W alloy displayed a more uniform grain size distribution. It could be predicted that solid solution of tungsten significantly suppressed grain growth and induced uniform grain size distribution during low temperature annealing process. Moreover, comparing with annealed pure Ni, the tungsten in annealed Ni-W alloy changed the semiconducting characteristic of surface passive films. Annealed Ni-W alloy showed higher corrosion resistance than annealed pure Ni in 3.5 wt% NaCl solution and in borate buffer solution.
KW - Anneal
KW - Corrosion
KW - Electrodeposition
KW - Ni-W alloy
KW - Orientation
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U2 - 10.1016/j.surfcoat.2018.01.070
DO - 10.1016/j.surfcoat.2018.01.070
M3 - Article
AN - SCOPUS:85041407252
VL - 337
SP - 516
EP - 524
JO - Surface and Coatings Technology
JF - Surface and Coatings Technology
SN - 0257-8972
ER -