TY - JOUR
T1 - Effect of substituting Mo for W on γ/γ′ partitioning behaviors of alloying elements in heat-treated second generation Ni based single crystal superalloys
T2 - An atom probe tomography study
AU - Ai, Cheng
AU - Li, Qing
AU - Zhang, Jun
AU - Su, Haijun
AU - Yang, Wenchao
AU - Liu, Lin
AU - Ru, Yi
AU - Zhang, Heng
AU - Song, Yuanyuan
AU - Chen, Yongnan
AU - Li, Shusuo
AU - Gong, Shengkai
N1 - Publisher Copyright:
© 2021 Elsevier Ltd
PY - 2021/7
Y1 - 2021/7
N2 - The effect of substituting Mo for W on γ/γ′ partitioning behaviors of alloying elements in heat-treated second generation Ni based single crystal superalloys was investigated via atom probe tomography technique. Re, Cr, Co and Mo elements tended to distribute in γ phase, while Al, Ta and W elements tended to distribute in γ′ phase, and significant interfacial segregation was not found in experimental alloys. Moreover, substituting Mo for W obviously increased Re content in γ phase. Meanwhile, Re content in γ phase increased with increasing Mo + Cr content in single crystal superalloy, while Re content in γ′ phase decreased with increasing W + Ta content in single crystal superalloy. In addition, partitioning ratios of both W and Mo elements were positively correlated with Ta content in single crystal superalloy, and partitioning ratio of Ta element was inversely correlated with Ta/Al ratio in single crystal superalloy. Furthermore, substituting Mo for W increased the solid solution strength of γ phase but decreased the solid solution strength of γ′ phase.
AB - The effect of substituting Mo for W on γ/γ′ partitioning behaviors of alloying elements in heat-treated second generation Ni based single crystal superalloys was investigated via atom probe tomography technique. Re, Cr, Co and Mo elements tended to distribute in γ phase, while Al, Ta and W elements tended to distribute in γ′ phase, and significant interfacial segregation was not found in experimental alloys. Moreover, substituting Mo for W obviously increased Re content in γ phase. Meanwhile, Re content in γ phase increased with increasing Mo + Cr content in single crystal superalloy, while Re content in γ′ phase decreased with increasing W + Ta content in single crystal superalloy. In addition, partitioning ratios of both W and Mo elements were positively correlated with Ta content in single crystal superalloy, and partitioning ratio of Ta element was inversely correlated with Ta/Al ratio in single crystal superalloy. Furthermore, substituting Mo for W increased the solid solution strength of γ phase but decreased the solid solution strength of γ′ phase.
KW - Atom probe tomography (APT)
KW - Ni based single crystal superalloy
KW - Substituting Mo for W
KW - γ/γ′ partitioning behaviors of alloying elements
UR - http://www.scopus.com/inward/record.url?scp=85103081217&partnerID=8YFLogxK
U2 - 10.1016/j.intermet.2021.107198
DO - 10.1016/j.intermet.2021.107198
M3 - 文章
AN - SCOPUS:85103081217
SN - 0966-9795
VL - 134
JO - Intermetallics
JF - Intermetallics
M1 - 107198
ER -