TY - JOUR
T1 - Influence of secondary orientation on [111]-orientated high temperature creep properties of single crystal alloy with a thin-wall structure
AU - Zhang, Shuangqi
AU - Wang, Haibo
AU - Ru, Yi
AU - Hu, Bin
AU - Shang, Yong
AU - Zhao, Haigen
AU - Ma, Guoquan
AU - Li, Shusuo
AU - Pei, Yanling
AU - Gong, Shengkai
N1 - Publisher Copyright:
© 2023 The Author(s)
PY - 2024/1
Y1 - 2024/1
N2 - Designing single-crystal superalloy blades to thin wall structures produces the secondary orientation which is the perpendicularity orientation of the wall surface, becoming a newly-concerned crucial factor of performance. Here, we have studied the influence of [1 1 0] and [1 1 2] secondary orientations on 1100 °C/137 MPa creep properties of [1 1 1]-orientated single-crystal superalloys. The plastic deformation accumulation and the plastic limit during creep vary with secondary orientations. Our results give microstructural evidence of the change in the slip systems operation and micro-pore growth, and correlate the possible stress state in the thin wall to plastic deformation mechanism, and finally to properties, which can explain such influence. The results show that the activation of slip systems with different secondary orientations is different due to the different shear stress, and this difference of slip systems causes the difference of plastic deformation ability and pore growth and finally affects the creep performance.
AB - Designing single-crystal superalloy blades to thin wall structures produces the secondary orientation which is the perpendicularity orientation of the wall surface, becoming a newly-concerned crucial factor of performance. Here, we have studied the influence of [1 1 0] and [1 1 2] secondary orientations on 1100 °C/137 MPa creep properties of [1 1 1]-orientated single-crystal superalloys. The plastic deformation accumulation and the plastic limit during creep vary with secondary orientations. Our results give microstructural evidence of the change in the slip systems operation and micro-pore growth, and correlate the possible stress state in the thin wall to plastic deformation mechanism, and finally to properties, which can explain such influence. The results show that the activation of slip systems with different secondary orientations is different due to the different shear stress, and this difference of slip systems causes the difference of plastic deformation ability and pore growth and finally affects the creep performance.
KW - Creep
KW - NiAl-based single crystal superalloy
KW - Secondary orientation
KW - Thickness debit effect
KW - [1 1 1]-orientated
UR - https://www.scopus.com/pages/publications/85181665376
U2 - 10.1016/j.matdes.2023.112609
DO - 10.1016/j.matdes.2023.112609
M3 - 文章
AN - SCOPUS:85181665376
SN - 0264-1275
VL - 237
JO - Materials and Design
JF - Materials and Design
M1 - 112609
ER -