TY - JOUR
T1 - A thickness-sensitive and orientation-related creep lifetime prediction method of nickel-based single crystal superalloy
AU - Zhang, Bin
AU - Wang, Rongqiao
AU - Liu, Haiyan
AU - Chen, Xiaosheng
AU - Hu, Dianyin
AU - Jiang, Kanghe
AU - Jing, Fulei
N1 - Publisher Copyright:
© 2023 John Wiley & Sons, Ltd.
PY - 2023/5
Y1 - 2023/5
N2 - Considering the anisotropy of nickel-based single crystal superalloy, an anisotropic creep lifetime prediction model based on slip plane damage is developed. The predicted results indicate that the lifetime prediction model could predict the creep lifetimes of nickel-based single crystal superalloy with different orientations accurately. Furthermore, in order to reveal the damage mechanism of nickel-based single crystal thin-walled specimen, creep experiment and failure analysis of thin-walled specimen are conducted, and there are obvious differences in damage mechanisms between surface and interior of the thin-walled specimen. In this paper, both thickness debit effect and abnormal thickness debit effect are considered to be caused by the damage differences between surface and interior of the thin-walled specimen, and zone-based failure criteria considering thickness debit effect and abnormal thickness debit effect are proposed. Finally, combining the anisotropic creep lifetime prediction model and zone-based failure criteria, the creep lifetime prediction of DD6 specimen with different thickness is conducted. The predicted lifetimes are within a scatter band of factor 2.26, and the predicted laws between creep lifetimes and thicknesses of the specimens are in good agreement with the experimental results, which verifies the rationality and accuracy of the thickness-sensitive creep lifetime prediction method established in this paper.
AB - Considering the anisotropy of nickel-based single crystal superalloy, an anisotropic creep lifetime prediction model based on slip plane damage is developed. The predicted results indicate that the lifetime prediction model could predict the creep lifetimes of nickel-based single crystal superalloy with different orientations accurately. Furthermore, in order to reveal the damage mechanism of nickel-based single crystal thin-walled specimen, creep experiment and failure analysis of thin-walled specimen are conducted, and there are obvious differences in damage mechanisms between surface and interior of the thin-walled specimen. In this paper, both thickness debit effect and abnormal thickness debit effect are considered to be caused by the damage differences between surface and interior of the thin-walled specimen, and zone-based failure criteria considering thickness debit effect and abnormal thickness debit effect are proposed. Finally, combining the anisotropic creep lifetime prediction model and zone-based failure criteria, the creep lifetime prediction of DD6 specimen with different thickness is conducted. The predicted lifetimes are within a scatter band of factor 2.26, and the predicted laws between creep lifetimes and thicknesses of the specimens are in good agreement with the experimental results, which verifies the rationality and accuracy of the thickness-sensitive creep lifetime prediction method established in this paper.
KW - anisotropy
KW - creep lifetime prediction
KW - nickel-based single crystal superalloy
KW - thickness debit effect
KW - zone-based failure criteria
UR - https://www.scopus.com/pages/publications/85147494078
U2 - 10.1111/ffe.13954
DO - 10.1111/ffe.13954
M3 - 文章
AN - SCOPUS:85147494078
SN - 8756-758X
VL - 46
SP - 1721
EP - 1734
JO - Fatigue and Fracture of Engineering Materials and Structures
JF - Fatigue and Fracture of Engineering Materials and Structures
IS - 5
ER -