首页|Hot Deformation Behavior and Workability of a New Ni-W-Cr Superalloy for Molten Salt Reactors

Hot Deformation Behavior and Workability of a New Ni-W-Cr Superalloy for Molten Salt Reactors

扫码查看
The hot deformation behavior of a newly developed Ni-W-Cr superalloy for use in 800 ℃ molten salt reactors(MSRs)was looked into by isothermal compression tests in the temperature range of 1050-1200 ℃ with a strain rate of 0.001-1 s-1 under a true strain of 0.693.An Arrhenius-type model for the Ni-W-Cr superalloy was constructed by fitting the corrected flow stress data.In this model,the effect of dispersion of solid solution elements during thermal deformation on microstructure evolution was considered,as well as the effects of friction and adiabatic heating on the temperature and strain rate-dependent variation of flow stresses.The hot deformation activation energy of the Ni-W-Cr superalloy was 323 kJ/mol,which was less than that of the Hastelloy N alloy(currently used in MSRs).According to the rectified flow stress data,processing maps were created.In conjunction with the corresponding deformation microstructures,the flow instability domains of the Ni-W-Cr superalloy were determined to be 1050-1160 ℃/0.03-1 s-1 and 1170-1200 ℃/0.001-0.09 s-1.In these deformation con-ditions,a locally inhomogeneous microstructure was caused by flow—i.e.,incomplete dynamic recrystallization and hot working parameters should avoid sliding into these domains.The ideal processing hot deformation domain for the Ni-W-Cr superalloy was determined to be 1170-1200 ℃/0.6-1 s-1.

Ni-W-Cr SuperalloyHot deformation behaviorConstitutive equationProcessing mapMicrostructure evolution

Long Liu、Zijian Zhou、Jie Yu、Xinguang Wang、Chuanyong Cui、Rui Zhang、Yizhou Zhou、Xiaofeng Sun

展开 >

Shi-Changxu Innovation Center for Advanced Materials,Institute of Metal Research,Chinese Academy of Sciences,Shenyang 110016,China

School of Materials Science and Engineering,University of Science and Technology of China,Shenyang 110016,China

Fushun Special Steel Co.,Ltd,Fushun 113000,China

National Key R&D Program of ChinaNational Key R&D Program of ChinaIMR Innovation Fund

2021YFB37006012019YFA07053042023-PY08

2024

金属学报(英文版)
中国金属学会

金属学报(英文版)

CSTPCD
影响因子:0.77
ISSN:1006-7191
年,卷(期):2024.37(8)