简介概要

Characterization of creep behavior of TiAl alloy with high Nb content at elevated temperatures

来源期刊:Rare Metals2016年第1期

论文作者:Cheng-Li Dong Hui-Chen Yu Ze-Hui Jiao

文章页码:106 - 112

摘    要:Creep experiments of the TiAl alloy with high Nb content were conducted to consider both the temperature dependence and stress dependence of its creep behavior.The creep curves were characterized by Theta constitutive model,and Newton-Gauss method was applied to obtain the material parameters.Based on the rupture strain,the rupture life of the TiAl alloy was able to be predicted by Theta constitutive model.The results show that the creep curves of the TiAl alloy contain primary creep,secondary creep and tertiary creep stages,especially for the lower stress.The rupture life of the TiAl alloy decreases with the increase in either applied stress or temperature.Theta constitutive model is able to describe the creep deformation of the TiAl alloy accurately,and the predicted life agrees well with the experimental result.

详情信息展示

Characterization of creep behavior of TiAl alloy with high Nb content at elevated temperatures

Cheng-Li Dong1,2,Hui-Chen Yu1,2,Ze-Hui Jiao1,2

1. Beijing Key Laboratory of Aeronautical Materials Testing and Evaluation,Science and Technology on Advanced High Temperature Structural Materials Laboratory,Beijing Institute of Aeronautical Materials2. Science and Technology on Advanced High Temperature Structural Materials Laboratory,Beijing Institute of Aeronautical Materials

摘 要:Creep experiments of the TiAl alloy with high Nb content were conducted to consider both the temperature dependence and stress dependence of its creep behavior.The creep curves were characterized by Theta constitutive model,and Newton-Gauss method was applied to obtain the material parameters.Based on the rupture strain,the rupture life of the TiAl alloy was able to be predicted by Theta constitutive model.The results show that the creep curves of the TiAl alloy contain primary creep,secondary creep and tertiary creep stages,especially for the lower stress.The rupture life of the TiAl alloy decreases with the increase in either applied stress or temperature.Theta constitutive model is able to describe the creep deformation of the TiAl alloy accurately,and the predicted life agrees well with the experimental result.

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