A constitutive model for particulate-reinforced titanium matrix composites subjected to high strain rates and high temperatures

Wei Dong Song*, Jian Guo Ning, Xiao Nan Mao, Jian Qiao Lia

*此作品的通讯作者

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摘要

properties of particulate-reinforced titanium matrix composites at strain rates ranging from 0.0001/s to 1000/s and at temperatures ranging from 20 °C to 650 °C Based on the experimental results, a constitutive model, which considers the effects of strain rate and temperature on hot deformation behavior, was proposed for particulate-reinforced titanium matrix composites subjected to high strain rates and high temperatures by using Zener-Hollomon equations including Arrhenius terms. All the material constants used inthe model were identified by fitting Zener-Hollomon equations against the experimental results. By comparison of theoretical predictions presented by the model with experimentalresults, a good agreement was achieved, which indicates that this constitutive model can give an accurate and precise estimate for high temperature flow stress for the studied titanium matrix composites and can be used for numerical simulations of hot deformation behavior of the composites.

源语言英语
页(从-至)1361-1367
页数7
期刊Thermal Science
17
5
DOI
出版状态已出版 - 2013

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Song, W. D., Ning, J. G., Mao, X. N., & Lia, J. Q. (2013). A constitutive model for particulate-reinforced titanium matrix composites subjected to high strain rates and high temperatures. Thermal Science, 17(5), 1361-1367. https://doi.org/10.2298/TSCI1305361S