Modeling high-temperature stress-strain behavior of cast aluminum alloys

被引:0
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作者
Tracy J. Smith
Huseyin Sehitoglu
Eric Fleury
Hans J. Maier
John Allison
机构
[1] Universität-GH Siegen,the Department of Mechanical and Industrial Engineering
[2] University of Illinois,undefined
[3] at Urbana-Champaign,undefined
[4] Ford Research Laboratory,undefined
关键词
Material Transaction; Cylinder Head; Cyclic Deformation; Thermal Exposure; Back Stress;
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学科分类号
摘要
A modified two-state-variable unified constitutive model is presented to model the high-temperature stress-strain behavior of a 319 cast aluminum alloy with a T7 heat treatment. A systematic method is outlined, with which one can determine the material parameters used in the experimentally based model. The microstructural processes affecting the material behavior were identified using transmission electron microscopy and were consequently correlated to the model parameters. The stress-strain behavior was found to be dominated by the decomposition of the metastable θ′ precipitates within the dendrites and the subsequent coarsening of the θ phase, which was manifested through remarkable softening with cycling and time. The model was found to accurately simulate experimental stress-strain behavior such as strain-rate sensitivity, cyclic softening, aging effects, transient material behavior, and stress relaxation, in addition to capturing the main deformation mechanisms and microstructural changes as a function of temperature and inelastic strain rate.
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页码:133 / 146
页数:13
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