Flow Stress Behavior of Al-Fe-V-Si Heat-resistant Aluminum alloy Prepared by Spray Forming Under Hot-compression Deformation
The behavior of the flow stress of Al-Fe-V-Si heat-resistant aluminum alloy prepared by spray forming during hot compression deformation was studied. The results show that the true stress-true strain curves of the spray forming Al-Fe-V-Si heat-resistant alloy are characterized by a high true stress occurrence at the early stage of compression, followed by a steady flowing due to recovery and strain softening because of dynamic recrystallization. The flow stress of the alloy decreases with increasing deforming temperature and increases with increasing strain rate. The flow stress of the spray forming Al-Fe-V-Si heat-resistant aluminum alloy during hot compression deforming can be described by constitutive equation in hyperbolic sine function .The deformation activation energy of the alloy during hot deformation by Sellars-Tegart equation is much higher than those of the conventional aluminum alloy. The deformation activation energy decreases with decreasing strain rate at the beginning, then increases with decreasing strain rate.
ZHANG Rong-hua ZHANG Yong-an ZHU Bao-hong
He bei Province Key Laboratory of Modern Metallurgy, College of Metallurgy and Energy, He bei Union Beijing General Research Institute for Nonferrous Metals, State Key Laboratory for Fabrication and P
国际会议
桂林
英文
1-6
2010-11-16(万方平台首次上网日期,不代表论文的发表时间)