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PREDICTION OF STATIC SOFTENING OF A MICROALLOYED STEEL BY THE INTEGRATION OF FINITE ELEMENT MODEL WITH PHYSICALLY BASED STATE VARIABLE MODEL
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نویسنده
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Mirzakhani B ,Arabi H ,Salehi M.T ,Khoddam Sh ,Sietsma J ,Seyedein S.H ,Aboutalebi M.R
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منبع
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iranian journal of materials science and engineering - 2009 - دوره : 6 - شماره : 4 - صفحه:17 -25
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چکیده
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Recovery and recrystallization phenomena and effects of microalloying elements on these phenomena are of great importance in designing thermomechanical processes of microalloyed steels . thus, understanding and modeling of microstructure evolution during hot deformation leads to optimize the processing conditions and to improve the product properties. in this study, finite element method was utilized to simulate thermomechanical parameters during hot deformation processes. fem results then were integrated with physically based state variable models of static recovery and recrystallization combined with a realistic microstructural geometry. the thermodynamic softwarethermo- calc was also used to predict present microalloying elements at equilibrium conditions. the model performance was validated using stress relaxation tests. parametric studies were carried out to evaluate the effects of deformation process parameters on the microstructure development following hot deformation of the api-x70 steel.
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کلیدواژه
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Finite element method. physically based state variable model. Microalloyed steel. Static softening
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آدرس
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iran university of science and technology, School of Metallurgy and Materials Engineering, ایران, iran university of science and technology, School of Metallurgy and Material Engineering, ایران, iran university of science and technology, School of Metallurgy and Materials Engineering, ایران, Monash University, Mechanical Engineering Department, Australia, Delft University of Technology, Department of Materials Science and Engineering, Netherlands, iran university of science and technology, School of Metallurgy and Materials Engineering, ایران, iran university of science and technology, School of Metallurgy and Materials Engineering, ایران
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پست الکترونیکی
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bmirzakhani@iust.ac.ir
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Authors
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