Journal of Materials Research, Volume (31), No (24), Year (2016-12) , Pages (3939-3947)

Title : ( Microstructure and flow behavior of cast 2304 duplex stainless steel at elevated temperatures )

Authors: H. Alinejad , GHolam Reza Ebrahimi , B. Korojy , A. Momeni ,

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Abstract

Hot deformation characteristics of 2304 duplex stainless steel were analyzed by hot compression tests at temperature range of 850–1150 °C and strain rates of 0.001–1 s−1. The flow curves at low temperatures and high strain rates were suggesting sluggish dynamic recovery (DRV) in ferrite and partial dynamic recrystallization (DRX) in austenite. However, at high temperatures and low strain rates, the flow curves showed implied the domination of DRV in ferrite. The hyperbolic sine equation with activation energy of 508 kJ/mol could relate the processing parameters. Microstructural observations showed that DRV in ferrite is the controlling mechanism at all deformation conditions. However, at high temperatures and strain rates partial DRX could also occur in austenite. Based on the law of mixture and Baragar’s equations a modified model was proposed to consider work hardening and dynamic softening in the constituents. The model could satisfactorily predict the flow curves at different deformation regimes.

Keywords

, hot pressing, microstructure, stress/strain relationship, steel
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@article{paperid:1096961,
author = {حسین علی نژاد and Ebrahimi, GHolam Reza and بهمن کروچی and امیر مومنی},
title = {Microstructure and flow behavior of cast 2304 duplex stainless steel at elevated temperatures},
journal = {Journal of Materials Research},
year = {2016},
volume = {31},
number = {24},
month = {December},
issn = {0884-2914},
pages = {3939--3947},
numpages = {8},
keywords = {hot pressing; microstructure; stress/strain relationship; steel},
}

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%0 Journal Article
%T Microstructure and flow behavior of cast 2304 duplex stainless steel at elevated temperatures
%A حسین علی نژاد
%A Ebrahimi, GHolam Reza
%A بهمن کروچی
%A امیر مومنی
%J Journal of Materials Research
%@ 0884-2914
%D 2016

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