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      Double Kinetics of Intermetallic Phase Precipitation in UNS S32205 Duplex Stainless Steels Submitted to Isothermal Heat Treatment

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          Abstract

          One of the most studied deleterious phases in stainless steels is the sigma phase, due to its high potential to decrease the toughness and corrosion resistance of these steels. Eight samples of as-received cold rolled UNS S32205 duplex stainless steel were submitted to isothermal heat treatments at 850 oC during 10, 15, 30, 60, 120, 180, 240, and 300 minutes in order to study the precipitation kinetics of the sigma and chi deleterious phases. Several complementary microstructural analysis techniques were used to determine the volume fraction of the intermetallic phases, including optical microscopy and scanning electron microscopy (SEM) coupled with energy dispersive spectroscopy (EDS). Evaluation was made of the kinetics of isothermal formation of sigma and chi phases in commercial duplex stainless steels (UNS S32205). The results indicated two different mechanisms for sigma phase precipitation: sigma phase formed from the chi phase for shorter isothermal heat treatment times, and sigma phase precipitated at the ferrite-austenite interface for longer isothermal heat treatment times, using a temperature of 850 oC. The phase transformation kinetics determined using the JMA equation indicated that chi phase precipitation caused faster sigma phase formation.

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          Recent developments in stainless steels

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            Effect of intermetallic precipitations on the properties of duplex stainless steel

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              Kinetics of sigma phase formation in a Duplex Stainless Steel

              This work determines the kinetics of sigma phase formation in UNS S31803 Duplex Stainless Steel (DSS), describing the phase transformations that occur in isothermal aging between 700 and 900 ºC for time periods up to 1032 hours, allowing the determination of the Time-Temperature-Precipitation (TTP) diagram for sigma phase and proposing a model to predict the kinetics of sigma phase formation using a Johnson-Mehl-Avrami (JMA) type expression. The higher kinetics of sigma phase formation occurs at 850 ºC. However, isothermal aging between 700 and 900 ºC for time periods up to 1032 hours are not sufficient to the establishment of thermodynamic equilibrium. Activation energy for both nucleation and growth of sigma phase is determined (185 kJ.mol-1) and its value is equivalent to the activation energy for Cr diffusion in ferrite, indicating that diffusion of Cr is probably the major thermally activated process involved in sigma phase formation. The determined JMA type expression presents good fit with experimental data between 700 and 850 ºC.
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                Author and article information

                Contributors
                Role: ND
                Role: ND
                Role: ND
                Role: ND
                Journal
                mr
                Materials Research
                Mat. Res.
                ABM, ABC, ABPol (São Carlos, SP, Brazil )
                1516-1439
                1980-5373
                June 2017
                : 20
                : suppl 2
                : 152-158
                Affiliations
                [1] Recife Pernambuco orgnameUniversidade Federal de Pernambuco orgdiv1Department of Mechanical Engineering Brazil
                [2] São Paulo São Paulo orgnameUniversidade de São Paulo orgdiv1Department of Chemical Engineering Brazil
                Article
                S1516-14392017000800152
                10.1590/1980-5373-mr-2016-1060
                0a9b3de2-ee43-420b-bdc4-e528847ead9f

                This work is licensed under a Creative Commons Attribution 4.0 International License.

                History
                : 21 May 2017
                : 12 December 2016
                Page count
                Figures: 0, Tables: 0, Equations: 0, References: 16, Pages: 7
                Product

                SciELO Brazil


                chi phase,Duplex stainless steels,sigma phase,isothermal heat treatment

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