The effect of alloying elements on constrained carbon equilibrium due to a quench and partition process
-
Roberto R. de Avillez
, André Luiz V. da Costa e Silva , Ana Rosa F. A. Martins and Fernando C. Rizzo Assunção
Abstract
The model proposed by Speer et al. to calculate the constrained carbon equilibrium is expanded to include any number of substitutional solutes and coded with the MatLab and Thermo-Calc programs. This model is used to evaluate the effect of Al, Cr, Cu, Mn, Mo, Ni and Si solutes on the final austenite carbon concentration of ternary Fe – X – C alloys. Comparison is also made with the carbon concentration measured experimentally in some Transformation Induced Plasticity steels.
References
[1] J.G.Speer, B.C.de Cooman, J.G.Schroth: Acta Mater.51 (2003) 2611. http://dx.doi.org/10.1016/S1359-6454(03)00059-410.1016/S1359-6454(03)00059-4Search in Google Scholar
[2] J.G.Speer, D.V.Edmonds, F.C.Rizzo, D.K.Matlock: Current Opinion in Solid State and Materials Science8 (2004) 219. http://dx.doi.org/10.1016/j.cossms.2004.09.00310.1016/j.cossms.2004.09.003Search in Google Scholar
[3] H.Hillert, J.Agren: Scripta Mater.50 (2004) 697. http://dx.doi.org/10.1016/j.scriptamat.2003.11.02010.1016/j.scriptamat.2003.11.020Search in Google Scholar
[4] MATLAB, version 6.5, The MatWorks, Inc. (2002).Search in Google Scholar
[5] J.O.Andersson, T.Helander, L.Höglund, P.F.Shi, B.Sundman: Calphad26 (2002) 273. http://dx.doi.org/10.1016/S0364-5916(02)00037-810.1016/S0364-5916(02)00037-8Search in Google Scholar
[6] L.Höglund: TC MATLAB Toolbox Programer's Guide and Examples, version 4.00, Foundation of Computational Thermodynamics, Stockholm (2006).Search in Google Scholar
[7] Thermo-calc Software (TCS) Steels/Fe-alloys database, version 3, TCAB, Stockholm (2003).Search in Google Scholar
[8] M.Hillert: Jernkont Ann136 (1952) 25.Search in Google Scholar
[9] D.P.Koinstinen and R.E.Marburger: Acta Metall.7 (1959) 59.10.1016/0001-6160(59)90170-1Search in Google Scholar
[10] M.Victor Li, D.V.Niebur, L.L.Meekisho, D.G.Alteridge: Metall. Mater. Trans. B29 (1998) 661.Search in Google Scholar
[11] N.H.van Dijk, A.M.Butt, L.Zhao, J.Sietsma, S.E.Offerman, J.P.Wright, S.van der Zwaag: Scripta Mater.53 (2005) 5439. http://dx.doi.org/10.1016/j.actamat.2005.08.01710.1016/j.actamat.2005.08.017Search in Google Scholar
[12] M.A.Yescas, H.K.D.H.Bhadeshia: Materials Science and Engineering A333 (2002) 60. http://dx.doi.org/10.1016/S0921-5093(01)01840-810.1016/S0921-5093(01)01840-8Search in Google Scholar
[13] M.De Meyer, D.Vandershueren, B.C.De Cooman: ISIJ International39 (1999) 813.Search in Google Scholar
[14] E.Girault, P.Jacques, P.Ratcher, J.Van Humbeeck, B.Verlinden, A.Aernoudt: Mat. Sci. Engineering A273 (1999) 471.Search in Google Scholar
[15] E.Jimenez-Melero, N.H.van Dijk, L.Zhao, J.Sietsma, S.Offerman, J.P.Wright, S.van der Zwaag: Scripta Materialia56 (2007) 421. http://dx.doi.org/10.1016/j.scriptamat.2006.10.04110.1016/j.scriptamat.2006.10.041Search in Google Scholar
[16] F.G.Caballero, H.K.D.H.Bhadeshia, K.J.A.Mawella, D.G.Jones, P.Brown: Materials Science and Technology18 (2002) 279.Search in Google Scholar
© 2008, Carl Hanser Verlag, München
Articles in the same Issue
- Contents
- Contents
- Basic
- A model to calculate the viscosity of silicate melts
- A model to calculate the viscosity of silicate melts
- A note on the application of the phase rule
- Thermodynamic properties of liquid silver–indium–tin alloys determined from emf measurements
- Unconstrained solidification and characterisation of near-eutectic Al–Cu–Ag alloys
- Tensile properties of L12 intermetallic foils fabricated by cold rolling
- Microstructural control of FeB-inoculated mottled low-alloy white iron by a design of experiments approach
- Applied
- Dislocation structure and crystallite size distribution in lath martensite determined by X-ray diffraction peak profile analysis
- Effect of minor addition of Pb upon interfacial reactions and mechanical properties at Sn-3.0Ag-0.5Cu/Cu and Sn-58Bi/Cu solder joints
- Elastic properties of braided ceramic matrix composites
- The influence of microstructural characteristics and contaminants on the mechanical properties and fracture topography of low cost Ti6Al4V alloy
- Microstructure and room temperature mechanical properties of Hf and Sn-doped Nb-20Ti-5Cr-3Al-18Si alloy
- The effect of alloying elements on constrained carbon equilibrium due to a quench and partition process
- Hardfacing behavior of Cr–Ni stainless steel with Co-based super alloys
- Development of SMD 32.768 kHz tuning fork-type crystals
- Notification
- DGM News
Articles in the same Issue
- Contents
- Contents
- Basic
- A model to calculate the viscosity of silicate melts
- A model to calculate the viscosity of silicate melts
- A note on the application of the phase rule
- Thermodynamic properties of liquid silver–indium–tin alloys determined from emf measurements
- Unconstrained solidification and characterisation of near-eutectic Al–Cu–Ag alloys
- Tensile properties of L12 intermetallic foils fabricated by cold rolling
- Microstructural control of FeB-inoculated mottled low-alloy white iron by a design of experiments approach
- Applied
- Dislocation structure and crystallite size distribution in lath martensite determined by X-ray diffraction peak profile analysis
- Effect of minor addition of Pb upon interfacial reactions and mechanical properties at Sn-3.0Ag-0.5Cu/Cu and Sn-58Bi/Cu solder joints
- Elastic properties of braided ceramic matrix composites
- The influence of microstructural characteristics and contaminants on the mechanical properties and fracture topography of low cost Ti6Al4V alloy
- Microstructure and room temperature mechanical properties of Hf and Sn-doped Nb-20Ti-5Cr-3Al-18Si alloy
- The effect of alloying elements on constrained carbon equilibrium due to a quench and partition process
- Hardfacing behavior of Cr–Ni stainless steel with Co-based super alloys
- Development of SMD 32.768 kHz tuning fork-type crystals
- Notification
- DGM News