[6]Kozeschnik,E.,Svoboda,J.,andFischer,F.,2004.“Mod-i edevolutionequationsfortheprecipitationkineticsofcomplexphasesinmulti-componentsystems”.Calphad,28(4),pp.379–382.
[7]Rajek,H.,2005.“Computersimulationofprecipitationki-neticsinsolidmetalsandapplicationtothecomplexpowerplantsteelCB8”.PhDthesis,GrazUniversityofTechnol-ogy,Austria.
[8]Holzer,D.,2010.“Modellingandsimulationofstrength-eningincomplexmartensitic9-12%CrsteelandabinaryFe-Cualloy”.PhDthesis,GrazUniversityofTechnology,Austria.
[9]Kampmann,R.,andWagner,R.,1984.“Decomposition
ofalloys:Theearlystages,in:P.Haasen,V.Geroid,R.WagnerandM.F.Ashby(eds.),”.InProc.2ndActa-ScriptaMetall.Conf.,Pergamo,Oxford.
[10]Radis,R.,Schaffer,M.,Albu,M.,Kothleitner,G.,Polt,P.,
andKozeschnik,E.,2009.“Multimodalsizedistributionsofγ’precipitatesduringcontinuouscoolingofUDIMET720”.ActaMater.,57(19),pp.5739–5747.
[11]Janssens,K.,D.Raabe,E.K.,Miodownik,M.,andNestler,
B.,putationalMaterialsEngineering–Anin-troductiontomicrostructureevolution.ElsevierAcademicPress,London.
[12]Sonderegger,B.,andKozeschnik,E.,2009.“General-izednearest-neighborbroken-bondanalysisofrandomlyorientedcoherentinterfacesinmulti-componentFCCandBCCstructures”.Metall.Mater.Trans.A,40(3),pp.499–510.
[13]Sonderegger,B.,andKozeschnik,E.,2009.“Sizedepen-denceoftheinterfacialenergyinthegeneralizednearest-neighborbroken-bondapproach”.Scr.Mater.,60(8),pp.635–638.
[14]Kozeschnik,E.,Svoboda,J.,andFischer,F.,2006.“Shape
factorsinmodelingofprecipitation”.Mater.Sci.Eng.A,441(1–2),pp.68–72.
[15]Sundman,B.,Jansson,B.,andAndersson,J.-O.,1985.
“TheThermo-Calcdatabanksystem”.Calphad,9,pp.153–190.
[16]Raju,S.,2010.Privatecommunication.
[17]Hald,J.,2008.“Microstructureandlong-termcreepprop-ertiesof9-12%Crsteels”.Int.J.Press.VesselsPip.,85(1–2),pp.30–37.
[18]Ennis,P.J.,Zielinska-Lipiec,A.,Wachter,O.,andCzyrska-Filemonowicz,A.,1997.“MicrostructuralstabilityandcreeprupturestrengthofthemartenisiticsteelP92forad-vancedpowerplant”.ActaMater.,45(12),pp.4901–4907.[19]Yoshizawa,M.,Igarashi,M.,Moriguchi,K.,Iseda,A.,Ar-maki,H.G.,andMaruyama,K.,2009.“Effectofprecipi-tatesonlong-termcreepdeformationpropertiesofP92andP122typeadvancedferriticsteelsforUSCpowerplants”.Mater.Sci.Eng.A,510–511,pp.162–168.
POSITIONS(INWT.%)OFSELECTEDSTEELS.
ElementP91P92E9016RAFMAl0.011––0.0036C0.100.090.060.091Cr8.448.729.249.05Cu0.11––0.005Mn0.46–1.370.56Mo0.460.451.050.0036N0.0080.050.030.0206Nb–0.060.030.0039Ni0.17–0.095–P0.008–0.05–S0.002–0.001–Si0.490.160.30.05Ta–––0.063Ti–––0.0024V0.0010.0210.170.226W
–
1.87
–
1.00
[20]V´yrostkov´a,A.,Homolov´y,V.,Pecha,J.,andSvoboda,M.,
2008.“PhaseevolutioninP92andE911weldmetalsduringageing”.Mater.Sci.Eng.A,480(1–2),pp.289–298.
[21]Saroja,S.,Dasgupta,A.,Divakar,R.,Raju,S.,Mohandas,
E.,Vijayalakshmi,M.,Rao,K.B.S.,andRaj,B.,2010.“Developmentandcharacterizationofadvanced9Crfer-ritic/martensiticsteelsfor ssionandfusionreactors”.J.Nucl.Mater.,Inpress.
[22]Raj,B.,Rao,K.B.S.,andBhaduri,A.,2010.“Progressin
thedevelopmentofreducedactivationferritic-martensiticsteelsandfabricationtechnologiesinIndia”.FusionEng.andDes.,Inpress.
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