Materials constitution and computational thermodynamics in the context of 100 years of IJMR – Zeitschrift für Metallkunde
-
Hans Jürgen Seifert
Abstract
The research areas of materials constitution and computational thermodynamics have traditionally been covered by numerous publications in the International Journal of Materials Research – Zeitschrift für Metallkunde. From the very beginning in the year 1909 experimental work and also the modelling of thermodynamic functions and phase diagram calculations were presented. Since the early 1970s results of Calphad-type modelling including thermodynamic database developments were also published by numerous groups. The use of computational thermodynamics for multi-component materials design (metal alloys, ceramics, composites) are an additional focus of recent works.
References
[1] McPherson, M. Hansen: Z. Metallkd.45 (1954) 76.Suche in Google Scholar
[2] E.Scheil: Z. Metallkd.40 (1949) 246.10.1515/ijmr-1949-400702Suche in Google Scholar
[3] E.Scheil, H.Stadelmaier: Z. Metallkd.43 (1952) 227.Suche in Google Scholar
[4] E.Scheil: Z. Metallkd.45 (1954) 298.10.1515/ijmr-1954-540507Suche in Google Scholar
[5] E.Scheil, R.Zimmermann: Z. Metallkd.48 (1957) 509.Suche in Google Scholar
[6] E.Scheil, H.L.Lukas: Z. Metallkd.52 (1961) 417.Suche in Google Scholar
[7] W.Koester: Z. Metallkd.39 (1948) 352.10.1515/ijmr-1948-391106Suche in Google Scholar
[8] W.Koester: Z. Metallkd.42 (1951) 326.10.1515/ijmr-1951-421102Suche in Google Scholar
[9] W.Koester, T.Goedecke: Z. Metallkd.59 (1968) 605.Suche in Google Scholar
[10] T.Goedecke, W.Koester: Z. Metallkd.63 (1968) 422.Suche in Google Scholar
[11] E.Gebhardt, G.Petzow: Z. Metallkd.47 (1956) 401.Suche in Google Scholar
[12] E.Gebhardt, G.Petzow: Z. Metallkd.47 (1956) 751.Suche in Google Scholar
[13] E.Gebhardt, G.Petzow: Z. Metallkd.50 (1959) 668.Suche in Google Scholar
[14] G.Petzow, E.Gebhardt: Z. Metallkd.50 (1959) 704.Suche in Google Scholar
[15] G.Petzow, O.A.Sampaio: Z. Metallkd.56 (1965) 14.Suche in Google Scholar
[16] G.Petzow, H.L.Lukas, F.Aldinger: Z. Metallkd.58 (1967) 32.Suche in Google Scholar
[17] W.Dreizler, F.Aldinger, G.Petzow: Z. Metallkd.69 (1978) 237.Suche in Google Scholar
[18] G.Petzow, F.Aldinger: Z. Metallkd.59 (1968) 145.Suche in Google Scholar
[19] G.Petzow, F.Aldinger: Z. Metallkd.59 (1968) 390.Suche in Google Scholar
[20] C.W.Bale, A.D.Pelton, M.Rigaud: Z. Metallkd.68 (1977) 69.Suche in Google Scholar
[21] A.D.Pelton, C.W.Bale, M.Rigaud: Z. Metallkd.68 (1977) 135.Suche in Google Scholar
[22] H.Stadelmaier, C.Suchjakul: Z. Metallkd.76 (1985) 157.Suche in Google Scholar
[23] E.Scheil: Archiv Eisenhuettenwes.9 (1936) 571.10.1002/srin.193600784Suche in Google Scholar
[24] E.Gebhard, G.Petzow: Z. Metallkd.51 (1960) 368.Suche in Google Scholar
[25] H.L.Lukas, E.-T.Henig, G.Petzow: Z. Metallkd.77 (1986) 360.Suche in Google Scholar
[26] http://www.matport.com/books/ternary-alloys-series.htmlSuche in Google Scholar
[27] G.Petzow, H.L.Lukas: Z. Metallkd.61 (1970) 877.Suche in Google Scholar
[28] L.Kaufman, H.Nesor: Z. Metallkd.64 (1973) 249.Suche in Google Scholar
[29] I.Ansara, E.Bonnier, J.-C.Mathieu: Z. Metallkd.64 (1973) 258.Suche in Google Scholar
[30] F.Ajersch, E.Hayer, J.-N.Barbier, I.Ansara: Z. Metallkd.66 (1975) 624.Suche in Google Scholar
[31] C.Laugee, C.Allibert, I.Ansara: Z. Metallkd.76 (1985) 138.Suche in Google Scholar
[32] P.Gustafson, A.Gabriel, I.Ansara: Z. Metallkd.78 (1987) 151.Suche in Google Scholar
[33] J.Lacaze, G.Lesoult, O.Relave, I.Ansara, J.P.Riquet: Z. Metallkd.78 (1987) 141.Suche in Google Scholar
[34] G.Petzow, E.-T.Henig, U.Kattner, H.L.Lukas: Z. Metallkd.75 (1984) 3.Suche in Google Scholar
[35] N.Saunders, A.P.Miodownik: CALPHAD (Calculation of Phase Diagrams): A Comprehensive Guide, Pergamon Press (1998).Suche in Google Scholar
[36] H.L.Lukas, S.G.Fries, B.Sundman: Computational Thermodynamics: The Calphad Method Cambridge University Press (2007)10.1017/CBO9780511804137Suche in Google Scholar
[37] H.J.Seifert, F.Aldinger: Z. Metallkd.87 (1996) 841.Suche in Google Scholar
[38] B.BurtonN.Dupin, S.G.Fries, G.Grimvall, A.Fernández Guillermet, P.Miodownik, W.A.Oates, V.Vinograd: Z. Metallkd.92 (2001) 514.Suche in Google Scholar
[39] C.A.Coughanowr, I.Ansara, R.Luoma, M.Hämäläinen, H.L.Lukas: Z. Metallkd.82 (1991) 574.Suche in Google Scholar
[40] K.Hack (Ed.): The SGTE Casebook: Thermodynamics at Work (2nd edition), Woodhead Publishing (2008).10.1201/9781439832516Suche in Google Scholar
[41] B.Predel: Z. Metallkd.52 (1961) 507.10.1515/ijmr-1961-520802Suche in Google Scholar
[42] B.Predel: Z. Metallkd.56 (1965) 791.10.1515/ijmr-1965-561109Suche in Google Scholar
[43] R.Lueck, U.Gerling, B.Predel: Z. Metallkd.77 (1986) 667.Suche in Google Scholar
[44] R.Lueck, U.Gerling, B.Predel: Z. Metallkd.80 (1989) 270.Suche in Google Scholar
[45] F.Sommer: Z. Metallkd.73 (1982) 72.10.1515/ijmr-1982-730202Suche in Google Scholar
[46] F.Sommer: Z. Metallkd.73 (1982) 77.10.1515/ijmr-1982-730203Suche in Google Scholar
[47] H.G.Krull, R.N.Singh, F.Sommer: Z. Metallkd.91 (2000) 356.Suche in Google Scholar
[48] M.Hillert, J.Ågren: Z. Metallkd.77 (1986) 794.Suche in Google Scholar
[49] M.Hillert, B.Jansson, B.Sundman: Z. Metallkd.79 (1988) 81.Suche in Google Scholar
[50] B.Sundman: Z. Metallkd.87 (1996) 529.10.1515/ijmr-1996-870704Suche in Google Scholar
[51] A.Kusoffsky, B.Sundman: Z. Metallkd.89 (1998) 836.Suche in Google Scholar
[52] N.Dupin, I.Ansara: Z. Metallkd.90 (1999) 76–85.Suche in Google Scholar
[53] O.Fabrichnaya, F.Aldinger, Z. Metallkd.95 (2004) 27.10.3139/146.017909Suche in Google Scholar
[54] B.Sundman, I.Ansara, M.Hillert, G.Inden, H.L.Lukas, K.C.Hari Kumar: Z. Metallkd.92 (2001) 526.Suche in Google Scholar
[55] J.Ågren, F.H.Hayes, L.Hoglund, U.R.Kattner, B.Legendre, R.Schmid-Fetzer: Z. Metallkd.93 (2002) 128.Suche in Google Scholar
[56] S.A.Degterov, A.D.Pelton, H.J.Seifert, O.Fabrichnaya, J.P.Hajra, A.Navrotsky, K.Helean, V.Swamy, A.V.da Costa e Silva, P.J.Spencer: Z. Metallkd.92 (2001) 533.Suche in Google Scholar
[57] A.Watson, Q.Chen, Y.Du, A.A.Rempel, J.C.Schuster, P.J.Spencer, H.Yokokawa: Z. Metallkd.92 (2001) 550.Suche in Google Scholar
[58] J.Golczewski, F.Aldinger, A.Chang, M.T.Clavaguera-Mora, A.Rempel, E.Rudnyi: Z. Metallkd.92 (2001) 560.Suche in Google Scholar
[59] Y.Du, B.Hallstedt, R.Schmid-Fetzer, W.Jie: Z. Metallkd.99 (2008) 580–695.Suche in Google Scholar
[60] Z. Metallkd.87 (7) (1996) 520–611.10.1515/ijmr-1996-870702Suche in Google Scholar
[61] U.R.Kattner, W.J.Boettinger, S.R.Coriell: Z. Metallkd.87 (1996) 522.Suche in Google Scholar
[62] H.L.Lukas, E.-T.Henig, B.Zimmermann: Calphad1 (1977) 225.Suche in Google Scholar
[63] U.Kattner, H.L.Lukas, G.Petzow, B.Gather, E.Irle, R.Blachnik: Z. Metallkd.79 (1988) 32.Suche in Google Scholar
[64] F.H.Hayes, H.L.Lukas, G.Effenberg, G.Petzow: Z. Metallkd.80 (1989) 361.Suche in Google Scholar
[65] G.Cacciamani, R.Ferro, H.L.Lukas: Z. Metallkd.83 (1992) 669.Suche in Google Scholar
[66] P.Liang, H.-L.Su, P.Donnadieu, M.G.Harmelin, A.Quivy, P.Ochin, G.Effenberg, H.J.Seifert, H.L.Lukas, F.Aldinger: Z. Metallkd.89 (1998) 536.Suche in Google Scholar
[67] P.Liang, N.Dupin, S.G.Fries, H.J.Seifert, I.Ansara, H.L.Lukas, F.Aldinger: Z. Metallkd.92 (2001) 747.Suche in Google Scholar
[68] H.J.Seifert, P.Nerikar, H.L.Lukas: Z. Metallkd.97 (2006) 6.Suche in Google Scholar
[69] Z. Metallkd.92 (7) (2001) 626–844.10.2165/00128415-200108440-00016Suche in Google Scholar
[70] Z. Metallkd.97 (5) (2006) 487–680 and 97 (6) (2006) 689–820.10.1016/S1081-1206(10)60979-9Suche in Google Scholar
[71] M.Ohno, R.Schmid-Fetzer: Z. Metallkd.97 (2006) 526.Suche in Google Scholar
[72] Z. Metallkd.98 (9) (2007) 772–871 and 98 (10) (2007) 907–1018.10.3139/146.070901Suche in Google Scholar
[73] I.-H.Jung, S.A.Decterov, A.D.Pelton: Z. Metallkd.98 (2007) 816.Suche in Google Scholar
[74] B.Hallstedt: Z. Metallkd.99 (2008) 589.10.3139/146.101680Suche in Google Scholar
© 2009, Carl Hanser Verlag, München
Artikel in diesem Heft
- Contents
- Contents
- Feature
- Materials constitution and computational thermodynamics in the context of 100 years of IJMR – Zeitschrift für Metallkunde
- Upgrading CALPHAD to microstructure simulation: the phase-field method
- Prediction, determination and validation of phase diagrams via the global study of energy landscapes
- Alloy development using modern tools
- Phase equilibria and thermal analysis in the Fe–Mn–Ni system
- Integrated approach to thermodynamics, phase relations, liquid densities and solidification microstructures in the Al–Bi–Cu system
- Formation of clathrates Ba–M–Ge(M = Mn, Fe, Co)
- New paradigm of a metastable phase diagram presenting structural transformations induced by annealing of Si–C–N amorphous ceramics derived from polymer precursors
- Basic
- Thermodynamic assessment of the Ce–Si, Y–Si, Mg–Ce–Si and Mg–Y–Si systems
- Thermodynamic re-assessment of the Ti–Al–Nb system
- Effect of varying oxygen partial pressure on the properties of reactively evaporated zinc aluminate thin films
- Applied
- Matrix induced synthesis of Y3Al5O12: Ce phosphor through the Pechini method
- Microstructure and room temperature compressive properties of holmium doped DS NiAl-Cr(Mo)-Hf eutectic alloy
- Evaporation mechanism of aluminum during electron beam cold hearth melting of Ti64 alloy
- 560°C isothermal section of the Zn–Fe–Ni–Si quaternary system at the zinc-rich corner
- DGM News
- Personal
Artikel in diesem Heft
- Contents
- Contents
- Feature
- Materials constitution and computational thermodynamics in the context of 100 years of IJMR – Zeitschrift für Metallkunde
- Upgrading CALPHAD to microstructure simulation: the phase-field method
- Prediction, determination and validation of phase diagrams via the global study of energy landscapes
- Alloy development using modern tools
- Phase equilibria and thermal analysis in the Fe–Mn–Ni system
- Integrated approach to thermodynamics, phase relations, liquid densities and solidification microstructures in the Al–Bi–Cu system
- Formation of clathrates Ba–M–Ge(M = Mn, Fe, Co)
- New paradigm of a metastable phase diagram presenting structural transformations induced by annealing of Si–C–N amorphous ceramics derived from polymer precursors
- Basic
- Thermodynamic assessment of the Ce–Si, Y–Si, Mg–Ce–Si and Mg–Y–Si systems
- Thermodynamic re-assessment of the Ti–Al–Nb system
- Effect of varying oxygen partial pressure on the properties of reactively evaporated zinc aluminate thin films
- Applied
- Matrix induced synthesis of Y3Al5O12: Ce phosphor through the Pechini method
- Microstructure and room temperature compressive properties of holmium doped DS NiAl-Cr(Mo)-Hf eutectic alloy
- Evaporation mechanism of aluminum during electron beam cold hearth melting of Ti64 alloy
- 560°C isothermal section of the Zn–Fe–Ni–Si quaternary system at the zinc-rich corner
- DGM News
- Personal