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Prof. Dr. G. Gottstein - Gießerei-Institut der RWTH Aachen

Prof. Dr. G. Gottstein - Gießerei-Institut der RWTH Aachen

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<strong>Prof</strong>. <strong>Dr</strong>. G. <strong>Gottstein</strong><br />

Akademische Ausbildung<br />

Diplom-Physiker 1969 <strong>RWTH</strong> <strong>Aachen</strong><br />

<strong>Dr</strong>. rer. nat. 1973 Fakultät für Bergbau und Hüttenwesen, <strong>RWTH</strong> <strong>Aachen</strong><br />

<strong>Dr</strong>. habil. 1979 Fakultät für Bergbau und Hüttenwesen, <strong>RWTH</strong> <strong>Aachen</strong><br />

Berufliches<br />

1969-1972 wissenschaftlicher Mitarbeiter, <strong>Institut</strong> für Festkörperphysik <strong>der</strong> KFA<br />

Jülich<br />

1972-1979 wissenschaftlicher Assistent, <strong>Institut</strong> für Metallkunde und Metallphysik <strong>der</strong><br />

<strong>RWTH</strong> <strong>Aachen</strong><br />

1979-1982 Visiting Scientist, Argonne National Laboratory, USA<br />

1981-1982 Visiting Assoc. <strong>Prof</strong>essor, Massachusetts <strong>Institut</strong>e of Technology, USA<br />

1982-1983 Privatdozent, <strong>Institut</strong> für Metallkunde und Metallphysik <strong>der</strong> <strong>RWTH</strong><br />

<strong>Aachen</strong><br />

1983-1985 Associate <strong>Prof</strong>essor, Michigan State University, East Lansing, USA<br />

1985-1989 <strong>Prof</strong>essor, Michigan State University, East Lansing, USA<br />

seit 1989 Universitätsprofessor und Direktor des <strong>Institut</strong>s für Metallkunde und<br />

Metallphysik, <strong>RWTH</strong> <strong>Aachen</strong><br />

1993-1999 Direktor des Gemeinschaftslabors für Elektronenmikroskopie <strong>der</strong> <strong>RWTH</strong> <strong>Aachen</strong><br />

(GFE)<br />

1996-1998 Dekan <strong>der</strong> Fakultät für Bergbau, Hüttenwesen und Geowissenschaften,<br />

<strong>RWTH</strong> <strong>Aachen</strong><br />

Mitgliedschaften<br />

Mitglied <strong>der</strong> The Metallurgical Society<br />

Mitglied, Materials Research Society<br />

Mitglied, American Physical Society<br />

Mitglied, Deutsche Gesellschaft für Materialkunde<br />

Mitglied, Deutsche Physikalische Gesellschaft<br />

Mitglied, Verein Deutscher Eisenhüttenleute<br />

Mitglied, Sigma Xi<br />

Mitglied, Fachbeirat des NAMAC Zentrums <strong>der</strong> polnischen Akademie <strong>der</strong> Wissenschaften,<br />

Krakau<br />

Mitglied, Fachbeirat des Max-Planck-<strong>Institut</strong>s für Eisenforschung, Düsseldorf<br />

Vorsitzen<strong>der</strong> des Fachbeirats des Max-Planck-<strong>Institut</strong>s für Metallforschung, Stuttgart<br />

Ordentliches Mitglied <strong>der</strong> Akademie <strong>der</strong> Wissenschaften und <strong>der</strong> Literatur, Mainz, 2002<br />

Sawamura Award des Iron and Steel <strong>Institut</strong>e of Japan, 2002<br />

Max-Planck-Forschungspreis <strong>der</strong> Alexan<strong>der</strong> von Humboldt-Stiftung und <strong>der</strong> Max-Planck-<br />

Gesellschaft, 1998<br />

Masing-Preis <strong>der</strong> Deutschen Gesellschaft für Metallkunde, 1982<br />

Heisenberg Stipendium, DFG, 1981-1983<br />

Editorial Board:<br />

Zeitschrift für Metallkunde<br />

ISIJ International<br />

Modeling and Simulation in Materials Science & Engineering<br />

Materials Science (Rußland)<br />

Veröffentlichungen<br />

8 Fachbücher<br />

ca. 280 Aufsätze in Fachzeitschriften


Liste themenbezogener Veröffentlichungen<br />

Bücher<br />

G. <strong>Gottstein</strong>:<br />

„Physikalische Grundlagen <strong>der</strong> Materialkunde“<br />

Springer-Verlag, Berlin-Heidelberg, Germany, (2. Auflage), 2001;<br />

(ISBN 3-540-41961-6)<br />

G. <strong>Gottstein</strong> and D.A. Molodov (Herausgeber):<br />

„Recrystallization and Grain Growth“<br />

Springer-Verlag Berlin, Germany (2001); (ISBN 3-540-41837-7)<br />

G. <strong>Gottstein</strong>, R. Sebald (Herausgeber):<br />

„Integral Materials Modelling“<br />

Shaker Verlag, <strong>Aachen</strong> (2000); (ISBN 3-8265-7779-5)<br />

G. <strong>Gottstein</strong> and L.S. Shvindlerman:<br />

„Grain Boundary Migration in Metals: Thermodynamics, Kinetics, Applications“<br />

CRC Press, Boca Raton, Fl., USA, 1999; (ISBN 0-8493-8222-X)<br />

H. Mughrabi, G. <strong>Gottstein</strong> , H. Mecking, H. Riedel, J. Tobolski (Herausgeber):<br />

„Microstructure and Mechanical Properties of Metallic High-Temperature Materials“<br />

Wiley-VCH, DFG, 1999<br />

J.S. Kallend and G. <strong>Gottstein</strong> (Herausgeber):<br />

ICOTOM 8<br />

TMS Warrendale, Pa., USA, 1988<br />

G. <strong>Gottstein</strong> (Herausgeber):<br />

„Rekristallisation metallischer Werkstoffe, Grundlagen, Analyse, Anwendung“<br />

Deutsche Gesellschaft für Metallkunde, Germany, 1984<br />

G. <strong>Gottstein</strong> , K. Lücke (Herausgeber):<br />

„Textures of Materials“<br />

Springer-Verlag Berlin, Germany, 1978<br />

Artikel<br />

R. Sebald, G. <strong>Gottstein</strong>:<br />

„Modeling of Recrystallization Textures: Interaction of Nucleation and Growth“<br />

Acta Mat. (2002) in <strong>Dr</strong>uck<br />

B. Mül<strong>der</strong>s, M. Zehetbauer, G. <strong>Gottstein</strong>, P. Les, E. Schafler:<br />

„Large Strain Work Hardening in the Alloy Al-1Mg-1Mn at Low and Intermediate Deformation Temperatures:<br />

Experiments and Modelling“<br />

eingereicht bei Mater. Sci. Eng. A, (2001)<br />

P.R. Rios, G. <strong>Gottstein</strong>:<br />

„Texture Evolution During Normal and Abnormal Grain Growth in an Al-1wt.%Mn Alloy“<br />

Acta Mater. 49 (2001) 2511-2518<br />

R. Luce, M. Wolske, R. Kopp, F. Robers, and G. <strong>Gottstein</strong>:<br />

„Application of a dislocation model for FE-process simulation“<br />

Comp. Mat. Sci., 21 (2001) 1-8<br />

F. Roters, D. Raabe, G. <strong>Gottstein</strong>


„Work Hardening in Heterogeneous Alloys − a Microstructural Approach Based on Three Internal State<br />

Variables“<br />

Acta Mater. 48 (2000) 4181-4189<br />

V. Marx, F.R. Reher, G. <strong>Gottstein</strong>:<br />

„Simulation of Primary Recrystallization Using a Modified 3D-Cellular Automaton“<br />

Acta Mat. 47 (1999) 1219-1230<br />

J.Ch. Verhasselt, G. <strong>Gottstein</strong>, D.A. Molodov, L.S. Shvindlerman:<br />

„Shape of Moving Grain Boundaries in Al-Bicrystals“<br />

Acta Mat. 47 (1999) 887-892<br />

B. Beckers, G. Pomana, G. <strong>Gottstein</strong>:<br />

„Interactive Texture- and FE-Simulations for Complex Deformation Processes“<br />

in „Constitutive and Damage Modeling of InelasticDeformation and Phase Transformation“, Hrsg. A.S.<br />

Khan, Neat Press, Fulton, Maryland, USA (1998) 305-308<br />

O.V. Mishin, G. <strong>Gottstein</strong>:<br />

„Grain Boundary Ensembles due to Grain Growth in Copper with Strong Recrystallization Texture“<br />

Mat. Sci. Eng. A249 (1998) 71-78<br />

U. Czubayko, V.G. Sursaeva, G. <strong>Gottstein</strong>, L.S. Shvindlerman;<br />

„Steady State Motion of Triple Junctions: Theory and Experiment“<br />

in „Grain Growth in Polycrystalline Materials III“, H. Weiland et al. (eds.), The Minerals, Metals & Materials<br />

Society, Warrendale, PA., USA (1998) 423-430<br />

G. <strong>Gottstein</strong>, L.S. Shvindlerman:<br />

„The Compensation Effect in Thermally Activated Interface Processes“<br />

Interface Sci. 6 (1998) 265-276<br />

Y.B. Park, D.N. Lee, G. <strong>Gottstein</strong>:<br />

„The Evolution of Recrystallization Textures in Body Centred Cubic Metals“<br />

Acta Mater. 46 (1998) 3371-3379<br />

L. Löchte, G. <strong>Gottstein</strong>:<br />

„Simulating Phase Transformations with the Cahn-Hilliard Equation − Potential and Limitations“<br />

in „Computational and Mathematical Models of Microstructural Evolution“, (Hrsg. J.W. Bullard et al.),<br />

MRS, Warrendale Pennsylvania, USA, Vol. 529, (1998) 71-76<br />

F. Marx, G. <strong>Gottstein</strong>:<br />

„Simulation of the Texture Evolution of Aluminium Alloys During Primary Static Recrystallization Using<br />

a Cellular automaton Approach“<br />

in „Computational and Mathematical Models of Microstructural Evolution“, (Hrsg. J.W. Bullard et al.),<br />

MRS, Warrendale Pennsylvania, USA, Vol. 529, (1998) 107-112<br />

G. <strong>Gottstein</strong>, D. Raabe:<br />

„Integral Modeling of Metallic Materials“<br />

Current Opinion in Solid State & Mat. Sci. 3 (1998) 264-268<br />

G. <strong>Gottstein</strong>, L.S. Shvindlerman:<br />

„Triple Junction <strong>Dr</strong>agging and Von Neumann-Mullins Relation“<br />

Scripta Mater. 38 (1998) 1541-1547<br />

C. Escher, S. Neves, G. <strong>Gottstein</strong>:<br />

„Recrystallization Texture Evolution in Ni 3 Al“<br />

Acta Mater. 46 (1998) 441-450<br />

G. <strong>Gottstein</strong>:<br />

„Metal Forming (Cold): Dislocation Mechanisms and Microstructural Changes“<br />

Kapitel in "Encyclopedia of Materials: Science and Technology", K.H. Jürgen Buschow et al. (Eds.),<br />

Pergamon Press (2002) 5394-5401


K.Y. Wen, W.P. Hu, G. <strong>Gottstein</strong>:<br />

„Interfacial Microstructure and Reaction of NB-Coated Single Crystal Al2O3 Fiber Reinforced NiAl<br />

Matrix Composites“<br />

J. of Mat. Sci. 37 (2002) 1253-1258<br />

X. Wang, E. Brünger, G. <strong>Gottstein</strong>:<br />

„The Role of Twinning During Dynamic Recrystallization in Alloy 800H“<br />

Scripta Mat. 46 (2002) 875-880<br />

A.N. Aleshin, R.G. Faulkner, D.A. Molodov, L.S. Shvindlerman:<br />

„Compensation Effect for Grain Boundary Diffusion in a Bicrystalline Experiment“ Interface Sci. 10<br />

(2002) 5-12<br />

M. Upmanyu, D.J. Srolovitz, L.S. Shvindlerman, G. <strong>Gottstein</strong>:<br />

„Molecular Dynamics Simulation of triple junction migration“<br />

Acta Mat. 50 (2002) 1405-1420<br />

S. Weiß, D. Mattissen, W. Dudzinski, G. <strong>Gottstein</strong>:<br />

„Microstructure of Laser-Beam-Welded Iron-Based Superalloy A286 after High-Temperature Creep“<br />

Adv. Eng. Mat. 4 (2002) 142-146<br />

E. Hornbogen, G. Brückner, G. <strong>Gottstein</strong>:<br />

„Microstructure and Texture of Ausformed NiTi“<br />

Z.f. Metallk. 93 (2002) 3-6<br />

G. <strong>Gottstein</strong> , L.S. Shvindlerman:<br />

„Triple Junction <strong>Dr</strong>ag and Grain Growth in 2D Polycrystals“<br />

Acta Mat., 50 (2002) 703-713<br />

G. <strong>Gottstein</strong> , W. Hu:<br />

„Investigation of Microstructure and Chemical Stability in Composites of NiAl Reinforced by Alumina-<br />

Silica Fibers“<br />

Z. Metallkde., 92 (2001) 1170-1174<br />

G. <strong>Gottstein</strong> , R. Sebald:<br />

„Modelling of Recrystallization Textures“<br />

Mat. Proc. Techn. 117 (2001) 282-287<br />

G. <strong>Gottstein</strong> , D.A. Molodov, M. Winning, L.S. Shvindlerman:<br />

"Grain Boundary Dynamics: A Novel Tool for Microstructure Control“<br />

Interface Science 9 (2001) 297-306<br />

H. Aretz, R. Luce, M. Wolske, R. Kopp, M. Gördeler, G. Pomana, and G. <strong>Gottstein</strong>:<br />

„Incorporation of Microstructure and Texture Models into FEM“<br />

J. Phys. IV France, 11 (2001) 115-121<br />

G. <strong>Gottstein</strong> , W. Hu:<br />

„Investigation of Microstructure and Chemical Stability in Composites of NiAl Reinforced by Alumina-<br />

Silica Fibers“<br />

Z. Metallkde., 92 (2001) 1170-1174<br />

G. Brückner, J. Pospiech, L. Seidl, G. <strong>Gottstein</strong>:<br />

„Orientation Correlation During Diffusional alpha to gamma Phase Transformation in a Ferritic Low<br />

Carbon Steel“<br />

Scripta mater. 44 (2001) 2635-2640<br />

D.A. Molodov, P. Konijnenberg, W. Hu, G. <strong>Gottstein</strong>, L.S. Shvindlerman:<br />

„Effect of Dislocation Absorption on the Motion of Specific Grain Boundaries in Al-Bicrystals“<br />

Scripta mater. 45 (2001) 229-235<br />

G. Brückner, G. <strong>Gottstein</strong>:


„Transformation Textures During Diffusional a to g to a Phase Transformations in Ferritic Steels“<br />

ISIJ Intern. 41 (2001), 468-477<br />

M. Goerdeler, G. <strong>Gottstein</strong>:<br />

„A Microstructural Work Hardening Model Based on Three Internal State Variables“<br />

Mat. Sci. Eng. A 309-310 (2001), 377-381<br />

G. <strong>Gottstein</strong> , R. Sebald, M. Goerdeler, H. Diepers, R. Prieler, G. Laschet, R. Luce, H. Aretz, R. Kopp:<br />

„Integral Materials Modelling - Recent Contributions of SFB 370“<br />

in 'High Productivity Joining Processes', Vol. II, Ed. U. Dilthey, Shaker Verlag 2001, S. 797-816<br />

P.R. Rios, G. <strong>Gottstein</strong>:<br />

„On the Stability of Small Grains Imbedded Within Abnormally Large Grains“<br />

Scripta mater. 44 (2000) 991-993<br />

A. Galiyev, R. Kaibyshev, G. <strong>Gottstein</strong>:<br />

„Correlation of Plastic Deformation and Dynamic Recrystallization in Magnesium Alloy ZK60“<br />

Acta Mat. 49 (2001) 1199-1207<br />

M. Winning, G. <strong>Gottstein</strong> , L.S. Shvindlerman:<br />

„Migration of Grain Boundaries un<strong>der</strong> the Influence of an External Shear Stress“<br />

Mater. Sci. Eng. A 317 (2001) 17-20<br />

G. <strong>Gottstein</strong> , W. Hu:<br />

„Investigation of Microstructure and Chemical Stability in Composites of NiAl Reinforced by Alumina-<br />

Silica Fibers“<br />

eingereicht bei Z. f. Metallkde, 2001<br />

G. <strong>Gottstein</strong>:<br />

„Deformation Mechanisms“<br />

eingereichtes Kapitel in "Encyclopedia of Materials: Science and Technology", K.H. Jürgen Buschow<br />

et al. (Eds.), Pergamon Press (2001)<br />

A. Galiyev, R. Kaibyshev, G. <strong>Gottstein</strong>:<br />

„Correlation of Plastic Deformation and Dynamic Recrystallization in Magnesium Alloy ZK60“<br />

Acta Mat. (2001) in <strong>Dr</strong>uck<br />

G. Brückner, J. Pospiech, L. Seidl, G. <strong>Gottstein</strong>:<br />

„Orientation Correlation During Diffusional alpha to gamma Phase Transformation in A Ferritic Low<br />

Carbon Steel“<br />

Scripta mater. (2001) in <strong>Dr</strong>uck<br />

G. <strong>Gottstein</strong> , D.A. Molodov, L.S. Shvindlerman, M. Winning:<br />

„Grain Boundary Dynamics: A Novel Tool for Microstructure Control“<br />

Influences of Interface and Dislocation Behavior on Microstructure Evolution MRS Fall Meeting,<br />

Symp.Y:, Boston, 2000 erschienen bei MRS, Warrendale, USA (2001)<br />

D.A. Molodov, P. Konijnenberg, W. Hu, G. <strong>Gottstein</strong> , L.S. Shvindlerman:<br />

„Effect of Dislocation Absorption on the Motion of Specific Grain Boundaries in Al-Bicrystals“<br />

eingereicht bei Scripta Mat., Jan. 2001<br />

L.S. Shvindlerman, G. <strong>Gottstein</strong>:<br />

„Grain Boundary and Triple Junction Migration“<br />

Mat. Sci. Eng. A302 (2001) 141-150<br />

S.G. Protasova, G. <strong>Gottstein</strong>, D.A. Molodov, V.G. Sursaeva, L.S. Shvindlerman:<br />

„Triple Junction Motion in Aluminum Tricrystals“<br />

Acta Mater. 49 (2001) 2519-2525<br />

H. Aretz, R. Luce, M. Wolske, R. Kopp, M. Gördeler, G. Pomana, and G. <strong>Gottstein</strong>:<br />

„Incorporation of Microstructure and Texture Models into FEM“<br />

J. Phys. IV France, 11 (2001) 115-121

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