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Zeitschriftenartikel (94)
81.
Zeitschriftenartikel
Experimental Determination of Intermetallic Phases, Phase Equilibria, and Invariant Reaction Temperatures in the Fe–Zr System. Journal of Phase Equilibria 23 (6), S. 480 - 494 (2002)
82.
Zeitschriftenartikel
Mikrostruktur und mechanische Eigenschaften von Fe–Al mit verstärkender Zr(Fe,Al)2-Phase. Verhandl. DPG 6 (37), S. 264 - 264 (2002)
83.
Zeitschriftenartikel
Formation of lamellar microstructures in Al-rich TiAl alloys between 900 and 1100°C. Intermetallics 9 (3), S. 229 - 238 (2001)
84.
Zeitschriftenartikel
TEM and DTA Study on the Stability of Al5Ti3- and h-Al2Ti-Superstructures in Aluminium-Rich TiAl Alloys. Acta Materialia 49 (15), S. 2919 - 2932 (2001)
85.
Zeitschriftenartikel
Constitution-based alloy selection for the screening of intermetallic Ti–Al–Fe alloys. Zeitschrift für Metallkunde 90 (1), S. 64 - 70 (1999)
86.
Zeitschriftenartikel
Phase equilibria in the Al–Nb–Ti system at high temperatures. Intrmetallics 6 (2), S. 79 - 94 (1998)
87.
Zeitschriftenartikel
The Al–Cr–Fe system-Phases and phase equilibria in the Al-rich corner. Journal of Alloys and Compounds 252 (1-2), S. 192 - 200 (1997)
88.
Zeitschriftenartikel
Metal dusting of Fe3Al and (Fe,Ni)3Al. Materials and Corrosion - Werkstoffe und Korrosion 47 (12), S. 701 - 702 (1996)
89.
Zeitschriftenartikel
Phase Equilibria in the Ni–Al–Ta System. Zeitschrift für Metallkunde/Materials Research and Advanced Techniques 87 (5), S. 390 - 398 (1996)
90.
Zeitschriftenartikel
Notes concerning the paper “partial phase diagram of the Ti–Al binary system” by J.J. Ding,et al. Journal of Phase Equilibria 17 (4), S. 275 - 276 (1996)
91.
Zeitschriftenartikel
The Fe–Al–Ti system. Journal of Phase Equilibria 16 (3), S. 209 - 222 (1995)
92.
Zeitschriftenartikel
Experimental determination of phase equilibria in the Fe–Al–C system. Intermetallics 3 (6), S. 443 - 454 (1995)
93.
Zeitschriftenartikel
Solid-phase equilibria in the Ti-rich part of the Ti–Al system. Intermetallics 2 (4), S. 321 - 332 (1994)
94.
Zeitschriftenartikel
The invariant reaction between α, α2 and γ in the Ti/1bAl system. Scripta Metallurgica et Materialia 27 (2), S. 143 - 148 (1992)
Buch (1)
95.
Buch
Selected Al–Fe–X Ternary Systems for Industrial Applications. (2022)
Buchkapitel (10)
96.
Buchkapitel
Aluminium–Tantalum–Titanium. In: Refractory Material Systems for Industrial Applications, S. 26 - 56 (Hg. Seifert, H. J.). MSI, Materials Science International Services GmbH, Stuttgart, Germany (2024)
97.
Buchkapitel
Iron–Molybdenum–Titanium. In: Refractory Material Systems for Industrial Applications, S. 339 - 352 (Hg. Seifert, H. J.). MSI, Materials Science International Services GmbH, Stuttgart, Germany (2024)
98.
Buchkapitel
Al–Fe–Sn (Aluminium-Iron-Tin). In: Ternary Alloys: Selected Al–Fe–X Ternary Systems for Industrial Applications, Bd. 21, S. 437 - 446. Materials Science International Services GmbH, Stuttgart, Germany (2022)
99.
Buchkapitel
Al–Fe–Zn (Aluminium-Iron-Zinc). In: Ternary Alloys: Selected Al–Fe–X Ternary Systems for Industrial Applications, Bd. 21, S. 541 - 568. Materials Science International Services GmbH, Stuttgart, Germany (2022)
100.
Buchkapitel
Al–Co–Fe (Aluminium-Cobalt-Iron). In: Ternary Alloys: Selected Al–Fe–X Ternary Systems for Industrial Applications, Bd. 21, S. 73 - 99. Materials Science International Services GmbH, Stuttgart, Germany (2022)