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