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Compression Creep Behavior of B2 AL-Ni-Ru Ternary Alloys. MRS Proceedings. 980:0980–II01.. 2006.
Dynamics of Ultrafast Laser Induced Damage in Single Crystal Ni-Based Superalloy During Machining. MRS Proceedings. 980:0980–II05.. 2006.
Experimental investigation and thermodynamic modelling of the Mg–Al-rich region of the Mg–Al–Sr System. Zeitschrift für Metallkunde. 97:422–428.. 2006.
High Temperature Strength of Co-based $\gamma$/$\gamma$'Superalloys. MRS Proceedings. 980:0980–II08.. 2006.
Microstructure and properties of blended Mg- Al alloys fabricated by semisolid processing. Metallurgical and Materials Transactions A. 37:3725–3736.. 2006.
Nickel-based superalloys for advanced turbine engines: chemistry, microstructure and properties. Journal of propulsion and power. 22:361–374.. 2006.
Phase equilibria in the Mg-Al-Ca ternary system at 773 and 673 K. Metallurgical and Materials Transactions A. 37:975–983.. 2006.
Phase Transformation and Creep of Mg-Al-Ca Based Die-Cast Alloys. Essential Readings in Magnesium Technology. :291–296.. 2005.
A method for measuring microstructural-scale strains using a scanning electron microscope: applications to $\gamma$-titanium aluminides. Metallurgical and Materials Transactions A. 34:2301–2313.. 2003.
Strain hardening. Intermetallic Compounds-Principles and Practice: Progress, Volume 3. :361–377.. 2002.
Use of Weibull statistics to quantify property variability in TiAl alloys. Metallurgical and Materials Transactions A. 33:3127–3136.. 2002.
Cast gamma titanium aluminides for low pressure turbine blades: a design case study for intermetallics. Minerals, Metals and Materials Society/AIME, Structural Intermetallics 2001(USA),. :3–12.. 2001.
Microstructural development and creep deformation in equiaxed $\gamma$, $\gamma$+ $\alpha$ 2, and $\gamma$+ $\alpha$ 2+ B2 titanium aluminides. Metallurgical and Materials Transactions A. 29:965–978.. 1998.
Numerical modeling of the creep behavior of unidirectional eutectic composites. Acta materialia. 46:2859–2876.. 1998.
Effects of environment on the tensile and creep behavior of a low-oxygen orthorhombic-based titanium aluminide, Ti-22 Al-23 Nb. Titanium'95- Science and technology. :396–403.. 1996.
Effects of high temperature air and vacuum exposures on the room temperature tensile behavior of the (O+ B2) titanium aluminide Ti-22Al-23Nb. Materials Science and Engineering: A. 208:188–202.. 1996.
The growth and elevated temperature stability of high refractory nickel-base single crystals. Materials Science and Engineering: B. 32:255–266.. 1995.
Creep of $\alpha$ 2+ $\beta$ Titanium Aluminide Alloys. ISIJ International. 31:1139–1146.. 1991.
Intermediate temperature creep deformation in CMSX-3 single crystals. Superalloys 1988. :285.. 1988.
Phenomenology and mechanisms of recovery creep. Proc. 8th Int. Symp. on Metallurgy and Materials Science, RISO National Lab., Roskilde, Denmark. :39–54.. 1987.