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Thermoelectric performance and the role of anti-site disorder in the 24-electron Heusler TiFe2Sn. Journal of Physics: Condensed Matter. 29:405702.. 2017.
Enhancement of thermoelectric properties in the Nb–Co–Sn half-Heusler/Heusler system through spontaneous inclusion of a coherent second phase. Journal of Applied Physics. 120:075104.. 2016.
Development of dendritic structure in the liquid-metal-cooled, directional-solidification process. Metallurgical and Materials Transactions A. 42:2723–2732.. 2011.
Real Time Synchrotron Radiography of High Temperature High Cycle Fatigue Crack Growth in Single-Crystal Nickel-Base Superalloys. Minerals, Metals and Materials Society/AIME, 420 Commonwealth Dr., P. O. Box 430 Warrendale PA 15086 USA.[np]. 14-18 Feb.. 2010.
Processing to fatigue properties: benefits of high gradient casting for single crystal airfoils. Superalloys 2012. :379–385.. 2012.
Structure refinement by a liquid metal cooling solidification process for single-crystal nickel-base superalloys. Metallurgical and Materials Transactions A. 43:965–976.. 2012.
Special issue-Micromechanics and micromechanisms of deformation and fracture: A special issue in honor of professor Ali S. Argon-Preface.. 2001.
rapid microwave preparation of thermoelectric TiNiSn and TiCoSb half-heusler compounds. Chemistry of Materials. 24:2558–2565.. 2012.
Improving the thermoelectric properties of half-Heusler TiNiSn through inclusion of a second full-Heusler phase: microwave preparation and spark plasma sintering of TiNi 1+ x Sn. Physical Chemistry Chemical Physics. 15:6990–6997.. 2013.
Influence of Ni nanoparticle addition and spark plasma sintering on the TiNiSn–Ni system: structure, microstructure, and thermoelectric properties. Solid State Sciences. 26:16–22.. 2013.
Flow localization during plane strain punch stretching of a ferrite-austenite steel. Metallurgical Transactions A. 17:1537–1546.. 1986.
Use of Weibull statistics to quantify property variability in TiAl alloys. Metallurgical and Materials Transactions A. 33:3127–3136.. 2002.
Displacement Mapping During In-Situ Straining In The SEM. MICROSCOPY AND MICROANALYSIS-NEW YORK-. 5:334–335.. 1999.
Influence of microstructure and strain distribution on failure properties in intermetallic TiAl-based alloys. Materials Science and Engineering: A. 319:613–617.. 2001.
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.
Resonance ultrasound spectroscopy forward modeling and inverse characterization of nickel-based superalloys. 41ST ANNUAL REVIEW OF PROGRESS IN QUANTITATIVE NONDESTRUCTIVE EVALUATION: Volume 34. 1650:835–844.. 2015.
Structure–property–functionality of bimetal interfaces. Jom. 64:1192–1207.. 2012.
Interface-driven microstructure development and ultra high strength of bulk nanostructured Cu-Nb multilayers fabricated by severe plastic deformation. Journal of materials research. 28:1799–1812.. 2013.
Texture, Second-Phase Particles, and the Anisotropy of Deformation Behavior in TTMP AZ61. Metallurgical and Materials Transactions A. 46:2986–2998.. 2015.
Microstructure Evolution in AZ61L During TTMP and Subsequent Annealing Treatments. Magnesium Technology 2011. :599–603.. 2011.
Microstructure Characterization of Weakly Textured and Fine Grained AZ61 Sheet. Magnesium Technology 2013. :113–118.. 2013.
Microstructure and Texture Through Thixomolding and Thermomechanical Processing and the Role of Mg17Al12 Particles. Metallurgical and Materials Transactions A. 47:3125–3136.. 2016.
Microstructure Modification and Deformation Behavior of Fine-Grained AZ61 Sheet Produced by Thixomolding and Thermomechanical Processing (TTMP). Magnesium Technology 2012. :339–344.. 2012.
Structure Evolution in AZ 61 L along a Fine-Grain Sheet Processing Path. AIP Conference Proceedings.. 2012.
Effect of Microstructure on Deformation and Fracture of Thixomolded and Thermomechanically Processed AZ61. Magnesium Technology 2014. :161–166.. 2014.