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Solidification of high-refractory ruthenium-containing superalloys. Acta Materialia. 51:269–284.. 2003.
Solidification and Microstructure of Mg-Al-(Ca, Sr, Ce, La) Ternary Alloys. Essential Readings in Magnesium Technology. :199–204.. 2005.
Soldification segregation in ruthenium-containing nickel-base superalloys. Metallurgical and Materials Transactions A. 37:1949–1962.. 2006.
On Slip Initiation in Equiaxed Alpha/Beta Ti-6Al-4V. Acta Materialia. 136. 2017.
Simulation of diffusion-limited lateral growth of dendrites during solidification via liquid metal cooling. Acta Materialia. 69:47–59.. 2014.
Room temperature fatigue response of $\gamma$-TiAl to impact damage. Scripta materialia. 40:445–449.. 1999.
The role of impact damage and fatigue strength reduction in gamma titanium aluminide alloys. Structural Intermetallics. :259–268.. 2001.
The Role of Creep Deformation in Directional Coarsening of gamma' in Nickel-Base Single Crystals. Modeling of Coarsening and Grain Growth. :35–44.. 1992.
Rejuvenation of Nickel-Based Superalloys GTD444 (DS) and René N5 (SX). Superalloys 2012. :341–349.. 2012.
Recrystallization Behavior of a MgAlCa Alloy during Thermomechanical Processing and Subsequent Heat Treatment. Magnesium Technology 2013. :203–209.. 2013.
The Re (Ru)-rich $δ$-phase in Ru-containing superalloys. Materials Science and Engineering: A. 373:239–249.. 2004.
Rate sensitivities for low temperature deformation in ruthenium aluminide alloys. Scripta materialia. 38:1065–1069.. 1998.
Quantitative Analysis of Correlated 3D Strontium Titanate Datasets Collected by TriBeam and Diffraction Contrast Tomography. Microscopy and Microanalysis. 21:2043–2044.. 2015.
Qualitative Characterization of a Thermal Barrier Coating System Using Femtosecond Laser-Induced Breakdown Spectroscopy. MATERIALS SCIENCE AND TECHNOLOGY-ASSOCIATION FOR IRON AND STEEL TECHNOLOGY-. 5:621.. 2006.
Processing and deformation behavior of bulk Cu–Nb nanolaminates. Metallography, Microstructure, and Analysis. 3:470–476.. 2014.
Process Simulation for the Directional Solidification of a Tri-Crystal Ring Segment via the Bridgman and Liquid-Metal-Cooling Processes. Metallurgical and Materials Transactions A. 43:2414–2425.. 2012.
Prediction of Magnesium Alloy Formability: The Role of Texture. Magnesium Technology 2016. :257–262.. 2016.
Predicting freckle formation in single crystal Ni-base superalloys. Journal of materials science. 39:7199–7205.. 2004.
Precipitation strengthening of a Mg-Al-Ca–based AXJ530 die-cast alloy. Metallurgical and Materials Transactions A. 39:696–702.. 2008.
Post-fabrication vapor phase strengthening of nickel-based sheet alloys for thermostructural panels. Acta Materialia. 56:4577–4584.. 2008.
Planar defect formation in the g′ phase during high temperature creep in single crystal CoNi-base superalloys. Acta Materialia. 113:335–349.. 2016.
Phase instabilities and carbon additions in single-crystal nickel-base superalloys. Materials Science and Engineering: A. 348:111–121.. 2003.
Oxidation of ruthenium aluminide-based alloys: The role of microstructure and platinum additions. Intermetallics. 15:34–43.. 2007.