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In-plane and out-of-plane deformation at the sub-grain scale in polycrystalline materials assessed by confocal microscopy. Acta Materialia. 169:260–274.. 2019.
Interfacial diffusion in high-temperature deformation of composites: A discrete dislocation plasticity investigation. Journal of the Mechanics and Physics of Solids. 98:330–349.. 2017.
Incipient slip and long range plastic strain localization in microtextured Ti-6Al-4V titanium. Acta Materialia. 114:164–175.. 2016.
Interfacial diffusion in high-temperature deformation of composites: a discrete dislocation plasticity investigation. Journal of the Mechanics and Physics of Solids.. 2016.
In situ Femtosecond Laser and Argon Ion Beams for 3D Microanalysis using the TriBeam. Microscopy and Microanalysis. 21:1847–1848.. 2015.
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.
Integrated Computational Materials Engineering (ICME): Implementing ICME in the Aerospace, Automotive, and Maritime Industries. A Study Organized by The Minerals, Metals & Materials Society. The Minerals, Metals & Materials Society, Warrendale, PA. 15086. 2013.
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.
In situ damage assessment in a cast magnesium alloy during very high cycle fatigue. Scripta Materialia. 64:65–68.. 2011.
In situ synchrotron X-ray imaging of high-cycle fatigue crack propagation in single-crystal nickel-base alloys. Acta Materialia. 59:5103–5115.. 2011.
In situ characterization of fatigue damage evolution in a cast Al alloy via nonlinear ultrasonic measurements. Acta Materialia. 58:2143–2154.. 2010.
In situ imaging of high cycle fatigue crack growth in single crystal nickel-base superalloys by synchrotron X-radiation. Journal of Engineering Materials and Technology. 130:021008.. 2008.
In Situ Imaging of High Cycle Fatigue Crack Growth in Single Crystal Nickel-Base Superalloys by Synchrotron X-Radiation. Ann Arbor. 1001:48109.. 2008.
Interfacial Dislocation Networks and creep in directional coarsened Ru-containing nickel-base single-crystal superalloys. Metallurgical and Materials Transactions A. 39:1290–1307.. 2008.
Intermetallic Bond Coats: Systems Compatibility and Platinum-Group Metal Additions. MRS Proceedings. 1128:1128–U06.. 2008.
Influence of Ru and Cr on the heat-treated microstructure of Ni-based superalloys. Materials science forum. 546:1207–1210.. 2007.
Intermetallic phases formed by ruthenium–nickel alloy interdiffusion. Intermetallics. 12:957–962.. 2004.
Influence of microstructure and strain distribution on failure properties in intermetallic TiAl-based alloys. Materials Science and Engineering: A. 319:613–617.. 2001.
The influence of microstructure on the measurement of $\gamma$-$\gamma$′ lattice mismatch in single-crystal Ni-base superalloys. Materials Science and Engineering: A. 210:8–15.. 1996.
The influence of microstructure on the measurement of yy'lattice mismatch in single-crystal Ni-base superalloys. Materials Science & Engineering A. 1:8–15.. 1996.
In-situ observations of crack initiation and growth at notches in cast Ti-48Al-2Cr-2Nb. Scripta materialia. 35:1311–1316.. 1996.
Intermediate temperature creep deformation in CMSX-3 single crystals. Superalloys 1988. :285.. 1988.