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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.
In situ characterization of fatigue damage evolution in a cast Al alloy via nonlinear ultrasonic measurements. Acta Materialia. 58:2143–2154.. 2010.
In situ damage assessment in a cast magnesium alloy during very high cycle fatigue. Scripta Materialia. 64:65–68.. 2011.
In situ Femtosecond Laser and Argon Ion Beams for 3D Microanalysis using the TriBeam. Microscopy and Microanalysis. 21:1847–1848.. 2015.
In Situ Imaging of High Cycle Fatigue Crack Growth in Single Crystal Nickel-Base Superalloys by Synchrotron X-Radiation. Ann Arbor. 1001:48109.. 2008.
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 synchrotron X-ray imaging of high-cycle fatigue crack propagation in single-crystal nickel-base alloys. Acta Materialia. 59:5103–5115.. 2011.
Incipient slip and long range plastic strain localization in microtextured Ti-6Al-4V titanium. Acta Materialia. 114:164–175.. 2016.
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.
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.
Influence of plastic deformation on the magnetic properties of Heusler MnAu2Al. Phys. Rev. Materials. 5. 2021.
Influence of Ru and Cr on the heat-treated microstructure of Ni-based superalloys. Materials science forum. 546:1207–1210.. 2007.
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.
Insight into microstructure-sensitive elastic strain concentrations from integrated computational modeling and digital image correlation. Scripta Materialia. 192:78–82.. 2021.
In-situ observations of crack initiation and growth at notches in cast Ti-48Al-2Cr-2Nb. Scripta materialia. 35:1311–1316.. 1996.
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.
Interfacial diffusion in high-temperature deformation of composites: a discrete dislocation plasticity investigation. Journal of the Mechanics and Physics of Solids.. 2016.
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.
Interfacial Dislocation Networks and creep in directional coarsened Ru-containing nickel-base single-crystal superalloys. Metallurgical and Materials Transactions A. 39:1290–1307.. 2008.
Intermediate temperature creep deformation in CMSX-3 single crystals. Superalloys 1988. :285.. 1988.
Intermetallic Bond Coats: Systems Compatibility and Platinum-Group Metal Additions. MRS Proceedings. 1128:1128–U06.. 2008.