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Transmission electron microscopy study of complex planar faults in Ru–Al–0.5 at.% B. Philosophical Magazine. 84:2317–2329.. 2004.
Low temperature deformation kinetics of ruthenium aluminide alloys. MRS Proceedings. 552:KK7–11.. 1998.
Low temperature deformation and dislocation substructure of ruthenium aluminide polycrystals. Acta materialia. 47:1035–1042.. 1999.
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 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.
A new phase in hydrogen-charged Ti 48Al 2Cr 2Nb. Scripta metallurgica et materialia. 32:1009–1014.. 1995.
On the effect of low and high pressure hydrogen charging on the oxidation of a Ti–48Al–2Cr–2Nb alloy. Materials Science and Engineering: A. 318:224–234.. 2001.
Tuning the magnetocaloric response in half-Heusler/Heusler MnNi1 xSb solid solutions. Physical Review Materials. 1. 2017.
Prediction of Fatigue-Initiating Twin Boundaries in Polycrystalline Nickel Superalloys Informed by TriBeam Tomography. Microscopy and Microanalysis. 22:1732–1733.. 2016.
Quantitative Analysis of Correlated 3D Strontium Titanate Datasets Collected by TriBeam and Diffraction Contrast Tomography. Microscopy and Microanalysis. 21:2043–2044.. 2015.
Quantitative voxel-to-voxel comparison of TriBeam and DCT strontium titanate three-dimensional data sets. Journal of Applied Crystallography. 48:1034–1046.. 2015.
Outcomes from research collaborations: What are they and how long do they take? MRS bulletin. 38:526–528.. 2013.
Oxidation-Assisted Crack Growth in Single-Crystal Superalloys during Fatigue with Compressive Holds. Metallurgical and Materials Transactions A. 49:105–116.. 2018.