Publications
Export 34 results:
Author Title [ Type] Year Filters: First Letter Of Last Name is Z [Clear All Filters]
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2007. .
2000.
High-Temperature Cyclic Oxidation of Pd/Pt-Modified Nial Bond Coats. Minerals, Metals and Materials Society/AIME, 420 Commonwealth Dr., P. O. Box 430 Warrendale PA 15086 USA.[np]. 14-18 Feb.
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2010. The suppression of instabilities via biphase interfaces during bulk fabrication of nanograined Zr. Materials Research Letters. 3:50–57.
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2015. Structure–property–functionality of bimetal interfaces. Jom. 64:1192–1207.
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2012. Structure–property–functionality of bimetal interfaces. Jom. 64:1192–1207.
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2012. rapid microwave preparation of thermoelectric TiNiSn and TiCoSb half-heusler compounds. Chemistry of Materials. 24:2558–2565.
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2012. rapid microwave preparation of thermoelectric TiNiSn and TiCoSb half-heusler compounds. Chemistry of Materials. 24:2558–2565.
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2012. New frontiers for the materials genome initiative. npj Computational Materials. 5:1–23.
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2019. New Co-based g-g′ high-temperature alloys. JOM. 62:58–63.
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2010. Minor Elements and Solidification Cracking During Laser Powder-Bed Fusion of a High γ′ CoNi-Base Superalloy. Metallurgical and Materials Transactions. 54:1-14.
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2023. Microstructure Evolution and Tensile Properties of a Selectively Laser Melted CoNi-Base Superalloy. Metallurgical and Materials Transactions A. 53
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2022. 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.
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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.
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2013. 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.
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2013. g′ rafting in single crystal blade alloys: a simulation study. Materials Science and Technology. 25:205–212.
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2009. Experimental investigation and thermodynamic modelling of the Mg–Al-rich region of the Mg–Al–Sr System. International Journal of Materials Research. 97:422-428.
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2022. Experimental investigation and thermodynamic modelling of the Mg–Al-rich region of the Mg–Al–Sr System. Zeitschrift für Metallkunde. 97:422–428.
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2006. Experimental investigation and thermodynamic modelling of the Mg–Al-rich region of the Mg–Al–Sr System. Zeitschrift für Metallkunde. 97:422–428.
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2006. Experimental investigation and thermodynamic modelling of the Mg–Al-rich region of the Mg–Al–Sr System. International Journal of Materials Research. 97:422-428.
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2022. Experimental investigation and thermodynamic modeling of the Co-rich region in the Co-Al-Ni-W quaternary system. Journal of Phase Equilibria and Diffusion. 35:595–611.
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2014. Effective Hf-Pd Co-doped $\beta$-NiAl (Cr) coatings for single-crystal superalloys. Acta Materialia. 76:449–462.
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2014. Determination of peak ordering in the CrCoNi medium-entropy alloy via nanoindentation. Acta Materialia. 241:118380.
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2022. Crystallography and elastic anisotropy in fatigue crack nucleation at nickel alloy twin boundaries. Journal of the Mechanics and Physics of Solids. 155:104538.
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2021. A combinatorial investigation of palladium and platinum additions to $\beta$-NiAl overlay coatings. Acta Materialia. 77:379–393.
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2014.