Ronald O. Scattergood
Affiliations: | Materials Science and Engineering | North Carolina State University, Raleigh, NC |
Area:
Nanotechnology, Materials Science EngineeringGoogle:
"Ronald Scattergood"Children
Sign in to add traineeSeonhee Jang | grad student | 2007 | NCSU |
Ryan N. Chan | grad student | 2013 | NCSU |
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Publications
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Roy D, Chakraborty S, Gupta AK, et al. (2020) Synergistic effect of Nb and Zr additions on the structure-property relationships of nanocrystalline Cu processed by mechanical alloying and hot pressing Journal of Alloys and Compounds. 157174 |
Wang Y, Huang C, Li Y, et al. (2020) Dense dispersed shear bands in gradient-structured Ni International Journal of Plasticity. 124: 186-198 |
Wang YF, Wang MS, Fang XT, et al. (2019) Extra strengthening in a coarse/ultrafine grained laminate: Role of gradient interfaces International Journal of Plasticity. 123: 196-207 |
Abaza MA, Al‐Sulaiti L, Scattergood RO, et al. (2019) Influence of 1%Nb Solute Addition on the Thermal Stability of In Situ Consolidated Nanocrystalline Cu Advanced Engineering Materials. 21: 1800859 |
Youssef KM, Abaza MA, Scattergood RO, et al. (2018) High strength, ductility, and electrical conductivity of in-situ consolidated nanocrystalline Cu-1%Nb Materials Science and Engineering: A. 711: 350-355 |
Shahbeigi Roodposhti P, Saber M, Koch C, et al. (2017) Effect of oxygen content on thermal stability of grain size for nanocrystalline Fe10Cr and Fe14Cr4Hf alloy powders Journal of Alloys and Compounds. 720: 510-520 |
Sikdar K, Chakravarty S, Roy D, et al. (2017) Synthesis and characterization of an in situ consolidated nanocrystalline Cu88Al11.5Y0.5 alloy Journal of Alloys and Compounds. 717: 219-225 |
Roodposhti PS, Sarkar A, Murty KL, et al. (2016) Grain boundary sliding mechanism during high temperature deformation of AZ31 Magnesium alloy Materials Science and Engineering A. 669: 171-177 |
Mahesh BV, Singh Raman RK, Scattergood RO, et al. (2016) Retraction notice to Fe-Cr-Ni-Zr alloys with bi-modal grain size distribution: Synthesis, mechanical properties and oxidation resistance [Mater. Sci. Eng. A, 574, (2013), 235-242] DOI: 10.1007/s10853-012-6686-6 Materials Science and Engineering A. 660: 251 |
Xu W, Li L, Valdez JA, et al. (2016) Effect of nano-oxide particle size on radiation resistance of iron-chromium alloys Journal of Nuclear Materials. 469: 72-81 |