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Thomas Owens Ziebold grad student 1971 MIT
 (Measurement of the fast neutron radiation hardening energy response function in iron.)
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Alam ME, Odette GR. (2023) Improving the Fracture Toughness and Ductility of Liquid-Phase Sintered WNiFe Tungsten Heavy Alloys by High-Temperature Annealing. Materials (Basel, Switzerland). 16
Alam M, Odette G. (2020) On the remarkable fracture toughness of 90 to 97W-NiFe alloys revealing powerful new ductile phase toughening mechanisms Acta Materialia. 186: 324-340
Stan T, Wu Y, Ciston J, et al. (2020) Characterization of polyhedral nano-oxides and helium bubbles in an annealed nanostructured ferritic alloy Acta Materialia. 183: 484-492
Bhattacharyya D, Yamamoto T, Wells P, et al. (2019) Microstructural changes and their effect on hardening in neutron irradiated Fe-Cr alloys Journal of Nuclear Materials. 519: 274-286
Almirall N, Wells P, Yamamoto T, et al. (2019) Precipitation and hardening in irradiated low alloy steels with a wide range of Ni and Mn compositions Acta Materialia. 179: 119-128
Pal S, Alam M, Maloy S, et al. (2018) Texture evolution and microcracking mechanisms in as-extruded and cross-rolled conditions of a 14YWT nanostructured ferritic alloy Acta Materialia. 152: 338-357
Shu S, Wirth BD, Wells PB, et al. (2018) Multi-technique characterization of the precipitates in thermally aged and neutron irradiated Fe-Cu and Fe-Cu-Mn model alloys: Atom probe tomography reconstruction implications Acta Materialia. 146: 237-252
Alam M, Pal S, Maloy S, et al. (2017) On delamination toughening of a 14YWT nanostructured ferritic alloy Acta Materialia. 136: 61-73
Alam M, Pal S, Fields K, et al. (2016) Tensile deformation and fracture properties of a 14YWT nanostructured ferritic alloy Materials Science and Engineering: A. 675: 437-448
Cunningham NJ, Alinger MJ, Klingensmith D, et al. (2016) On nano-oxide coarsening kinetics in the nanostructured ferritic alloy MA957: A mechanism based predictive model Materials Science and Engineering A. 655: 355-362
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