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High temperature x ray diffraction determination of the body-centered-cubic-face-centered-cubic transformation temperature in (Fe{sub 70}Ni{sub 30}){sub 88}Zr{sub 7}B{sub 4}Cu{sub 1} nanocomposites
In situ high-temperature x ray diffraction and magnetization measurements were performed on a melt-spun (Fe{sub 70}Ni{sub 30}){sub 88}Zr{sub 7}B{sub 4}Cu{sub 1} amorphous alloy to follow its structural evolution. At 728 K, a bcc-FeNi phase was observed as the primary crystallization product followed...
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Published in: | Journal of applied physics 2012-04, Vol.111 (7) |
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container_title | Journal of applied physics |
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creator | Ipus, J. J. McHenry, M. E. Herre, P. Ohodnicki, P. |
description | In situ high-temperature x ray diffraction and magnetization measurements were performed on a melt-spun (Fe{sub 70}Ni{sub 30}){sub 88}Zr{sub 7}B{sub 4}Cu{sub 1} amorphous alloy to follow its structural evolution. At 728 K, a bcc-FeNi phase was observed as the primary crystallization product followed by transformation to an fcc phase {approx}773 K. During cooling to room temperature, the fcc-to-bcc transformation was not observed, and the metastable fcc-NiFe phase was retained at room temperature. |
doi_str_mv | 10.1063/1.3675990 |
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During cooling to room temperature, the fcc-to-bcc transformation was not observed, and the metastable fcc-NiFe phase was retained at room temperature.</abstract><cop>United States</cop><doi>10.1063/1.3675990</doi></addata></record> |
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source | American Institute of Physics:Jisc Collections:Transitional Journals Agreement 2021-23 (Reading list) |
subjects | BCC LATTICES BORON ALLOYS COMPOSITE MATERIALS COPPER ALLOYS CRYSTALLIZATION CRYSTALS FCC LATTICES IRON ALLOYS MAGNETIZATION MATERIALS SCIENCE MORPHOLOGY NANOSCIENCE AND NANOTECHNOLOGY NANOSTRUCTURES NICKEL ALLOYS SOLIDS TEMPERATURE DEPENDENCE X-RAY DIFFRACTION ZIRCONIUM ALLOYS |
title | High temperature x ray diffraction determination of the body-centered-cubic-face-centered-cubic transformation temperature in (Fe{sub 70}Ni{sub 30}){sub 88}Zr{sub 7}B{sub 4}Cu{sub 1} nanocomposites |
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