Processing-properties relationship of nanostructured Ni-Fe-Mo magnetic materials
The investigation of HEBM Ni-Fe-Mo was to study the properties of nanostructured magnetic materials. Materials used in this experiment were elemental Mo powders and pre-alloyed FeNi3 powders. The results showed that even after 100 h of high energy ball milling, the only detected phase was FeNi3. Mo...
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sg-ntu-dr.10356-51052020-06-01T11:56:53Z Processing-properties relationship of nanostructured Ni-Fe-Mo magnetic materials Shen, Yanping Hng Huey Hoon School of Materials Science & Engineering DRNTU::Engineering::Materials::Magnetic materials The investigation of HEBM Ni-Fe-Mo was to study the properties of nanostructured magnetic materials. Materials used in this experiment were elemental Mo powders and pre-alloyed FeNi3 powders. The results showed that even after 100 h of high energy ball milling, the only detected phase was FeNi3. Mo atoms were substituted into the FeNi3 phase, and destroyed the long-range FeNi3 lattice to form short-range order. Saturation magnetization decreased during the substitution process. However, coercivity was mainly affected by the milling process and was independent of the substitution of Mo. DOCTOR OF PHILOSOPHY (SME) 2008-09-17T10:20:06Z 2008-09-17T10:20:06Z 2006 2006 Thesis Shen, Y. P. (2006). Processing-properties relationship of nanostructured Ni-Fe-Mo magnetic materials. Doctoral thesis, Nanyang Technological University, Singapore. https://hdl.handle.net/10356/5105 10.32657/10356/5105 Nanyang Technological University 218 p. application/pdf |
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DRNTU::Engineering::Materials::Magnetic materials Shen, Yanping Processing-properties relationship of nanostructured Ni-Fe-Mo magnetic materials |
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The investigation of HEBM Ni-Fe-Mo was to study the properties of nanostructured magnetic materials. Materials used in this experiment were elemental Mo powders and pre-alloyed FeNi3 powders. The results showed that even after 100 h of high energy ball milling, the only detected phase was FeNi3. Mo atoms were substituted into the FeNi3 phase, and destroyed the long-range FeNi3 lattice to form short-range order. Saturation magnetization decreased during the substitution process. However, coercivity was mainly affected by the milling process and was independent of the substitution of Mo. |
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Hng Huey Hoon |
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Hng Huey Hoon Shen, Yanping |
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Theses and Dissertations |
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Shen, Yanping |
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Shen, Yanping |
title |
Processing-properties relationship of nanostructured Ni-Fe-Mo magnetic materials |
title_short |
Processing-properties relationship of nanostructured Ni-Fe-Mo magnetic materials |
title_full |
Processing-properties relationship of nanostructured Ni-Fe-Mo magnetic materials |
title_fullStr |
Processing-properties relationship of nanostructured Ni-Fe-Mo magnetic materials |
title_full_unstemmed |
Processing-properties relationship of nanostructured Ni-Fe-Mo magnetic materials |
title_sort |
processing-properties relationship of nanostructured ni-fe-mo magnetic materials |
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2008 |
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https://hdl.handle.net/10356/5105 |
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1681059387599224832 |