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The effect of Mn on the structural and magnetic behaviour of Fe–6Si–8B alloy produced by high energy ball Milling

dc.contributor.authorPrasad N.K.; Agrawal K.M.; Ranwa J.R.; Meena S.S.; Yusuf S.M.; Mukhopadhyay N.K.
dc.date.accessioned2025-05-24T09:29:58Z
dc.description.abstractThe alloys of Fe–6Si–8B and Fe–6Si–8B–1Mn were prepared using high energy planetary ball mill. X-ray diffraction patterns of the milled samples confirmed the formation of the alloys by dissolution of Si in Fe after 30 and 24 h of milling for the Fe–6Si–8B and Fe–6Si–8B–1Mn samples respectively. The lattice parameter was found to increase continuously with milling time and the rise was steeper for the quaternary alloy. After 36 h of milling, the crystallite size for the two samples were reduced to 98 and 86 nm respectively. Mössbauer spectra suggested the formation of minor amount of α-Fe2O3. The value of saturation magnetization was 162 Am2/kg for Fe–6Si–8B alloy obtained after 18 h of milling. However, the value decreased with increased milling time as well as with Mn-addition. The remanance value showed similar tendency as that for saturation magnetization. In contrast, the coercivity value was found to be increasing with milling time and with Mn-addition. © 2016, The Indian Institute of Metals - IIM.
dc.identifier.doihttps://doi.org/10.1007/s12666-016-0939-z
dc.identifier.urihttp://172.23.0.11:4000/handle/123456789/16467
dc.relation.ispartofseriesTransactions of the Indian Institute of Metals
dc.titleThe effect of Mn on the structural and magnetic behaviour of Fe–6Si–8B alloy produced by high energy ball Milling

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