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Anupama Panda

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  • All publications (4)
  •  56
    Magnetic and structural behaviours of nanocrystalline Fe 70.8 Nb 3.7 Cu 1 Al 2.7 Mn 0.7 Si 13.5 B 7.6 alloy
    with A. Mitra, S. Singh, V. Rao, and P. Ramachandrarao
    Philosophical Magazine 83 (12): 1495-1509. 2003.
    The crystallization behaviour of Fe 70.8 Nb 3.7 Cu 1 Al 2.7 Mn 0.7 Si 13.5 B 7.6 alloy prepared in the form of amorphous ribbons by melt-spinning technique was studied using differential scanning calorimetry and the temperature variation in resistivity. An X-ray diffaction and transmission electron microscopy study showed the formation of f -Fe and/or Fe 3 nanoparticles after the first stage of crystallization. The activation energy for this nanophase formation was 68 kcal mol m 1 . The brittlen…Read more
    The crystallization behaviour of Fe 70.8 Nb 3.7 Cu 1 Al 2.7 Mn 0.7 Si 13.5 B 7.6 alloy prepared in the form of amorphous ribbons by melt-spinning technique was studied using differential scanning calorimetry and the temperature variation in resistivity. An X-ray diffaction and transmission electron microscopy study showed the formation of f -Fe and/or Fe 3 nanoparticles after the first stage of crystallization. The activation energy for this nanophase formation was 68 kcal mol m 1 . The brittleness of the alloy increased with the formation of nanoparticles after heat treatment. Superior soft magnetic properties were achieved when the material was heat treated at 790 K for 15 min. The particle size at the optimum heat treatment condition for superior soft magnetic properties was found to be 6.0 - 0.5 nm which was less compared than for the Fe-Nb-Cu-Si-B system. The observed coercivity value at the optimum heat treatment condition was found to be 0.32 A m m 1 . The presence of Al in the alloy reduced the particle size and the magnetic anisotropy energy of the system, which resulted in superior soft magnetic properties of the heat-treated materials
    Electromagnetism
  •  114
    A potential Co36Fe36Si4B20Nb4nanocrystalline alloy for high temperature soft magnetic applications
    with O. Mohanta, A. Kumar, M. Ghosh, and A. Mitra
    Philosophical Magazine 87 (11): 1671-1682. 2007.
    Electromagnetism
  •  66
    Magnetic and mechanical properties of Cu-strengthened aged HSLA-100 steel
    with S. K. Das, S. Tarafder, S. Chatterjee, and A. Mitra
    Philosophical Magazine 87 (32): 5065-5078. 2007.
    Electromagnetism
  •  71
    Effect of Fe addition on the crystallization behaviour and Curie temperature of CoCrSiB-based amorphous alloys
    with S. Kumari, I. Chattoraj, P. Svec, and A. Mitra *
    Philosophical Magazine 85 (17): 1835-1845. 2005.
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