TY - JOUR
T1 - Metastable phase formation and high coercivity of Nd90F 10 by gas flow type levitating process
AU - Yonemura, Hiroshi
AU - Azumo, Shuji
AU - Nagayama, Katsuhisa
PY - 2008/2/1
Y1 - 2008/2/1
N2 - In the last decades, Nd-Fe amorphous alloys have been studied by many methods because of high coercivity at room temperature and relation to Nd-Fe-B permanent magnets. In this study, we examined the effect of the containerless process for high undercooling and the metastable phase formation in detail. In the gas levitating process, undercooling of Nd90Fe10 samples increased with cooling rate. Undercooling of Nd90Fe 10 sample solidified at 268 K/s is ΔT= 35 K. The primary α-Nd phases were surrounded by fine metastable phases. And the intergranular eutectic-like areas were comprised of α-Nd phase and metastable phase. In contrast, the sample with low undercooling was comprised of α-Nd phases and rod-like Nd2Fe17 phases among primary α-Nd phases. In Nd90Fe10 samples with undercooling of Δ T= 35 K, coercivity of Nd90Fe10 samples is about 4.5 kOe at room temperature. This high coercivity is caused by fine crystallization of matastable phases.
AB - In the last decades, Nd-Fe amorphous alloys have been studied by many methods because of high coercivity at room temperature and relation to Nd-Fe-B permanent magnets. In this study, we examined the effect of the containerless process for high undercooling and the metastable phase formation in detail. In the gas levitating process, undercooling of Nd90Fe10 samples increased with cooling rate. Undercooling of Nd90Fe 10 sample solidified at 268 K/s is ΔT= 35 K. The primary α-Nd phases were surrounded by fine metastable phases. And the intergranular eutectic-like areas were comprised of α-Nd phase and metastable phase. In contrast, the sample with low undercooling was comprised of α-Nd phases and rod-like Nd2Fe17 phases among primary α-Nd phases. In Nd90Fe10 samples with undercooling of Δ T= 35 K, coercivity of Nd90Fe10 samples is about 4.5 kOe at room temperature. This high coercivity is caused by fine crystallization of matastable phases.
KW - Containerless process
KW - Gas jet levitating process
KW - High coercivity
KW - Neodymium-iron system metastable phase
KW - Nucleation
KW - Undercooling
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U2 - 10.2320/jinstmet.72.80
DO - 10.2320/jinstmet.72.80
M3 - Article
AN - SCOPUS:41349121363
SN - 0021-4876
VL - 72
SP - 80
EP - 84
JO - Nippon Kinzoku Gakkaishi/Journal of the Japan Institute of Metals
JF - Nippon Kinzoku Gakkaishi/Journal of the Japan Institute of Metals
IS - 2
ER -