MICROSTRUCTURAL AND MAGNETIC CHARACTERIZATION OF RAPIDLY SOLIDIFIED AND ANNEALED PT-CO-B ALLOYS

被引:7
|
作者
QIU, N
TEUBERT, JA
OVERFELT, RA
WITTIG, JE
机构
[1] Department of Materials Science and Engineering, Vanderbilt University, Nashville
关键词
D O I
10.1063/1.350021
中图分类号
O59 [应用物理学];
学科分类号
摘要
Significant increases in intrinsic coercivity (H(ic)) of Pt-Co alloys have been obtained by the addition of boron and the application of rapid solidification processing. After rapid solidification by double anvil splat quenching with subsequent annealing at 650-degrees-C for 30 min, an alloy of Pt42Co45B13 (at. %) exhibits an H(ic) as high as 14 kOe. Transmission electron microscopy and Lorentz microscopy were used to interpret the magnetic data. Annealing of the Pt-Co-B influences the L1(0) superlattice structure and grain size of the matrix, the crystal structure and size of Co-boride precipitate, and the distribution of magnetic domain walls. A microstructural analysis shows that the maximum H(ic) occurs when Co borides, having the Co3B structure, are within the single magnetic domain size. The magnetic hardening mechanism in Pt-Co-B is believed to be a combination of inhibited magnetic domain nucleation and difficult reverse magnetic domain growth caused by the interaction of the magnetically anisotropic Co borides with the L1(0) Pt-Co matrix.
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页码:6137 / 6139
页数:3
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