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Fabrication and soft-magnetic properties of Fe-B-Nb-Y glassy powder compacts by spark plasma sintering technique

机译:Fe-B-Nb-Y玻璃态粉体的放电等离子烧结技术制备及其软磁性能

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摘要

Magnetic properties of (Fe_(0.72)B_(0.24)Nb_(0.04))_(95.5)Y_(4.5) sample were investigated. The sample was produced from glassy powders made by the gas-atomization and consolidation using the spark plasma sintering (SPS) technique. Maximum relative density of 99.5 percent was achieved in the spark plasma sintered (SPSed) compact due to the viscous flow enhanced by the applied stress even under the glass transition temperature. X-ray diffraction pattern of the compact indicates that the glassy structure was maintained through the SPS process. However, the results of differential scanning calorimetry (DSC) showed that the glass transition temperature and crystallization temperature of the SPSed glassy compact shift to a higher and lower temperature, respectively, that is, a smaller DELTA T_x. Saturation magnetization of the SPSed glassy compact became 10 percent higher than that of the initial glassy powder. The Curie point was enhanced from 522 K for the glassy powder to 548 K for the SPSed glassy compact. Spin-exchange interaction is expected to be enhanced by a short-range scale atomic rearrangement caused by the high applied stress and temperature during the SPS process.
机译:研究了(Fe_(0.72)B_(0.24)Nb_(0.04))_(95.5)Y_(4.5)样品的磁性能。样品是通过使用火花等离子体烧结(SPS)技术通过气体雾化和固结制成的玻璃状粉末制成的。由于即使在玻璃化转变温度下,由于施加的应力也会增加粘性流,因此在火花等离子体烧结(SPSed)压块中可达到99.5%的最大相对密度。压块的X射线衍射图表明通过SPS工艺保持了玻璃状结构。但是,差示扫描量热法(DSC)的结果表明,SPSed玻璃状压块的玻璃化转变温度和结晶温度分别转变为较高和较低的温度,即较小的ΔT_x。 SPSed玻璃态压块的饱和磁化强度比初始玻璃态粉末的饱和磁化强度高10%。居里点从玻璃粉的522 K提高到SPSed玻璃粉坯的548K。在SPS过程中,高施加应力和温度引起的短程原子重排有望增强自旋交换相互作用。

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