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Magnetic properties of ball-milled SrFe12O19 particles consolidated by Spark-Plasma Sintering

机译:等离子体放电烧结的球磨SrFe12O19颗粒的磁性

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摘要

The room-temperature magnetic properties of ball-milled strontium hexaferrite particles consolidated by spark-plasma sintering are strongly influenced by the milling time. Scanning electron microscopy revealed the ball-milled SrFe12O19 particles to have sizes varying over several hundred nanometers. X-Ray powder-diffraction studies performed on the ball-milled particles before sintering clearly demonstrate the occurrence of a pronounced amorphization process. During sintering at 950 oC, re-crystallization takes place, even for short sintering times of only 2 minutes and transformation of the amorphous phase into a secondary phase is unavoidable. The concentration of this secondary phase increases with increasing ball-milling time. The remanence and maximum magnetization values at 1T are weakly influenced, while the coercivity drops dramatically from 2340 Oe to 1100 Oe for the consolidated sample containing the largest amount of secondary phase.
机译:通过火花等离子体烧结固结的球磨六方锶锶铁氧体颗粒的室温磁性能受铣削时间的强烈影响。扫描电子显微镜显示,球磨的SrFe12O19颗粒的大小在数百纳米之间变化。烧结前对球磨过的颗粒进行的X射线粉末衍射研究清楚地表明了明显的非晶化过程的发生。即使在仅2分钟的短烧结时间内,在950°C的温度下烧结,也会发生重结晶,而且不可避免地会发生无定形相向第二相的转变。第二阶段的浓度随着球磨时间的增加而增加。 1T时的剩磁和最大磁化强度值受到的影响很小,而对于包含大量次生相的固结样品,矫顽力从2340 Oe急剧下降到1100 Oe。

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