首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Microstructure and magnetostriction of PrFe(1.93)Zr_(0.02) nanocrystalline synthesized under high pressure
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Microstructure and magnetostriction of PrFe(1.93)Zr_(0.02) nanocrystalline synthesized under high pressure

机译:高压下合成PRFE(1.93)Zr_(0.02)纳米晶体的微观结构和磁致伸缩

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摘要

Bulk nanocrystalline PrFe(1.93)Zr_(0.02) alloys were synthesized by annealing its melt-spinning ribbons under different pressure. It was demonstrated that cubic Laves phase become the main phase only when the annealing pressure is up to 3 GPa. Both the average grain size and volume fraction of cubic Laves crystal-lin phase decrease with increasing pressure from 3 GPa to 8 GPa. Magnetic measurement results indicated that the saturation magnetization and the absolute value of the effective first anisotropy constant decrease with increasing pressure from 3 GPa to 8 Gpa. A large linear magnetostriction of 590 ppm at 3 kOe is observed in the PrFe1.93Zr0.02 compound annealed under 6 GPa, which might make it potential material for magnetostrictive application. Based on our experimental results, a phenomeno-logical approach was also proposed to theoretically demonstrate that the good magnetostrictive property of PrFe(1.93)Zr_(0.02) bulk nanocrystalline synthesized under 6 GPa might be the consequence of the competition of anisotropy and the volume fraction of cubic Laves crystallin phase.
机译:通过在不同压力下退火,通过退火来合成散装纳米晶PRFE(1.93)Zr_(0.02)合金。据证明,仅当退火压力高达3GPa时,立方疏浚阶段仅成为主阶段。立方液体晶林相的平均晶粒尺寸和体积分数随着3GPa至8GPa的增加而降低。磁性测量结果表明,饱和磁化强度和有效的第一各向异性恒定的绝对值随着3GPa至8GPa的增加而降低。在PRFE1.93ZR0.02化合物中观察到3koe的大型线性磁致伸缩在6GPa下退火,这可能使其成为磁致伸缩应用的潜在材料。基于我们的实验结果,还提出了一种现象逻辑方法,理论上还表明PRFE(1.93)Zr_(0.02)Zr_(0.02)批量纳米晶体的良好磁致伸缩性可能是各向异性竞争和体积分数的结果。立方灌水晶晶相。

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