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Structure, Curie temperature, and magnetostriction of SmZn1-xMnx alloys

机译:SmZn1-xMnx合金的结构、居里温度及磁致伸缩性能

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摘要

The structure, Curie temperature, and magnetostriction of SmZn1-xMnx polycrystalline crystals were investigated by x-ray diffraction, vibrating-sample magnetometer, and standard strain gauge techniques. It is found that SmZn1-xMnx alloys are nearly a single Sm(Zn,Mn) phase with the CsCl-type cubic structure up to x=0.2. The Curie temperature of SmZn1-xMnx alloys quickly increases with increasing Mn when x <= 0.05 and gradually does in the range of 0.05 < x <= 0.2. The substitution of Mn for Zn in the SmZn compound has a marked effect on improving the Curie temperature and makes it reach 255 K when x=0.2. The magnetization of SmZn1-xMnx alloys increases with increasing Mn content in the range of 0 < x <= 0.2 and the magnetostriction increases in the range of 0 < x <= 0.15. (c) 2006 American Institute of Physics.
机译:采用X射线衍射、振动样品磁力计和标准应变计技术研究了SmZn1-xMnx多晶晶体的结构、居里温度和磁致伸缩作用.结果表明,SmZn1-xMnx合金几乎是单一的Sm(Zn,Mn)相,CsCl型立方结构高达x=0.2。当 x < = 0.05 时,SmZn1-xMnx 合金的居里温度随着 Mn 的增加而快速升高,并在 0.05 < x <= 0.2 的范围内逐渐升高。SmZn化合物中Mn取代Zn对提高居里温度有显著作用,当x=0.2时达到255 K。SmZn1-xMnx合金的磁化强度在0 < x <= 0.2范围内随着Mn含量的增加而增加,磁致伸缩强度在0 < x <= 0.15范围内增加。(c) 2006年美国物理研究所。

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