首页> 外文期刊>Magnetics, IEEE Transactions on >Structural Stability and Magnetic Properties of the TbCu$_{7}$ -Type SmCo$_{x - 0.4}$Ti$_{0.4} (x = 5.0hbox{–}8.5)$ Alloys
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Structural Stability and Magnetic Properties of the TbCu$_{7}$ -Type SmCo$_{x - 0.4}$Ti$_{0.4} (x = 5.0hbox{–}8.5)$ Alloys

机译:TbCu $ _ {7} $型SmCo $ _ {x-0.4} $ Ti $ _ {0.4}(x = 5.0hbox {–} 8.5)$合金的结构稳定性和磁性能

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摘要

We have studied the composition dependence, thermal stability, long-term stability at 500°C, and magnetic properties of the nanostructural TbCu7-type (1:7) Sm-Co-Ti alloys. We prepared the SmCox-0.4Ti0.4 alloys with a wide composition range from x = 5.0 to x = 8.5 by high-energy ball-milling, followed by annealing at 700-1100°C for 2 h. After annealing at 700°C, the powders with x = 7.0-8.5 showed a single 1:7 structure, while the powders with x = 5.0-6.5 presented the 1:7 plus CaCu5-type (1:5) structure. At an annealing temperature higher than 800°C, a minor Th2Zn17-type (2:17) phase precipitated in the matrix of the 1:7 phase. Intrinsic coercivity iHc exhibits a maximum of 2.3 T at room temperature and 0.4 T at 500°C in the x = 7.0 samples annealed at 700°C. The temperature coefficient of iHc seems stable as the Sm/Co ratio changes from 1/6.5 to 1/7.5. The coercivity decreased with increasing annealing temperature Ta, from 2.3 T at Ta = 700°C to 1.3 T at Ta = 1100°C, which is mainly attributed to the grain growth from 35 nm for Ta = 700°C to 1 ¿m for Ta = 1100°C. After holding at 500°C for up to 360 h, the microstructure and magnetic properties of the 1:7-type nanograin alloys remained almost unchanged, indicating a structurally and magnetically long-term stabilization at the potential high-temperature application environment.
机译:我们研究了成分依赖性,热稳定性,在500°C下的长期稳定性以及纳米结构TbCu7型(1:7)Sm-Co-Ti合金的磁性。我们通过高能球磨制备了SmCox-0.4Ti0.4合金,其组成范围从x = 5.0到x = 8.5,然后在700-1100°C退火2 h。在700°C退火后,x = 7.0-8.5的粉末表现出单一的1:7结构,而x = 5.0-6.5的粉末表现出1:7加上CaCu5型(1:5)结构。在高于800°C的退火温度下,次要的Th2Zn17型(2:17)相沉淀在1:7相的基质中。本征矫顽力iHc在700°C退火的x = 7.0样品中,在室温下最大显示2.3 T,在500°C下最大显示0.4T。随着Sm / Co比从1 / 6.5变为1 / 7.5,iHc的温度系数似乎稳定。矫顽力随退火温度Ta的增加而降低,从Ta = 700°C时的2.3 T到Ta = 1100°C时的1.3 T,这主要归因于Ta = 700°C时从35 nm到1μm的晶粒长大对于Ta = 1100°C。在500°C下保持长达360小时后,1:7型纳米晶粒合金的微观结构和磁性几乎保持不变,这表明在潜在的高温应用环境下,结构和磁性长期稳定。

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