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Glass formation and soft magnetic properties in Dy-containing Fe-Si-B alloys by adjusting B/Si mole ratio

机译:通过调节B / Si摩尔比含Dy-Si-B合金中的玻璃形成和软磁特性

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摘要

The Fe87-xB8Si5DYx(x = 1, 2, 3, 4 and 5 at.%), Fe84B8+ySi5-yDy3 (y = 1, 2, 3, 4 and 5 at.%) and Fe85B12DY3 alloy ribbons were fabricated through the melt-spun technique. Then, the effects of B/Si mole ratio on the glass forming ability (GFA), thermal stability and soft magnetic properties were investigated. Results showed that 3 at. % Dy addition improved the GFA of FeBSiDy alloy system, but it still exists partial crystallization. On this basis, the completely glass structure was formed in Fe84B11Si2Dy3 and Fe84B12Si1Dy3 alloys by adjusting the B/Si molar ratio. All the alloys exhibit high thermal stability, and the temperature interval between the first and the second onset crystallization temperature (Delta T-x) is up to 161-196 K. Meanwhile, the Fe84B12Si1Dy3 alloy exhibits higher saturation magnetization (M-s) of approximately 137.4 emu/g and lower coercivity (H-c) of about 5.1 A/m than those of Fe(84)B(12)Si(1)Dy(3)alloy, thereby displaying better magnetic properties in the as-quenched state. When annealed near the first crystalline onset temperature (T-x1) for different time, the two metallic-glass (MG) ribbons only precipitate a single alpha-Fe phase. Especially annealing for 10 min, the two alloys possess the optimum soft magnetic properties, including high M-s of 160.0-164.1 emu/g and low H-c of 3.8-6.1 A/m.
机译:Fe87-xb8si5dyx(x = 1,2,3,4和5at。%),Fe84b8 + ysi5-ydy3(y = 1,2,3,4和5at。%)和Fe85b12dy3合金扎带通过熔化技术。然后,研究了B / Si摩尔比对玻璃形成能力(GFA),热稳定性和软磁特性的影响。结果表明3次。 %Dy添加改进的服务合金系统GFA,但它仍然存在部分结晶。在此基础上,通过调节B / Si摩尔比,在Fe84b11si2dy3和Fe84b12Si1dy3合金中形成完全玻璃结构。所有合金表现出高热稳定性,第一和第二起始结晶温度(Delta Tx)之间的温度间隔高达161-196k。同时,Fe84b12Si1dy3合金具有较高的饱和磁化强度(MS)约为137.4 emu / G且较低的矫顽力(HC)约为5.1A / m而不是Fe(84)B(12)Si(1)Dy(3)合金,从而在淬火状态下显示更好的磁性。当在不同时间(T-X1)附近退火时,两种金属玻璃(Mg)带仅沉淀单个α-Fe相。特别是退火10分钟,两种合金具有最佳的软磁性,包括160.0-164.1 emu / g的高M-S和3.8-6.1a / m的低H-C。

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