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首页> 外文期刊>粉体および粉末冶金 >Magnetic Properties on Bulk Exchange-spring Magnets in Nd-Fe-Co-V-B System Formed by Spark Plasma Sintering
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Magnetic Properties on Bulk Exchange-spring Magnets in Nd-Fe-Co-V-B System Formed by Spark Plasma Sintering

机译:火花等离子体烧结形成Nd-Fe-Co-V-B系统中大块交换弹簧磁体的磁性

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摘要

Bulk exchange-spring magnets of Nd_(11)Fe_(72)Co_8V_(1.5)B_(7.5) andNd_9Fe_(76)Co_8V_1B_6 alloys were prepared by SparkPlasma Sintering (SPS) using the rapidly quenched ribbonpowders. The effects of SPS process conditions on magneticproperties and structures were investigated. SPS is a type ofsolid compression sintering similar to hot-pressing (HP) and canbe performed at lower temperature with a shorter holding time.Bulk magnets reached to approximately full density at asintering temperature of higher than 650 deg C for 5 min, andhad magnetically isotropic properties. They indicated the springback phenomenon peculiar to exchange-spring magnets andconsisted of multiphase of the Nd_2Fe_(14) B type phase andthe #alpha#-Fe type phase. Grain growth did not occurredbetween the powders of the starting ribbons, but the fine crystalswere observed inner the powders of the ribbons with an increasein the sintering temperature.Optimum preparation conditions and magnetic properties wereas follows: composition, Nd_9Fe_(76)Co_8V_1B_6; surfacevelocity of the roller during melt spinning for starting ribbons,V_s =20 m/s; SPS condition, at 675 deg C for 5 min. under 490MPa; magnetic and other properties, B_r = 0.99 T, H_(cJ) = 415kA/m, (BH)_(max) =107.8 kJ/m~3, H_k/H_(cJ) X 100 = 23percent, spring back ratio =40 percent and D = 7.59 Mg/m~3.
机译:Nd_(11)Fe_(72)Co_8V_(1.5)B_(7.5)和Nd_9Fe_(76)Co_8V_1B_6合金的块状交换弹簧磁体使用快速淬火带状粉末通过SparkPlasma Sintering(SPS)制备。研究了SPS工艺条件对磁性能和结构的影响。 SPS是一种类似于热压(HP)的固体压缩烧结,可以在较低的温度下以较短的保温时间进行烧结。大块磁体在650摄氏度以上的烧结温度下达到5分钟达到大约全密度,并且具有各向同性属性。他们指出了回弹磁体特有的回弹现象,由Nd_2Fe_(14)B型相和#alpha#-Fe型相的多相组成。起始带状粉末之间未发生晶粒长大,但随着烧结温度的升高,在带状粉末内部观察到细小的晶体。最佳制备条件和磁性能如下:组成Nd_9Fe_(76)Co_8V_1B_6;起始带材在熔融纺丝过程中辊的表面速度,V_s = 20 m / s; SPS条件,在675摄氏度下持续5分钟。 490MPa以下;磁性和其他性能,B_r = 0.99 T,H_(cJ)= 415kA / m,(BH)_(max)= 107.8 kJ / m〜3,H_k / H_(cJ)X 100 = 23%,回弹比= 40 D = 7.59Mg / m〜3。

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