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A feasible approach for preparing remanence enhanced NdFeB based permanent magnetic composites

机译:一种可行的准备剩磁增强基于NdFeB的永磁复合材料的方法

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NdFeB based permanent magnetic nanocomposites were prepared by depositing soft magnetic Fe, Co, or Fe_(65)Co_(35) nanoparticles on the melt spun NdFeB powders with near single phase composition by a chemical reduction method. The effects of the reduction process, the composition, and the concentrations of metal ions on the magnetic properties of nanocomposites were investigated. Introducing and increasing soft nanoparticle content improved the remanence and maximum energy product of the nanocomposites at the expense of coercivity. Fe_(65)Co_(35) coated NdFeB powders had higher remanence and energy product than Co or Fe coated powders. The inter-grain exchange coupling between hard and soft magnetic grains was demonstrated by the smooth demagnetization curve with high remanent polarization. Remanence enhanced bulk magnets were also fabricated by consolidating the nanocomposite powders using spark plasma sintering (SPS) technique.
机译:通过在熔融纺丝NdFeB粉末上沉积软磁性Fe,Co或Fe_(65)CO_(35)纳米颗粒,通过化学还原方法将熔融纺丝NdFeB粉末的软磁Fe,Co或Fe_(65)CO_(35)纳米颗粒进行纳米颗粒制备。研究了还原过程,组合物和金属离子浓度对纳米复合材料磁性的影响。引入和增加软纳米粒子含量提高了纳米复合材料的剩磁和最大能量产物以胁迫。 FE_(65)CO_(35)涂层的NDFEB粉末具有比CO或FE涂覆粉末更高的剩磁和能量产品。通过具有高熔化极化的光滑的退磁曲线证明了硬磁晶粒之间的谷物和软磁晶粒之间的谷物交换耦合。通过使用火花等离子体烧结(SPS)技术通过固结纳米复合粉末,还制造了剩磁增强的块状磁体。

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