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Anisotropic Nd_2Fe_(14)B-Based Magnet Powders with High Energy Product Fabricated by HDDR Process

机译:基于PDDR工艺制造的高能量产品的基于极孔的ND_2FE_(14)B基磁粉

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The hydrogenation-disproportionation-desorption-recombination (HDDR) process is the method to produce anisotropic iron-based rare earth magnet powders for bonded magnet. The magnetic properties and anisotropy of HDDR permanent magnetic powders fabricated from the alloys with a nominal composition of Nd_(13)Fe_(63.3-x)Co_(17)B_(6.6)Zr_(0.1)Ga_x(x = 0.1~1.0) have been investigated. The results show that HD and DR process affects the magnetic properties and anisotropy obviously. The effect of alloy element Ga content on the magnetic properties and anisotropy of the HDDR magnet powders was studied. The results show that degree of alignment(DOA) =0.563, iHc=817.6 kA/m, Br=1.18T and (BH)max=244kJ/m~3 for Nd_(13)Fe_(62.3)Co_(17)B_(6.6)Zr_(0.1)Ga_(1.0) magnet powders.
机译:氢化 - 歧化 - 解吸重组(HDDR)方法是制备用于粘合磁体的各向异性铁基稀土磁粉的方法。由具有Nd_(13)Fe_(63.3-x)CO_(17)B_(6.6)Zr_(0.1)Ga_x(x = 0.1〜1.0)的标称组成的HDDR永磁粉的HDDR永磁粉的磁性和各向异性被调查了。结果表明,HD和DR过程显然会影响磁性和各向异性。研究了合金元素GA含量对HDDR磁粉的磁性和各向异性的影响。结果表明,对准程度(DOA)= 0.563,IHC = 817.6 ka / m,Br = 1.18t和(Bh)Max = 244kJ / m〜3对于ND_(13)FE_(62.3)CO_(17)B_( 6.6)Zr_(0.1)Ga_(1.0)磁粉。

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