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首页> 外文期刊>Practical Metallography >Microstructure and Magnetic Properties of Polymer Bonded Magnets produced by Additive Manufacturing Technologies
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Microstructure and Magnetic Properties of Polymer Bonded Magnets produced by Additive Manufacturing Technologies

机译:添加剂制造技术生产的聚合物粘合磁铁的微观结构和磁性

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摘要

Polymer bonded Nd- Fe- B magnets belongto the group of composite materials which consist mainly of two components:A polymer binder (PPS, PA) and magnetic particles of Nd- Fe- B alloy. The introduction of 3D printing using the method of Fused Deposition Modelling (FDM) as an alternative technology for the production of poly-merbonded magnets is aimed at lowering costs of small- scale production while preserving good magnetic and mechanical properties, such as those obtainable by injection moulding. The purpose of the research work was to identify: (i) The optimal composition and properties of compounds(filament) used for 3D printing of polymer bonded magnets and (ii) Finally, the optimal processing parameters of 3D printing,which would give printed polymer bonded magnets characteristics similar to those produced by injection moulding.
机译:聚合物键合的ND-Fe-B磁体属于主要由两种组分组成的复合材料组:聚合物粘合剂(PPS,PA)和Nd-Fe-B合金的磁性颗粒。 使用熔融沉积建模(FDM)的方法引入3D打印作为生产聚合作磁体的替代技术,旨在降低小规模生产的成本,同时保持良好的磁性和机械性能,例如可获得的磁性和机械性能 注塑成型。 研究工作的目的是识别:(i)用于3D印染聚合物键合磁体的化合物(长丝)的最佳组合物和性质最后,3D印刷的最佳加工参数将提供印刷聚合物 粘合的磁体特性类似于注塑成型产生的特性。

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