首页> 美国卫生研究院文献>Materials >Additive Manufactured Polymer-Bonded Isotropic NdFeB Magnets by Stereolithography and Their Comparison to Fused Filament Fabricated and Selective Laser Sintered Magnets
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Additive Manufactured Polymer-Bonded Isotropic NdFeB Magnets by Stereolithography and Their Comparison to Fused Filament Fabricated and Selective Laser Sintered Magnets

机译:立体光刻法增材制造的聚合物粘结的各向同性钕铁硼磁体及其与熔丝制造和选择性激光烧结磁体的比较

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摘要

Magnetic isotropic NdFeB powder with a spherical morphology is used to 3D print magnets by stereolithography (SLA). Complex magnets with small feature sizes in a superior surface quality can be printed with SLA. The magnetic properties of the 3D printed bonded magnets are investigated and compared with magnets manufactured by fused filament fabrication (FFF), and selective laser sintering (SLS). All methods use the same hard magnetic isotropic NdFeB powder material. FFF and SLA use a polymer matrix material as binder, SLS sinters the powder directly. SLA can print magnets with a remanence of 388 mT and a coercivity of T. A complex magnetic design for speed wheel sensing applications is presented and printed with all methods.
机译:具有球形形态的磁性各向同性NdFeB粉末通过立体光刻(SLA)用于3D打印磁体。可以使用SLA印刷具有较小特征尺寸且具有出色表面质量的复杂磁体。研究了3D打印粘结磁体的磁性能,并将其与通过熔丝制造(FFF)和选择性激光烧结(SLS)制造的磁体进行了比较。所有方法均使用相同的硬磁各向同性NdFeB粉末材料。 FFF和SLA使用聚合物基质材料作为粘合剂,SLS直接烧结粉末。 SLA可以打印剩磁为388 mT,矫顽力为T的磁体。提出了一种适用于速度轮感应应用的复杂磁性设计,并使用所有方法进行印刷。

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