Suppan M, Huber C, Mathauer K, Abert C, Brucker F, Gonzalez-Gutierrez J, Schuschnigg S, Groenefeld M, Teliban I, Kobe S, Saje B, Suess D
Faculty of Physics, University of Vienna, 1090, Vienna, Austria.
Platform MMM Mathematics-Magnetism-Materials, University of Vienna, 1090, Vienna, Austria.
Sci Rep. 2022 Oct 20;12(1):17590. doi: 10.1038/s41598-022-20669-8.
Within this work, we demonstrate in-situ alignment of the easy axis single-crystal magnetic particles inside a polymer matrix using fused filament fabrication. Two different magnetic materials are investigated: (i) Strontium hexaferrite inside a PA6 matrix, fill grade: 49 vol% and (ii) Samarium iron nitride inside a PA12 matrix, fill grade: 44 vol%. In the presence of the external alignment field, the strontium hexaferrite particles inside the PA6 matrix can be well aligned with a ratio of remnant magnetization to saturation magnetization in an easy axis of 0.7. No significant alignment for samarium iron nitride could be achieved. The results show the feasibility to fabricate magnets with arbitrary and locally defined easy axis using fused filament fabrication since the permanent magnets (or alternatively an electromagnet) can be mounted on a rotatable platform.
在这项工作中,我们展示了使用熔融长丝制造技术在聚合物基质内对易轴单晶磁性颗粒进行原位排列。研究了两种不同的磁性材料:(i)PA6基质内的六方锶铁氧体,填充率:49体积%;(ii)PA12基质内的氮化钐铁,填充率:44体积%。在外部排列场存在的情况下,PA6基质内的六方锶铁氧体颗粒能够很好地排列,其易轴上的剩余磁化强度与饱和磁化强度之比为0.7。对于氮化钐铁未能实现显著排列。结果表明,由于永磁体(或电磁铁)可以安装在可旋转平台上,因此使用熔融长丝制造技术制造具有任意和局部定义易轴的磁体是可行的。