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用于永磁系统的增材制造及拓扑优化无源匀场元件

Additive Manufactured and Topology Optimized Passive Shimming Elements for Permanent Magnetic Systems.

作者信息

Huber Christian, Goertler Michael, Abert Claas, Bruckner Florian, Groenefeld Martin, Teliban Iulian, Suess Dieter

机构信息

Physics of Functional Materials, University of Vienna, 1090, Vienna, Austria.

Christian Doppler Laboratory for Advanced Magnetic Sensing and Materials, 1090, Vienna, Austria.

出版信息

Sci Rep. 2018 Oct 2;8(1):14651. doi: 10.1038/s41598-018-33059-w.

Abstract

A method to create a highly homogeneous magnetic field by applying topology optimized, additively manufactured passive shimming elements is investigated. The topology optimization algorithm can calculate a suitable permanent and nonlinear soft magnetic design that fulfills the desired field properties. The permanent magnetic particles are bonded in a polyamide matrix and they are manufactured with a low-cost, end-user 3D printer. Stray field measurements and an inverse stray field simulation framework can determine printing and magnetization errors. The customized shimming elements are manufactured by a selective melting process which produces completely dense soft magnetic metal parts. The methodology is demonstrated on a simple example of two axial symmetric cylindrical magnets, which generates a high inhomogeneous magnetic field. In this case, the maximum magnetic field density is 25 mT and the the homogeneity can be increased by a factor of 35 or down to 6‰. Simulation and measurement results point out a good conformity. Additional topology optimizations of more than one shimming element layer show the opportunity to make the manufactured magnetic system even more homogeneous.

摘要

研究了一种通过应用拓扑优化的增材制造无源匀场元件来创建高度均匀磁场的方法。拓扑优化算法可以计算出满足所需场特性的合适的永磁和非线性软磁设计。永磁颗粒粘结在聚酰胺基体中,并使用低成本的终端用户3D打印机制造。杂散场测量和反向杂散场模拟框架可以确定打印和磁化误差。定制的匀场元件通过选择性熔化工艺制造,该工艺可生产完全致密的软磁金属部件。该方法在两个轴对称圆柱形磁体的简单示例上得到了验证,这两个磁体产生高度不均匀的磁场。在这种情况下,最大磁场密度为25 mT,均匀性可提高35倍或降至6‰。模拟和测量结果显示出良好的一致性。对多个匀场元件层进行额外的拓扑优化表明,有机会使制造的磁系统更加均匀。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c334/6168460/fc405fb7bec3/41598_2018_33059_Fig2_HTML.jpg

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