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Design and application of a longitudinal field Aubert permanent magnet composed of identically-shaped blocks for large-scale Magnetic Separation

机译:纵向磁场Aubert永久磁铁的形状相同的块的大规模磁选设计与应用

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Magnetic Separation processes such as magnetically enhanced centrifugation (MEC) or magnetic cake filtration, usually require cost-intensive and heavy electromagnets. Permanent cylindrical magnets providing a comparable longitudinal magnetic field may be more advantageous for these applications both in terms of cost and weight. In this publication we propose the use of Aubert magnets. As they may be composed of identically-shaped magnet blocks, the investment costs and running expenses are very low. We analyze the magnetic field in the central bore of an Aubert magnet both by analytic calculations based on a dipole model and by FEM (finite element method) and compare the results to our measured data on such a device. We find very good agreement with an extended dipole model and suggest our analytic method even for the design of large-scale devices. Finally, the pros and cons of both types of magnetic devices are discussed.
机译:诸如磁增强离心(MEC)或磁饼过滤之类的磁分离过程通常需要成本高昂且笨重的电磁体。就这些应用而言,就成本和重量而言,提供可比较的纵向磁场的永磁圆柱磁体可能更为有利。在该出版物中,我们建议使用Aubert磁体。由于它们可能由形状相同的磁体块组成,因此投资成本和运行费用非常低。我们通过基于偶极子模型的分析计算和FEM(有限元方法)分析Aubert磁体中心孔中的磁场,并将结果与​​我们在这种设备上的测量数据进行比较。我们发现与扩展偶极子模型有很好的一致性,甚至为大型设备的设计提出了我们的分析方法。最后,讨论了两种类型的磁性设备的优缺点。

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