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Finite element modelling of magnetostrictive devices: investigations for the design of the magnetic circuit

机译:磁致伸缩器件的有限元建模:磁路设计研究

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摘要

Giant magnetostriction of materials such as Terfenol-D rods has potential applications for electromagnetic devices. However, many magnetic problems have yet to be solved. For instance, Terfenol-D has a low relative permeability of about 4 which is responsible for leakage flux and makes it difficult to correctly route both static and dynamic flux in the rods. Thus, to ensure homogeneous magnetic field along the rod, one has to compensate for the flux leakage at the rod ends. To that purpose an extensive computer modelling effort has been performed, on a basic actuator configuration. The Finite Element Method (FEM) has been used to analyse different magnetic circuit configurations. The leakage flux is quantified by the finite element computations. It leads to low magnetic coupling factor and, as a consequence, to low efficiency. Results for different configurations are compared and lead to an optimized design of the magnetic circuits including magnetostrictive rods.
机译:材料(例如Terfenol-D棒)的巨大磁致伸缩在电磁设备中具有潜在的应用。但是,许多磁性问题尚未解决。例如,Terfenol-D的相对磁导率较低,约为4,这是造成漏磁通的原因,因此很难正确传送棒中的静态和动态磁通。因此,为了确保沿着杆的均匀磁场,必须补偿杆端的磁通泄漏。为此,已经在基本的致动器配置上进行了广泛的计算机建模工作。有限元方法(FEM)已用于分析不同的磁路配置。漏磁通通过有限元计算来量化。这导致较低的磁耦合系数,并因此导致较低的效率。比较了不同配置的结果,并得出了包括磁致伸缩杆在内的磁路的优化设计。

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