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Measure the size and shape of the magnet.
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The company's patented technology allows them to flexibly control the magnetic field shape of the magnets they create.
Thanks to the good crystal quality of the film, magnetic elements with well-defined magnetocrystalline anisotropy have been prepared, while the fine control of the size and shape of the magnets allows for the effective engineering of the anisotropic behavior of the magnetostatic energy that determines the so-called configurational anisotropy.
Through finite element modelling of the magnetic field in COMSOL and experimental measurements on a small-scale prototype magnet stack, we demonstrate the required shape of the permanent magnet in order to generate the needed field, and the necessity of soft iron collars to smooth fluctuations along the central axis.
The optimal condition of the magnet shape, which is used for the field coil of HTSG, is obtained from the response surface made by RSM, and the effects of design variables related to the magnet are analyzed through the variance analysis.
We carried out parameter surveys of the magnetic fields applied to the HTS-SMES magnets, the elemental coil shapes of the magnets and the number of the elemental coils, and studied a suitable magnet dimension.
It is proved that the value of the minimum vertical component can be decreased effectively by adopting flux diverters for the configuration with iron core and by adjusting cross-sectional shape of HTS magnet for the configuration without iron core respectively.
In the study, we calculated volumes, flux-flow losses and ac losses of various shapes of the HTS magnets at a settled load factor and found that more than 10 T of maximum applied field to the magnets should be selected for the cryocooler cooled 15 kW h HTS-SMES magnet designs.
Because the droplets used were semispherical in shape and the magnet is above the center of the droplet, the satellite droplet and PMP pellet are both aligned with the apex of the droplet.
The shape of the toroidal-type SMES magnet was designed by a 3D CAD program.
Second, an extrusion scheme is proposed for the shape regularization of the permanent magnet segments.
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