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A Discussion of Magnetoelectric Composite Design by Bonding the Ferromagnetic Material Graded Layers in Induction Motor

机译:粘结感应电动机铁磁材料梯度层的磁电复合设计探讨。

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Induction motors are the most electric motors widely used in the community, both in the industrial and in the household applications. The power and efficiency of the motors are determined by the type of ferromagnetic material used in the core of the motor. If a very good ferromagnetic material with high permeability is applied to the core of the induction motor, then both the energy conversion and the efficiency of the motor will increase. But, if the ferromagnetic material is not good with low permeability is used in the induction motor, of course, the conversion of energy generated by the motor will be low so that the motor efficiency becomes decreased. In other cases, when ferromagnetic materials with high permeability are used, these ferromagnetic materials will become more fragile than using ferromagnetic materials with lower permeability. Therefore, a good strategy is needed in designing the core material of the induction motor. This study was intended to provide an overview of the potential use of a composite material of Fe and ferromagnetic material that was made in the Graded Magnetostrictive Layers. This research was conducted using several studies of the results of research on the composite material of the magnet. The results of the study show that a composite material of Fe and ferromagnetic materials provided a great potential in applying to induction motors to increase power and efficiency of the motor.
机译:感应电动机是工业界和家庭应用中社区中使用最广泛的电动机。电动机的功率和效率取决于电动机磁芯中使用的铁磁材料的类型。如果将具有高磁导率的非常好的铁磁材料应用于感应电动机的磁芯,则电动机的能量转换和效率都会提高。但是,如果感应电动机中使用的铁磁材料不好且导磁率低,则电动机产生的能量转换当然会很低,从而使电动机效率降低。在其他情况下,当使用具有高磁导率的铁磁材料时,这些铁磁材料将比使用具有较低磁导率的铁磁材料更易碎。因此,在设计感应电动机的芯材时需要一个好的策略。本研究旨在概述在梯度磁致伸缩层中制备的铁和铁磁材料复合材料的潜在用途。这项研究是利用对磁体复合材料的研究结果进行的几项研究进行的。研究结果表明,铁和铁磁材料的复合材料在应用于感应电动机以提高电动机的功率和效率方面具有巨大的潜力。

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