退火对感应电机层压定子铁芯磁性能及效率的影响

P. Breining, Abdullah Kahveci, M. Doppelbauer
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引用次数: 4

摘要

用于电机的钢片通常使用冲孔或激光切割制造。切割过程导致磁性退化,从而降低了电机的效率和性能。本文提出了一种量化制造工艺和退火对电工钢片的影响的实验方法。报道了激光切割环形铁芯和打孔定子铁芯片的三种电工钢的磁性能。定子片用于生产三台相同的感应电机样机,额定功率为4千瓦。机器按照IEC 60404-2-1和IEC 600404-2-3进行测量。我们提出了材料选择对机器效率的影响,并表明退火过程恢复了原始材料的磁性,提高了机器原型的效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of Annealing on Magnetic Properties of Laminated Stator Cores and Efficiency of Induction Machines
Steel laminations for electric machines are commonly manufactured using punching or laser cutting. The cutting process leads to degraded magnetic properties and therefore reduces the efficiency and the performance of electric machines. This paper presents an experimental approach for quantifying the influence of the manufacturing process as well as the influence of annealing on electrical steel laminations. The magnetic properties of three electrical steel grades are reported for laser cut toroidal cores and for punched stator core laminations. The stator laminations are used to produce three identical induction machine prototypes with a rated power of 4 kilowatt. The machines are measured according to IEC 60404-2-1 and IEC 600404-2-3. We present the influence of material selection on the machine efficiency and we show that the annealing process recovers the magnetic properties of the original material and increases the efficiency of the machine prototype.
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