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An innovative rotor core assembly for high performance 4-pole synchronous reluctance traction motor using grain oriented lamination

机译:创新的转子芯组件,用于采用晶粒定向叠片的高性能4极同步磁阻牵引电机

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One of the major requirements of traction motors is to develop high torque at low speed. This allows the electrified powertrain to perform properly during start-up and acceleration. Hence, maximizing the peak torque of the synchronous reluctance motor is a strong objective when it is designed for automotive applications. This may be possible by amplifying the saliency of the rotor geometry which means high magnetization in the flux carriers and low magnetization through the flux barriers that is high saliency ratio. Recent advantages of high quality anisotropic magnetic materials such as cold rolled grain oriented electrical steels have contributed to new energy efficient, compact, and high performance static electrical machines such as transformers. However, from the rotor core point of view, the circular geometry of the rotor has remained an obstacle for utilizing these high performance magnetic materials in electrical motors core lamination in particular, synchronous reluctance motors with number of poles higher than two. This paper presents an innovative rotor lamination design and assembly using cold rolled grain oriented electrical steels for achieving a higher performance for 4-pole synchronous reluctance motors. The design method and manufacturing process of a prototype is discussed, finite element analyses along with the experimental examinations are carried out to verify and validate the proposed method.
机译:牵引电动机的主要要求之一是在低速时产生高扭矩。这样可使电动动力总成在启动和加速过程中正常运行。因此,在设计用于汽车应用时,最大化同步磁阻电动机的峰值转矩是一个重要目标。通过放大转子几何形状的显着性,这是可能的,这意味着通量载体中的高磁化强度和通过具有高显着率的通量屏障的低磁化强度。高质量各向异性磁性材料(如冷轧晶粒取向电工钢)的最新优势为新型节能,紧凑和高性能的静电电机(如变压器)做出了贡献。但是,从转子铁心的角度来看,转子的圆形几何形状仍然是在电动机铁心叠片中使用这些高性能磁性材料的障碍,特别是在极数大于两个的同步磁阻电动机中。本文介绍了一种创新的转子叠片设计和组装方法,该方法使用冷轧晶粒取向电工钢进行组装,以实现4极同步磁阻电机的更高性能。讨论了原型的设计方法和制造过程,并进行了有限元分析和实验检验,以验证和验证所提出的方法。

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