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首页> 外文期刊>IEEE Transactions on Industrial Electronics >Squirrel-Cage Rotor Design and Manufacturing for High-Speed Applications
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Squirrel-Cage Rotor Design and Manufacturing for High-Speed Applications

机译:高速应用的鼠笼式转子设计与制造

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摘要

A high-speed squirrel-cage induction machine requires a totally different design compared to the traditional squirrel-cage industrial motor because of the mechanical limitations caused by the high speed. This results in a more complicated rotor construction and expensive material selection, and sets higher standards for the manufacturing precision. The objective of this paper is to demonstrate the design aspects, material selection, and manufacturing of a squirrel-cage rotor for high-speed applications. In this paper, the rotor dimensioning approach based on equations and data analysis is presented. Rotor material selection and construction topology influence on the electrical machine design are discussed. The results are illustrated with the design of a 6-kW, 120 000-r/min induction machine for a turbo circulator. The influence of rotor parameters on the electromagnetic performance of the designed machine is demonstrated. Mechanical stresses for different topologies are studied with finite-element method analysis. Several manufacturing methods for producing a high-precision rotor are described and compared. The presented rotor design approach, which enables high electromagnetic performance and robust construction, is verified by the testing of a prototype.
机译:与传统的鼠笼式工业电动机相比,高速鼠笼式感应电动机需要完全不同的设计,这是由于高速带来的机械限制。这导致转子构造更加复杂并且材料选择昂贵,并且为制造精度设定了更高的标准。本文的目的是演示用于高速应用的鼠笼式转子的设计方面,材料选择和制造。本文提出了基于方程和数据分析的转子尺寸标注方法。讨论了转子材料的选择和构造拓扑对电机设计的影响。通过用于涡轮循环器的6 kW,120000 r / min感应电机的设计说明了结果。演示了转子参数对设计电机电磁性能的影响。通过有限元方法分析研究了不同拓扑的机械应力。描述并比较了用于制造高精度转子的几种制造方法。所提出的转子设计方法具有很高的电磁性能和坚固的结构,已通过原型测试得到了验证。

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