Analysis of an Axial-Flux Slotted Limited-Angle Torque Motor with Quasi-Halbach Array for Torque Performance Improvement

Mingjie Wang;Dawei Li;Ronghai Qu
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Abstract

Better torque performance and higher reliability have long been the focus of research for slotted limited-angle torque motors (LATMs), which are primarily used to position first-stage valves in electrohydraulic servosystems. This paper presents a high reliability axial-flux slotted LATM with quasi-Halbach array for torque performance improvement including constant torque range (CTR) and output torque. Firstly, the structure with two sets of windings and the operation principle of the proposed slotted LATM is analyzed. Secondly, a brief design procedure is presented, the structure selections of open slot and double-stator single-rotor (DSSR) interior rotor with surface mounted quasi-Halbach permanent magnet (PM) array are illustrated, and the geometric parameters are optimized to obtain the optimal design of the proposed slotted LATM. Then, 3-D finite-element method (FEM) is employed to compare the proposed slotted LATM with the conventional surface mounted PM slotted LATM in terms of cogging torque, no-load back EMF, and output torque, and the results show that the proposed LATM with quasi-Halbach array has a 10% improvement in output torque and a 25% improvement in CTR. Meanwhile, the flux linkages and torque performance of the two sets of windings under various conditions verify good magnetic isolation. Finally, prototypes of two different rotor types are manufactured and a series of experiments are performed to validate the analysis.
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改进准Halbach阵列轴向磁通槽限角转矩电机转矩性能的分析
长期以来,更好的转矩性能和更高的可靠性一直是开槽限角转矩电机(LATM)的研究重点,LATM主要用于定位电液伺服系统中的第一级阀门。本文提出了一种具有准Halbach阵列的高可靠性轴向磁通槽LATM,用于改善包括恒定转矩范围(CTR)和输出转矩在内的转矩性能。首先,分析了两组绕组的结构和所提出的开槽LATM的工作原理。其次,介绍了一个简单的设计过程,说明了表面安装准Halbach永磁体阵列的开口槽双定子单转子(DSSR)内转子的结构选择,并对几何参数进行了优化,以获得所提出的开槽LATM的优化设计。然后,采用三维有限元方法(FEM),从齿槽转矩、空载反电动势和输出转矩方面对所提出的开槽LATM与传统的表面安装PM开槽LATM进行了比较,结果表明,所提出的准Halbach阵列LATM的输出转矩提高了10%,CTR提高了25%。同时,两组绕组在不同条件下的磁链和转矩性能验证了良好的磁隔离性能。最后,制造了两种不同转子类型的原型,并进行了一系列实验来验证分析。
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