Cooling System Design of a High-Speed Radial-Flux Permanent Magnet Machine for Aerospace Propulsion Applications

Dikhsita Choudhary, Samantha Jones-Jackson, Mohamed Abdalmagid, G. Pietrini, Mikhail Goykhman, A. Emadi
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Abstract

Load constraints in aerospace propulsion applications are driving great attention towards research and development of high-speed electric machines. A major focus area for such machines is a cooling system that is reliable and efficient. In this work the cooling system of a high-speed radial-flux surface-mount permanent magnet synchronous motor is presented. The method of modeling the motor and investigating the cooling performance is detailed. The cooling system of the stator of the baseline design consists of encapsulation on the end windings, a cooling duct on the bearings and a cooling jacket housing on the stator laminations. The rotor is cooled by air forced convection by a fan mounted on the shaft. The effect of various design parameters, like coolant flow rate and potting material, on the temperature of the stator and end windings is investigated. The cooling effect obtained by inserting an additional coolant-carrying tube in close proximity to the high heat-generating parts, is also studied.
航天推进用高速径向磁通永磁电机冷却系统设计
在航空航天推进应用中,负载的限制使得高速电机的研究和开发备受关注。这类机器的一个主要关注领域是可靠和高效的冷却系统。本文介绍了一种高速径向磁通表面贴装永磁同步电动机的冷却系统。详细介绍了电机建模和冷却性能研究的方法。基准设计定子的冷却系统包括端面绕组上的封装、轴承上的冷却管道和定子片上的冷却套壳。转子通过安装在轴上的风扇进行空气强制对流冷却。研究了冷却液流量和灌封材料等不同设计参数对定子和端部温度的影响。研究了在高发热量部件附近加装冷却管的冷却效果。
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