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A Novel Cooling Technique for the Windings of High-Torque-Density Permanent Magnet Machines

机译:一种用于高扭矩密度永磁机绕组的新型冷却技术

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In this paper, a novel cooling technique for the windings of high-torque-density permanent magnet machines is presented, that is, a miniature heat pipe inserting into the slot is adopted, thus, transferring the heat of the winding to the ambient air axially and increasing the convective area by fins. To describe the thermal performance accurately, a heat pipe with outer diameter of 2mm is tested and its thermal model is obtained according to the test result. To investigate the validity of the proposed technique, a lumped parameter transient thermal network (TN) model of the stator with heat pipes is established. The thermal performance of a 167W machine whose torque density is 5N·m/kg with this cooling technique is studied by using the thermal network. The analytical results show that the winding temperature is not more than 100°C when the current density is up to 12.5A/mm2 with 4m/s forced air cooling. A finite element analysis (FEA) model is built and simulated to verify the analytical results.
机译:在本文中,提出了一种用于高扭矩密度永磁机的绕组的新型冷却技术,即采用了将微型热管插入槽中,从而将绕组的热量传送到环境空气轴向并通过鳍增加对流区域。为了准确地描述热性能,测试具有外径为2mm的热管,并根据试验结果获得其热模型。为了研究所提出的技术的有效性,建立了具有热管的定子的集总参数瞬态热网络(TN)模型。通过使用热网络研究了具有这种冷却技术的扭矩密度为5n·m / kg的167w机器的热性能。分析结果表明,当电流密度高达12.5A / mm时,绕组温度不大于100°C 2 用4米/秒的强制空气冷却。构建和模拟有限元分析(FEA)模型以验证分析结果。

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