首页> 外文会议>IEEE Energy Conversion Congress and Exposition >Ceramic 3D Printed Direct Winding Heat Exchangers for Improving Electric Machine Thermal Management
【24h】

Ceramic 3D Printed Direct Winding Heat Exchangers for Improving Electric Machine Thermal Management

机译:陶瓷3D印刷直绕绕线热交换器,用于改善电机热管理

获取原文

摘要

Direct winding oil cooling offers more effective cooling than conventional alternatives and can therefore increase the torque density of electric machines; however, this technique is limited by the thermophysical properties of the oil. The use of a direct winding heat exchanger (DWHX) allows a glycol-water coolant mixture to be used which leads to a significant improvement in heat transfer and a reduction in the pumping losses compared to direct oil cooling. This paper proposed ceramic 3D printed direct winding heat exchangers (3D-DWHX) which can significantly improve the cooling of concentrated windings in electric machines due to the unique geometries enabled by 3D printing. Ceramics are also capable of withstanding extremely high temperatures. A closed-form analytical thermal model incorporating the temperature dependence of winding losses is proposed and used with empirical heat transfer correlations to design a micro-feature enhanced 3D-DWHX. The ceramic 3D-DWHX was built and tested in a motorette and shown to enable a continuous current density of 30.7 ARMS/mm~2 while keeping the maximum winding temperature below 132°C.
机译:直接绕组油冷却提供比传统替代品更有效的冷却,因此可以增加电机的扭矩密度;然而,该技术受到油的热物理性质的限制。使用直接绕组热交换器(DWHX)允许使用甘醇 - 水冷却剂混合物,从而导致热传递的显着改善和与直接油冷却相比泵送损耗的减少。本文提出了陶瓷3D印刷直接绕组热交换器(3D-DWHX),其由于3D打印所通的独特几何形状,因此可以显着提高电机中集中绕组的冷却。陶瓷也能够承受极高的温度。提出了一种封闭式的分析热模型,其具有绕组损耗的温度依赖性,并与经验传热相关性用于设计微特征增强的3D-DWhx。陶瓷3D-DWhx在电动车中构建和测试,并显示为连续电流密度为30.7臂/ mm〜2,同时保持最大绕组温度低于132°C。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号