首页> 外文会议>International Conference on Applied Superconductivity and Electromagnetic Devices >Design and Testing of Glass-Fiber Reinforced Plastic Components for the Oil-Cooling Air-Core Stator of a High Temperature Superconducting Motor
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Design and Testing of Glass-Fiber Reinforced Plastic Components for the Oil-Cooling Air-Core Stator of a High Temperature Superconducting Motor

机译:高温超导电动机油冷却空气芯定子的玻璃纤维增​​强塑料部件的设计与测试

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A Glass-fiber Reinforced Plastic (GFRP) components for the oil-cooling air-core stator of a High Temperature Superconducting (HTS) motor was designed and tested, and the process is summarized as follows. Firstly, the Computational Fluid Dynamics analysis of the stator was analyzed, the temperature and oil pressure of the GFRP components were chosen to be 50 °C and 0.1 MPa. Secondly, the structure of the components was analyzed by the finite element method. The results showed that the stresses of GFRP components in all directions are lower and without buckling at rated oil pressure. Finally, the full-scale GFRP components were designed and manufactured, and a full-scale simplified test platform was also developed to verify the strength of the components. The test results show that the strength, stiffness, and sealing performance of the GFRP components all satisfies the design requirements of the HTS motor.
机译:设计和测试了一种用于高温超导(HTS)电机的油冷却空气芯定子的玻璃纤维增​​强塑料(GFRP)部件,并概述了该过程如下。首先,分析了定子的计算流体动力学分析,将GFRP组分的温度和油压选择为50℃和0.1MPa。其次,通过有限元法分析组分的结构。结果表明,所有方向上的GFRP组分的应力较低,额定油压下的屈曲。最后,设计和制造了全规模的GFRP组件,并且还开发出全规模的简化测试平台来验证组件的强度。测试结果表明,GFRP组件的强度,刚度和密封性能都满足了HTS电机的设计要求。

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