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High strain insulation systems for compulsator rotors

机译:转子转子的高应变绝缘系统

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As the power density requirement for new compulsator (CPA) designs increases, designers are driven to use more composites to reduce mass, spin the rotors faster to store more energy, and operate the machine at higher voltages to increase machine power output. In any particular compulsator design, the rotor windings are subjected to high strain levels as the rotor is spun and experiences radial growth. A critical component in the rotor winding design is the high voltage insulation. As the rotor is spun, the induced strains are applied to the insulation system on the coil conductors. This implies that over the operating life of a compulsator, the coil structure and the high voltage insulation must remain structurally intact, while undergoing repeated cyclic loading. This paper presents the design and testing of a compulsator rotor winding that has been recently fabricated at the Center for Electromechanics at The University of Texas at Austin. The paper focuses on the testing done both at room and elevated temperature to evaluate the winding structure and high voltage insulation system under both tensile and transverse strain conditions. Data presented suggests a factor of safety of at least five for strain to failure values and high voltage insulation good for at least twice line voltage after testing to strain failure.
机译:随着对新脉冲发生器(CPA)设计的功率密度要求的提高,设计人员被迫使用更多的复合材料来减轻质量,更快地旋转转子以存储更多的能量,并在更高的电压下操作机器以增加机器的功率输出。在任何特定的强制执行器设计中,当转子旋转并经历径向增长时,转子绕组都会承受高应变水平。转子绕组设计中的关键组件是高压绝缘。旋转转子时,感应应变会施加到线圈导体上的绝缘系统。这意味着,在强制执行器的整个使用寿命中,线圈结构和高压绝缘必须在结构上保持完整,同时还要承受反复的循环载荷。本文介绍了最近在德克萨斯大学奥斯汀分校的机电中心制造的转子转子绕组的设计和测试。本文着重于在室温和高温下进行的测试,以评估在拉伸和横向应变条件下的绕组结构和高压绝缘系统。呈现的数据表明,对于应变失效值而言,安全系数至少为5,对于应变失效进行测试后,高压绝缘至少对线路电压具有两倍的良好绝缘性。

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