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Rotor retaining sleeve design of 1.12MW high-speed PM machine for shipboard power

机译:船用动力1.12MW高速永磁电机转子固定套设计

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Permanent magnets hardly bear the large centrifugal force at high-speed rotation, so protective measures must be taken. Nowadays, using the carbon fiber to bindle permanent magnets are commonly used. In this paper, based on a high speed permanent magnet machine (1.12MW, 18000rpm), theory analysis of rotor stress is verified by 3D finite element method. Rotor strength of three different rotor structures and different materials in pole filler is calculated and compared. Effect of running temperature, rotor speed, retaining sleeve thickness and interference between PMs and retaining sleeve are investigated. A new hybrid protective measure is proposed and analyzed. Carbon fiber retaining sleeve and hybrid retaining sleeve are finally designed and the prototypes of the both rotors are produced. The stress tests of both prototypes running at 22000rpm are carried out.
机译:永磁体在高速旋转时几乎不承受较大的离心力,因此必须采取保护措施。如今,通常使用碳纤维束缚永磁体。本文基于高速永磁电机(1.12MW,18000rpm),通过3D有限元方法验证了转子应力的理论分析。计算并比较了极点填料中三种不同转子结构和不同材料的转子强度。研究了运行温度,转子速度,固定套厚度以及PM与固定套之间的干扰的影响。提出并分析了一种新的混合保护措施。最终设计出了碳纤维固定套和混合动力固定套,并生产了两个转子的原型。对两个以22000rpm运行的原型进行了压力测试。

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