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首页> 外文期刊>IEEE Transactions on Magnetics >Flux-canceling electrodynamic maglev suspension: Part I. Test fixture design and modeling
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Flux-canceling electrodynamic maglev suspension: Part I. Test fixture design and modeling

机译:取消助焊剂的电动磁悬浮悬架:第一部分。测试夹具的设计和建模

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摘要

The design and analysis of a scale-model suspension test facility for magnetic levitation (maglev) is discussed. We describe techniques for the design, construction, and testing of a prototype electrodynamic suspension (EDS) levitation system. The viability of future high-temperature superconducting magnet designs for maglev has been investigated with regard to their application to active secondary suspensions. In order to test the viability of a new "flux-canceling" EDS suspension, a 1/5-scale suspension magnet and guideway was constructed. The suspension was tested by using a high-speed rotating test wheel facility with linear peripheral speed of up to 84 m/s (300 km/h). A set of approximate design tools and scaling laws has been developed in order to evaluate forces and critical velocities in the suspension.
机译:讨论了磁悬浮比例模型悬架测试设备的设计和分析。我们描述了用于原型电动悬架(EDS)悬浮系统的设计,构造和测试的技术。关于磁悬浮列车未来高温超导磁体设计的可行性,已将其应用于有源二级悬挂系统进行了研究。为了测试新型“取消通量” EDS悬架的可行性,构建了1/5比例的悬架磁体和导轨。悬架通过使用高速旋转的测试轮设备进行测试,其线性圆周速度最高为84 m / s(300 km / h)。为了评估悬架中的力和临界速度,已经开发了一套近似的设计工具和缩放定律。

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