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Thermal Analysis of a Hybrid Excitation Linear Eddy Current Brake

机译:混合励磁线性涡流制动器的热分析

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In this paper, the thermal analysis of a hybrid excitation linear eddy current brake is presented. The air gap flux of the hybrid excitation linear eddy current brake is provided by the excitation windings and the permanent magnets. Therefore, the braking force produced by the eddy current brake is large and controllable. But, on the other hand, there is a high heating value in the excitation windings and conductor plate; hence, it is necessary to analyze thermal characteristics of the eddy current brake to avoid the declination of braking performance or even damage of the device. First, the structure and working principle of the eddy current brake are described. Second, the analytical model of the eddy current brake is built, and then the thermal network model of the eddy current brake is built taking the actual airflow around the eddy current brake into consideration. Finally, the validity of the thermal network model is verified by steady and dynamic thermal experimental measurements.
机译:本文介绍了混合励磁线性涡流制动器的热分析。混合励磁线性涡流制动器的气隙通量由励磁绕组和永磁体提供。因此,由涡流制动器产生的制动力大且可控制。但是,另一方面,励磁绕组和导体板的发热量很高。因此,有必要分析涡流制动器的热特性,以避免制动性能下降甚至损坏设备。首先,描述了涡流制动器的结构和工作原理。其次,建立了涡流制动器的解析模型,然后考虑了涡流制动器周围的实际气流,建立了涡流制动器的热网络模型。最后,通过稳态和动态热实验测量验证了热网络模型的有效性。

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