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Research on Heat Dissipation Optimization of a Novel Liquid-Cooling Eddy Current Brake

机译:一种新型液体冷却涡流制动器散热优化研究

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摘要

As an auxiliary brake element, the eddy current brake is widely used to ensure safe driving in heavy vehicles due to its noncontact braking characteristics. It is important to increase the power density of the eddy current brake and suppress the thermal derating of its braking performance. According to the principle of the eddy current braking and current skin effect, a decline in temperature can greatly increase the eddy current density of the low-frequency electromagnetic device. In this paper, a new heat dissipation method is proposed to cool the heating surface of the eddy current brake directly. The electromagnetic field model and the flow-heat coupling model are established to predict and analyze the steady-state temperature distribution and braking torque. A new type of internal liquid cooling eddy current brake prototype was manufactured for a bench test. The experimental data prove that the computational model is effective. The calculation results show that the new internal liquid cooling eddy current brake has improved heat dissipation advantages.
机译:作为辅助制动元件,涡流制动器广泛用于确保由于其非接触式制动特性而在重型车辆中安全行驶。重要的是增加涡流制动器的功率密度,并抑制其制动性能的热降低。根据涡流制动的原理和当前的皮肤效果,温度下降可以大大增加低频电磁装置的涡流密度。在本文中,提出了一种新的散热方法,直接冷却涡流制动器的加热表面。建立电磁场模型和流动热耦合模型预测和分析稳态温度分布和制动扭矩。制造了一种新型的内部液体冷却涡流制动原型以进行台式试验。实验数据证明了计算模型是有效的。计算结果表明,新型内部液体冷却涡流制动器具有改善的散热优势。

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