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首页> 外文期刊>IEEE Transactions on Industry Applications >Two-Phase Cooling Method Using the R134a Refrigerant to Cool Power Electronic Devices
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Two-Phase Cooling Method Using the R134a Refrigerant to Cool Power Electronic Devices

机译:使用R134a制冷剂的两相冷却方法来冷却电力电子设备

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摘要

This paper presents a two-phase cooling method using the R134a refrigerant to dissipate the heat energy (loss) generated by power electronics (PEs), such as those associated with rectifiers, converters, and inverters for a specific application in hybrid-electric vehicles. The cooling method involves submerging PE devices in an R134a bath, which limits the junction temperature of PE devices while conserving weight and volume of the heat sink without sacrificing equipment reliability. First, experimental tests that included an extended soak for more than 850 days were performed on a submerged insulated gate bipolar transistor (IGBT) and gate-controller card to study dielectric characteristics, deterioration effects, and heat-flux capabilities of R134a. Results from these tests illustrate that R134a has high dielectric characteristics and no deterioration of electrical components. Second, experimental tests that included a simultaneous operation with a mock automotive air-conditioner (A/C) system were performed on the same IGBT and gate-controller card. Data extrapolation from these tests determined that a typical automotive A/C system has more than sufficient cooling capacity to cool a typical 30-kW traction inverter. Last, a discussion and simulation of active cooling of the IGBT junction layer with the R134a refrigerant is given. This technique will drastically increase the forward current ratings and reliability of the PE device
机译:本文提出一种使用R134a制冷剂的两相冷却方法,以消散电力电子设备(PE)产生的热能(损耗),例如与混合动力汽车中的特定应用相关的整流器,转换器和逆变器。冷却方法涉及将PE器件浸入R134a浴中,这可以限制PE器件的结温,同时在不牺牲设备可靠性的情况下节省散热器的重量和体积。首先,对浸入式绝缘栅双极晶体管(IGBT)和栅极控制卡进行了包括延长浸泡超过850天的实验测试,以研究R134a的介电特性,劣化效应和热通量。这些测试的结果表明,R134a具有高介电特性,并且不会降低电子组件的性能。其次,在同一IGBT和门控制器卡上进行了包括模拟汽车空调(A / C)系统同时运行在内的实验测试。这些测试的数据推断得出,典型的汽车空调系统具有足够的冷却能力来冷却典型的30 kW牵引逆变器。最后,给出了用R134a制冷剂对IGBT结层进行主动冷却的讨论和仿真。该技术将大大提高PE设备的正向电流额定值和可靠性

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