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Loop Heat Pipe For Cooling Of High-power Electronic Components

机译:大功率电子元件冷却回路热管

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摘要

In this paper, we present a new development of loop heat pipe (LHP) technology in its applications to cooling systems for high-power IGBT elements. An advanced method of LHP evaporator wick manufacturing has been proposed. Following this approach, a 16 mm outer diameter and 280mm-length LHP evaporator was designed and manufactured. Nickel and titanium particles were used as raw material in LHP evaporator wick fabrication. LHP with a nominal capacity as high as 900 W for steady-state condition and more than 900 W for a periodic mode of operation at a temperature level below 100 ℃ and a heat transfer distance of 1.5 m was designed through the cooling of a high-power electronic module. An experimental program was developed to execute LHP performance tests and monitor its operability over a span of time. An investigation of the effects of LHP performance of parameters such as evaporator and condenser temperatures and LHP orientation in a gravity field was brought about. As regards the results of this initial series of tests, it was found that LHP spatial orientation within the nominal range of heat loads has no drastic effect on overall LHP functioning, whereas condenser temperature does play an important role, especially in the range of heat load close to critical. A 2D nodal model of the evaporator was developed and provides us with confirmation of the suggestion that when high-power dissipation levels are available, low wick conductivity is well adapted for LHP applications.
机译:在本文中,我们介绍了环路热管(LHP)技术的最新发展,并将其应用于大功率IGBT元件的冷却系统。已经提出了LHP蒸发器芯的先进制造方法。按照这种方法,设计并制造了外径为16 mm,长度为280mm的LHP蒸发器。镍和钛颗粒被用作LHP蒸发器芯的制造原料。通过在高温条件下冷却,设计出了LHP,在稳态条件下额定功率高达900 W,在温度水平低于100℃且周期性运行模式下的额定功率高达900 W,并且传热距离为1.5 m。电力电子模块。开发了一个实验程序来执行LHP性能测试并监视其在一段时间内的可操作性。研究了蒸发器和冷凝器温度等参数的LHP性能的影响以及重力场中LHP取向的影响。关于这一系列初始测试的结果,发现在额定热负荷范围内,LHP空间定向对整体LHP功能没有明显影响,而冷凝器温度的确发挥了重要作用,尤其是在热负荷范围内接近临界。开发了蒸发器的二维节点模型,并为我们提供了这样的建议:当可获得高功率耗散水平时,低芯吸电导率非常适合LHP应用。

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