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采用带有镍和铜多孔结构的环路热管对双极晶体管进行散热。

Heat removal from bipolar transistor by loop heat pipe with nickel and copper porous structures.

作者信息

Nemec Patrik, Smitka Martin, Malcho Milan

机构信息

Department of Power Engineering, Faculty of Mechanical Engineering, University of Žilina, Univerzitna 1, 01026 Žilina, Slovakia.

出版信息

ScientificWorldJournal. 2014;2014:724740. doi: 10.1155/2014/724740. Epub 2014 May 18.

Abstract

Loop heat pipes (LHPs) are used in many branches of industry, mainly for cooling of electrical elements and systems. The loop heat pipe is a vapour-liquid phase-change device that transfers heat from evaporator to condenser. One of the most important parts of the LHP is the porous wick structure. The wick structure provides capillary force to circulate the working fluid. To achieve good thermal performance of LHP, capillary wicks with high permeability and porosity and fine pore radius are expected. The aim of this work was to develop porous structures from copper and nickel powder with different grain sizes. For experiment copper powder with grain size of 50 and 100 μm and nickel powder with grain size of 10 and 25 μm were used. Analysis of these porous structures and LHP design are described in the paper. And the measurements' influences of porous structures in LHP on heat removal from the insulated gate bipolar transistor (IGBT) have been made.

摘要

回路热管(LHP)在许多工业领域都有应用,主要用于冷却电子元件和系统。回路热管是一种气液相变装置,它将热量从蒸发器传递到冷凝器。回路热管最重要的部件之一是多孔芯结构。芯结构提供毛细管力以使工作流体循环。为了实现回路热管良好的热性能,期望具有高渗透率、孔隙率和细孔径的毛细芯。这项工作的目的是用不同粒径的铜粉和镍粉开发多孔结构。实验使用了粒径为50和100μm的铜粉以及粒径为10和25μm的镍粉。本文描述了对这些多孔结构的分析以及回路热管的设计。并且已经对回路热管中多孔结构对绝缘栅双极晶体管(IGBT)散热的影响进行了测量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2cc9/4052570/31b544e37a0c/TSWJ2014-724740.001.jpg

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