期刊文献+
共找到5篇文章
< 1 >
每页显示 20 50 100
箱形鱼骨式热沉的温度均匀性研究
1
作者 单晓杭 万鸿超 叶必卿 《低温工程》 CAS CSCD 北大核心 2020年第4期12-18,79,共8页
提出了一种箱形鱼骨式热沉,并对翅片的温度均匀性进行了分析。在研究热沉管网中影响载冷剂温度和流动分布的因素的基础上,研究了影响热沉翅片温度分布的因素,包括支管直径、支管间距、翅片厚度和支管内载冷剂流速等。研究结果表明:随着... 提出了一种箱形鱼骨式热沉,并对翅片的温度均匀性进行了分析。在研究热沉管网中影响载冷剂温度和流动分布的因素的基础上,研究了影响热沉翅片温度分布的因素,包括支管直径、支管间距、翅片厚度和支管内载冷剂流速等。研究结果表明:随着热沉支管直径和支管间距的减小、汇总管直径的增大,载冷剂的温度和流动均匀性变好;随着汇总管入口流速的增大,载冷剂的温度均匀性变好,汇总管入口流速对载冷剂流动均匀性的影响较小;随着支管直径和支管间距的减小、翅片厚度和支管入口流速的增大,翅片的温度均匀性变好。根据载冷剂的流动分布以及支管内不同载冷剂流速时翅片的温度分布曲线,分析了翅片的温度均匀性。 展开更多
关键词 箱形鱼骨式 热沉结构 温度均匀性 流动分布
在线阅读 下载PDF
AlGaInP-LED微阵列单元的热效应分析 被引量:1
2
作者 田超 梁静秋 +4 位作者 梁中翥 秦余欣 李春 吕金光 王维彪 《发光学报》 EI CAS CSCD 北大核心 2014年第7期840-845,共6页
对AlGaInP-LED微型阵列发光单元的内部自发热机制进行了分析,并通过对具有回型上电极的发光单元的理论分析与计算,得到了其内量子效率与注入电流的变化关系及器件温度与所加偏压的变化关系。为保证内量子效率取值范围大于85%,得到了器... 对AlGaInP-LED微型阵列发光单元的内部自发热机制进行了分析,并通过对具有回型上电极的发光单元的理论分析与计算,得到了其内量子效率与注入电流的变化关系及器件温度与所加偏压的变化关系。为保证内量子效率取值范围大于85%,得到了器件的最佳工作电流和最佳驱动电压范围以及微阵列各层结构在最佳驱动电压下的热阻分布。通过计算得出器件在2.2 V电压下,从p-n结到外部环境的有效热阻为96.7℃/W。讨论了减小器件热阻的方法,计算得出在理想情况下,添加热沉结构后有效热阻降为30.6℃/W,表明所设计的热沉结构对器件的散热起到了明显的改善作用。 展开更多
关键词 ALGAINP 回型电极 微型阵列 效应 热沉结构
在线阅读 下载PDF
Preparation of AgSnO_2 composite powders by hydrothermal process 被引量:2
3
作者 杨天足 杜作娟 +2 位作者 古映莹 邱晓勇 江名喜 《Journal of Central South University of Technology》 EI 2007年第2期176-180,共5页
Silver-tin oxide powders were synthesized by the hydrothermal method with Ag(NH_3)_2^+ solution and Na_2SnO_3 solution as raw materials and Na_2SO_3 as reductant. The precipitation conditions of Na2SnO3 solution and t... Silver-tin oxide powders were synthesized by the hydrothermal method with Ag(NH_3)_2^+ solution and Na_2SnO_3 solution as raw materials and Na_2SO_3 as reductant. The precipitation conditions of Na2SnO3 solution and the reduction conditions of Ag(NH_3)_2^+ were also investigated. The powders prepared were characterized by differential thermal analysis (DTA), X-ray diffraction analysis (XRD), scanning electron microscope (SEM) and energy spectrum analysis. The results show that pH value of the solution is a key parameter in the formation of Sn(OH)_4 precipitate and the reduction reaction of Ag(NH_3)_2^+ can release H+ ions, which results in synchronous precipitation of Sn(OH)_6~2- as Sn(OH)_4. The reduction of Ag(NH_3)_2^+ and precipitation of Na_2SnO_3 occur simultaneously and the coprecipitation of silver and tin oxide is reached by the hydrothermal method. The silver-tin oxide composite powders have mainly flake shape of about 0.3 μm in thickness and there exists homogeneous distribution of tin oxide and silver in the powder synthesized. 展开更多
关键词 silver-tin oxide powder hydrothermal method flake structure coprecipitation
在线阅读 下载PDF
Dropwise condensation heat transfer enhancement on surfaces micro/nano structured by a two-step electrodeposition process 被引量:4
4
作者 Hamid Reza TALESH BAHRAMI Alireza AZIZI Hamid SAFFARI 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第5期1065-1076,共12页
Condensation is an important regime of heat transfer which has wide applications in different industries such as power plants,heating,ventilating and air conditioning,and refrigeration.Condensation occurs in two diffe... Condensation is an important regime of heat transfer which has wide applications in different industries such as power plants,heating,ventilating and air conditioning,and refrigeration.Condensation occurs in two different modes including filmwise (FWC) and dropwise (DWC) condensation.DWC occurring on hydrophobic and superhydrophobic surfaces has a much higher heat transfer capacity than FWC.Therefore,wide investigations have been done to produce DWC in recent years.Superhydrophobic surfaces have micro/nano structures with low surface energy.In this study,a two-step electrodeposition process is used to produce micro/nano structures on copper specimens.The surface energy of specimens is reduced by a self-assembled monolayer using ethanol and 1-octadecanethiol solution.The results show that there is an optimum condition for electrodeposition parameters.For example,a surface prepared by 2000 s step time has 5 times greater heat transfer than FWC while a surface with 4000 s step time has nearly the same heat transfer as FWC.The surfaces of the fabricated specimens are examined using XRD and SEM analyses.The SEM analyses of the surfaces show that there are some micro-structures on the surfaces and the surface porosities are reduced by increasing the second step electrodeposition time. 展开更多
关键词 dropwise condensation heat transfer ELECTRODEPOSITION micro/nano structure POROSITY
在线阅读 下载PDF
Heat transfer performance testing of a new type of phase change heat sink for high power light emitting diode 被引量:2
5
作者 XIANG Jian-hua ZHANG Chun-liang +2 位作者 ZHOU Chao LIU Gui-yun ZHOU Wei 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第7期1708-1716,共9页
In view of the limitations of solid metal heat sink in the heat dissipation of high power light emitting diode (LED), a kind of miniaturized phase change heat sink is developed for high power LED packaging. First, t... In view of the limitations of solid metal heat sink in the heat dissipation of high power light emitting diode (LED), a kind of miniaturized phase change heat sink is developed for high power LED packaging. First, the fabrication process of miniaturized phase change heat sink is investigated, upon which all parts of the heat sink are fabricated including main-body and end-cover of the heat sink, the formation of three-dimensional boiling structures at the evaporation end, the sintering of the wick, and the encapsulation of high power LED phase change heat sink. Subsequently, with the assistance of the developed testing system, heat transfer performance of the heat sink is tested under the condition of natural convection, upon which the influence of thermal load and working medium on the heat transfer performance is investigated. Finally, the heat transfer performance of the developed miniaturized phase change heat sink is compared with that of metal solid heat sink. Results show that the developed miniaturized phase change heat sink presents much better heat transfer performance over traditional metal solid heat sink, and is suitable for the packaging of high power LED. 展开更多
关键词 miniaturized phase change heat sink three-dimensional microgrooves sintered wick heat transfer performance testing
在线阅读 下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部