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扫描热显微镜技术在生物质微观特性研究中的应用 被引量:4
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作者 徐德良 付鑫 +3 位作者 徐朝阳 王思群 孙军 周定国 《林产化学与工业》 EI CAS CSCD 北大核心 2015年第4期1-7,共7页
为了探讨生物质材料微观导热性能,以红橡和稻草为研究对象,使用扫描热显微镜技术(SThM)研究2种生物质材料细胞壁层级的微观传热特性及微观结构特性。研究结果表明,SThM的热传导模式可以对生物质细胞结构进行较好的扫描成像,2种生物质细... 为了探讨生物质材料微观导热性能,以红橡和稻草为研究对象,使用扫描热显微镜技术(SThM)研究2种生物质材料细胞壁层级的微观传热特性及微观结构特性。研究结果表明,SThM的热传导模式可以对生物质细胞结构进行较好的扫描成像,2种生物质细胞壁在横切面的导热特性近似,即细胞壁的胞间层(CML)导热性能明显低于S2层导热性能,电流值相差1μA左右。 展开更多
关键词 扫描热显微镜技术 稻草 红橡 细胞壁 特性
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Sintering technology for micro heat pipe with sintered wick 被引量:5
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作者 李西兵 汤勇 +2 位作者 李勇 周述璋 曾志新 《Journal of Central South University》 SCIE EI CAS 2010年第1期102-109,共8页
In order to study reasonable sintering technological parameters and appropriate copper powder size range of micro heat pipe (MHP) with the sintered wick, the forming principle of copper powders in wicks and MHP's ... In order to study reasonable sintering technological parameters and appropriate copper powder size range of micro heat pipe (MHP) with the sintered wick, the forming principle of copper powders in wicks and MHP's heat transfer capabilities were first analyzed, then copper powders with different cell sizes and dispersions were sintered in RXL-12-11 resistance furnace under the protection of the hydrogen at different sintering temperatures for different durations of sintering time, and finally the sintered wicks' scanning electron microscope (SEM) images and their heat transfer capabilities were analyzed. The results indicate that the wick sintered with copper powders of larger cell size or smaller size range has better sintering properties and larger heat transfer capabilities; and that the increase of either sintering temperatures or sintering time also helps to improve the wick's sintering properties and heat transfer capabilities, and the former affects more obviously than the latter. Considering both its manufacturing cost and performance requirements, it is recommended that copper powders with the size range of 140-170 μm are sintered at 900-950℃ for 30-60 min in practical manufacturing. In addition, two approaches to improve wick's porosity are also proposed through theoretical analysis, which suggests that the larger the wick's porosity, the better the heat transfer capabilities of the MHP. 展开更多
关键词 micro heat pipe copper powders WICK forming principle
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