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表面微功能结构铝板传热性能研究
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作者 李勇 王慧攀 +2 位作者 何嘉斌 江克俊 陈昕宇 《华南理工大学学报(自然科学版)》 北大核心 2025年第4期61-71,共11页
电子产品微型化、轻薄化、低成本的发展需求,给散热模组的设计制造带来极大挑战。为解决轻薄型高性能路由器以及小型电子器件散热难题,在光滑铝板散热器基础上设计了6种具有表面微功能结构的铝板散热器,并根据新设计的铝板散热器搭建实... 电子产品微型化、轻薄化、低成本的发展需求,给散热模组的设计制造带来极大挑战。为解决轻薄型高性能路由器以及小型电子器件散热难题,在光滑铝板散热器基础上设计了6种具有表面微功能结构的铝板散热器,并根据新设计的铝板散热器搭建实验测试平台,分别在自然对流和微对流工况下,对比分析所设计的6种新型铝板散热器相对于光滑铝板散热器散热性能的提升效果。结果表明:自然对流工况下,热源功率在3.0~6.0 W时,方形针翅式铝板散热性能最优,相比于光滑表面铝板,平均努塞尔数提高约18%,传热系数与传热面积乘积提高约17%,热源温度降低约2.0 K;圆形针翅式铝板相较于光滑表面铝板,平均努塞尔数提高7%,传热系数与传热面积乘积提高约5%,热源降低约1.3 K;表面处理后,喷砂型方形针翅式铝板可使热源温度降低2.0~3.9 K,纳米碳层方形针翅式铝板可使热源温度降低5.3~8.6 K;喷砂型圆形针翅式铝板可使热源温度降低1.9~2.5 K,纳米碳层圆形针翅式铝板可使热源温度降低4.9~7.7 K。在风速2 m/s微对流工况下,圆形针翅式铝板散热性能最优,相比于光滑表面铝板,平均努塞尔数提高约8%,热源在6.0 W时温度可降低3.6 K,热阻降低18%;方形针翅式铝板,相比于光滑表面铝板,平均努塞尔数提高约6%,热源在6.0 W时温度可降低2.4 K,热阻降低11%。热源功率越高,具有表面微功能结构铝板相较于光滑表面铝板散热性能越好。 展开更多
关键词 表面微功能结构 散热器 对流换热 辐射换热
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Manufacture of porous metallic glass using dissolvable templates
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作者 Jianan Fu Zhen Li +10 位作者 Zehang Liu Xin Li Wenxin Wen Fei Sun Luyao Li Jinbiao Huang Wenqing Ruan Shuai Ren Zhenxuan Zhang Xiong Liang Jiang Ma 《Science China Materials》 SCIE EI CAS CSCD 2022年第10期2833-2841,共9页
A facile,precise,and controllable manufacturing technology is desired for hierarchical functional surfaces.In this work,we successfully manufactured porous metallic glass using a water-dissolution material as template... A facile,precise,and controllable manufacturing technology is desired for hierarchical functional surfaces.In this work,we successfully manufactured porous metallic glass using a water-dissolution material as template and the excellent thermoplastic property of metallic glass.The prepared micro/nanostructures have excellent tunability,and the proposed approach can be used to prepare large-area disordered porous structures and ordered regular arrays with nanoscale replication accuracy.In particular,the disordered porous structure prepared by the dissolvable template strategy exhibits a water contact angle of~140°and an oil contact angle of~0°,making it suitable for oil/water separation.It also shows stable wettability after being soaked in strong acid or alkali environments and maintains a~130°water contact angle and a~4°oil contact angle even after severe wear.The proposed strategy also possesses excellent recycling properties.We reconstructed porous structures on the same surface three times and found no significant change in wettability for each reconstructed porous structure.Our research provides a facile and controllable approach for the preparation of hierarchical porous structures and paves the way for the design of other functional surfaces. 展开更多
关键词 dissolvable templates metallic glass porous structure WETTABILITY recycling properties
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