Si Wuyan, He Xiaoxiang, Huang Yao, Gao Xiaolong, Zheng Xiuting, Zheng Xupeng, Leng Chong, Su Fengchun, Wu Daming
College of Mechanical and Electrical Engineering, Beijing University of Chemical Technology Beijing 100029 China
Polymer Material Processing Equipment Engineering Research Center of the Ministry of Education Beijing 100029 China.
RSC Adv. 2018 Oct 23;8(63):36007-36014. doi: 10.1039/c8ra07229a. eCollection 2018 Oct 22.
Constructing a compacted network in polymer matrices is an important method to improve the thermal conductivity (TC) of polymer composites. In this paper, a compacted network was built using the Spatial Confining Forced Network Assembly (SCFNA) method. The homogeneous compound of polymer and fillers, prepared using a conical twin-screw mixer, was placed in a compression mold with confining space to carry out two-stage compression, free compression and spatial confining compression. Aluminum oxide (AlO) was studied as filler in a polydimethylsiloxane (PDMS) matrix to illustrate the applicability of the SCFNA method. The polymer composites with an AlO filler ranging from 10 to 80 wt% were prepared. When the filler content was 80 wt%, the TC of the PDMS/AlO composites prepared using the SCFNA method increased by 16.35 times in comparison to the TC of pure PDMS. Observing the SEM of PDMS/AlO composites with various thicknesses, the gap between fillers decreased with a decrease in thickness. The composite with TC up to 2.566 W (mK) obtained at 80 wt% filler was further employed as a heat spreader, causing a decrease of about 8.23 °C in the set-point compared with the temperature of the heat source.
在聚合物基体中构建致密网络是提高聚合物复合材料热导率(TC)的重要方法。本文采用空间限制强制网络组装(SCFNA)方法构建了致密网络。使用锥形双螺杆混合机制备的聚合物与填料的均匀混合物,被放置在具有限制空间的压缩模具中进行两阶段压缩,即自由压缩和空间限制压缩。研究了以氧化铝(AlO)为填料、聚二甲基硅氧烷(PDMS)为基体的体系,以说明SCFNA方法的适用性。制备了AlO填料含量为10 wt%至80 wt%的聚合物复合材料。当填料含量为80 wt%时,采用SCFNA方法制备的PDMS/AlO复合材料的热导率相较于纯PDMS的热导率提高了16.35倍。观察不同厚度的PDMS/AlO复合材料的扫描电子显微镜(SEM)图像,填料之间的间隙随厚度减小而减小。在填料含量为80 wt%时获得的热导率高达2.566 W/(m·K)的复合材料进一步用作散热器,与热源温度相比,设定点温度降低了约8.23℃。