Ren Liucheng, Ren Yanjuan, Zhang Yafei, Orzechowski Kazimierz, Kułacz Karol, Pocheć Michał, Bai Shu-Lin
Department of Materials Science and Engineering, CAPT/HEDPS/LTCS, Key Laboratory of Polymer Chemistry and Physics of Ministry of Education, College of Engineering, Peking University, Beijing 100871, People's Republic of China.
BOE Technology Group Co., Ltd, Beijing 100015, People's Republic of China.
Nanotechnology. 2020 Nov 20;31(47):475710. doi: 10.1088/1361-6528/abb04f.
Thermally conductive composites have attracted great attention in virtue of their crucial role in thermal management. In this work, laminated composites were prepared by laying graphite films (GF) and carbon fiber fabrics (CF) in a certain order, then penetrating thermoplastic polyurethane (TPU), finally hot-pressing. In order to enhance the inter-layer strength, the graphite films were perforated with arrays of 1 mm holes in diameter which have intervals of 4 mm and permit the seeping of liquid TPU through them. The in-plane thermal conductivity (TC) of composite reaches 242 W m K with the loading of 25 vol% GF and 60 vol% CF, which is 1210 times that of pure TPU. The great improvement of TC is ascribed to the thermal conductive pathways formed by continuous GF with ultrahigh TC. The addition of CF enhances markedly the mechanical properties of composites. Bending strength and modulus of composites are 5.56 and 17.09 times that of pure TPU, respectively. The proposed design and manufacture method are facile and effective to obtain polymeric composites simultaneously with high TC and good mechanical properties.
导热复合材料因其在热管理中的关键作用而备受关注。在这项工作中,通过按一定顺序铺设石墨薄膜(GF)和碳纤维织物(CF),然后渗透热塑性聚氨酯(TPU),最后进行热压来制备层压复合材料。为了提高层间强度,对石墨薄膜进行了穿孔处理,形成直径为1毫米、间距为4毫米的阵列孔,使液态TPU能够渗透通过。当GF的含量为25体积%、CF的含量为60体积%时,复合材料的面内热导率(TC)达到242 W m⁻¹ K⁻¹,是纯TPU的1210倍。TC的大幅提高归因于由具有超高TC的连续GF形成的导热路径。CF的添加显著提高了复合材料的力学性能。复合材料的弯曲强度和模量分别是纯TPU的5.56倍和17.09倍。所提出的设计和制造方法简便有效,能够同时获得具有高TC和良好力学性能的聚合物复合材料。