Oriented Three-Dimensional Skeletons Assembled by Si3N4 Nanowires/AlN Particles as Fillers for Improving Thermal Conductivity of Epoxy Composites

Author:

Wang Baokai1,Wan Shiqin1,Niu Mengyang1,Li Mengyi1ORCID,Yu Chang1,Zhao Zheng1,Xuan Weiwei2,Yue Ming3,Cao Wenbin1,Wang Qi1

Affiliation:

1. School of Materials Science and Engineering, University of Science and Technology Beijing, Beijing 100083, China

2. School of Energy and Environmental Engineering, University of Science and Technology Beijing, Beijing 100083, China

3. School of Civil and Resource Engineering, University of Science and Technology Beijing, Beijing 100083, China

Abstract

With the miniaturization of current electronic products, ceramic/polymer composites with excellent thermal conductivity have become of increasing interest. Traditionally, higher filler fractions are required to obtain a high thermal conductivity, but this leads to a decrease in the mechanical properties of the composites and increases the cost. In this study, silicon nitride nanowires (Si3N4NWs) with high aspect ratios were successfully prepared by a modified carbothermal reduction method, which was further combined with AlN particles to prepare the epoxy-based composites. The results showed that the Si3N4NWs were beneficial for constructing a continuous thermal conductive pathway as a connecting bridge. On this basis, an aligned three-dimensional skeleton was constructed by the ice template method, which further favored improving the thermal conductivity of the composites. When the mass fraction of Si3N4NWs added was 1.5 wt% and the mass fraction of AlN was 65 wt%, the composites prepared by ice templates reached a thermal conductivity of 1.64 W·m−1·K−1, which was ~ 720% of the thermal conductivity of the pure EP (0.2 W·m−1·K−1). The enhancement effect of Si3N4NWs and directional filler skeletons on the composite thermal conductivity were further demonstrated through the actual heat transfer process and finite element simulations. Furthermore, the thermal stability and mechanical properties of the composites were also improved by the introduction of Si3N4NWs, suggesting that prepared composites exhibit broad prospects in the field of thermal management.

Funder

National Natural Science Foundation of China

Young Elite Scientists Sponsorship

Interdisciplinary Research Project for Young Teachers of USTB

Publisher

MDPI AG

Subject

Polymers and Plastics,General Chemistry

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