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SFPC課題組導熱高分子復合材料研究成果發表在Compos Sci Technol上

Kunpeng Ruan#, Han Yan#, Sijie Zhang, Xuetao Shi*, Yongqiang Guo and Junwei Gu*. In-situ fabrication of hetero-structured fillers to significantly enhance thermal conductivities of silicone rubber composite films. Composites Science and Technology, 2021, 210: 108799. 2019IF=7.094.1區材料科學Top期刊)

https://doi.org/10.1016/j.compscitech.2021.108799

Abstract

With the method of precipitation followed by high temperature calcination, hetero-structured fillers boron nitride nanosheets@alumina (BNNS@Al2O3) were in-situ fabricated. Thereafter, thermally conductive & insulating BNNS@Al2O3/silicone rubber (SR) composite films were then prepared. The “point-surface” hetero-structured fillers BNNS@Al2O3 had more significant thermal conductivity coefficient (λ) improvement than single Al2O3, BNNS and directly blending BNNS/Al2O3 fillers. With the mass fraction of BNNS@Al2O3 to be 30 wt% (BNNS/Al2O3, 1:1, wt:wt), the in-plane λ (λ) and through-plane λ (λ) of the BNNS@Al2O3/SR composite films attained 2.78 W/mK and 0.84 W/mK, 1.75 times higher than λ (1.01 W/mK) and 3.0 times higher than λ (0.21 W/mK) of pure SR, also more excellent than BNNS/SR (λ=2.46 W/mK, λ=0.76 W/mK), Al2O3/SR (λ=1.58 W/mK, λ=0.50 W/mK) and directly blending (BNNS/Al2O3)/SR (λ=2.04 W/mK, λ=0.62 W/mK) composite films under the same mass fraction of fillers. Also, BNNS@Al2O3/SR composite films presented wonderful mechanical, insulation as well as thermal properties.

采用“沉淀-高溫煅燒”法原位制備了具有-異質結構的氮化硼納米片@氧化鋁(BNNS@Al2O3)導熱填料,進而制備了BNNS@Al2O3/硅橡膠(SR)導熱絕緣復合膜?!包c-異質結構導熱填料BNNS@Al2O3具有較單一Al2O3BNNSBNNS/Al2O3簡單共混填料更顯著的導熱系數(λ)提升效果。當BNNS@Al2O3用量為30 wt%BNNS/Al2O3,11wtwt)時,BNNS@Al2O3/SR復合膜的面內λλ)和面間λλ)分別達到2.78 W/mK0.84 W/mK,較純SRλ1.01 W/mK)和λ0.21 W/mK)高出1.75倍和3.0倍,且優于相同填料用量下的BNNS/SRλ=2.46 W/mK,λ=0.76 W/mK)、Al2O3/SRλ=1.58 W/mKλ=0.50 W/mK)和(BNNS/Al2O3/SRBNNS/Al2O3簡單共混,11wtwt,λ=2.04 W/mKλ=0.62 W/mK)復合膜。此外,BNNS@Al2O3/SR復合膜還兼具良好的力學性能、電絕緣性能和熱性能。



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