热导率
材料科学
热能储存
相变材料
纳米材料
纳米颗粒
复合材料
碳化硅
相变
化学工程
电导率
相(物质)
石墨烯
热的
潜热
导电体
碳化物
纳米
储能
复合数
热传导
离子液体
热阻
热能
纳米复合材料
硅
热发射率
作者
Yi Cui,Lingyun Jia,Jiayu Liu,Pengtao Liu
摘要
The low thermal conductivity of wall and core materials is a limitation to the phase change microcapsules prepared with n-octadecane/cellulose nanofibres (CNF)/melamine-formaldehyde resin (MF). To enhance the thermal conductivity of these microcapsules, three different highly conductive materials, including alumina nanoparticles (Al2O3), silicon carbide nanoparticles (SiC) and graphene nanosheets (GNP), were used for modification. The effects of the content of high thermal conductivity nanomaterials in microcapsules on their microforms, thermal storage properties and thermal conductivity were investigated. The results demonstrated that, compared with non-modified microcapsules, the nanoparticle-modified phase change microcapsules exhibited a more uniform morphology, a greater degree of dispersion, an enhanced latent heat of phase change and an increased encapsulation rate.
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