材料科学
石墨烯
抗弯强度
复合材料
热导率
极限抗拉强度
氮化硼
氧化物
聚丙烯
弯曲模量
杨氏模量
弹性模量
纳米技术
冶金
作者
Dmitry S. Muratov,Vladislav Vanyushin,Viktoria A. Koshlakova,Еvgeny Kolesnikov,Aleksey V. Maksimkin,Andrey A. Stepashkin,Денис Кузнецов
标识
DOI:10.1016/j.jallcom.2023.172882
摘要
Improving thermal properties of polymer-based composites by using different types of fillers most of the time also reduces material elasticity and flexural strength, which is a significant problem for application. To address this problem, we have used two types of two-dimensional materials, such as reduced graphene oxide (rGO) and hexagonal boron nitride (hBN) to achieve better thermal and mechanical properties. Great tensile strength and flexibility of both those 2D-materials combined with good thermal conductivity of hBN provided a synergistic effect for the resulting composites. Here we show the composites with 30% of hBN and 10% rGO by weight that have greatly improved flexural strength and flexural modulus as well as more than threefold increased thermal conductivity as compared to pristine polypropylene. Mechanical properties of composites only filled with hBN are significantly lower.
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