环氧浸渍石墨烯纸的制备及力学性能研究

L. Cai, A. Al-ostaz, Xiaobing Li, L. Drzal, Brian P. Rook, A. Cheng, H. Alkhateb
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引用次数: 5

摘要

摘要通过环氧树脂浸渍多孔石墨烯纳米板(GnP)纸,制备了1层(0.15 mm厚)和15层(5.43 mm厚)石墨烯复合材料。在单层石墨烯复合材料中使用了3种不同粒径的GnPs: 5 μm、5 μm和25 μm混合、25 μm。最大的石墨烯薄片在拉伸强度和断裂伸长率方面表现出最佳的材料性能。拉伸和动态力学分析(DMA)测试结果表明,15层石墨烯复合材料比1层石墨烯复合材料具有更好的材料性能。15层石墨烯复合材料的存储模量比纯环氧树脂高170%。15层石墨烯复合材料的横向表面具有较高的弹性模量,但硬度较表层低。弹道极限试验结果表明,聚脲(PU)与15层石墨烯复合涂层的组合可以略微提高TC-128钢板的弹道极限。
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Processing and Mechanical Properties Investigation of Epoxy-Impregnated Graphene Paper
AbstractOne-layer (0.15-mm-thick) and 15-layer (5.43-mm-thick) graphene composites have been fabricated through the impregnation of epoxy resin into porous graphene nanoplatelet (GnP) paper. Three different flake sizes of GnPs were used for the 1-layer graphene composites: 5 μm, mixed 5 μm and 25 μm, and 25 μm. The largest graphene flakes showed the best material properties in terms of tensile strength and elongation at break. Both tensile and dynamic mechanical analysis (DMA) test results demonstrated that the 15-layer graphene composite had better material properties than the 1-layer graphene composites. The storage modulus of 15-layer graphene composite was 170% higher than that of neat epoxy. The transverse surface of 15-layer graphene composite exhibited a higher elastic modulus but lower hardness than the top surface. Ballistic limit test results showed that the combination of polyurea (PU) and a 15-layer graphene composite coating can increase the ballistic limit of TC-128 steel plate slightly.
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