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Planar Porous Graphene Woven Fabric/Epoxy Composites with Exceptional Electrical, Mechanical Properties, and Fracture Toughness

机译:具有优异的电气,机械性能和断裂韧性的平面多孔石墨烯织造织物/环氧树脂复合材料

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摘要

Planar interconnected graphene woven fabrics (GWFs) are prepared by template-based chemical vapor deposition and the GWFs are employed as multifunctional filler for epoxy-based composites. Apart from flexibility, transparency, lightweight, and high electrical conductivity, the GWFs have unique morphological features consisting of orthogonally interweaved, inherently percolated, hollow graphene tubes (GTs). The orthogonal GT structure means that the GWF/epoxy composites hold significant anisotropy in mechanical and fracture properties. The composites with 0.62 wt % graphene deliver a combination of excellent electrical and fracture properties: e.g., an electrical conductivity of similar to 0.18 S/cm; and fracture toughness of 1.67 and 1.78 MPa.m(1/2) when loaded along the 0 degrees and 45 degrees directions relative to the GT direction, respectively, equivalent to notable 57% and 67% rises compared to the solid epoxy. Unique fracture processes in GWF/epoxy composites are identified by in situ examinations, revealing crack tip blunting that occurs when the crack impinges GTs, especially those at 45 degrees to the crack growth direction, as well as longitudinal tearing of hollow GTs as the two major toughening mechanisms.
机译:通过基于模板的化学气相沉积制备平面互连的石墨烯机织织物(GWF),并将GWF用作环氧基复合材料的多功能填料。除了柔韧性,透明度,重量轻和高电导率外,GWF还具有独特的形态特征,包括正交交织,固有渗透的空心石墨烯管(GT)。正交的GT结构意味着GWF /环氧树脂复合材料在机械和断裂性能方面具有明显的各向异性。具有0.62wt%的石墨烯的复合物提供了优异的电性能和断裂性能的组合:例如,电导率接近0.18S / cm;当沿相对于GT方向的0度和45度方向加载时,断裂韧性分别为1.67和1.78 MPa.m(1/2),与固态环氧树脂相比,显着提高了57%和67%。通过现场检查确定了GWF /环氧树脂复合材料的独特断裂过程,揭示了当裂纹撞击GT时,尤其是与裂纹扩展方向成45度角的GT发生裂口时出现的裂纹尖端钝化,以及空心GT的纵向撕裂是两个主要原因增韧机制。

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