An experimental study on the effect of graphite microparticles on the mechanical and tribological properties of epoxy matrix composites

Muhammad Mustapha Ibrahim, N.S.M. El-Tayeb, Mostafa Shazly, M.M. El-Sayed Seleman
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Abstract

This article comprehensively discusses the mechanical and tribological properties of epoxy matrix composites filled with 100μm graphite particulates, at loadings ranging from 0 to 1wt%. The investigation also focuses on the effects of the graphite filler on the wear surface of the specimens, utilizing an optical microscope for analysis. The results revealed a significant decrease in the tensile strength of the composite, with a reduction of more than 50% observed at 1wt% graphite loading. However, the flexural strength exhibited an initial sharp increase at 0.1wt% graphite loading, followed by a decline at higher graphite contents. Moreover, both impact and hardness values demonstrated improvement as the graphite content increased. The addition of graphite particles led to a reduction in the friction coefficient, attributed to the solid lubrication capabilities of graphite. Furthermore, the wear rate exhibited a sharp decrease with an increase in graphite content due to the formation of a lubrication layer at the contact surface, effectively reducing the break-off of the specimen.

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石墨微粒对环氧基复合材料机械性能和摩擦学性能影响的实验研究
本文全面论述了填充 100μm 石墨微粒的环氧基复合材料的机械和摩擦学特性,石墨填充量为 0 至 1wt%。研究还利用光学显微镜分析了石墨填料对试样磨损表面的影响。结果显示,复合材料的拉伸强度明显下降,石墨含量为 1wt% 时,拉伸强度下降了 50%。然而,在石墨含量为 0.1wt% 时,弯曲强度开始急剧上升,石墨含量越高,弯曲强度越低。此外,随着石墨含量的增加,冲击值和硬度值都有所提高。石墨颗粒的添加导致了摩擦系数的降低,这归因于石墨的固体润滑能力。此外,磨损率随着石墨含量的增加而急剧下降,这是由于在接触面形成了润滑层,有效地减少了试样的断裂。
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