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首页> 外文期刊>Journal of Composite Materials >A new theoretical creep model of an epoxy-graphene composite based on experimental investigation: effect of graphene content
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A new theoretical creep model of an epoxy-graphene composite based on experimental investigation: effect of graphene content

机译:基于实验研究的环氧树脂复合材料的新理论蠕变模型:石墨烯含量的影响

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摘要

In this paper, the creep behavior of an epoxy-based adhesive reinforced with different weight fractions of graphene up to 0.5 wt% was studied. Creep tests were performed in three stress levels, using the ultimate strength of the neat epoxy as a reference. Results indicated that the presence of graphene up to 0.5 wt% reduces the creep strain and strain rate of the epoxy. However, the dominant behavior in the creep of epoxy-graphene composites is the creep pattern of the neat epoxy. These experimental observations led to development of theoretical creep models to an appropriate creep model for graphene-reinforced composites by introducing a new function of the graphene weight ratio. A scanning electron microscopy analysis indicated that the strong bond between the graphene surface and epoxy matrix limits the mobility of the molecular chains of the neat epoxy and therefore reduces the creep strain.
机译:在本文中,研究了用不同重量级分的环氧基粘合剂的蠕变行为,高达0.5wt%。 蠕变试验在三个应力水平中进行,使用整洁环氧树脂作为参考的最终强度。 结果表明,石墨烯的存在高达0.5wt%降低了环氧树脂的蠕变应变和应变率。 然而,环氧树脂 - 石墨烯复合材料蠕变中的显性行为是整齐环氧树脂的蠕变图案。 这些实验观察导致通过引入石墨烯重量比的新函数来开发理论蠕变模型以适当的蠕变模型。 扫描电子显微镜分析表明,石墨烯表面和环氧基质之间的强键限制了整个环氧树脂的分子链的迁移率,从而降低了蠕变菌株。

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