材料科学
环氧树脂
复合材料
涂层
复合数
摩擦学
氧化物
热重分析
石墨烯
色散(光学)
热稳定性
冶金
化学工程
纳米技术
光学
物理
工程类
作者
Yuxiang Nie,Xiaoyao Zhou,Lisong Dong,Zhangzhong Wang,Xin Feng,Jiahua Zhu,Xiaohua Lü,Liwen Mu
摘要
Abstract A series of epoxy composite coatings filled with liquid metal (LM) and graphene oxide (GO) are successfully prepared as the self‐lubricating material in this work. The dispersion of LM and GO (LM@GO) in epoxy coating and its effect on the thermal, tribological, and mechanical properties of epoxy coating are systematically studied by using thermogravimetric analysis, differential scanning calorimetry, mechanical and friction, and wear tester. The LM@GO filler has been proved to be an effective composite filler, which can be uniformly dispersed in epoxy coating, reduce the wear volume, and improve its mechanical properties of epoxy coating. When the filler content is 0.5 wt% LM and 0.03 wt% GO, the wear volume of epoxy composite coating is dramatically reduced by 91.7% and the elastic modulus is increased by 16.3% compared with pure epoxy. The synergistic effect of the friction reduction of LM and the mechanical support of GO makes the composite coating form a uniform and stable transfer film, which improves its wear resistance. And through chemical stability experiments, the composite coating has a strong resistance to acid and alkali. This work will render the epoxy‐LM@GO have the potential of application on the mechanical molds, electronic components.
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