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In Situ Synthesis of Reduced Graphene Oxide-Reinforced Silicone-Acrylate Resin Composite Films Applied in Erosion Resistance

机译:原位合成石墨烯氧化物增强硅氧烷 - 丙烯酸酯树脂复合薄膜施加耐腐蚀性抗性

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摘要

The reduced graphene oxide reinforced silicone-acrylate resin composite films (rGO/SAR composite films) were prepared by in situ synthesis method. The structure of rGO/SAR composite films was characterized by Raman spectrum, atomic force microscope, scanning electron microscopy, and thermogravimetric analyzer. The results showed that the rGO were uniformly dispersed in silicone-acrylate resin matrix. Furthermore, the effect of rGO loading on mechanical properties of composite films was investigated by bulge test. A significant enhancement (ca. 290% and 320%) in Young’s modulus and yield stress was obtained by adding the rGO to silicone-acrylate resin. At the same time, the adhesive energy between the composite films and metal substrate was also improved to be about 200%. Moreover, the erosion resistance of the composite films was also investigated as function of rGO loading. The rGO had great effect on the erosion resistance of the composite films, in which the Rcorr (ca. 0.8 mm/year) of composite film was far lower than that (28.7 mm/year) of pure silicone-acrylate resin film. Thus, this approach provides a novel route to investigate mechanical stability of polymer composite films and improve erosion resistance of polymer coating, which are very important to be used in mechanical-corrosion coupling environments.
机译:通过原位合成方法制备了石墨烯氧化物增强硅氧烷 - 丙烯酸硅 - 丙烯酸树脂复合膜(RGO / SAR复合膜)。 RGO / SAR复合膜的结构的特征在于拉曼光谱,原子力显微镜,扫描电子显微镜和热重分析仪。结果表明,Rgo均匀地分散在硅氧烷 - 丙烯酸酯树脂基质中。此外,通过凸起试验研究了Rgo负载对复合膜力学性能的影响。通过将RGO加入硅氧烷 - 丙烯酸酯树脂,获得杨氏模量和屈服应力的显着增强(约290%和320%)。同时,复合膜和金属基材之间的粘合能量也得到改善为约200%。此外,还研究了复合膜的抗腐蚀性作为Rgo负载的功能。该rgo对复合膜的抗腐蚀性有很大影响,其中复合膜的Rcorr(约0.8mm /岁)远低于纯硅氧烷丙烯酸酯树脂膜的耐硅膜。因此,该方法提供了一种研究聚合物复合膜的机械稳定性的新途径,提高聚合物涂层的耐腐蚀性,这对于在机械腐蚀耦合环境中非常重要。

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