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Self-Healing Epoxy Coating Modified by Double-Walled Microcapsules Based Polyurea for Metallic Protection

机译:基于双壁微胶囊的聚脲改性自愈环氧涂层,用于金属保护

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The effectiveness of preploymer and 1,6-Hexamethylene diamine encapsulated by double-walled microcapsules based polyurea (PUA) was explored for healing the cracks generated in epoxy coatings. Double-walled microcapsules were systhesized by interfacial polymerization at the interface between the prepolymer droplets and the 1,6-Hexamethylene diamine droplets to form the polyurea shell. The effect of synthetic stirring speed on the morphology of the microcapsules was observed by scanning electronmicroscopy (SEM) and optical microscopy (OM). The chemical structure as well as the thermal properties and the core content were characterized by Fourier transform infrared spectroscopy (FTIR) and Thermogravimetric analyzer (TGA) respectively. Electrochemical impedance spectroscopy (EIS) studies of the artificial scratched area showed that the coating containing 2wt% and 5wt% microcapsules could effectively prevent further corrosion of the coating with high corrosion resistance efficiencies of 61.61% and 45.99% after immersing for 144h in seawater.
机译:preploymer和1,6-六亚甲基二胺由双壁微囊基于聚脲(PUA)包封的有效性进行了探讨愈合在环氧涂料中产生的裂纹。通过在预聚物液滴和1,6-六亚甲基二胺液滴之间的界面中通过界面聚合进行双壁微胶囊,以形成聚脲壳。通过扫描电子镜(SEM)和光学显微镜(OM)观察合成搅拌速度对微胶囊的形态的影响。通过傅里叶变换红外光谱(FTIR)和热重分析仪(TGA)的特征在于化学结构以及热性能和核心含量。人工划痕区域的电化学阻抗光谱(EIS)研究表明,含有2wt%和5wt%的微胶囊的涂层可以有效地防止涂层在海水中浸入144小时后具有61.61%和45.99%的高腐蚀性效率的进一步腐蚀。

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