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Preparation Of Epoxy Modified Organosilicone High-Temperature Resistance Coatings

机译:环氧改性有机硅氧烷高温涂层的制备

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An ambient-cured organosilicone resin modified with epoxy resin was synthesized with lab-synthesized polysiloxane resin and biphenix-A epoxy resin(E-20) by copolymerization at 180~190 °C for 2~3 hours. The effect of ratios between polysiloxane resin and E-20, reaction temperatures and reaction time on heat resistance and miscibility etc were discussed in detail. The experiment results showed that the epoxy modified organosilicone resin exhibited the best solubility performance and adhesion strength when the ratio of the polysiloxane resin to E-20 was 3:7. The Fourier transform infrared spectra (FTIR) revealed that hydroxy on epoxy resin had reacted with ethyoxyl on organic silicon molecular chain, but no ring-opening reaction happened on epoxy group of E-20. The excellent high-temperature resistance painting, based on these epoxy modified organosilicone resin was prepared with flake aluminum powder as temperature resistance filler, polyamide 650 as curer and WD-50 coupling agent as curing-promoter. It was shown that the temperature resistance was superior to 600°C and the adhesion strength of the coating was up to 1 grade. Scanning electron microscope(SEM) revealed the reaction happened on -Si-O-Si- and Al under high temperature improved the coatings to resist higher temperature. The mechanism of the high-temperature anticorrosion is attributed to "ring-opening reaction" and "cross-link solidification reaction".
机译:用环氧树脂改性的环境固化的有机硅树脂用实验室合成的聚硅氧烷树脂和Biphenix-A环氧树脂(E-20)合成,通过在180〜190℃下进行2〜3小时。详细讨论了聚硅氧烷树脂和E-20,反应温度和反应时间和耐热性和混溶性的反应时间之间的效果。实验结果表明,当聚硅氧烷树脂与E-20的比例为3:7时,环氧改性有机硅树脂表现出最佳的溶解性性能和粘合强度。傅里叶变换红外光谱(FTIR)显示环氧树脂上的羟基与有机硅分子链上的乙基氧基反应,但在E-20的环氧基上没有发生开环反应。基于这些环氧改性有机硅树脂的优异的高温涂布用剥落铝粉作为耐温填料,聚酰胺650作为固化促进剂作为恒温填料,作为旋风剂和WD-50偶联剂。结果表明,耐温性优于600℃,涂层的粘合强度高达1级。扫描电子显微镜(SEM)显示在高温下的-Si-O-Si-an和Al上发生反应改善涂层以抵抗更高的温度。高温防腐的机理归因于“开环反应”和“交联凝固反应”。

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