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Optimization studies and characterization of advanced geopolymer coatings for the fabrication of mild steel substrate by spin coating technique

机译:旋涂技术优化研究与先进地缘聚合物涂层用旋涂技术制备温和钢基板的特征

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Advance inorganic fly ash – metakaolin- phosphatic geopolymer has been developed via greener approach and deposited on mild steel substrate using spin-coating method, to improve the substrate-matrix interaction. The present research investigates the effect of incorporation of metakaolin and phosphate to geopolymer matrix to assess the performance of coating and optimization of spin coating parameters are performed as well to achieve maximum adhesion strength. XRD, FTIR, and SEM studies coupled with energy dispersive spectroscopy (EDX) have been carried out for determination of mineralogical phases, bonding interactions, substrate–matrix interface, and microstructural and chemical analysis.Results indicated that spin coating method produced well-ordered thin geopolymeric coating (thickness 13-20 micrometres), therefore spin coating deposition is the simplest way to obtain thin coatings of visibly thick materials. Maximum adhesion strength of material with substrate is 2.5M.Pa. which is obtained at optimized water to precursor ratio 0.5 at 500rpm spinning speed. It is concluded that new inorganic phases (originated from mutual contribution of phosphate, metakaolin and fly ash) like sodium iron aluminium phosphate, aluminium phosphate and sodium iron phosphate were responsible for good adhesion of material to the substrate and then related properties. The developed and optimized method can be used to produce homogeneous coating of heterogeneous geopolymer material on low carbon steel to indorse its advanced applications.
机译:提前无机粉煤灰 - 磷素磷酸磷酸盐地质,通过更环保的方法开发并沉积在温和的钢基板上使用自旋涂覆方法,提高基质 - 基质相互作用。本研究研究了甲状腺素素和磷酸盐掺入地缘聚合物基质的影响,以评估涂层的性能,并进行旋涂参数的优化,以实现最大粘合强度。已经进行了与能量分散光谱(EDX)结合的XRD,FTIR和SEM研究,用于测定矿物学相,键合相互作用,底物 - 基质界面和微观结构和化学分析。结果表明,旋涂法生产良好有序薄地质涂层(厚度13-20微米),因此旋涂沉积是获得可视厚材料的薄涂层的最简单方法。基板的材料的最大粘合强度为2.5m .Pa。在优化的水中以500rpm纺丝速度在优化的水中获得0.5的前体比。结论是,新的无机阶段(源自磷酸盐,偏沸素和飞灰的互惠贡献),如磷酸钠,磷酸铝和磷酸钠钠磷酸铝,磷酸铝酸钠良好地粘附到基材上,然后是相关的性质。开发和优化的方法可用于在低碳钢上产生异质地缘聚合物材料的均匀涂层,以开拓其先进的应用。

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