THE CORROSION STABILITY INCREASE OF ADHERING COATING UNDER THE PROCESS OF ELECTROCHEMICAL MECHANISM

S. Turabdzhanov, M. S. Lee, U. Ziyamukhamedova, G. Miradullaeva
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Abstract

The article discusses the development of organomineral materials for the protection of metal parts of technological machines and structures operating mainly under the influence of an electrochemical environment. A technology has been developed for producing modified organomineral materials for anticorrosive coatings using micro- and nanosized particles of layered silicates (mineral fillers). The mechanism of the formation of nanocomposites using layered silicates and organic materials for anti-corrosion coatings formed by the activation-heliotechnological method is investigated. Using thermomechanical, physical and physico-chemical methods for studying the structure and properties of the materials obtained. Among these methods are: IR spectral analysis, scanning electron microscopy, thermogravimetry, as well as methods for determining the electrophysical and mechanical properties. And the improvement of the properties of organomineral protective coatings due to the formation of nanocomplex compounds in the interfacial layers of the binder-filler is proved
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在电化学机理作用下,涂层的腐蚀稳定性提高
本文讨论了用于保护主要在电化学环境影响下工作的工艺机械和结构的金属部件的有机材料的发展。研究了一种利用微纳米级层状硅酸盐(矿物填料)制备防腐涂料用改性有机材料的技术。研究了活化日光法制备的层状硅酸盐与有机材料的纳米复合材料防腐涂层的形成机理。采用热机械、物理和物理化学方法研究所得材料的结构和性能。这些方法包括:红外光谱分析,扫描电子显微镜,热重法,以及测定电物理和机械性能的方法。证明了在粘结剂-填料的界面层中形成纳米复合化合物对有机保护涂层性能的改善作用
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