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Technical Characteristics and Wear-Resistant Mechanism of Nano Coatings: A Review

机译:纳米涂层技术特性及耐磨机制:综述

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Nano-coating has been a hot issue in recent years. It has good volume effect and surface effect, and can effectively improve the mechanical properties, corrosion resistance and wear resistance of the coatings. It is important to improve the wear resistance of the material surface. The successful preparation of nano-coatings directly affects the application of nano-coatings. Firstly, the preparation methods of conventional surface coatings such as chemical vapor deposition and physical vapor deposition, as well as the newly developed surface coating preparation methods such as sol-gel method, laser cladding and thermal spraying are reviewed in detail. The preparation principle, advantages and disadvantages and the application of each preparation method in nano-coating are analyzed and summarized. Secondly, the types of nano-coating materials are summarized and analyzed by inorganic/inorganic nanomaterial coatings and organic/inorganic nanomaterial coatings, and their research progress is summarized. Finally, the wear-resistant mechanism of nano-coatings is revealed from three aspects: grain refinement, phase transformation toughening mechanism and nano-effects. The application prospects of nano-coatings and the development potential combined with 3D technology are prospected.
机译:近年来纳米涂层是一个很热的问题。它具有良好的体积效果和表面效果,可以有效地提高涂层的机械性能,耐腐蚀性和耐磨性。重要的是改善材料表面的耐磨性。纳米涂层的成功制备直接影响纳米涂层的应用。首先,详细回顾了诸如化学气相沉积和物理气相沉积的常规表面涂层的制备方法,以及新发生的表面涂层制备方法,如溶胶 - 凝胶法,激光包层和热喷涂。分析并综述了制备原理,优点,缺点和每种制备方法的应用。其次,通过无机/无机纳米材料涂层和有机/无机纳米材料涂料总结和分析了纳米涂料的类型,总结了它们的研究进展。最后,纳米涂层的耐磨机理从三个方面揭示:晶粒细化,相变增韧机理和纳米效应。展望纳米涂层的应用前景和3D技术结合的发展潜力。

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