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Structure and properties of multicomponent and composite layers produced by combined surface engineering methods

机译:组合表面工程方法生产的多组分和复合层的结构和性能

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The rapid technical development enhances the demands on constructional materials in terms of their mechanical properties, resistance to frictional wear, resistance to corrosion and erosion. etc. These demands can be satisfied by e.g. applying various surface engineering techniques that permit to modify the microstructure, phase and chemical compositions of the surface layers of the treated parts. A significant progress has been made in this area in the technological innovation and production of new coating materials, as well as the development of the design systems. Many efforts have been made during the past decades, mainly in the controlling, optimizing and modeling of the processes and also in developing new methods. A prospective line of the development of surface engineering is the production of multicomponent and composite layers by introducing new gaseous atmospheres, such as vapours of metallorganic compounds, and by combining (in a way justified from the economical point of view) various surface engineering methods. The multicomponent and composite layers improve essentially the performance properties and service life of the treated parts and widen significantly the application range of materials. This review summarizes the current knowledge as to the recent development of surface engineering with special attention paid to the possibilities offered by modern glow discharge assisted treatments. (C) 2003 Elsevier B.V. All rights reserved.
机译:快速的技术发展对建筑材料的机械性能,抗摩擦磨损,抗腐蚀和侵蚀提出了更高的要求。这些要求可以通过例如应用各种表面工程技术,这些技术可以改变被处理零件表面层的微观结构,相和化学成分。在这一领域,在技术创新和新型涂料的生产以及设计系统的开发方面已经取得了重大进展。在过去的几十年中,已经进行了许多努力,主要是在过程的控制,优化和建模以及开发新方法方面。表面工程发展的一个前瞻性思路是通过引入新的气态气氛(例如金属有机化合物的蒸气)并通过组合(从经济角度考虑是合理的)各种表面工程方法来生产多组分和复合层。多组分和复合层从根本上改善了被处理零件的性能和使用寿命,并大大拓宽了材料的应用范围。这篇综述总结了关于表面工程的最新发展的当前知识,并特别关注了现代辉光放电辅助处理所提供的可能性。 (C)2003 Elsevier B.V.保留所有权利。

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