首页> 外文期刊>Archives of Metallurgy and Materials >THE INNOVATIVE DIRECTIONS IN DEVELOPMENT AND IMPLEMENTATIONS OF HYBRID TECHNOLOGIES IN SURFACE ENGINEERING
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THE INNOVATIVE DIRECTIONS IN DEVELOPMENT AND IMPLEMENTATIONS OF HYBRID TECHNOLOGIES IN SURFACE ENGINEERING

机译:混合动力技术在表面工程中的发展与实施的创新方向

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摘要

The dynamics of the development of modern technology depends, to a great extent, on the possibilities of producing the innovative materials with high functionality parameters, which could be used in modern, highly advanced technological processes. Surface engineering plays a very important role in this area. This is mainly due to the fact that, for many structural materials, the possibilities of classical formation of their properties (e.g., by heat treatment or the selection of the microstructure, chemical and phase composition) have been practically used up. The material and technological achievements in the surface engineering area allow the modification of the properties of the surface layer of tool and machine components. As a result, they may be better suited to work in increasingly difficult and more demanding conditions. The hybrid technologies, combining several different methods of surface treatment in one complex technological process, are the most advanced solutions compared to already known surface engineering methods. In the article, the authors present the possibilities of shaping the functional properties of the surface layer. The authors describe problems associated with the development of the hybrid technology and provide the examples of physical modelling, design, technological development, and the practical application of a hybrid technology. In this work, the authors also identify the areas whose development is needed for more effective transfer of surface engineering innovations to business applications.
机译:现代技术发展的动力在很大程度上取决于生产具有高功能参数的创新材料的可能性,这些可能性可用于现代,高度先进的工艺流程中。表面工程在这一领域起着非常重要的作用。这主要是由于以下事实:对于许多结构材料来说,经典地形成其性能的可能性(例如,通过热处理或通过选择微观结构,化学和相组成)已被实际耗尽。表面工程领域的材料和技术成就使工具和机器部件表面层的性能得以改变。结果,它们可能更适合在越来越困难和更苛刻的条件下工作。与已知的表面工程方法相比,混合技术在一个复杂的工艺过程中结合了几种不同的表面处理方法,是最先进的解决方案。在文章中,作者提出了对表面层的功能特性进行整形的可能性。作者描述了与混合技术发展相关的问题,并提供了物理建模,设计,技术开发以及混合技术的实际应用的示例。在这项工作中,作者还确定了需要进行哪些领域的开发,以便将表面工程创新更有效地转移到业务应用程序中。

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