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Surface engineering techniques used for improving the mechanical and tribological properties of the Ti6A14V alloy

机译:用于改善Ti6A14V合金的机械和摩擦学性能的表面工程技术

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摘要

The microstructure, mechanical and tribological properties of composite intermetallic layers of the Ti-Al system were investigated. The layers on the two-phase (alpha+beta) Ti6A14V titanium alloy were obtained using the hybrid method, which consist of two stages. First, the titanium alloy was covered with aluminum layer by magnetron sputtering. In the second stage, coated specimens were treated under glow discharge conditions. The surface treatment makes it possible to obtain the diffusional composite layers which considerably improve the mechanical and wear resistance properties of the material. These properties cannot be achieved using simple methods of surface engineering. The chemical and phase composition of the composite intermetallic layers was investigated. It has been shown that the hybrid method significantly increases the hardness and wear resistance of the titanium alloy and can widen the range of application of the material. Because of the diffusional character of the intermetallic layers they possess good adhesion to the titanium substrate. (C) 2007 Elsevier B.V. All rights reserved.
机译:研究了Ti-Al体系复合金属间化合物层的组织,力学性能和摩擦学性能。使用混合方法获得两相(α+β)Ti6A14V钛合金上的层,该层由两个阶段组成。首先,通过磁控溅射将钛合金用铝层覆盖。在第二阶段,在辉光放电条件下处理涂层样品。表面处理使得可以获得复合材料扩散层,从而大大改善了材料的机械和耐磨性能。使用简单的表面工程方法无法获得这些特性。研究了复合金属间化合物层的化学和相组成。已经表明,混合法显着提高了钛合金的硬度和耐磨性,并且可以拓宽材料的应用范围。由于金属间化合物层的扩散特性,它们对钛基底具有良好的粘附性。 (C)2007 Elsevier B.V.保留所有权利。

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