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Investigation of Physical and Mechanical Properties of Coatings Based on Ti-Al Intermetallic Compounds Synthesized in a Nitrogen Environment

机译:基于氮气环境合成的Ti-Al金属间化合物的涂层物理和力学性能研究

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摘要

The most effective method of increasing the operational properties of the cutting tool is the deposition of wear-resistant coatings, including vacuum-arc discharge plasma. The composite coatings based on nitrides and carbides obtained by these methods is demonstrate improved mechanical strength, high hardness and wear resistance in comparison with conventional monophasic coatings. Recently, much attention has been paid to the development and investigation of composite coatings based on the Ti / Al system. During the experiments, on samples was deposited coating based on intermetallic compounds of Ti-Al system synthesized in a nitrogen environment. Microhardness, wear resistance, coefficient of friction, adhesion strength, scratch resistance of coatings was investigated. According to the results of the research, it is established that the basic physical and mechanical properties of coating synthesized in a nitrogen environment were increased than compared to the coatings synthesized in the inert gas argon and titanium nitride.
机译:增加切削工具的操作特性的最有效方法是耐磨涂层的沉积,包括真空电弧放电等离子体。基于氮化物和通过这些方法获得的碳化物的复合涂层表现出改善的机械强度,与常规单涂层相比,改善的机械强度,高硬度和耐磨性。最近,基于Ti / Al系统的复合涂层的开发和调查,众多关注。在实验期间,基于在氮环境中合成的Ti-Al系统的金属间化合物沉积在样品上。研究了微硬度,耐磨性,摩擦系数,粘合强度,涂料的耐刮擦性。根据该研究的结果,建立在氮环境中合成的涂层的基本物理和力学性质比与在惰性气体氩和氮化钛合成的涂层相比增加。

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