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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Effect of plasma immersion ion implantation and deposition on high temperature oxidation of titanium alloy IMI 834-aluminizing
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Effect of plasma immersion ion implantation and deposition on high temperature oxidation of titanium alloy IMI 834-aluminizing

机译:等离子体浸没离子注入和沉积对IMI 834钛合金钛合金高温氧化的影响

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摘要

Aluminium plays a significant role in high temperature construction materials and coatings. It helps to form continuous, protective and thermodynamically stable alumina oxide scale over their surfaces upon high temperature exposure and enhances their life significantly. However, the performance of coatings depends on the surface engineering technique that is used for application of coatings. In the present paper, plasma immersion ion implantation and deposition (PIII-D) was used to deposit aluminium coating on the titanium alloy IMI 834 under varying conditions. Subsequently, the oxidation behaviour of the alloy has been studied at elevated temperatures. The weight change data showed that the specimen that is aluminium coated followed by implantation exhibits minimum weight gain and extended period of oxide spallation when compared to uncoated and other coated specimens. XRD was used to identify the phases that formed during oxidation process. Oxide morphology was observed by SEM and the composition of oxide scales was analysed by EDS. A suitable degradation mechanism for Al coatings have been proposed based on the results obtained with different techniques.
机译:铝在高温建筑材料和涂料中起着重要作用。在高温下,它有助于在其表面上形成连续的,保护性的且热力学上稳定的氧化铝水垢,并显着延长其使用寿命。但是,涂层的性能取决于用于涂层应用的表面工程技术。在本文中,使用等离子体浸没离子注入和沉积(PIII-D)在不同条件下在钛合金IMI 834上沉积铝涂层。随后,已经在高温下研究了合金的氧化行为。重量变化数据表明,与未涂层和其他涂层样品相比,铝涂层样品随后植入后表现出最小的重量增加和延长的氧化物散裂时间。 XRD用于鉴定氧化过程中形成的相。通过SEM观察氧化物形态,并通过EDS分析氧化物垢的组成。基于使用不同技术获得的结果,已经提出了一种适合的Al涂层降解机理。

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