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首页> 外文期刊>Surface & Coatings Technology >Solid particle erosion and corrosion resistance performance of nanolayered multilayered Ti/TiN and TiAl/TiAlN coatings deposited on Ti6Al4V substrates
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Solid particle erosion and corrosion resistance performance of nanolayered multilayered Ti/TiN and TiAl/TiAlN coatings deposited on Ti6Al4V substrates

机译:纳米型多层Ti / TiN和Tial / TiAln涂层沉积在Ti6Al4V底板上的固体颗粒腐蚀和耐腐蚀性性能

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摘要

Solid particle erosion by air born dust particles and corrosion by humid air and sea salt cause severe damage to the gas turbine blades and wind turbines. Combination of erosion and corrosion accelerates the damage process compared to the individual effects. The damage leads to the economic loss, pollution and low safety. In order to protect these components, ultra-thin multilayered erosion and corrosion resistant Ti/TiN and TiAl/TiAlN coatings with stress absorbing layers were developed on Ti6Al4V substrates using un-balanced magnetron sputtering process. Erosion resistance of Ti/TiN and TiAl/TiAlN coatings was tested according to the ASTM-G76-13 standards at four different impinging angles: 90 degrees, 60 degrees, 45 degrees and 30 degrees. Erosion tests were conducted at 400 degrees C with increasing erodent velocity (30 to 90 m/s) using alumina and silica erodent particles. Average erosion resistance of Ti/TiN and TiAl/TiAlN coatings was significantly higher than Ti6Al4V substrate. Corrosion resistance of the coatings was found to be almost one order better than Ti6Al4V substrate in 3.5% NaCl solution. Morphology and spectroscopic analysis of the erosion scars were studied using field emission scanning electron microscopy and micro-Raman spectroscopy, respectively. Chemical stability of TiAl/TiAlN was found to be better than Ti/TiN in 3.5% NaCl solution.
机译:通过空气出生的粉尘颗粒和潮湿空气和海盐腐蚀的固体颗粒侵蚀对燃气轮机和风力涡轮机造成严重损坏。与个体效果相比,侵蚀和腐蚀的组合加速了损伤过程。损害导致经济损失,污染和低安全性。为了保护这些组件,在Ti6Al4V基板上使用未平衡的磁控溅射工艺在Ti6Al4V基板上显着超薄多层腐蚀和耐腐蚀Ti /锡和TiAl / Tialn涂层。根据ASTM-G76-13标准在四种不同的撞击角度测试Ti / TiN和TiAl / TiAln涂层的侵蚀抗性:90度,60度,45度和30度。使用氧化铝和二氧化硅腐蚀颗粒,在400摄氏度下,在400℃下进行侵蚀试验。 Ti / TiN和TiAl / TiAln涂层的平均侵蚀性显着高于Ti6Al4V底物。发现涂层的耐腐蚀性在3.5%NaCl溶液中几乎比Ti6Al4V底物更好。使用现场发射扫描电子显微镜和微拉曼光谱研究了侵蚀瘢痕的形态和光谱分析。发现TiAl / TiAln的化学稳定性在3.5%NaCl溶液中优于Ti / TiN。

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