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Porosity and Micro-Hardness of Shrouded Plasma Sprayed Titanium Coatings

机译:覆盖等离子体喷涂钛涂层的孔隙率和微硬度

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Titanium and its alloys are often used as key materials for corrosion protection. A promising approach to optimize both mechanical properties and corrosion resistance is the use of coating technologies. In this paper, shrouded plasma spray was used as a useful technology to produce low oxide containing titanium coatings. A solid shroud was used to plasma spray titanium coatings to reduce the oxide content. The titanium coatings were assessed by optical microscope, scanning electron microscopy and Vickers microhardness testing. The results showed that the shrouded titanium coatings exhibited an enhanced microstructure. The presence of the shroud and shroud gas flow led to a significant reduction in coating porosity because the reduction in air entrainment with the shroud resulted in better heating of the particles. The shrouded titanium coatings had a lower value of Vickers microhardness and a relative lower standard deviation than the air plasma sprayed titanium coatings.
机译:钛及其合金通常用作腐蚀保护的关键材料。优化机械性能和耐腐蚀性的有希望的方法是使用涂层技术。本文用作制备含有钛涂层的低氧化物的有用技术的遮罩等离子体喷雾。用于等离子体喷雾钛涂层的固体护罩以减少氧化物含量。通过光学显微镜评估钛涂层,扫描电子显微镜和VICKERS微硬度测试。结果表明,覆盖的钛涂层表现出增强的微观结构。护罩和护罩气流的存在导致涂层孔隙的显着降低,因为与护罩的空气夹带减少导致颗粒的更好加热。罩钛涂层具有较低的维氏微型性和比空气等离子体喷涂钛涂层的相对较低的标准偏差。

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