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Performance of NiCrAlY Coatings Deposited by Oxyfuel Thermal Spraying in High Temperature Chlorine Environment

机译:高温氯气环境中富氧燃烧热沉积NiCralY涂层的性能

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摘要

A microcrystalline Ni-22Cr-10Al-1Y (wt.%) coating was deposited on AISI 304 stainless steel by the oxyfuel thermal spray technique. The deposited coating was subjected to heat treatment to improve the microstructure characteristics and its corresponding high-temperature properties. The isothermal high-temperature corrosion behavior at 650 and 700 °C in synthetic air and in the presence of 1% Cl2 was investigated using thermogravimetric analysis, x-ray diffraction, and scanning electron microscopy with energy-dispersive x-ray spectroscopy. The results indicated that the deposited NiCrAlY coating possessed acceptable oxidation-corrosion resistance at 650 °C owing to the formation of extensive amounts of the protective oxide of Cr2O3; NiO and a lesser amount of a Cr1.12 Ni2,88 metallic phase are also formed. At 700 °C, the coating lost its protective characteristic because of the excessive consumption of thermodynamically stable phases by oxidation-chlorination process. In this case, the steel base and the coating were attacked by chlorine during the exposure time; the mass gain of the NiCrAlY coating was slightly higher and provided only a limited protection up to 11 h; thereafter, breakdown of the layer of oxides occurred and this is attributed to the formation of non-protective oxides mainly β-Fe2O3 and Fe21.33O32 and the depletion of chromium.
机译:通过氧燃料热喷涂技术将微晶Ni-22Cr-10Al-1Y(wt。%)涂层沉积在AISI 304不锈钢上。对沉积的涂层进行热处理以改善其微观结构特征及其相应的高温性能。使用热重分析,X射线衍射和具有能量色散X射线光谱的扫描电子显微镜研究了合成空气在650和700°C下在1%Cl2存在下的等温高温腐蚀行为。结果表明,由于形成了大量的Cr2O3保护性氧化物,NiCrAlY涂层在650°C时具有可接受的抗氧化腐蚀性能。还形成了NiO和少量的Cr1.12 Ni2,88金属相。在700°C时,由于氧化氯化过程过多消耗了热力学稳定相,涂层失去了保护性。在这种情况下,钢基底和涂层在暴露时间内会受到氯的侵蚀。 NiCrAlY涂层的质量增益略高,在长达11 h时仅提供有限的保护;此后,发生了氧化物层的击穿,这是由于形成了非保护性氧化物,主要是β-Fe2O3和Fe21.33O32,以及铬的耗尽。

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