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NaCl-induced high-temperature corrosion of β21S Ti alloy

机译:NaCl诱导的β21STi合金的高温腐蚀

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摘要

Titanium alloys are very interesting for aeronautics applications because of their low density, high mechanical resistance and good resistance to corrosion in aggressive environments. However, recent developments impose the use of these materials at higher temperatures than those initially envisaged (above 400 °C), revealing some uncertainties of their behavior. Depending on the operating conditions, the material can be exposed to variable humidity levels and, in some cases, can be in contact with silica or marine salt. This study aims to evaluate the influence of NaCl solid deposit on the behavior of b21S Ti alloy at 560 °C under realistic ambient atmospheres. The tests were carried out in laboratory air and in water vapor-enriched air, on uncoated samples and on samples with solid NaCl deposit. The reaction-product evolution (up to 600 h) was characterized by thermogravimetric analysis, SEM observations (surface and cross section), XRD and microhardness profiling on cross sections. An aggravation of the corrosion phenomena in the presence of NaCl solid deposit was observed, that was related to the presence of gaseous metal chlorides, leading to the establishment of an active corrosion process.
机译:钛合金由于其低密度,高机械抗性以及在腐蚀性环境中具有良好的耐腐蚀性而非常受航空应用的欢迎。但是,最近的发展迫使这些材料的使用温度高于最初设想的温度(400°C以上),这揭示了它们的行为有些不确定性。根据操作条件的不同,该材料可能会暴露于不同的湿度水平,在某些情况下,可能会与二氧化硅或海盐接触。这项研究旨在评估NaCl固体沉积物对560°C的b21S Ti合金在真实环境下的行为的影响。测试是在实验室空气和富含水蒸气的空气中,未涂覆的样品以及具有固态NaCl沉积物的样品上进行的。通过热重分析,SEM观察(表面和横截面),XRD和横截面的显微硬度分析来表征反应产物的演化(长达600小时)。观察到存在NaCl固体沉积物时腐蚀现象的加剧,这与气态金属氯化物的存在有关,导致建立了主动腐蚀过程。

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