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Corrosion resistant coatings (Al2O3) produced by metal organic chemical vapour deposition using aluminium-tri-sec-butoxide

机译:通过使用三仲丁醇铝的金属有机化学气相沉积产生的耐腐蚀涂层(al 2 O 3)

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摘要

The metal organic chemical vapour deposition (MOCVD) of amorphous alumina films on steel was performed in nitrogen at atmospheric pressure. This MOCVD process is based on the thermal decomposition of aluminium-tri-sec-butoxide (ATSB). The effect of the deposition temperature (within the range 290–420 °C), the precursor vapour pressure (5.33×10-3−2.67×10-2 kPa), and the gas flow (6.5−12.5 1 min-1) of the MOCVD process have been studied in relation to corrosion properties at high temperatures. The corrosion experiments were performed at 450 °C in a gas atmosphere containing 1% H2S, 1% H2O, 19% H2, and balanced Ar.ududIt was found that the amount of corrosion products on an alumina film (0.20±0.05 mg cm-2)-AISI 304 combination decreased with increasing deposition temperature of the coating. This was more pronounced for the products formed through the coating owing to a certain porosity. The crack density, where products were also formed, was almost unaffected.ud
机译:在大气压下在氮气中在钢上进行非晶氧化铝膜的金属有机化学气相沉积(MOCVD)。此MOCVD工艺基于三仲丁醇铝(ATSB)的热分解。沉积温度(在290–420°C范围内),前体蒸气压(5.33×10-3-2.67×10-2 kPa)和气体流量(6.5-12.5 1 min-1)的影响已经研究了与高温腐蚀性能有关的MOCVD工艺。在含1%H2S,1%H2O,19%H2和平衡Ar。的气体气氛中于450°C进行腐蚀实验。发现氧化铝膜上腐蚀产物的量为(0.20±0.05 (mg cm-2)-AISI 304组合随着涂层沉积温度的升高而降低。由于一定的孔隙率,这对于通过涂层形成的产品更为明显。也形成了产品的裂纹密度几乎不受影响。 ud

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