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Yttrium oxide evaluation as coating to reduce the corrosion velocity in industrial equipment working under combustion environments. Case study: Ferritic 9Cr-1Mo steel

机译:氧化钇评价为涂层,以降低在燃烧环境下工作的工业设备腐蚀速度。 案例研究:铁素体9CR-1MO钢

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The well-known scientific problem about global warming and less cost energy requirement, has been boosting to the petrochemical sector to implement eco-efficiency strategies by promoting the use of critical conditions throughout the traditional chain process of oil refining. In addition, many industrial combustion processes are developed using as energy source a mixture of natural and recovery gases, which added to high temperatures generate potential corrosion atmospheres. Thus, this research aims to try to reduce the pipeline degradation that take place in combustion environments by evaluating an yttrium oxide as coating for the ferritic 9Cr-1Mo steel. This coating was deposited on the substrate by plasma laser deposition, and several growth times were implemented to evaluate its thickness effect. On the other hand, in order to obtain the real combustion atmosphere, a flue gas model composition was selected, which was useful to calculate the theoretical oxidation products by simulation. Finally, those coatings were evaluated at 650 °C and testing times from 1 hour to 100 hours inside the calculated oxidation environment. The main results indicated that even with the tested coatings, the evaluated alloy had a severe corrosion velocity, but lower than without them.
机译:全球变暖和成本要求较低的知名科学问题一直促进石化部门通过促进整个传统的炼油过程中的危重条件的使用来实现生态效率策略。此外,许多工业燃烧过程使用作为能量源是天然和回收气体的混合物,加入到高温产生潜在的腐蚀环境。因此,该研究旨在通过评估铁素体9CR-1MO钢的涂层来试图减少燃烧环境中发生的管道劣化。通过等离子体激光沉积将该涂层沉积在基材上,并实施了几次生长时间以评估其厚度效果。另一方面,为了获得真正的燃烧气氛,选择烟道气模型组合物,其通过模拟来计算理论氧化产物。最后,在计算出的氧化环境中,在650℃并在1小时至100小时的测试时间评价这些涂层。主要结果表明,即使用测试的涂层,评估的合金也具有严重的腐蚀速度,但低于没有它们。

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