首页> 外文期刊>Journal of Thermal Spray Technology >Advances in Corrosion-Resistant Thermal Spray Coatings for Renewable Energy Power Plants. Part I: Effect of Composition and Microstructure
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Advances in Corrosion-Resistant Thermal Spray Coatings for Renewable Energy Power Plants. Part I: Effect of Composition and Microstructure

机译:可再生能源发电厂耐腐蚀热喷涂涂层的进展。 第一部分:组成和微观结构的影响

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摘要

Power generation from renewable resources has attracted increasing attention in recent years owing to the global implementation of clean energy policies. However, such power plants suffer from severe high-temperature corrosion of critical components such as water walls and superheater tubes. The corrosion is mainly triggered by aggressive gases like HCl, H2O, etc., often in combination with alkali and metal chlorides that are produced during fuel combustion. Employment of a dense defect-free adherent coating through thermal spray techniques is a promising approach to improving the performances of components as well as their lifetimes and, thus, significantly increasing the thermal/electrical efficiency of power plants. Notwithstanding the already widespread deployment of thermal spray coatings, a few intrinsic limitations, including the presence of pores and relatively weak intersplat bonding that lead to increased corrosion susceptibility, have restricted the benefits that can be derived from these coatings. Nonetheless, the field of thermal spraying has been continuously evolving, and concomitant advances have led to progressive improvements in coating quality; hence, a periodic critical assessment of our understanding of the efficacy of coatings in mitigating corrosion damage can be highly educative. The present paper seeks to comprehensively document the current state of the art, elaborating on the recent progress in thermal spray coatings for high-temperature corrosion applications, including the alloying effects, and the role of microstructural characteristics for understanding the behavior of corrosion-resistant coatings. In particular, this review comprises a substantive discussion on high-temperature corrosion mechanisms, novel coating compositions, and a succinct comparison of the corrosion-resistant coatings produced by diverse thermal spray techniques.
机译:由于全球清洁能源政策的实施,可再生资源的发电引起了近年来的越来越关注。然而,这种发电厂的临界部件遭受严重的高温腐蚀,例如水壁和过热器管。腐蚀主要由HCl,H 2 O等的侵蚀气体引发,通常与燃料燃烧期间产生的碱和金属氯化物组合。通过热喷涂技术就采用密集的无缺陷粘附涂层是一种有望的方法,可以提高部件的性能以及其寿命,从而显着提高发电厂的热/电效率。尽管存在热喷涂涂层的广泛部署,但包括孔隙和相对较弱的脱模粘合的少量内在限制,导致腐蚀性敏感性增加,限制了可以从这些涂层中衍生的益处。尽管如此,热喷涂领域一直在不断发展,伴随的进展导致涂层质量的逐步改善;因此,对我们对缓解腐蚀损伤中涂层效力的理解的定期关键评估可能是高度教育的。本文旨在全面记录现有技术,详细阐述了高温腐蚀应用的热喷涂涂层的最新进展,包括合金效应,以及微观结构特性对理解耐腐蚀涂层行为的作用。特别地,该评价包括关于高温腐蚀机制,新型涂料组合物的实质性讨论和通过多样化的热喷涂技术产生的耐腐蚀涂层的简洁比较。

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