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Investigation of Mechanical Properties of Oxide Films Formed on Carbon Steel at High Temperature Corrosive Environments

机译:高温腐蚀环境下碳钢形成氧化物膜力学性能研究

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摘要

The surface degradation of metals that occurs in high temperature corrosive environments has been severe problems of boiler materials in fuel combustion power plant systems. The damage to materials has been often accelerated by mechanical removal of oxide films formed on the material surface. It is therefore very important to investigate mechanical properties and adhesiveness of oxide films at practical high environments, in order to discuss life cycle assessment. Corrosion/oxidation tests were conducted at high temperature corrosive environments of wet air, water steam with hydrogen chloride to look into basic behavior of the corrosion/oxidation. Impact tests were per-formed on the surface of carbon steel covered with oxide films in the same environments to obtain mechanical properties and adhesiveness of the oxide films. It was found that the corrosive environments increased oxidation of carbon steel a little, and that decreased the fracture strength and other mechanical properties of the oxide films.
机译:在高温腐蚀环境中发生的金属的表面劣化是燃料燃烧发电厂系统中锅炉材料的严重问题。通过机械除去材料表面上形成的氧化膜,对材料的损害通常会加速。因此,为了讨论生命周期评估,研究氧化膜的机械性能和粘合性非常重要。在湿空气的高温腐蚀环境下进行腐蚀/氧化试验,用氯化氢的水蒸汽进行水蒸汽,看看腐蚀/氧化的基本行为。在同一环境中覆盖氧化膜的碳钢表面上每形成冲击试验,以获得氧化膜的机械性能和粘合性。发现腐蚀性环境略微增加了碳钢的氧化,并且降低了氧化膜的断裂强度和其他机械性能。

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