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首页> 外文期刊>Surface & Coatings Technology >Ferritic-martensitic steels: Improvement of the oxidation behavior in steam environments via diffusion coatings
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Ferritic-martensitic steels: Improvement of the oxidation behavior in steam environments via diffusion coatings

机译:铁素体-马氏体钢:通过扩散涂层改善蒸汽环境中的氧化性能

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摘要

New generation heat-resistant ferritic-martensitic steels are of great interest as superheater materials in fossil fuel power plants. The oxidation resistance of these chromiumsteels (9 wt.%) in water vapor containing environments above 600 °C still requires improvement. One major problem is the breakdown of the chromia layer by formation of volatile chromium species CrO_2(OH)_2 promoted by water vapor in the atmosphere. Both, the fireside as well as the steam side of the superheater tube can be affected due to high contents of water vapor in these atmospheres. With the goal to operate ferritic-martensitic steels under such conditions, enrichment of the substratewith chromiumandmanganesewas carried out using three different pack cementation processes: pure chromiumcoating, 2-step chromium and manganese process and simultaneous deposition of chromium and manganese. All three surface-treated alloys show exceptional stabilities in steam environments, as illustrated by oxidation exposures in argon/50% water vapor at 650 °C for 3000 h. The pure chromium coating on the P91 substrate revealed the best oxidation behavior in steam.
机译:新一代耐热铁素体-马氏体钢作为化石燃料发电厂中的过热器材料备受关注。这些铬钢(9 wt。%)在含水蒸气高于600°C的环境中的抗氧化性仍需要改进。一个主要问题是由于大气中水蒸气促进形成挥发性铬物种CrO_2(OH)_2而导致氧化铬层破裂。由于在这些环境中水蒸气含量高,过热管的火侧和蒸汽侧都可能受到影响。为了在这样的条件下操作铁素体-马氏体钢,使用三种不同的填充胶结工艺对基底进行了铬和锰的富集:纯铬涂层,两步铬和锰工艺以及铬和锰的同时沉积。所有三种表面处理的合金在蒸汽环境中均表现出出色的稳定性,如在650°C的氩气/ 50%水蒸气中氧化3000小时所显示的。 P91基板上的纯铬涂层在蒸汽中表现出最佳的氧化性能。

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