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首页> 外文期刊>Protection of Metals and Physical Chemistry of Surfaces >Corrosion Performance of Valve Seat Hardfacing Materials in Amine Environment of Boiler Feed Water Service
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Corrosion Performance of Valve Seat Hardfacing Materials in Amine Environment of Boiler Feed Water Service

机译:锅炉饲料水服务阀座阀座硬裂材料的腐蚀性能

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As the valve seat hardfacing materials in boiler feed water service of coal power plants, the corrosion behavior of Stellite 6 alloy and 17-4PH stainless steel in amine solutions is studied using electrochemical test methods. Morpholine, cyclohexylamine, and sodium hydroxide (NaOH) solution with pH 9.5 are selected to be the corrosive media. The first solution is a typical amine medium, the second one is selected to examine if different amine media with the same pH can result in any change in the corrosion behavior of these materials. Sodium hydroxide is chosen to offset the effect of pH change. Polarization test is performed on Stellite 6 alloy and 17-4PH stainless steel under the low potential varying from -0.4 V-SCE to 1.2 V-SCE and is also conducted under a constant high potential (4 V-SCE) in order to fail the sample surfaces. The polarization curves 17-4PH stainless steel from the low potential tests show an apparent passivation region indicating a protective oxide film formed on the sample surface, but Stellite 6 alloy only exhibits a tendency to passivate. The Stellite 6 alloy and 17-4PH stainless steel samples after the failure tests under the high potential (4 V-SC) are analyzed using SEM/EDX. It is shown that the former is severely corroded in all the solutions while the latter is only corroded in morpholine solution and it is very corrosion-resistant in sodium hydroxide solution. The corrosion mechanisms of Stellite 6 alloy and 17-4PH stainless steel in amine solutions are discussed with assistance of the Pourbaix diagrams.
机译:由于煤发电厂锅炉饲料水处理阀座硬坯材料,使用电化学试验方法研究了恒星6合金和17-4PH不锈钢17-4Ph不锈钢的腐蚀行为。用pH9.5选择吗啉,环己酰胺和氢氧化钠(NaOH)溶液是腐蚀性介质。第一溶液是典型的胺培养基,选择第二个溶液以检查是否具有相同pH的不同胺介质可以导致这些材料的腐蚀行为的任何变化。选择氢氧化钠以抵消pH变化的影响。在-0.4 V-SCE的低电位下,在-0.4 V-SCE到1.2 V-SCE的低电位下进行偏振试验,并在恒定的高电位(4 V-SCE)下进行,以便失败样品表面。来自低电位试验的偏振曲线17-4PH不锈钢显示出表观钝化区域,其表示在样品表面上形成的保护性氧化膜,但是恒星6合金仅表现出钝化的倾向。使用SEM / EDX分析高电位(4V-SC)下的故障测试后的脱衣石6合金和17-4PH不锈钢样品。结果表明,前者在所有溶液中严重腐蚀,而后者仅在吗啉溶液中腐蚀,并且在氢氧化钠溶液中耐腐蚀。胺溶液中钝化6合金和17-4Ph不锈钢的腐蚀机制在PORBAIX图的帮助下讨论。

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