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含NiCrAlY抗氧化层K465合金的耐酸性盐雾性能提升
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作者 李博海 宣乐 +2 位作者 毛高翔 姜丹 段士昌 《热加工工艺》 北大核心 2023年第11期94-98,共5页
研究了含NiCrAlY层的K465合金、含SiO_(2)/NiCrAlY复合涂层的K465合金及含Au/SiO_(2)/NiCrAlY复合涂层的K465合金在酸性盐雾环境下的腐蚀行为。采用SEM、EDS分别观察了三种状态下试样在酸性盐雾测试前后的表面及截面微观形貌和组织成分... 研究了含NiCrAlY层的K465合金、含SiO_(2)/NiCrAlY复合涂层的K465合金及含Au/SiO_(2)/NiCrAlY复合涂层的K465合金在酸性盐雾环境下的腐蚀行为。采用SEM、EDS分别观察了三种状态下试样在酸性盐雾测试前后的表面及截面微观形貌和组织成分的变化情况,分析了不同防护层状态下含NiCrAlY层的K465合金的耐酸性盐雾腐蚀性能行为。结果表明,含NiCrAlY层的K465合金发生轻微腐蚀,主要是由于涂层内包括很多腐蚀电位较低的活性金属元素(如Al、Cr等);含SiO_(2)/NiCrAlY复合涂层的K465合金基本无腐蚀,主要是由于SiO_(2)涂层涂覆在NiCrAlY层表面可大幅度减少腐蚀介质与NiCrAlY层的接触面积,减少腐蚀通道;含Au/SiO_(2)/NiCrAlY复合涂层的K465合金腐蚀最为严重,这是由于Au层与NiCrAlY层在腐蚀介质的连通下形成了原电池结构,从而加剧了NiCrAlY层腐蚀。 展开更多
关键词 抗氧化层 酸性盐雾腐蚀 腐蚀通道 原电池
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Corrosion pathways in aluminium alloys 被引量:4
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作者 U.DONATUS G.E.THOMPSON +3 位作者 J.A.OMOTOYINBO K.K.ALANEME S.ARIBO O.G.AGBABIAKA 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2017年第1期55-62,共8页
The corrosion pathways in AA2024-T3, AA5083-O and AA6082-T6 alloys have been investigated. The objective of the investigation is to further the understanding of the complex localised corrosion mechanism in aluminium a... The corrosion pathways in AA2024-T3, AA5083-O and AA6082-T6 alloys have been investigated. The objective of the investigation is to further the understanding of the complex localised corrosion mechanism in aluminium alloys. The investigation was carried out by examining the corroded surfaces of the alloys after potentiodynamic polarization tests in a 3.5% NaCl solution with the aid of a scanning electron microscope, and by analysing the flow of anolyte solution using the scanning vibrating electrode technique. The results revealed that the overall corrosion pathways in the alloys are distinctively different and are influenced by the flow of anolyte solution. Also revealed, was the fact that corrosion propagates in two ways (particularly in the AA5083-O and AA6082-T6 alloys): an overall pathway in the corrosion front (filiform-like pathway in the AA5083 alloy and organized linear pathways in AA6082 alloy); and the crystallographic channelling along the (100) directions. These are dependent on the grain distinct features of the AA5083-O and AA6082-T6 alloys and are not influenced by the presence of coarse second phase particles in these alloys, compared with the AA2024-T3 alloy, where the corrosion pathways are more dependent on the presence of second phase particles and grain boundary character. 展开更多
关键词 orrosion front pathway crystallographic channelling anolyte flow aluminium alloy
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