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首页> 外文期刊>Surface & Coatings Technology >Formation of subsurface crevices in aluminum alloy 2024-T3 during deposition of cerium-based conversion coatings
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Formation of subsurface crevices in aluminum alloy 2024-T3 during deposition of cerium-based conversion coatings

机译:铈基转化膜沉积过程中铝合金2024-T3中地下缝隙的形成

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摘要

The processing variables that contributed to the formation of subsurface crevices under cerium-based conversion coatings on AA 2024-T3 were investigated. Focused ion beam milling revealed the presence of subsurface crevices underneath a small fraction (~10%) of coated areas, typically in areas with large cracks through the coatings. A solution of sodium chloride and H_2O_2 etched AA 2024-T3 and produced features similar to subsurface crevices, which confirmed that crevices formed during deposition due to the composition of the coating solution. Using sodium nitrate in place of sodium chloride resulted in no etching of the substrate. Thus, coatings free of subsurface crevices could be produced by using cerium nitrate instead of cerium chloride in the coating solution. Electrodeposited coatings, even those deposited from solutions containing chloride ions and H_2O_2, were also free of subsurface crevices. As a result, subsurface crevices are not inherent to cerium-based conversion coatings, but rather were formed due to certain process parameters, specifically the presence of chloride ions and hydrogen peroxide in the coating solution.
机译:研究了在AA 2024-T3上的铈基转化膜下形成地下缝隙的工艺变量。聚焦离子束铣削表明,在小部分(〜10%)涂层区域下方(通常在穿过涂层的裂纹较大的区域中)存在地下缝隙。氯化钠和H_2O_2的溶液腐蚀了AA 2024-T3,并产生了与地下裂缝相似的特征,这证实了由于涂层溶液的组成,在沉积过程中形成了裂缝。用硝酸钠代替氯化钠不会腐蚀基板。因此,可以通过在涂层溶液中使用硝酸铈而不是氯化铈来生产没有地下缝隙的涂层。即使是从含有氯离子和H_2O_2的溶液中沉积的涂层,也没有表面裂纹。结果,地下缝隙不是铈基转化涂层所固有的,而是由于某些工艺参数而形成的,特别是在涂层溶液中存在氯离子和过氧化氢。

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