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Effect of surface depletion of lithium on corrosion behaviour of aluminium alloy 8090 in a marine atmosphere

机译:锂的表面耗竭对海洋大气中8090铝合金腐蚀行为的影响

摘要

Aluminium-lithium alloy 8090 is of great interest due to its low density and good mechanical properties. The high reactivity of lithium, however, makes it more prone to corrosion than other aluminium alloys, limiting its use in certain fields. In general, there is an intergranular attack with exfoliation in the most severely attacked sections of this alloy in marine and industrial environments. This attack also depends on the metallurgical history of the material, i.e. the part of the ingot from which the specimens are extracted. After one and two years' exposure to a moderately aggressive marine atmosphere, it was found that the materials taken from the centre of the ingot have a more widespread attack than specimens taken from the edges. This might be explained by the differing composition of the specimens according to their origin; more precisely, by the uneven distribution of the lithium, which tends to spread though the matrix of the ingot and form a lithium-impoverished layer several microns deep as a consequence of the series of thermal treatments applied. © 1996 Chapman & Hall.
机译:铝-锂合金8090由于其低密度和良好的机械性能而备受关注。但是,锂的高反应活性使其比其他铝合金更易于腐蚀,从而限制了其在某些领域的使用。通常,在海洋和工业环境中,这种合金最易遭受腐蚀的区域存在晶间腐蚀和剥落。这种侵蚀还取决于材料的冶金历史,即从中提取试样的铸锭部分。在暴露于中等侵蚀性海洋大气中一两年后,发现从锭块中心取走的材料比从边缘取走的标本具有更广泛的侵蚀。这可能是由于样品的来源不同而造成的。更确切地说,由于进行了一系列热处理,锂的不均匀分布易于分布在铸锭的基体上,并形成几微米深的锂贫化层。版权所有©1996 Chapman&Hall。

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    Conde A.; Damborenea Juan de;

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  • 年度 2013
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