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Influence of calcium hydroxide and anodic solution temperature on corrosion property of anodising coatings formed on AZ31 Mg alloys

机译:氢氧化钙和阳极溶液温度对AZ31镁合金上阳极氧化膜腐蚀性能的影响

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摘要

Anodisation of AZ31 Mg alloy (3 mass percent AI, 1 mass percent Zn) was performed in 1M NaOH solution, with and without adding 35 mM of calcium hydroxide at various temperatures. The anodising process was carried out at constant potential 3 V; the change in current density during the first period of anodising revealed the mechanisms of anodic film formation. Adding 35 mM Ca(OH)_2 to the solution improved the corrosion resistance, e.g. in 17 mM NaCl and 0.1M Na_2SO_4 solution at 298 KAPPA from anodic polarisation measurements. The anodic layer thickness increases with the amount of Ca(OH)_2 added. The temperature of the solution also affects the anodising process; i.e. increasing the solution temperature improved the corrosion resistance of the anodised film.
机译:在1M NaOH溶液中对AZ31 Mg合金(3质量%AI,1质量%Zn)进行阳极氧化,在不同温度下添加和不添加35 mM氢氧化钙。阳极氧化工艺在3 V恒定电势下进行;在阳极氧化的第一阶段,电流密度的变化揭示了阳极膜形成的机理。向溶液中添加35 mM Ca(OH)_2可改善耐腐蚀性,例如在298 KAPPA条件下,通过17 mM NaCl和0.1M Na_2SO_4溶液进行阳极极化测量。阳极层的厚度随着Ca(O​​H)_2的添加量而增加。溶液的温度也会影响阳极氧化过程。即,提高溶液温度改善了阳极氧化膜的耐腐蚀性。

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