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The influence of molybdenum on the electrodeposition and properties of ternary Zn-Fe-Mo alloy coatings

机译:钼对三元Zn-Fe-Mo合金涂层电沉积和性能的影响

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Ternary Zn-Fe-Mo alloy coatings, as a potential replacement for zinc coatings, were deposited from a citrate-sulphate solution. It has been shown that by varying the concentration of Na2MoO4 in the plating bath in a range of 0.0025 - 0.05 mol dm (3) it is possible to obtain coatings containing from 0.4 to 2.7% at. Mo and from 2.8 to 7.6% at. Fe. It has been proved that molybdenum and iron do not form intermetallic phases with zinc. However, at higher Mo and Fe content the presence of oxidized molybdenum compounds in the coatings is possible. Among them the most probably are: FeMoO or Mo5O7(OH)(8). EIS measurements revealed that the ternary Zn-Fe-Mo alloy (7.6% at. Fe, 2.4% at. Mo) coating offer better corrosion resistance during 24 hours of exposure in NaCl solution than the Zn-Fe (1.7% at.) binary coating and pure Zn coating. The good protective properties of Zn-Fe-Mo coatings are due to the presence of a relatively thin (approx. 7 nm) passive layer enriched in molybdenum oxides and hydroxide compounds. (C) 2016 Elsevier Ltd. All rights reserved.
机译:从柠檬酸盐-硫酸盐溶液中沉积三元Zn-Fe-Mo合金涂层,作为锌涂层的潜在替代品。已经表明,通过改变镀浴中Na 2 MoO 4的浓度在0.0025-0.05mol dm 2(3)的范围内,可以获得含0.4至2.7%at的涂层。钼从2.8降至7.6%at。铁已经证明,钼和铁不会与锌形成金属间相。但是,在较高的Mo和Fe含量下,涂层中可能存在氧化钼化合物。其中最有可能的是:FeMoO或Mo5O7(OH)(8)。 EIS测量表明,三元Zn-Fe-Mo合金(铁为7.6%,Mo为2.4%)涂层在NaCl溶液中暴露24小时期间具有比Zn-Fe(1.7%)的更好的耐腐蚀性。镀层和纯锌镀层。 Zn-Fe-Mo涂层的良好保护性能是由于存在一个相对较薄的(约7 nm)钝化层,该钝化层富含氧化钼和氢氧化物。 (C)2016 Elsevier Ltd.保留所有权利。

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