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Zn-Ni and Zn-Fe alloy deposits modified by P incorporation: anticorrosion properties

机译:P结合改性的Zn-Ni和Zn-Fe合金镀层:耐腐蚀性能

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Zn-Ni-P and Zn-Fe-P alloys were electrodeposited on carbon steel plates and their morphology, composition and structure were evaluated as a function of electrolyte composition and pH. A mutual inhibitory effect between Zn and P co-deposition was observed. Amorphous alloys were only obtained with high Ni or Fe contents. Conversely, crystalline alloys presented high Zn contents. From this preliminary analysis electrode position conditions were selected to produce P-containing alloy coatings. Their corrosion properties were evaluated by means of a cyclic corrosion test in comparison with the corresponding P-free alloy coatings with and without an epoxy painting system. Crystalline Zn-Ni-P presented a remarkable performance, due to morphology changes in the alloy as a result of the effects of P compounds in the electrolyte. This alloy efficiently avoided corrosion propagation around an intentional defect in the painting layer. The corrosion behavior of amorphous Zn-Fe-P was similar to Zn-Fe. On the other hand, crystalline Zn-Fe-P presented the fastest corrosion rate. Corrosion propagation around the painting defect was better held by amorphous Zn-Fe-P due to an improved adhesion between painting and alloy layers. The presence of P in Zn alloys may effectively improve their anticorrosive properties. However, this phenomenon seems to be beyond the simple amorphism of the deposit.
机译:将Zn-Ni-P和Zn-Fe-P合金电沉积在碳钢板上,并评估它们的形貌,组成和结构作为电解质成分和pH的函数。观察到锌和磷共沉积之间的相互抑制作用。仅获得高Ni或Fe含量的非晶态合金。相反,结晶合金的锌含量较高。从该初步分析中,选择电极位置条件以生产含P合金涂层。通过循环腐蚀试验,将其腐蚀性能与相应的无磷合金涂层(有或没有环氧涂料系统)进行比较,进行了评估。 Zn-Ni-P晶体表现出非凡的性能,这是由于电解质中P化合物的作用导致合金的形态变化所致。这种合金有效地避免了腐蚀在涂漆层中有意缺陷周围的蔓延。非晶态Zn-Fe-P的腐蚀行为类似于Zn-Fe。另一方面,晶体Zn-Fe-P表现出最快的腐蚀速率。无定形的Zn-Fe-P可以更好地保持涂料缺陷周围的腐蚀蔓延,这是因为涂料和合金层之间的粘附性得到了改善。锌合金中P的存在可有效改善其防腐性能。但是,这种现象似乎超出了沉积物的简单无定形性。

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