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Formation of zinc-zinc phosphate composite coatings by cathodic electrochemical treatment

机译:阴极电化学处理形成磷酸锌锌复合涂层

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The formation of zinc-zinc phosphate composite coatings by cathodic electrochemical treatment and evaluation of its corrosion resistance is addressed in this paper. The cathodic phosphating process offers some unique advantages-it requires no specific addition of accelerator in the bath, it is capable of producing good quality coatings even at low temperature, it permits deposition of coatings of desired thickness, thus offering benefits in terns of energy savings, decrease in processing cost and improvement in plant life. Being a cathodic process, there is no iron dissolution and no ferric phosphate sludge formation, which renders it an eco-friendly process. Based on the amount of coating mass as a function of process variables and the potential-time measurement, a pictorial model is proposed for the deposition of zinc phosphate coating. The surface morphology of the coatings exhibits plate-like crystals. The corrosion behaviour of cathodically phosphated mild steel substrate in 3.5% sodium chloride solution exhibits the stability of these coatings, which last for a week with no red rust formation. This is due to the presence of a composite layer of zinc and zinc phosphate that acts as a mechanical barrier against further corrosion for a considerably longer time. Being a cathodic process, the possibility of hydrogenation of steel is the major limitation of this methodology. (c) 2005 Elsevier B.V All rights reserved.
机译:本文讨论了通过阴极电化学处理形成锌-磷酸锌复合涂层及其耐蚀性的方法。阴极磷化工艺具有一些独特的优势-它不需要在浴液中特定添加促进剂,即使在低温下也能够生产高质量的涂层,可以沉积所需厚度的涂层,从而在节省能源方面带来好处,降低了加工成本,并延长了植物寿命。作为阴极工艺,没有铁溶解,也没有形成磷酸铁淤渣,这使其成为环保工艺。基于涂层质量的数量与工艺变量的关系以及电位时间的测量,提出了用于沉积磷酸锌涂层的图形模型。涂层的表面形态显示出板状晶体。阴极磷酸盐化的低碳钢基材在3.5%的氯化钠溶液中的腐蚀行为表现出这些涂层的稳定性,该涂层可持续一周,没有形成红锈。这是由于存在锌和磷酸锌的复合层,该复合层在相当长的时间内充当防止进一步腐蚀的机械屏障。作为阴极工艺,钢氢化的可能性是该方法的主要限制。 (c)2005 Elsevier B.V保留所有权利。

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