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Effect of Passivation Treatment on Adhesion and Protective Properties of Steel Coated with Polymeric Film

机译:钝化处理对涂有聚合物膜的钢的附着力和保护性能的影响

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摘要

The surface of steel coated with Crsup3+/sup-based passivation layer and polyethylene therephtalate (PET) polymeric film was investigated by X-ray photoelectron spectroscopy (XPS) and atomic force microscopy (AFM). This coating was applied to the steel surface through a co-lamination industrial procedure. As well, the coated steel porosity was characterized by BET (Brunaer, Emmert, Teller) gas adsorption technique. Basic aspects of the polymer adhesion to the passivated steel were also studied by determining the force and energy adhesion between them. The AFM results showed that the PET coating presents roughness in the nanometer scale. XPS diagrams indicated the absence of surface contaminants and flaws on the applied coating and low contaminant levels on the Cr layer and absence of Crsup6+/sup peaks after coating removal. This material can be a environmental compliant alternative to replace tinplate and Crsup6+/sup conversion layer in the food industry, being compatible with the packed product.
机译:用X射线光电子能谱(XPS)和原子力显微镜(AFM)研究了Cr 3 + 基钝化层和聚邻苯二甲酸乙二醇酯(PET)聚合物膜涂层钢的表面。通过共层压工业程序将该涂层施加到钢表面。同样,通过BET(Brunaer,Emmert,Teller)气体吸附技术来表征涂层钢的孔隙率。还通过确定聚合物与钝化钢之间的力和能量粘附力,研究了聚合物对钝化钢粘附的基本方面。 AFM结果表明,PET涂层呈现出纳米级的粗糙度。 XPS图表明在涂覆的涂层上没有表面污染物和缺陷,在Cr层上的污染物含量较低,并且在去除涂层后没有Cr 6 + 峰。这种材料可以替代食品中的马口铁和Cr 6 + 转换层,并且符合环境要求,与包装产品兼容。

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