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Phenol - Formaldehyde Resin to Improve Corrosion Resistance of Zinc Layers

机译:苯酚 - 甲醛树脂,提高锌层的耐腐蚀性

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The present work has the purpose to study and to evaluate the corrosion resistance of zinc layers and phenol - formaldehyde resin/Zn composite layers obtained by electrodeposition. For the best results it was used different parameters for electrodeposition such as: current density between 3-5 A/dm~2, time for electrodeposition: 30 minutes and 60 minutes, stirring rate: 500 rpm and 800 rpm. Different sizes (mean diameter size between 0.1 - 5.0μm and 6.0 - 10.0μm) of dispersed phases were used with concentration into electrolyte solution from10Og/L to 25 g/L of polymer dispersed particles. The morphology of the layers was investigated by SEM - EDX methods. The surface morphology of composite layers shows differences as compared with pure zinc layers. By adding polymer particles into zinc electrolyte during electroplating process a very good distribution of polymer on zinc layer surface was obtained. The electrochemical behavior of the composite layers in the corrosive environment was investigated by potentiodynamic polarization and electrochemical impedance spectroscopy methods. As electrochemical test solution a 0.5 M sodium chloride was used in a three electrode open cell.
机译:本作本作有目的是研究和评价锌层和酚醛树脂/ Zn复合层的耐腐蚀性通过电沉积。为了获得最佳结果,它被用不同的电沉积参数,例如:电流密度在3-5A / dm〜2之间,电沉积时间:30分钟和60分钟,搅拌速率:500rpm和800rpm。将分散相的不同尺寸(平均直径尺寸为0.1-5.0μm和6.0-10μm)与浓度从10 og / l至25g / l的聚合物分散颗粒中使用浓度。通过SEM-EDX方法研究了层的形态。与纯锌层相比,复合层的表面形态显示出差异。通过在电镀过程期间将聚合物颗粒添加到锌电解质中,得到锌层表面上的聚合物的非常好的分布。通过电压极化和电化学阻抗光谱法研究了复合层在腐蚀环境中的电化学行为。作为电化学测试溶液,在三个电极开孔中使用0.5米氯化钠。

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