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Cathodic Corrosion Protection Performance of Mg-Rich Primers: Effect of Pigment Shape and Pigment Volume Concentration

机译:富含MG的底漆的阴极腐蚀性保护性能:颜料形状和颜料体积浓度的影响

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In analogy to Zinc-rich coatings technology, Mg-rich primers (MgRPs) have been developed to protect Al alloys, particularly Al 2024-T3. Pigment shape and pigment volume concentration are two important parameters for metal rich coatings and their role in Mg-rich coatings was examined. Two magnesium pigments, spherical Mg 1-11 and irregular shape Mg 3820, were formulated in Mg-rich coatings at different PVC levels. Pigment shape and particle size and were characterized by scanning electron microscopy (SEM), and particle size distribution (Accusizer 780a), respectively. Critical pigment volume concentration (CPVC) values were predicted by the methods of Bierwagen & Johnson(l, 2) , and were experimentally verified via fluorescence microscopy and SEM. Polarization curves, open circuit potential (OCP) and scanning vibrating electrode technique (SVET) characterized cathodic protection properties of MgRPs. It has been found that most MgRPs provided cathodic protection to Al alloys except for some low PVC MgRPs. These MgRPs were topcoated and then placed in Neutral Salt Spray chamber, and it is seen that Mg 1-11 coatings had less blistering than Mg 3820 coatings.
机译:与富含锌的涂料技术类似,已经开发了富含富含纤维的引物(MGRP)以保护Al合金,特别是Al 2024-T3。颜料形状和颜料体积浓度是金属富含涂料的两个重要参数,研究其在富含Mg的涂料中的作用。两个镁颜料,球形Mg 1-11和不规则形状Mg 3820在不同PVC水平的Mg富含涂层中配制。颜料形状和粒度分别以扫描电子显微镜(SEM)和粒度分布(Accusizer 780a)为特征。通过Bierwagen&Johnson(L,2)的方法预测了临界颜料体积浓度(CPVC)值,并通过荧光显微镜和SEM进行实验验证。偏振曲线,开路电位(OCP)和扫描振动电极技术(SVET)特征在于MGRP的阴极保护性能。已经发现,除了一些低PVC MGRP外,大多数MGRPS为Al合金提供了阴极保护。将这些MGRPS是粉底包形的,然后置于中性盐雾室中,并且可以看出,Mg 1-11涂层比Mg 3820涂层更少。

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