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首页> 外文期刊>Corrosion Science and Technology >Surface-modified Nanoparticle Additives for Wear Resistant Water-based Coatings for Galvanized Steel Plates
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Surface-modified Nanoparticle Additives for Wear Resistant Water-based Coatings for Galvanized Steel Plates

机译:用于镀锌钢板的耐磨水性涂料的表面改性纳米颗粒添加剂

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摘要

Conventional paints for conversion coating applications in steel production derived mainly from water-based polymer dispersions containing several additives actually show good general performance, but suffer from poor scratch and abrasion resistance during use. The reason for this is because the relatively soft organic binder matrix dominates the mechanical surface properties. In order to maintain the high quality and decorative function of coated steel sheets, the mechanical performance of the surface needs to be improved significantly. In fact the wear resistance should be enhanced without affecting the optical appearance of the coatings by using appropriate nanoparticulate additives. In this direction, nanocomposite coating compositions (Nanomer) have been derived from water-based polymer dispersions with an increasing amount of surface-modified nanoparticles in aqueous dispersion in order to monitor the effect of degree of filling with rigid nanoparticles. The surface of nanoparticles has been modified for optimum compatibility with the polymer matrix in order to achieve homogeneous nanoparticle dispersion over the matrix. This approach has been extended in such a way that a more expanded hybrid network has been condensed on the nanoparticle surface by a hydrolytic condensation reaction in addition to the quasi-monolayer type small molecular surface modification. It was expected that this additional modification will lead to more intensive cross-linking in coating systems resulting in further improved scratch-resistance compared to simple addition of nanoparticles with quasi-monolayer surface modification. The resulting compositions have been coated on zinc-galvanized steel and cured. The wear' resistance and the corrosion protection of the modified coating systems have been tested in dependence on the compositional change, the type of surface modification as well as the mixing conditions with different shear forces. It has been found out that for loading levels up to 50 wt.-% nanoparticles, the mechanical wear resistance remains almost unaffected compared to the unmodified resin. In addition, the corrosion resistance remained unaffected even after 180° bending test showing that the flexibility of coating was not decreased by nanoparticle addition. Electron microscopy showed that the inorganic nanoparticles do not penetrate into the organic resin droplets during the mixing process but rather formed agglomerates outside the polymer droplet phase resulting in quite moderate cross linking while curing, because of viscosity. The proposed mechanisms of composite formation and cross linking could explain the poor effect regarding improvement of mechanical wear resistance and help to set up new synthesis strategies for improved nanocomposite morphologies, which should provide increased wear resistance.
机译:钢铁生产中用于转化涂料的常规涂料实际上主要由含有几种添加剂的水基聚合物分散体制成,具有良好的综合性能,但在使用过程中会出现较差的划痕和耐磨性。其原因是因为相对较软的有机粘合剂基质支配了机械表面性能。为了保持涂层钢板的高质量和装饰性,需要显着提高表面的机械性能。实际上,应通过使用适当的纳米颗粒添加剂来提高耐磨性,而不影响涂层的光学外观。在这个方向上,纳米复合涂料组合物(纳米单体)是从水基聚合物分散体中衍生出来的,其中水分散体中表面改性的纳米粒子的量不断增加,以便监测刚性纳米粒子的填充程度。纳米粒子的表面已经过改性,可以与聚合物基体实现最佳相容性,从而实现纳米粒子在基体上的均匀分散。以准单层型小分子表面修饰之外,通过水解缩合反应将更扩展的杂化网络缩合在纳米颗粒表面上的方式扩展了该方法。可以预期,与简单添加具有准单层表面改性的纳米颗粒相比,这种额外的改性将导致涂料体系中更紧密的交联,从而导致进一步提高的耐刮擦性。将所得的组合物涂覆在镀锌锌的钢上并固化。已根据成分变化,表面改性类型以及不同剪切力的混合条件对改性涂料体系的耐磨性和耐腐蚀性能进行了测试。已经发现对于高达50重量%的纳米颗粒的负载水平,与未改性的树脂相比,机械耐磨性几乎保持不变。另外,即使在180°弯曲试验后,耐蚀性也不受影响,表明通过添加纳米颗粒并没有降低涂层的柔韧性。电子显微镜显示,在混合过程中,无机纳米颗粒不会渗透到有机树脂液滴中,而是在聚合物液滴相外部形成团聚体,由于粘度,在固化时会产生相当适度的交联。所提出的复合物形成和交联机理可以解释在改善机械耐磨性方面的不良作用,并有助于建立新的合成策略以改善纳米复合材料的形貌,从而提高耐磨性。

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