纳米氧化铝对水性聚氨酯复合涂料电化学性能和力学性能的影响

S. Dhoke, Narayani Rajgopalan, A. Khanna
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引用次数: 15

摘要

将纳米氧化铝颜料加入水性聚氨酯分散体(WPUD)中,以不同的负载水平(0.1%和1.0%重量)形成纳米复合涂层。通过将纳米改性涂层涂覆在低碳钢基体上,并将其暴露于盐雾、湿度和加速紫外线老化中,对纳米复合涂层的电化学性能进行了评价。利用各种分析技术对复合涂层的表面形貌进行了评价。利用扫描电镜(SEM)和原子力显微镜(AFM)研究了纳米氧化铝颜料的分散情况,以及纳米改性涂层暴露于测试环境前后的表面形态变化。采用纳米划痕技术(nanoindentter TI-900, hyysitron Inc, USA)研究了耐划伤等力学性能,采用铅笔硬度测试法研究了硬度。结果表明,在较低浓度(0.1% wt)下,纳米氧化铝颜料对涂层的腐蚀、紫外老化和力学性能有改善,表明在涂层中添加纳米氧化铝颜料有积极的作用。
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Effect of Nanoalumina on the Electrochemical and Mechanical Properties of Waterborne Polyurethane Composite Coatings
A nanocomposite coating was formed by incorporating nanoalumina pigment in a waterborne polyurethane dispersion (WPUD) to different loading levels (0.1% and 1.0% by weight). Electrochemical performance of the nanocomposite coating was evaluated by applying these nanomodified coatings on mild steel substrate and exposing them to salt-spray, humidity, and accelerated UV weathering. The surface morphology of the composite coating was evaluated using various analytical techniques. SEM and AFM were used to investigate the dispersion of nanoalumina pigment and surface morphological changes of the nanomodified coating, before and after exposure to the test environment. Mechanical properties like scratch resistance were studied by using nanoscratch technique (Nanoindenter TI-900, Hysitron Inc, USA) and hardness using pencil hardness test method. The results showed an improvement in the corrosion, UV weathering, and mechanical properties of the coatings at lower concentration (0.1% by wt), indicating the positive effect of addition of nanoalumina pigment to the coating.
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