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Abrasive wear of transparent polymer coatings: Considered in terms of morphology and surface modification of nanoparticles

机译:透明聚合物涂层的磨料磨损:考虑纳米颗粒的形态和表面改性

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摘要

Silica nanoparticles having different morphology and surface modification were used to prepare transparent polymeric coating samples. The dispersion level of nanoparticles, filler-matrix interface and abrasive wear tests were studied. Compared with the neat coating, all the nanocoatings exhibited significantly improved abrasive wear resistance at various testing conditions. By analyzing worn surfaces and profiles of the samples, such improvement was ascribed to the enhanced load-bearing ability and crack resistance of the nanocoatings. The morphology and surface modification of nanoparticles affected the wear resistance also. The pyrogenic nanoparticle-filled coatings were superior to colloidal ones in wear resistance, probably due to the fact that the aggregates had floc-like morphology, which may offer higher load-carrying ability, interlocking with matrix. When comparing the nanoparticles having the similar morphology, the filler-matrix interface will play a key role in wear resistance; the stronger interface corresponded to higher wear resistance.
机译:具有不同形态和表面改性的二氧化硅纳米粒子被用于制备透明的聚合物涂层样品。研究了纳米粒子的分散水平,填料-基体界面和磨料磨损测试。与纯涂层相比,所有纳米涂层在各种测试条件下均显示出显着改善的耐磨性。通过分析样品的磨损表面和轮廓,这种改进归因于纳米涂层的增强的承载能力和抗裂性。纳米颗粒的形态和表面改性也影响耐磨性。热解纳米颗粒填充涂层的耐磨性优于胶体涂层,这可能是由于聚集体具有絮状形态,可提供更高的承载能力,与基质互锁。当比较具有相似形貌的纳米颗粒时,填料-基体界面将在耐磨性方面发挥关键作用。界面越强,则耐磨性越高。

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