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Study on the morphology and tribological properties of acrylic based polyurethane/fumed silica composite coatings

机译:丙烯酸基聚氨酯/气相二氧化硅复合涂料的形貌和摩擦学性能研究

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摘要

Two fumed silica (one hydrophilic and one hydrophobic) were used in the high solid acrylic based polyurethane coatings by directly mixing. The dispersion of fumed silica particles in the bulk of polyurethane coats was characterized by transmission electron microscope (TEM) and surface morphology examined using a scanning probe microscope (SPM). Micro indentation and scratching tests were carried out with a nano-indenter. Both hydrophilic and hydrophobic fumed silica nearly have the same dispersion in acrylic based polyurethane coats. The surface roughness of polyurethane coats increases as fumed silica increases, however, the surfaces of polyurethane coatings containing hydrophobic fumed silica are rougher than that containing hydrophilic fumed silica at the same content. Addition of fumed silica can obviously enhance the micro indentation hardness (MIH) and elastic modulus of polyurethane coats and the higher the content of fumed silica is, the higher the MIH is for hydrophilic one but for hydrophobic one only under normal load less than 20 mN. In the micro scratch experiment, the elastic response and plastic deformation nearly keep constant with normal force increasing for pure acrylic based polyurethane coats. But the percentage of elastic response decreases and the percentage of plastic deformation increases as normal force increases for the polyurethane coats with fumed silica. Crack occurs when scratching under normal force higher than 50 mN for the polyurethane coats with fumed silica, and as the content of fumed silica increases, the critical force for crack increases. Additionally, both hydrophilic and hydrophobic fumed silica have no obvious influence on the response to marring stress and micro mar resistance (MMR) of acrylic based polyurethane.
机译:通过直接混合在高固体丙烯酸基聚氨酯涂料中使用了两种气相二氧化硅(一种亲水性和一种疏水性)。用透射电子显微镜(TEM)表征气相二氧化硅颗粒在大部分聚氨酯涂料中的分散性,并使用扫描探针显微镜(SPM)检查表面形态。用纳米压头进行微压痕和刮擦测试。亲水性和疏水性气相二氧化硅在丙烯酸类聚氨酯涂料中几乎具有相同的分散性。随着气相二氧化硅的增加,聚氨酯涂层的表面粗糙度也随之增加,但是,含有疏水气相二氧化硅的聚氨酯涂层的表面要比含有相同含量亲水气相二氧化硅的聚氨酯涂层的表面更粗糙。气相二氧化硅的添加可以显着提高聚氨酯涂层的微压痕硬度(MIH)和弹性模量,气相二氧化硅的含量越高,亲水性的MIH越高,而疏水性的MIH仅在小于20 mN的正常载荷下才更高。 。在微划痕实验中,纯丙烯酸基聚氨酯涂料的弹力响应和塑性变形几乎保持恒定,法向力增大。但是,对于使用气相法二氧化硅的聚氨酯涂层,随着法向力的增加,弹性响应的百分比降低,塑性变形的百分比增加。当使用气相法二氧化硅的聚氨酯涂层在高于50 mN的法向力下刮擦时,会产生裂纹,并且随着气相法二氧化硅的含量增加,裂纹的临界力也会增加。另外,亲水性和疏水性热解法二氧化硅对丙烯酸基聚氨酯对擦伤应力和耐微擦伤性(MMR)的响应均无明显影响。

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  • 来源
    《Journal of Materials Science》 |2004年第5期|1593-1600|共8页
  • 作者单位

    Department of Materials Science The Advanced Coatings Research Center of China Educational Ministry Fudan University;

    Department of Materials Science The Advanced Coatings Research Center of China Educational Ministry Fudan University;

    Department of Physics and Astronomy Eastern Michigan University;

    Department of Materials Science The Advanced Coatings Research Center of China Educational Ministry Fudan University;

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