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Manipulation of TiO2 Nanoparticle/Polymer Coatings Wettability and Friction in Different Environments

机译:TiO2纳米颗粒/聚合物涂层在不同环境中的润湿性和摩擦力的操纵

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摘要

An AISI 316L surface was functionalized by the adsorption of hydrophilic epoxy and epoxy/TiO /epoxy coatings and hydrophobic epoxy/fluoroalkylsilane-functionalized FAS-TiO /epoxy coatings. We characterized the coatings’ wettability, morphology and average surface roughness and discussed the influence of surface wettability and morphology on the coefficient of friction and the wear resistance. Experiments were performed in dry, distilled water and in a simulated physiological solution (Hank’s solution). In the case of dry sliding, a lower coefficient of friction is achieved for both TiO coatings compared to the pure epoxy coating. In a water environment the same level of friction is shown for all three coatings, whereas in Hank’s solution the friction is reduced for the hydrophilic epoxy/TiO /epoxy coating, increased for the hydrophobic epoxy/FAS-TiO /epoxy coating and has no effect on the pure epoxy coating. The results show that the corrosion resistance is significantly improved for the hydrophobic epoxy/FAS-TiO /epoxy coating compared to the hydrophilic pure epoxy and epoxy/TiO /epoxy coatings.
机译:AISI 316L表面通过亲水性环氧和环氧/ TiO /环氧涂料和疏水性环氧/氟代烷基硅烷官能化的FAS-TiO /环氧涂料的吸附功能化。我们表征了涂层的润湿性,形态和平均表面粗糙度,并讨论了表面润湿性和形态对摩擦系数和耐磨性的影响。实验是在干燥的蒸馏水中和模拟的生理溶液(汉克氏溶液)中进行的。在干式滑动的情况下,与纯环氧涂料相比,两种TiO涂料的摩擦系数都较低。在水环境中,所有三种涂料的摩擦水平相同,而在汉克溶液中,亲水性环氧/ TiO /环氧涂料的摩擦减小,疏水性环氧/ FAS-TiO /环氧涂料的摩擦增加,但没有影响在纯环氧涂料上。结果表明,与亲水性纯环氧和环氧/ TiO /环氧涂料相比,疏水性环氧/ FAS-TiO /环氧涂料的耐腐蚀性显着提高。

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