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首页> 外文期刊>Progress in Organic Coatings: An International Review Journal >High modulus, fluorine-free self-healing anti-smudge coatings
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High modulus, fluorine-free self-healing anti-smudge coatings

机译:高模量,无氟自愈合抗涂抹涂料

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摘要

Reported herein is a simple strategy for the fabrication of phenolic polyurethane coatings with self-healing and anti-smudge properties as well as good mechanical strength and optical clarity. Polydimethylsiloxane (PDMS) is incorporated to impart anti-smudge performance into urethane matrix comprised of biobased propyl gallate, hexamethylene diisocyanate trimer, and polytetrahydrofuran prepolymer. Propyl gallate is used as a reversible crosslinker to impart the self-healing properties to the coating. The reaction products were confirmed by Fourier transform infrared spectroscopic studies. Optical microscopic analysis was used to observe the self-healing behavior of polymer films. The contact angle and sliding angle tests were used to evaluate the anti-smudge ability of these polymers. Tensile test, hardness, and abrasion test were used to validate the mechanical properties of the coatings. The obtained coatings showed excellent anti-smudge properties as evident from their water, oil, ink, and hexadecane repellencies. Also, these coatings showed excellent optical clarity approach 100% transmittance. Furthermore, these coatings exhibit promising self-healing properties, which recover from 40 mu m cuts in similar to 10 min at 120 degrees C and in 1 h at 80 degrees C. As this approach offers a simple route towards multi-functional coatings, therefore, real-world applications are anticipated for the coatings reported in this study.
机译:本文报道的是一种简单的策略,用于制造具有自愈合和抗涂抹性能的酚类聚氨酯涂层以及良好的机械强度和光学透明度。掺入聚二甲基硅氧烷(PDMS),以将抗污染性能赋予氨基甲酸酯基质,该基质包含生物化丙酸盐,六亚甲基二异氰酸酯三聚物和聚四氟脲预聚物。丙酯用作可逆交联剂,以赋予涂层的自愈合性能。通过傅里叶变换红外光谱研究证实了反应产物。光学显微分析用于观察聚合物膜的自愈合行为。接触角和滑动角度试验用于评估这些聚合物的抗污染能力。使用拉伸试验,硬度和磨损试验来验证涂层的机械性能。所得涂层从水,油,油墨和十六烷籽籽中显示出优异的抗涂抹性能。此外,这些涂层显示出优异的光学透明度方法100%透射率。此外,这些涂层具有有希望的自愈合性能,其在40μm的切口中恢复在120摄氏度下,在80℃下在1小时内恢复。随着该方法的简单途径,因此提供了一种朝向多功能涂层的简单路线,因此,预计本研究报告的涂料的实际应用程序预计。

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