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首页> 外文期刊>Pigment & Resin Technology >Renewable source-based polyurethane coatings by using monoglycerides of vegetable oils and its modification by nano TiO2
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Renewable source-based polyurethane coatings by using monoglycerides of vegetable oils and its modification by nano TiO2

机译:使用植物油单甘油酯的可再生源基聚氨酯涂料及其纳米TiO2改性

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摘要

Purpose - The primary purpose of this work is to prepare the renewable source-based polyurethanes coatings which can be used to substitute petroleum-based materials. In the secondary purpose, the paper included improvement in the properties of said PU coatings using modified nano TiO2 for industrial PU coatings. Design/methodology/approach - The authors have synthesised low molecular weight polyols (monoglycerides) based on vegetable oils such as castor, linseed, coconut, mustard, sunflower and rice bran oils. These monoglycerides were successfully utilised in the preparation of polyurethane coatings. In order to improve the performance of these coatings, modified nano TiO2 was incorporated into them. The particle size of TiO2 was determined by transmission electron microscopy. Coatings prepared were characterised for their properties such as gloss, scratch resistance, impact resistance, flexibility, cross cut adhesion and chemical resistance. The thermal stability of coatings was also studied by thermo gravimetric analyzer. Findings - The polyurethane coatings prepared from six monoglycerides of different oils with polymeric diphenyl methane diisocyanate showed good chemical resistance and thermal stability. Coating properties like impact resistance, flexibility and adhesion were excellent for all of the prepared samples of PU coatings. PU coatings with excellent hardness up to 5B were found with the modification of nano TiO2 by silane coupling agent. The authors successfully prepared the renewable source-based (monoglycerides of oil) PU coatings. Practical implications - Practically the authors are able to convert renewable source that is vegetable oils into polyurethane coatings which may have strong potential to be used as industrial surface coating. The properties of the PU coatings were evaluated before and after the incorporation of different concentration of surface-modified nano TiO2 which revealed that the presence of 1 percent nano TiO2 showed significant enhancement in coating properties. Originality/value - The beauty of this work includes synthesis of polyurethanes coatings from renewable source material (monoglycerides of vegetable oils) to substitute petroleum-based materials. The incorporation of silane-modified TiO2 nanoparticles in renewable source-based PU coatings is another originality of the work. This article is also representing comparative study of various vegetable oils on PU coatings.
机译:目的-这项工作的主要目的是制备可用于替代石油基材料的可再生资源基聚氨酯涂料。在次要目的中,本文包括使用用于工业PU涂料的改性纳米TiO 2改进所述PU涂料的性能。设计/方法/方法-作者已经合成了基于植物油(如蓖麻,亚麻籽,椰子,芥末,向日葵和米糠油)的低分子量多元醇(甘油单酯)。这些甘油单酯被成功地用于制备聚氨酯涂料。为了改善这些涂层的性能,将改性的纳米TiO2掺入其中。 TiO 2的粒度通过透射电子显微镜确定。所制备的涂层的特征在于其性质,例如光泽,耐刮擦性,耐冲击性,柔韧性,横切粘合力和耐化学性。还通过热重分析仪研究了涂层的热稳定性。发现-由六种不同油类的单甘油酯与聚合的二苯基甲烷二异氰酸酯制备的聚氨酯涂料具有良好的耐化学性和热稳定性。对于所有制备的PU涂层样品,涂层性能(如耐冲击性,柔韧性和附着力)都非常好。发现通过硅烷偶联剂对纳米TiO2进行改性,PU涂层的硬度高达5B。作者成功地制备了基于可再生资源的(油性单甘油酯)PU涂料。实际意义-作者实际上能够将植物油等可再生资源转化为聚氨酯涂料,而聚氨酯涂料可能具有用作工业表面涂料的强大潜力。在掺入不同浓度的表面改性纳米TiO2之前和之后评估了PU涂层的性能,这表明存在1%的纳米TiO2会显着提高涂层性能。原创性/价值-这项工作的美丽包括用可再生原料(植物油的甘油单酸酯)代替石油基材料合成聚氨酯涂料。硅烷改性的TiO2纳米粒子在可再生资源基PU涂层中的掺入是这项工作的另一项独创性。本文还代表了PU涂层上各种植物油的比较研究。

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