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Performance of nanosilica in acrylic polyol 2K polyurethane coatings

机译:纳米二氧化硅在丙烯酸多元醇2K聚氨酯涂料中的性能

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摘要

Purpose - The purpose of this paper is to formulate two component polyurethane coatings based on acrylic polyol, to study the effects of variable nanosilica loadings in these coatings on different morphological, optical, mechanical, corrosion resistance and weather resistance properties and to study the intercalation of acrylic polyol molecules into nanosilica crystals by XRD technique. Design/methodology/approach - Two component polyurethane coatings were synthesised using acrylic polyol and isocyanate HDI. The nanosilica was incorporated in polyurethane formulation at the weight ratios of 1 %, 3% and 5% based on total weight of polyol and isocyanate. The performance of nanocoatings was compared for variable loads of nanosilica for different properties such as morphological, optical, mechanical, corrosion resistance, weather resistance and were studied for intercalation of acrylic polyol into nanosilica crystals by XRD technique. Findings - Improvement in the properties of polyurethane coatings is achieved with the incorporation of nanosilica. The improvement is the result of inherently high properties of inorganic nanosilica. Tensile strength, scratch hardness, abrasion resistance, corrosion and weathering resistance show significant improvement in performance with the incorporation of nanosilica. Properties are found to deteriorate beyond a certain loading of nanosilica; hence it is important to optimise loading level. The optimal range for high performance was found to be in the range of 1 % to 3%. The improvement was a result of synergistic behaviour and good interfacial interaction between polyurethane and nanosilica at optimal levels. Research limitations/implications - The method used for incorporation of nanosilica into polyurethane was direct incorporation method. The other method of incorporation, i.e. in situ addition and its effect on properties can also be studied. Practical implications - With the addition of optimal loading level of nanosilica to polyurethane coatings, properties can be enhanced up to the mark. The addition is relatively easy and cost effective. Originality/value - The paper proves the significance of incorporation of nanosilica on original properties of polyurethane coatings and widens the area of applications of two component polyurethane coatings from acrylic polyol by strengthening them in their properties. The coatings can be applicable in high performance topcoats especially for automotive topcoats.
机译:目的-本文的目的是基于丙烯酸多元醇配制两种组分的聚氨酯涂料,研究这些涂料中可变的纳米二氧化硅含量对不同形态,光学,机械,耐腐蚀和耐候性的影响,并研究通过XRD技术将丙烯酸多元醇分子转化为纳米二氧化硅晶体。设计/方法/方法-使用丙烯酸多元醇和异氰酸酯HDI合成了两种组分的聚氨酯涂料。以多元醇和异氰酸酯的总重量计,纳米二氧化硅以1%,3%和5%的重量比掺入聚氨酯配方中。比较了纳米涂料在不同负载下的性能,如形态,光学,机械,耐腐蚀性,耐候性等不同性能,并通过XRD技术研究了丙烯酸多元醇插入纳米二氧化硅晶体中的性能。发现-通过掺入纳米二氧化硅可以改善聚氨酯涂料的性能。改善是无机纳米二氧化硅固有的高性能的结果。通过掺入纳米二氧化硅,拉伸强度,耐刮擦性,耐磨性,耐腐蚀性和耐候性显示出显着的性能改善。发现超过一定量的纳米二氧化硅,性能会恶化;因此优化负载水平很重要。发现高性能的最佳范围是1%至3%。改善是由于在最佳水平下聚氨酯与纳米二氧化硅之间具有协同行为和良好的界面相互作用。研究局限/意义-将纳米二氧化硅掺入聚氨酯的方法为直接掺入法。还可以研究另一种掺入方法,即原位加入及其对性能的影响。实际意义-在聚氨酯涂料中添加纳米二氧化硅的最佳负载量后,其性能可以达到标准。该添加相对容易且具有成本效益。原创性/价值-本文证明了纳米二氧化硅掺入对聚氨酯涂料原始性能的重要性,并通过增强丙烯酸多元醇的两种组分的性能,拓宽了它们的应用范围。该涂料可适用于高性能面漆,尤其是汽车面漆。

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