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Structure-property study of waterborne polyurethane coatings with different hydrophilic contents and polyols

机译:不同亲水含量和多元醇的水性聚氨酯涂料的结构性能研究

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摘要

In this study, water dispersed paints were produced using polyester polyol, isophorone diisocyanate (IPDI) and hydrophilic monomers. Two sets of experiments were performed. In the first group, the effects of various proportions of the hydrophilic monomers dimethylol propionic acid (DMPA) and tartaric acid (TA) on the state of dispersion, physical, mechanical, and surface properties were investigated. The total hydrophilic content was fixed at 3.5 wt% of solids. In the second group, waterborne polyurethanes were prepared by using mixed polyols as the physical properties of waterborne polyurethanes were highly affected by the composition and the molecular chain length of the soft segment. Hence, in the second group, up to 20 wt% of polyester polyol (diol) was replaced by poly(propylene-ethylene) copolymer polyol (triol) leading to branched polyurethanes. Only DMPA was used in this case as the ionic building block. The effects of polyester/polyether ratio on the state of dispersion, physical, mechanical, and Surface properties were examined. For the first group of experiments, the increase in the amount of TA in the polymer yields coarser particle sizes and broadened particle size distributions. The increase of TA content yielded an increase in the hardness and in the contact angles with water. Upon replacing part of polyester polyol with polyether triol, higher values for average particle sizes and broadened particle size distributions were obtained. It also yielded an increase in hardness values and an increase in contact angles with water. It was found that replacing more than 15 wt% of polyester in the total polyol with polyether caused drastic changes in the state of dispersion and other properties due to a change in the internal structure. All samples showed superior impact resistance and flexibility.
机译:在这项研究中,使用聚酯多元醇,异佛尔酮二异氰酸酯(IPDI)和亲水性单体生产了水分散型涂料。进行了两组实验。在第一组中,研究了不同比例的亲水性单体二羟甲基丙酸(DMPA)和酒石酸(TA)对分散状态,物理,机械和表面性能的影响。总亲水含量固定为固体的3.5重量%。在第二组中,通过使用混合多元醇制备水性聚氨酯,因为水性聚氨酯的物理性能受到软链段的组成和分子链长度的极大影响。因此,在第二组中,多达20重量%的聚酯多元醇(二醇)被聚(丙烯-乙烯)共聚物多元醇(三醇)代替,从而得到支链聚氨酯。在这种情况下,仅将DMPA用作离子构件。研究了聚酯/聚醚比例对分散状态,物理,机械和表面性能的影响。对于第一组实验,聚合物中TA含量的增加会产生较粗的粒径和较宽的粒径分布。 TA含量的增加导致硬度和与水的接触角增加。用聚醚三醇代替部分聚酯多元醇后,可获得更高的平均粒径和更宽的粒径分布。它还导致硬度值增加和与水的接触角增加。已发现用聚醚代替总多元醇中多于15wt%的聚酯,由于内部结构的变化,引起分散状态和其他性能的急剧变化。所有样品均显示出优异的抗冲击性和柔韧性。

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