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Waterborne Polyurethane: Effect of Functional Groups in Aromatic Isocyanate and the Chain Length of Hydroxyl Terminated Natural Rubber

机译:水性聚氨酯:芳族异氰酸酯中官能团的作用及羟基封端天然橡胶的链长

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Waterborne polyurethane (WPU) has its main applications in coatings and adhesives. Compared with the competing PU products from solvent-based processes, it has a more environmentally friendly manufacturing process. Its economic competitiveness could also be improved by the use of aromatic isocyanates that are widely available and cheaper than the currently used aliphatic isocyanates. We report on the synthesis and properties of WPU, based on natural rubber (NR) whose molecular structure has been altered, in combination with an aromatic isocyanate. The NR modification is by hydroxyl termination, with experiments using two chain lengths (HT600 and HT1000, named after molecular weight). The aromatic isocyanates used are 4,4'-Methylene bis (phenyl isocyanate) (MDI) and polymethylene polyphenyl polyisocyanate (p-MDI). The synthesized chemical structure is characterized using ATR-FTIR, while the key material properties reported here are the pH value, mean particle size and size distribution, and glass transition temperature. The WPU achieved suitable material properties, with small particles sizes and good dispersion, for applications in coatings.
机译:水性聚氨酯(WPU)在涂料和粘合剂中具有其主要应用。与来自溶剂的过程的竞争PU产品相比,它具有更加环保的制造过程。通过使用芳族异氰酸酯,还可以改善其经济竞争力,这些芳族异氰酸酯比目前使用的脂族异氰酸酯便宜。我们报告了WPU的合成和性质,基于其分子结构已被改变的天然橡胶(NR)与芳族异氰酸酯组合。 NR改性是通过羟基终止,实验使用两种链长(HT600和HT1000,以分子量命名)。使用的芳族异氰酸酯是4,4'-亚甲基双(苯基异氰酸酯)(MDI)和聚亚甲基聚苯基多异氰酸酯(P-MDI)。合成化学结构的特征在于使用ATR-FTIR,而这里报道的关键材料特性是pH值,平均粒度和尺寸分布和玻璃化转变温度。 WPU在涂层中达到具有小颗粒尺寸和良好分散体的合适的材料性能。

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