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Succinic Acid: A Bio-based Building Block in Performance Driven Polyurethane Dispersions for Coatings

机译:琥珀酸:用于涂料的性能驱动的聚氨酯分散体的生物基构建块

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This paper provides an overview of the performance of bio-based succinate polyester polyols (PEPs) in polyurethane dispersions and coatings. The synthesis, characterization and performance of the bio-based succinic acid PEPs (SA-PEP) is compared to analogous adipic acid based PEPs (AA-PEP) made with common glycols such as hexanediol (HDO), butane diol (BDO), propane diol (PDO) and neopentyl glycol (NPG). In many instances the properties of the coatings follow well-established trends when polyester succinates are compared to analogous adipates in PU coatings. That is, the succinates tend to provide increased modulus and strength of the polyols without significantly changing ultimate elongation. Likewise, it was observed that the SA-PEP based PU films generally exhibit improved solvent and abrasion resistance compared to adipates. However, the systems studied here show that the branched glycols and the odd-numbered carbon glycols reduce the modulus properties of the PU compare to the more linear systems made with even-numbered glycols. Thus, these data demonstrate that with the judicial choice of the glycols it is conceivable to make PU films and coatings with bio-based succinate polyester polyols with improved sustainability with a wide range of mechanical properties ranging from rigid, tough materials to more flexible urethanes suitable for fabric and textile coatings.
机译:本文概述了基于生物的琥珀酸盐聚酯多元醇(PEPS)在聚氨酯分散体和涂层中的性能概述。将生物基琥珀酸PEP(SA-PEP)的合成,表征和性能与基于己二醇(HDO),丁烷二醇(BDO),丙烷(丁烷二醇(BDO),丙烷制备的类似己二酸基肽(AA-PEP)。二醇(PDO)和新戊二醇(NPG)。在许多情况下,涂料的性质遵循聚酯琥珀酸酯与PU涂层中类似施肥时良好的趋势。也就是说,琥珀酸盐倾向于提供多元醇的增加的模量和强度,而不会显着改变极限伸长率。同样地,观察到,与己二酸酯相比,基于SA-PEP基PU膜通常表现出改善的溶剂和耐磨性。然而,这里研究的系统表明,支化的二醇和奇数碳二醇将PU的模量与用偶数二醇制成的更线性系统进行比较。因此,这些数据表明,通过司法选择二醇,可以想到与生物基琥珀酸盐聚酯多元醇的PU膜和涂层具有改善的可持续性,其具有范围的机械性能范围从刚性,韧性的材料到更柔软的氨基甲酸酯用于织物和纺织涂料。

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