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Green TPUs from Prepolymer Mixtures Designed by Controlling the Chemical Structure of Flexible Segments

机译:通过控制柔性段的化学结构设计的预预聚混合物的绿色TPU

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摘要

This study concerns green thermoplastic polyurethanes (TPU) obtained by controlling the chemical structure of flexible segments. Two types of bio-based polyether polyols—poly(trimethylene glycol)s—with average molecular weights ca. 1000 and 2700 Da were used (PO3G1000 and PO3G2700, respectively). TPUs were prepared via a two-step method. Hard segments consisted of 4,4′-diphenylmethane diisocyanates and the bio-based 1,4-butanodiol (used as a chain extender and used to control the [NCO]/[OH] molar ratio). The impacts of the structure of flexible segments, the amount of each type of prepolymer, and the [NCO]/[OH] molar ratio on the chemical structure and selected properties of the TPUs were verified. By regulating the number of flexible segments of a given type, different selected properties of TPU materials were obtained. Thermal analysis confirmed the high thermal stability of the prepared materials and revealed that TPUs based on a higher amount of prepolymer synthesized from PO3G2700 have a tendency for cold crystallization. An increase in the amount of PO3G1000 at the flexible segments caused an increase in the tensile strength and decrease in the elongation at break. Melt flow index results demonstrated that the increase in the amount of prepolymer based on PO3G1000 resulted in TPUs favorable in terms of machining.
机译:该研究涉及通过控制柔性段的化学结构而获得的绿色热塑性聚氨酯(TPU)。两种类型的生物基聚醚多元醇 - 聚(三甲基二醇)S为平均分子量Ca.使用1000和2700DA(PO3G1000和PO3G2700)。通过两步法制备TPU。硬段由4,4'-二苯基甲烷二异氰酸酯和基于生物的1,4-丁二醇(用作链增量剂,并用于控制[NCO] /λ/摩尔比)。验证了柔性段结构的影响,每种类型预聚物的量,以及对化学结构的[NCO] / [OH]摩尔比和TPU的选定性质的效果。通过调节给定类型的柔性段的数量,获得了TPU材料的不同选定性质。热分析证实了制备材料的高热稳定性,并揭示了基于从PO3G2700合成的更高量的预聚物的TPU具有冷结晶的趋势。柔性区段的PO3G1000的量增加导致拉伸强度的增加和断裂伸长率下降。熔体流动指数结果表明,基于PO3G1000的预聚物量的增加导致TPU在加工方面有利。

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