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Diaminobisbenzothiazole chain extended polyurethanes as a novel class of thermoplastic polyurethane elastomers with improved thermal stability and electrical insulation properties

机译:二氨基双苯并噻唑扩链聚氨酯,是一类新型的热塑性聚氨酯弹性体,具有改善的热稳定性和电绝缘性能

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摘要

This work was devoted to the development of a new class of modified polyurethane as an electrical insulating material. For this purpose, NCO-terminated urethane prepolymers at different NCO contents were prepared and chain extended by 6,6'-oxybis(2-aminobenzothiazole) (ABT) to produce thermoplastic polyurethane elastomers. All of the polymers were characterized by FTIR and 1{sup left}(HNMR) spectroscopies and examined for their thermal, mechanical, and electrical properties. The dynamic mechanical measurements results showed two glass transitions indicating phase separation. A considerable improvement in the thermal and electrical properties in comparison to common polyurethanes was detected for these polymers. The level of enhancement in the measured properties was related to the polyol molecular weight, hard segment content, and consequently the amount of the introduced urea and benzothiazole moieties. These findings indicated the improved high service temperature performance of these materials as electrical insulator for metallic surfaces.
机译:这项工作致力于开发新型的改性聚氨酯作为电绝缘材料。为此目的,制备了具有不同NCO含量的NCO封端的氨基甲酸酯预聚物,并通过6,6'-氧双(2​​-氨基苯并噻唑)(ABT)扩链以生产热塑性聚氨酯弹性体。所有聚合物均通过FTIR和1 {sup left}(HNMR)光谱进行表征,并检查其热,机械和电性能。动态力学测量结果显示两个玻璃化转变表明相分离。对于这些聚合物,与普通聚氨酯相比,在热性能和电性能方面有了显着改善。所测量性能的增强水平与多元醇分子量,硬链段含量以及因此引入的尿素和苯并噻唑部分的量有关。这些发现表明,这些材料作为金属表面的电绝缘体具有改善的高使用温度性能。

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