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POLYURETHANE ELASTOMERS WITH LOW MODULUS AND HARDNESS BASED ON NOVEL COPOLYETHER MACRODIOLS

机译:基于新型共聚酯宏观二元醇的低模量和硬度聚氨酯弹性体

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A series of copolyether macrodiols was prepared from either 1,10-decanediol or 1,6-hexanediol, by acid-catalyzed condensation polymerization using several comonomers to investigate the effect of copolymerization on reducing macrodiol crystallinity. The comonomers used to disrupt crystallinity included 2,2-diethyl-1,3-propanediol, 1,4-cyclohexanedimethanol, and 1,7-heptanediol. The product copolyethers were identified as hydroxy terminated copoly(alkylene oxides) by H-1- and C-13-NMR spectroscopy. Based on NMR results, the structures of the copolyethers were established as consisting of blocks of the principal monomer with comonomer 2,2-diethyl-1,3-propanediol incorporated to form only the end structural unit, whereas 1,4-cyclohexanedimethanol incorporated to form the end unit as well as part of the main chain. DSC results confirmed that the copolymerization produced macrodiols with lower crystallinity and lower T-g than those of the corresponding homopolyethers of the principal monomers, with two exceptions. The exceptions were 1,6-hexanediol/1,10-decanediol, and 1,10-decanediol/1,7-heptanediol copolyethers where no reduction in crystallinity was observed. A series of polyurethane elastomers with a constant hard segment percentage (40 wt %) was prepared using 4,4'-methylenediphenyl diisocyanate and 1,4-butanediol as the hard segment. Tensile test results and Shore hardness measurements demonstrated that copolyether macrodiols produced several polyurethanes with lower modulus and hardness than those of polyurethanes based on homopolyethers of the principal monomers. Of the comonomers studied, 2,2-diethyl-1,3-propanediol-based copolyether produced the polyurethane with the lowest hardness and modulus. (C) 1997 John Wiley & Sons, Inc. [References: 10]
机译:通过使用几种共聚单体的酸催化缩聚反应,从1,10-癸二醇或1,6-己二醇制备了一系列共聚醚大二醇,以研究共聚对降低大二醇结晶度的影响。用于破坏结晶度的共聚单体包括2,2-二乙基-1,3-丙二醇,1,4-环己烷二甲醇和1,7-庚二醇。通过H-1-和C-13-NMR光谱将产物共聚醚鉴定为羟基封端的共聚(环氧烷)。根据NMR结果,共聚醚的结构被确定为由主要单体的嵌段与共聚单体2,2-二乙基-1,3-丙二醇掺入形成的末端结构单元组成,而1,4-环己烷二甲醇掺入构成终端单元以及主链的一部分。 DSC结果证实,共聚合产生的大二醇具有比主要单体的相应均聚醚更低的结晶度和更低的T-g,除了两个例外。 1,6-己二醇/ 1,10-癸二醇和1,10-癸二醇/ 1,7-庚二醇共聚醚是例外,其中未观察到结晶度降低。使用4,4'-亚甲基二苯基二异氰酸酯和1,4-丁二醇作为硬链段,制备了一系列具有恒定硬链段百分比(40 wt%)的聚氨酯弹性体。拉伸试验结果和肖氏硬度测量结果表明,与基于主要单体均聚醚的聚氨酯相比,共聚醚大分子二醇生产的几种聚氨酯的模量和硬度均较低。在研究的共聚单体中,基于2,2-二乙基-1,3-丙二醇的共聚醚生产的聚氨酯具有最低的硬度和模量。 (C)1997 John Wiley&Sons,Inc. [参考:10]

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