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Synthesis methods, chemical structures and phase structures of linear polyurethanes. Properties and applications of linear polyurethanes in polyurethane elastomers, copolymers and ionomers

机译:线性聚氨酯的合成方法,化学结构和相结构。线性聚氨酯在聚氨酯弹性体,共聚物和离聚物中的性能及应用

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摘要

Chemical and supermolecular structures occurring in linear polyurethanes were presented and they were referred to the analysis of the reactions connected with the step-growth polyaddition process of diisocyanates and polyols. Based on the general kinetic model of the step-growth polyaddition process, which is available in papers, inclusive of our own reports published on that subject, and based on experimental verification of that model by GPC chromatography and MALDI-ToF spec-trometry, the influence was discussed of reactivity specifications of the diisocyanate and polyol monomers, and of intermediate products (urethane oligomers), on the size of molecules and on molecular weight distribution in linear polyurethane products. The applicability of such research methods as SAXS, SEM, AFM and DSC for the analysis of phase structures and micro-phase separation in the linear polyurethanes was presented. Also, the influence of phase separation on thermal and mechanical properties of the polyurethane products was addressed. Special attention was paid to the influence of polarity of polyurethane chemical structures, dispersion interactions, hydrogen bonding and ionic interactions on the value of free surface energy of polyurethane anionomers and cationomers. The effects on chemical and biological stability of those products were considered, too. Derived from the above analysis, the latest trends were provided for the applications of linear polyurethanes: as liquid crystalline materials, urethane-acrylic and polyurethane-siloxane copolymers in electronics, medicine and civil engineering, and as environmentally friendly elastomers in protective coatings produced from waterborne polyurethane dispersions.
机译:介绍了线性聚氨酯中发生的化学和超分子结构,并将其用于与二异氰酸酯和多元醇的逐步增长加聚过程相关的反应分析。基于分步增长加成过程的一般动力学模型(包括我们在该主题上发表的报告),该论文可在论文中找到,并基于GPC色谱和MALDI-ToF光谱法对该模型的实验验证,讨论了二异氰酸酯和多元醇单体的反应性规格以及中间产物(聚氨酯低聚物)对分子大小和线性聚氨酯产物分子量分布的影响。提出了SAXS,SEM,AFM和DSC等研究方法在分析线性聚氨酯中的相结构和微相分离方面的适用性。而且,解决了相分离对聚氨酯产物的热和机械性能的影响。特别注意聚氨酯化学结构的极性,分散相互作用,氢键和离子相互作用对聚氨酯阴离子聚合物和阳离子聚合物的自由表面能值的影响。还考虑了这些产品对化学和生物稳定性的影响。根据以上分析得出的最新趋势为线性聚氨酯的应用提供了趋势:作为液晶材料,电子,医药和土木工程中的聚氨酯-丙烯酸和聚氨酯-硅氧烷共聚物,以及作为水性涂料生产的保护涂料的环保弹性体聚氨酯分散体。

著录项

  • 来源
    《Progress in Materials Science》 |2007年第6期|p.915-1015|共101页
  • 作者

    Piotr Krol;

  • 作者单位

    Department of Polymer Science, Faculty of Chemistry, Rzeszow University of Technology, Al. Powstancow Warszawy 6, 35-959 Rzeszow, Poland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

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