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Thermoplastic polyurethane (TPU)/polyolefin (PO) blends.

机译:热塑性聚氨酯(TPU)/聚烯烃(PO)混合物。

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摘要

Thermoplastic polyurethane (TPU) is a very important material with high versatility and superior physical properties. Melt blending TPU with metallocene polyolefin (PO) can lower TPU cost and improve polyolefin properties like abrasion resistance, adhesion, and paintability. Since TPU and non-polar PO blends are completely immiscible, efficient compatibilizers become the key issue and remain challenging. My main thesis work is to develop and study compatibilized TPU/PO blends. Although reactive compatibilization is considered the most efficient method, fast interfacial reactions between highly reactive functional groups are necessary to generate compatibilizers within usually short processing time. It is known that the urethane linkage (carbamate -NHCOO-) in TPU can reversibly dissociate to generate highly reactive isocyanates at melt temperatures. To find out the best reactive compatibilization, three approaches were employed on different molecular scales: (1) model urethane compound (dibutyl & dioctyl 4,4'-methylenebis(phenyl carbamate)) and small functional molecule (primary amine, secondary amine, hydroxyl, acid, anhydride, and epoxide) reactions at 200°C monitored by nuclear magnetic resonance and Fourier-transform infrared to examine the basic chemistry; (2) short, model TPU's with different chemical structures blended with functional polymers including poly(ethylene glycol) and polybutadiene to explore the effect of interface in immiscible mixtures; (3) melt blending of a commercial TPU with polypropylene (PP), further involving more complicated morphology, using different types of functional PP's (note: amine functional PP's were prepared by melt amination) as compatibilizers followed by rheological, morphological, thermal, and mechanical characterizations.;Besides the core thesis project on TPU blends, other related work that has been accomplished includes: (1) adhesion between TPU and PP; (2) rheological properties of TPU; (3) block copolymer formation by reactive coupling. In the first work, the unique interfacial reactions were applied to promote TPU-PP adhesion that was quantified by asymmetric double cantilever beam test. In the second study, the abnormally high flow activation energy of TPU was explained by simultaneously investigating the effect of temperature and thermal degradation on the melt viscosity. In the third project, block copolymers were prepared by rapid reactive coupling of amine and isocyanate functional polymers and the reaction kinetics were also studied.
机译:热塑性聚氨酯(TPU)是一种非常重要的材料,具有高通用性和出色的物理性能。将TPU与茂金属聚烯烃(PO)熔融共混可降低TPU成本并改善聚烯烃性能,如耐磨性,附着力和可涂漆性。由于TPU和非极性PO混合物是完全不相容的,因此高效的相容剂成为关键问题,并且仍然充满挑战。我的主要论文工作是开发和研究相容的TPU / PO共混物。尽管反应性相容化被认为是最有效的方法,但高反应性官能团之间的快速界面反应对于在通常较短的加工时间内产生相容剂是必需的。已知TPU中的氨基甲酸酯键(氨基甲酸酯-NHCOO-)可以可逆地解离以在熔融温度下生成高反应性的异氰酸酯。为了找到最佳的反应性相容性,在不同的分子规模上采用了三种方法:(1)氨基甲酸酯化合物模型(二丁基和二辛基4,4'-亚甲基双(氨基甲酸酯))和小功能分子(伯胺,仲胺,羟基) ,酸,酸酐和环氧化物)在200°C的反应,通过核磁共振和傅里叶变换红外光谱进行监测,以检查基本化学反应; (2)将具有不同化学结构的短模型热塑性聚氨酯与功能聚合物(包括聚乙二醇和聚丁二烯)共混,以研究界面在不混溶混合物中的作用; (3)将商用TPU与聚丙烯(PP)熔融共混,进一步涉及更复杂的形态,使用不同类型的功能性PP(注:胺功能性PP通过熔融胺化制备)作为增容剂,然后进行流变,形态,热和除了TPU共混物的核心论文项目外,其他已完成的相关工作还包括:(1)TPU与PP之间的粘合性; (2)TPU的流变特性; (3)通过反应性偶联形成嵌段共聚物。在第一项工作中,通过非对称双悬臂梁测试量化了独特的界面反应,以促进TPU-PP的粘附。在第二项研究中,通过同时研究温度和热降解对熔体粘度的影响,解释了TPU异常高的流动活化能。在第三个项目中,通过胺和异氰酸酯官能聚合物的快速反应偶联制备了嵌段共聚物,并研究了反应动力学。

著录项

  • 作者

    Lu, Qiwei.;

  • 作者单位

    University of Minnesota.;

  • 授予单位 University of Minnesota.;
  • 学科 Engineering Chemical.;Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 206 p.
  • 总页数 206
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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