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首页> 外文期刊>Journal of Applied Polymer Science >Effects of ion group content and polyol molecular weight on physical properties of HTPB-based waterborne poly(urethane-urea)s
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Effects of ion group content and polyol molecular weight on physical properties of HTPB-based waterborne poly(urethane-urea)s

机译:离子基团含量和多元醇分子量对HTPB基水性聚氨酯(脲)的物理性能的影响

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摘要

A series of waterborne poly(urethane-urea)s, WPUUs, based on using nonpolar hydroxyl-terminated polybutadiene (HTPB) as the soft segment, were successfully synthesized in this article. The effects of the COOH group content and soft-segment molecular weight (Mn-s) on the dispersion, morphology, and physical properties were investigated. Variations of the particle size, viscosity, and zeta potential were first governed by the hydrophilicity of the polymer chain, and then by the swelling derived from water. Fourier transfer infrared spectroscopy (FTIR) and differential scanning calorimetry (DSC) indicated that the degree of phase separation decreased as the COOH group content increased or as Mn-s decreased. However, the hydrogen bonding between the soft and hard segments and the two-phase mixing could not occur in this nonpolar HTPB-based WPUU system, indicating that the hard segments tended to form smaller domains and to pack more loosely. It was attributed to the fact that the presence of bulky ionic salt groups destroyed the ordered arrangement of the hard segments. In this case, the increases of the interface area between the soft and hard phases resulted in that the present behaviors were similar to the phase mixing. In tensile properties, HTPB-based WPUUs exhibited higher tensile stress, elongation at break, and modulus as the COOH group content decreased or as Mn-s decreased. In thermal degradation, the introduction of HTPB polyol improved the thermal stability of WPUU. (c) 2007 Wiley Periodicals, Inc.
机译:以非极性羟基封端的聚丁二烯(HTPB)为软链段,成功合成了一系列水性聚氨酯(UPU)。研究了COOH基团含量和软链段分子量(Mn-s)对分散性,形态和物理性能的影响。粒度,粘度和ζ电位的变化首先由聚合物链的亲水性决定,然后由源自水的溶胀决定。傅里叶转移红外光谱(FTIR)和差示扫描量热法(DSC)表明,随着COOH基团含量的增加或Mn-s的降低,相分离度降低。但是,在此基于非极性HTPB的WPUU系统中,软链段和硬链段之间的氢键不会发生,并且两相混合不会发生,这表明硬链段倾向于形成较小的区域,并且堆积得更疏松。这归因于以下事实:庞大的离子盐基团的存在破坏了硬链段的有序排列。在这种情况下,软相和硬相之间的界面面积增加导致当前行为类似于相混合。在拉伸性能方面,基于HTPB的WPUU表现出较高的拉伸应力,断裂伸长率和模量,原因是COOH基团含量降低或Mn-s降低。在热降解方面,HTPB多元醇的引入改善了WPUU的热稳定性。 (c)2007年Wiley Periodicals,Inc.

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