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Efficacy of clay content and microstructure of curing agents on the structure-property relationship of new-generation polyurethane nanocomposites

机译:粘土含量和固化剂微观结构对新一代聚氨酯纳米复合材料结构性质关系的影响

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The physicomechanical properties of new polyurethanes (PUs) derived from toluene diisocyanate, poly(propylene glycol), and cured by third-generation hyperbranched polyester polyol (HB3), trimethylolpropane (TMP), or glycerol and their nanocomposites have been investigated. An apparent microphase-segregated morphology of PU nanocomposites cured by HB3 has been observed by transmission electron microscopy and atomic force microscopy. Morphological studies reveal regions of mostly exfoliated and some intercalated morphology in the case of the nanocomposites, which have been further ascertained by X-ray diffraction analysis. The HB3-cured PU nanocomposite containing 8 wt% of modified montmorillonite (Cloisite 30B) clay shows approximately 140% increase in tensile strength along with improvement in thermal and dynamic mechanical properties in comparison with the control hyperbranched PU. It has also been found from Fourier transform infrared spectroscopy analysis that the extent of tethering reactions between the polymer chains carrying residual -NCO groups and the reactive hydroxyl (-OH) groups of HB3 is significant, and the nanofiller has been found to preferentially react with the -NCO group of the prepolymer. Furthermore, the properties of HB3-cured PU have been compared with the glycerol and TMPcured PUs and their nanocomposites. The physicomechanical and thermal properties for nanocomposites of HB3-cured PUs are superior to those of the conventionally cured PUs.
机译:研究了由甲苯二异氰酸酯,聚丙二醇衍生并通过第三代超支化聚酯多元醇(HB3),三羟甲基丙烷(TMP)或甘油固化的新型聚氨酯(PU)的物理力学性能。通过透射电子显微镜和原子力显微镜观察到了HB3固化的PU纳米复合材料的明显的微相分离形态。形态学研究表明,在纳米复合材料的情况下,大部分为片状和部分插层的形态,这已通过X射线衍射分析进一步确定。与对照超支化PU相比,含有8 wt%的改性蒙脱土(Cloisite 30B)粘土的HB3固化的PU纳米复合材料的拉伸强度提高了约140%,同时热力学和动态力学性能也得到了改善。从傅里叶变换红外光谱分析中还发现,带有残留-NCO基团的聚合物链与HB3的反应性羟基(-OH)基团之间的束缚反应的程度是显着的,并且发现纳米填料优先与之发生反应。预聚物的-NCO基团。此外,已将HB3固化的PU与甘油和TMP固化的PU及其纳米复合材料的性能进行了比较。 HB3固化的PU的纳米复合材料的物理力学和热学性能优于常规固化的PU。

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