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Vegetable Oil-Based Hyperbranched Thermosetting Polyurethane/Clay Nanocomposites

机译:植物油基超支化热固性聚氨酯/粘土纳米复合材料

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摘要

The highly branched polyurethanes and vegetable oil-based polymer nanocomposites have been showing fruitful advantages across a spectrum of potential field of applications.Mesua ferreaL. seed oil-based hyperbranched polyurethane (HBPU)/clay nanocomposites were prepared at different dose levels by in situ polymerization technique. The performances of epoxy-cured thermosetting nanocomposites are reported for the first time. The partially exfoliated structure of clay layers was confirmed by XRD and TEM. FTIR spectra indicate the presence of H bonding between nanoclay and the polymer matrix. The present investigation outlines the significant improvement of tensile strength, scratch hardness, thermostability, water vapor permeability, and adhesive strength without much influencing impact resistance, bending, and elongation at break of the nanocomposites compared to pristine HBPU thermoset. An increment of two times the tensile strength, 6 °C of melting point, and 111 °C of thermo-stability were achieved by the formation of nanocomposites. An excellent shape recovery of about 96–99% was observed for the nanocomposites. Thus, the formation of partially exfoliated clay/vegetable oil-based hyperbranched polyurethane nanocomposites significantly improved the performance.
机译:高度支化的聚氨酯和植物油基聚合物纳米复合材料在一系列潜在的应用领域中已显示出丰硕的优势。通过原位聚合技术制备了不同剂量水平的种子油基超支化聚氨酯(HBPU)/粘土纳米复合材料。首次报道了环氧固化的热固性纳米复合材料的性能。 XRD和TEM证实了粘土层的部分剥落结构。 FTIR光谱表明在纳米粘土和聚合物基质之间存在H键。本研究概述了与原始HBPU热固性材料相比,抗拉强度,划痕硬度,热稳定性,水蒸气渗透性和粘合强度的显着改善,而对纳米复合材料的抗冲击性,弯曲和断裂伸长率没有太大影响。通过形成纳米复合材料,拉伸强度增加了两倍,熔点为6°C,热稳定性为111°C。对于纳米复合材料,观察到极好的形状恢复率约为96–99%。因此,部分剥落的粘土/植物油基超支化聚氨酯纳米复合材料的形成显着改善了性能。

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