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首页> 外文期刊>Journal of Applied Polymer Science >An epoxy-ended hyperbranched polymer as a new modifier for toughening and reinforcing in epoxy resin
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An epoxy-ended hyperbranched polymer as a new modifier for toughening and reinforcing in epoxy resin

机译:环氧端基超支化聚合物,可作为新的改性剂,用于环氧树脂的增韧和增强

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摘要

A new epoxy-ended hyperbranched polyether (HBPEE) with aromatic skeletons was synthesized through one-step proton transfer polymerization. The structure of HBPEE was confirmed by Fourier transform infrared spectroscopy (FTIR), and nuclear magnetic resonance (NMR) measurements. It was proved to be one high efficient modifier in toughening and reinforcing epoxy matrix. In particular, unlike most other hyperbranched modifiers, the glass transition temperature (T_g) was also increased. Compared with the neat DGEBA, the hybrid curing systems showed excellent balanced mechanical properties at 5 wt % HBPEE loading. The great improvements were attributed to the increased cross-linking density, rigid skeletons, and the molecule-scale cavities brought by the reactive HBPEE, which were confirmed by dynamical mechanical analysis (DMA) and thermal mechanical analysis (TMA). Furthermore, because of the reactivity of HBPEE, the hybrids inclined to form a homogenous system after the curing. DMA and scanning electron microscopy (SEM) results revealed that no phase separation occurred in the DGEBA/HBPEE hybrids after the introduction of reactive HBPEE. SEM also confirmed that the addition of HBPEE could enhance the toughness of epoxy materials as evident from fibril formation.
机译:通过一步质子转移聚合反应,合成了一种具有芳香族骨架的环氧端基超支化聚醚(HBPEE)。 HBPEE的结构通过傅立叶变换红外光谱(FTIR)和核磁共振(NMR)测量得到确认。事实证明,它是增韧和增强环氧基质的一种高效改性剂。特别地,与大多数其他超支化改性剂不同,玻璃化转变温度(T_g)也提高了。与纯DGEBA相比,杂化固化体系在HBPEE含量为5 wt%时显示出优异的平衡机械性能。巨大的进步归因于反应性HBPEE带来的交联密度增加,刚性骨架增加以及分子​​级腔,这通过动态力学分析(DMA)和热力学分析(TMA)得以证实。此外,由于HBPEE的反应性,杂化体倾向于在固化后形成均质体系。 DMA和扫描电子显微镜(SEM)结果表明,引入反应性HBPEE后,在DGEBA / HBPEE杂化物中未发生相分离。 SEM还证实,从原纤维形成可以明显看出,添加HBPEE可以增强环氧材料的韧性。

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