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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Hyperbranched polyether as an all-purpose epoxy modifier: controlled synthesis and toughening mechanisms
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Hyperbranched polyether as an all-purpose epoxy modifier: controlled synthesis and toughening mechanisms

机译:超支化聚醚作为通用型环氧改性剂:受控的合成和增韧机理

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摘要

The facile controlled synthesis of an epoxide-terminated hyperbranched aromatic polyether (EHBPE) that is suitable for mass production is demonstrated using a one-pot A(2) + B-3 approach by taking advantage of competing reactions. When used as toughener for the DGEBA/TETA curing system, non-phase-separated hybrids with notable improvements in toughness are obtained. Moreover, the addition of EHBPE also simultaneously improves the glass transition temperature (T-g) and tensile strength. T-g, tensile strength, impact strength, glassy modulus, and fractional free volume are found to increase with EHBPE loading up to 10%. Explanations for the three enhancements are provided. More importantly, the toughening mechanisms for the non-phase-separated hybrids are outlined in detail for the first time.
机译:利用一锅A(2)+ B-3方法通过竞争性竞争证明了适用于大规模生产的环氧基封端的超支化芳族聚醚(EHBPE)的简便受控合成。当用作DGEBA / TETA固化系统的增韧剂时,可获得具有显着改善的韧性的非相分离杂化材料。此外,添加EHBPE还可以同时提高玻璃化转变温度(T-g)和拉伸强度。发现T-g,抗张强度,冲击强度,玻璃态模量和自由体积分数随EHBPE含量增加至10%而增加。提供了三个增强功能的说明。更重要的是,首次详细概述了非相分离的杂化体的增韧机理。

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