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首页> 外文期刊>Journal of Applied Polymer Science >Toughness and strength improvement of diglycidyl ether of bisphenol-A by low viscosity liquid hyperbranched epoxy resin
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Toughness and strength improvement of diglycidyl ether of bisphenol-A by low viscosity liquid hyperbranched epoxy resin

机译:低粘度液态超支化环氧树脂提高双酚A二缩水甘油醚的韧性和强度

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摘要

This article reports on the use of low viscosity liquid thermosetting hyperbranched poly(trimellitic anhydride-diethylene glycol) ester epoxy resin (HTDE) as an additive to an epoxy amine resin system. Four kinds of variety molecular weight and epoxy equivalent weight HTDE as modifiers in the diglycidyl ether of bisphenol-A (DGEBA) amine systems are discussed in detail. It has been shown that the content and molecular weight of HTDE have important effect on the performance of the cured system, and the performance of the HTDE/DGEBA blends has been maximum with the increase of content and molecular weight or generation of HTDE. The impact strength and fracture toughness of the cured systems with 9 wt % second generation of HTDE are 58.2 kJ/ m(2) and 3.20 MPa m(1/2), which are almost three and two times, respectively, of DGEBA performance. Furthermore, the tensile and flexural strength can be enhanced about 20%. The glass transition temperature and Vicat temperature, however, are found to decrease to some extent. The fracture surfaces are evaluated by using scanning electron microscopy, which showed that the homogeneous phase structure of the HTDE blends facilitates an enhanced interaction with the polymer matrix to achieve excellent toughness and strength enhancement of the cured systems, and the "protonema" phenomenon in SEM has been explained by in situ reinforcing and toughening mechanism and molecular simulation. (c) 2006 Wiley Periodicals, Inc.
机译:本文报道了使用低粘度液体热固性超支化聚(偏苯三酸酐-二甘醇)酯环氧树脂(HTDE)作为环氧胺树脂体系的添加剂的情况。详细讨论了双酚A(DGEBA)胺系二缩水甘油醚中作为改性剂的四种分子量和环氧当量HTDE。已经表明,HTDE的含量和分子量对固化体系的性能具有重要影响,并且HTDE / DGEBA共混物的性能随着含量和分子量的增加或HTDE的生成而最大化。具有9 wt%的第二代HTDE的固化体系的冲击强度和断裂韧性分别为58.2 kJ / m(2)和3.20 MPa m(1/2),分别是DGEBA性能的近三倍和两倍。此外,抗张强度和抗弯强度可以提高约20%。然而,发现玻璃化转变温度和维卡温度降低了一定程度。使用扫描电子显微镜对断裂表面进行评估,结果表明,HTDE共混物的均相结构有助于增强与聚合物基体的相互作用,从而使固化体系具有出色的韧性和强度,并且在SEM中具有“原形”现象。通过原位增强和增韧机理以及分子模拟来解释。 (c)2006年Wiley Periodicals,Inc.

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