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Toughening of an epoxy anhydride resin system using an epoxidized hyperbranched polymer

机译:使用环氧化的超支化聚合物对环氧酸酐树脂体系进行增韧

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This paper reports on the use of an epoxidized hyperbranched polymer (HBP) as an additive to an epoxy anhydride resin system. The hyperbranched polymer used was an aliphatic polyester with a molecular weight of around 10 500 g mol~(-1). The epoxy resin mixture used was a combination of a difunctional diglycidyl ether of bisphenol A (DGEBA) epoxy and an epoxy novolac, and was cured with a catalysed anhydride curing agent. It has been shown that, at a concentration range of 0 to 20 wt% addition, the HBP is able to almost double the fracture toughness, with little evidence of any deleterious effects upon processing and the durability of the cured resin system. The flexural modulus and stress, however, were found to both decrease by about 30% as a result of HBP addition while the T_g was found to decrease by about 10%. The processability of the uncured resin systems has been investigated by using rheological and calorimetric techniques and it was found that the processability window, as determined by the gel time and viscosity changes, was relatively unaffected by HBP addition. The fracture surfaces were evaluated by using scanning electron microscopy which showed that the unique structure of the HBP facilitates an enhanced interaction with the polymer matrix to achieve excellent toughness enhancement of the polymer matrix. The durability of the epoxy network has been investigated via thermogravimetric analysis (TGA) and solvent uptake, and the HBP has been shown to have little systematic deleterious effect upon the degradation temperatures and the total amount of solvent absorbed.
机译:本文报道了使用环氧化超支化聚合物(HBP)作为环氧酸酐树脂体系的添加剂。所使用的超支化聚合物是分子量为约10 500 g mol·(-1)的脂族聚酯。所用的环氧树脂混合物是双酚A(DGEBA)环氧树脂的双官能二缩水甘油醚和环氧酚醛清漆的组合,并用催化的酸酐固化剂进行固化。已经表明,在0至20wt%的浓度范围内,HBP能够使断裂韧性几乎翻倍,几乎没有证据表明对加工和固化树脂体系的耐久性有任何有害影响。然而,由于添加了HBP,发现弯曲模量和应力均降低了约30%,而发现T_g降低了约10%。通过使用流变学和量热技术研究了未固化树脂体系的可加工性,发现由凝胶时间和粘度变化确定的可加工性窗口相对不受HBP添加的影响。通过使用扫描电子显微镜评估断裂表面,结果表明HBP的独特结构促进了与聚合物基体的增强的相互作用,从而实现了聚合物基体的优异的韧性增强。环氧网络的耐久性已通过热重分析(TGA)和溶剂吸收进行了研究,并且HBP已显示出对降解温度和吸收的溶剂总量几乎没有系统的有害影响。

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