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Toughening Anhydride-Cured Epoxy Resins Using FattyAlkyl-Anhydride-Grafted Epoxidized Soybean Oil

机译:用脂肪增韧酸酐固化的环氧树脂烷基酸酐接枝的环氧大豆油

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摘要

The aim of this work is to develop a series of advanced biobased tougheners for thermosetting epoxy resins suitable for high-performance applications. These bio-rubber (BR) tougheners were prepared via a one-step chemical modification of epoxidized soybean oil using biobased hexanoic anhydride. To investigate their toughening performance, these BR tougheners were blended with diglycidyl ether of bisphenol A epoxy monomers at various weight fractions and cured with anhydride hardeners. Significant improvements in fracture toughness properties, as well as minimal reductions in glass transition temperature (Tg), were observed. When 20 wt % of a BR toughener was utilized, the critical stress intensity factor and critical strain energy release rate of a thermosetting matrix were enhanced by >200 and >500%, respectively, whereas the Tg was reduced by only 20 °C. The phase-separated domains were evenly dispersed across the fracture surfaces as observed through scanning electron microscopy and atomic force microscopy. Moreover, domain sizes were demonstrated to be tunable within the micrometer range by altering the toughener molecular structure and weight fractions.These BR tougheners demonstrate the possibility of achieving toughnesswhile having the thermal properties of standard bisphenol epoxy thermosettingresins.
机译:这项工作的目的是开发一系列先进的生物基增韧剂,用于适用于高性能应用的热固性环氧树脂。这些生物橡胶(BR)增韧剂是使用生物基己酸酐通过环氧化大豆油的一步化学修饰制备的。为了研究其增韧性能,将这些BR增韧剂与双酚A环氧单体的二缩水甘油醚以不同的重量分数混合,并用酸酐硬化剂进行固化。观察到断裂韧性性能的显着改善以及玻璃化转变温度(Tg)的最小降低。当使用20 wt%的BR增韧剂时,热固性基质的临界应力强度因子和临界应变能释放速率分别提高了> 200%和> 500%,而Tg仅降低了20°C。通过扫描电子显微镜和原子力显微镜观察,相分离的畴均匀地分布在整个断裂表面上。此外,通过改变增韧剂分子结构和重量分数,已证明畴尺寸在微米范围内是可调的。这些BR增韧剂证明了实现韧性的可能性同时具有标准双酚环氧树脂热固性的热性能树脂。

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