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Thermal and mechanical properties of tetrafunctional epoxy resin toughened with epoxidized soybean oil

机译:环氧大豆油增韧四官能环氧树脂的热力学性能

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摘要

A potential epoxy resin, i.e. epoxidized soybean oil (ESO), was synthesized to toughen the tetrafunctional epoxy resins. The ESO was blended with the epoxy resins to obtain the modified network having ESO content from 0 to 20 wt. percent. The neat epoxy resins and modified networks were characterized by the thermal and mechanical properties. As a result, thermal stability and glass transition temperature of the blends were slightly decreased with increasing the ESO content. This might be caused by the reduction of cross-linking density of the epoxy network, which could be attributed to the incomplete curing reaction in the blend systems. The critical stress intensity factor and flexural strength were increased up to 10 wt. percent ESO content. This could be interpreted in terms of the addition of larger ESO molecule weight into the epoxy resins, resulting in increasing the flexible properties of the epoxy resins, or the final toughness of the blend systems.
机译:合成了一种潜在的环氧树脂,即环氧化大豆油(ESO),以增韧四官能环氧树脂。将ESO与环氧树脂共混以获得具有0至20重量%的ESO含量的改性网络。百分。纯净的环氧树脂和改性网络的特征是热和机械性能。结果,随着ESO含量的增加,共混物的热稳定性和玻璃化转变温度略有下降。这可能是由于环氧网络的交联密度降低引起的,这可能归因于共混体系中固化反应的不完全。临界应力强度因子和抗弯强度提高到10 wt。 ESO百分比。这可以通过向环氧树脂中添加更大的ESO分子量来解释,从而提高环氧树脂的柔韧性或共混体系的最终韧性。

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