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TOUGHENING VINYL ESTER RESIN USING NOVEL BIO-BASED RUBBER

机译:使用新型生物基橡胶来增强乙烯基酯树脂

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Vinyl Ester (VE) resins are widely used to make polymer matrix composites because of their high modulus, high strength, high glass transition temperature, low weight, and low cost. However, one significant disadvantage of VE resins is low fracture toughness that limits their applications. Traditional methods using butadiene-acrylonitrile copolymer based liquid rubber as a toughener did not achieve satisfactory toughening effect due to its poor miscibility with VE resins as well as its high viscosity. In our study, a novel bio-based rubber (BR) was designed and its toughening effect on VE resins was evaluated. By using VE as a base system, it was demonstrated that significant improvement in fracture toughness (G_(1c)=2000 J/m~2 compared to 250 J/m~2) is achieved with minimal reduction of Tg. Moreover, the low viscosity associated with the BR toughener provides ease of processing compared to common liquid and particulate rubber modifiers.
机译:乙烯基酯(VE)树脂因其高模量,高强度,高玻璃化转变温度,低重量和低成本而被广泛用于制造聚合物基复合材料。然而,VE树脂的一个显着缺点是断裂韧性低,这限制了它们的应用。使用基于丁二烯-丙烯腈共聚物的液态橡胶作为增韧剂的传统方法由于与VE树脂的互溶性差以及粘度高而无法获得令人满意的增韧效果。在我们的研究中,设计了一种新型的生物基橡胶(BR)并评估了其对VE树脂的增韧效果。通过使用VE作为基础体系,证明了在不降低Tg的情况下,可以显着提高断裂韧性(与250 J / m〜2相比,G_(1c)= 2000 J / m〜2)。而且,与普通的液体和颗粒状橡胶改性剂相比,与BR增韧剂相关的低粘度使加工更加容易。

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