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Morphology and fracture behavior of POM modified epoxy matrices and their carbon fiber composites

机译:POM改性环氧基质及其碳纤维复合材料的形貌和断裂行为

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In the present study, polyoxymethylene (POM), a crystallizable thermoplastic, is investigated for toughening of an epoxy resin and a carbon fiber reinforced composite produced from it. Depending on the blend composition POM forms different morphologies during the curing reaction of epoxy (particulate, co-continuous or phase-inverted). A multi-fold increase in the fracture toughness of the neat resin is obtained for particulate morphology. Fractographic investigation of fracture surfaces reveals a number of energy dissipation mechanisms, including particle crack bridging, matrix shear yielding, and plastic void growth following particle debonding. The presence of fibers is found to severely disturb the phase separation process and to change the resulting morphology in the fiber reinforced composite. With it the interlaminar fracture behavior of the composite is compromised. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在本研究中,对聚甲醛(POM)(一种可结晶的热塑性塑料)进行了研究,以增强环氧树脂和由其制成的碳纤维增强复合材料的韧性。取决于共混物的组成,POM在环氧树脂的固化反应(颗粒状,共连续或相变)中形成不同的形态。对于颗粒形态,纯树脂的断裂韧性得到了多重提高。断裂表面的分形研究表明,存在多种能量耗散机制,包括颗粒裂纹桥接,基体剪切屈服和颗粒脱粘后的塑性空隙增长。发现纤维的存在严重干扰了相分离过程并改变了纤维增强复合材料中所得的形态。用它破坏了复合材料的层间断裂性能。 (C)2015 Elsevier Ltd.保留所有权利。

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