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Improvement of tensile properties and toughness of an epoxy resin by nanozirconium-dioxide reinforcement

机译:纳米二氧化锆增强剂改善环氧树脂的拉伸性能和韧性

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摘要

Zirconium dioxide (ZrO2) nanoparticles were systematically added as reinforcement to a diglycidyl ether of bisphenol A (DGEBA)-based epoxy resin. A series of composites with varying amounts of nanoparticles was prepared and their morphology and mechanical properties were studied. The obtained nanocomposites were characterized by tensile tests, dynamic mechanical thermal analysis, and fracture toughness (K-IC) investigations; by standardized methods, to define the influence of the nanoparticle content on their mechanical and thermal properties. The morphological analysis of the composites shows that nanoparticles form small clusters, which are uniformly distributed into the matrix bulk. The tensile modulus (E) and the K-IC of the epoxy matrix increase at rising zirconia content. Improvements of more than 37% on modulus and 100% on K-IC were reached by the nanocomposite containing 10 vol.-% ZrO2 with respect to the neat epoxy (E-o = 3.1 GPa, K-ICo = 0.74 MPam(0.5)). The presence of nanoparticles produces also an increment on glass transition temperature (T-g). The epoxy resin added with 8 vol.-% ZrO2 records a T-g approximately 8% higher than the unmodified matrix (T-go = 100.3 degrees C).
机译:系统地将二氧化锆(ZrO2)纳米颗粒作为增强剂添加到双酚A(DGEBA)基环氧树脂的二缩水甘油醚中。制备了一系列具有不同数量纳米粒子的复合材料,并研究了它们的形态和力学性能。通过拉伸试验,动态力学热分析和断裂韧性(K-IC)研究表征了获得的纳米复合材料。通过标准化方法来定义纳米颗粒含量对其机械性能和热性能的影响。复合材料的形态分析表明,纳米颗粒形成小的团簇,均匀地分布在基体中。随着氧化锆含量的增加,环氧树脂基体的拉伸模量(E)和K-IC增大。相对于纯净环氧(E-o = 3.1 GPa,K-ICo = 0.74 MPam(0.5)),含有10%(体积)ZrO2的纳米复合材料的模量提高了37%,K-IC提高了100%。纳米颗粒的存在还使玻璃化转变温度(T-g)增加。添加了8%(体积)ZrO2的环氧树脂记录到的T-g比未改性的基质(T-go = 100.3摄氏度)高约8%。

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