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Variation of Mechanical Properties of Epoxy-Clay Nanocomposite with Sonication Time and Clay Loading

机译:环氧黏土纳米复合材料力学性能随超声处理时间和黏土载荷的变化

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Epoxy-clay nanocomposites have recently gained considerable attention due to their interesting physical, thermal and mechanical properties. These properties, however, depend on a number of parameters such as the clay type, clay modifying agent, polymer matrix and the adopted mixing process. In the current work, epoxy-clay nanocomposites were prepared from Araldite GY6010 CRS and Nanomer I.30E nanoclay using different sonication (mixing) periods (5 to 60 minutes) and different concentrations of clay (2 to 5%wt). The effect of sonication time and clay loading on the tensile and hardness properties of the resulting nanocomposites were investigated. The results showed that the ultimate strength and fracture strain of the nanocomposites were below that of the neat epoxy, but the elastic modulus was generally enhanced by the addition of the nanoclay content. Increasing the sonication time enhanced the tensile strength on the expense of reducing the modulus of elasticity. Hardness of the nanocomposites did not show significant change with either the addition of clay or processing under different sonication times.
机译:环氧树脂-粘土纳米复合材料由于其有趣的物理,热和机械性能而最近引起了相当大的关注。但是,这些性能取决于许多参数,例如粘土类型,粘土改性剂,聚合物基体和采用的混合工艺。在当前的工作中,使用不同的超声处理(混合)时间(5至60分钟)和不同浓度的粘土(2至5%wt),由Araldite GY6010 CRS和Nanomer I.30E纳米粘土制备环氧粘土纳米复合材料。研究了超声处理时间和黏土负载量对所得纳米复合材料拉伸性能和硬度性能的影响。结果表明,纳米复合材料的极限强度和断裂应变低于纯环氧树脂,但弹性模量通常通过添加纳米粘土含量而提高。增加超声处理时间以降低弹性模量为代价来提高抗张强度。纳米复合材料的硬度没有显示出明显的变化,无论是添加粘土还是在不同的超声处理时间下进行加工。

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