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Microstructure and fracture behavior of semicrystalline polymer-clay nanocomposites

机译:半结晶聚合物-粘土纳米复合材料的微观结构和断裂行为

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The relationships between the microstructure and the fracture behavior of three polymer/clay nanocomposites were studied. Two different polymer matrices were chosen, namely polyamide-6 and polyethylene (compatibilized with PE-g-MA or PE-g-PEo), to reach very different clay dispersion states. The microstructure was characterized in terms of polymer crystallinity, orientation of the polymer crystalline lamellae, clay dispersion state, and orientation of the clay tactoids. The mechanical behavior was characterized by tensile tests. The essential work of fracture (EWF) concept was used to determine the fracture behavior of the nanocomposites. Both tensile and EWF tests were performed in two perpendicular directions, namely longitudinal and transversal. It is shown that the fracture behaviors of the matrices mainly depend on the polymer crystalline lamellae orientation. For the nanocomposites, the relationships between the matrix orientation, the clay dispersion states, the values of the EWF parameters (omega, and beta omega(p)), and their anisotropy are discussed. The results show that the lower the average clay tactoid thickness, the lower is the decrease of fracture performance for the nanocomposite and the more consumed energy as longer the path of the crack. Besides, a linear dependence of the anisotropy of the EWF parameters of the nanocomposites on the average clay aspect ratio is found. The more exfoliated the structure is, the less pronounced the anisotropy of the EWF parameters. Interestingly, it is thought that the average clay aspect ratio is the parameter representing the clay dispersion state that governs the fracture anisotropy of the nanocomposites (as the elastic properties determined by tensile tests). (C) 2008 Wiley Periodicals, Inc.
机译:研究了三种聚合物/粘土纳米复合材料的微观结构与断裂行为之间的关系。选择两种不同的聚合物基质,即聚酰胺6和聚乙烯(与PE-g-MA或PE-g-PEo相容),以达到非常不同的粘土分散状态。根据聚合物的结晶度,聚合物结晶薄片的取向,粘土的分散状态和粘土的触针的取向来表征微观结构。机械性能通过拉伸试验表征。断裂的基本功(EWF)概念用于确定纳米复合材料的断裂行为。拉伸和EWF测试均在两个垂直方向上进行,即纵向和横向。结果表明,基体的断裂行为主要取决于聚合物晶体的薄片取向。对于纳米复合材料,讨论了基体取向,粘土分散状态,EWF参数(ω和βomega(p))的值及其各向异性之间的关系。结果表明,平均黏土触针厚度越低,纳米复合材料的断裂性能下降越小,并且随着裂纹路径的延长,能量消耗也越多。此外,发现了纳米复合材料的EWF参数的各向异性对平均粘土纵横比的线性依赖性。结构剥落得越多,EWF参数的各向异性就越不明显。有趣的是,认为平均粘土长径比是代表粘土分散状态的参数,该参数控制纳米复合材料的断裂各向异性(由拉伸试验确定的弹性)。 (C)2008 Wiley期刊公司

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