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首页> 外文期刊>Journal of Composites Science >The Effects of Geometry and Chemical Composition of Nanoparticles on The Fracture Toughness of iPP Nanocomposites
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The Effects of Geometry and Chemical Composition of Nanoparticles on The Fracture Toughness of iPP Nanocomposites

机译:纳米颗粒几何形状和化学成分对IPP纳米复合材料裂缝韧性的影响

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This research deals with possible hybrid effects in the fracture energy of hybrid nanocomposites while taking a critical approach toward the currently-prevailing engineering practice of applying classical composite micromechanics to nanocomposites. For this purpose, different nanoparticles were embedded in an isotactic polypropylene matrix. The particles had different geometries (fibrous and platelets) and different chemical structures (organic vapor grown carbon nanofibers (VGCF); graphene nanoplatelets (GNP); and inorganic nanoclays, SiO_(2) nanofibers, and ZrO_(2) nanofibers). Almost all the composite systems presented improvements in the fracture energy, whereas the iPP/VGCF/GNP presented a positive hybrid effect. The main conclusion was that each nanocomposite system should be analyzed individually according to the constituent properties; the quality of the dispersion; and, primarily, by the type of interaction between the particles and the matrix.
机译:该研究对混合纳米复合材料的裂缝能量进行了可能的混合效应,同时采取符合当前普遍的工程实践的批判方法,可以将经典复合微机械施加到纳米复合材料。为此目的,将不同的纳米颗粒嵌入全同立构聚丙烯基质中。颗粒具有不同的几何形状(纤维状和血小板)和不同的化学结构(有机蒸汽生长碳纳米纤维(VGCF);石墨烯纳米键(GNP);和无机纳米铬,SiO_(2)纳米纤维和ZrO_(2)纳米纤维)。几乎所有复合体系都呈现了裂缝能量的改善,而IPP / VGCF / GNP呈现了正杂交效应。主要结论是,应根据构成特性单独分析每个纳米复合体系;分散的质量;并且主要是,通过颗粒和基质之间的相互作用的类型。

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