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Development and characterization of carbon nanopaper-based nanocomposite materials

机译:碳纳米纸基纳米复合材料的开发与表征

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Vacuum-Assisted Resin Transfer Molding (VARTM) process was used to fabricate the nanocomposites through integrating carbon nanofiber paper into traditional glass fiber reinforced composites. The carbon nanofiber paper had a porous structure with highly entangled carbon nanofibers and short glass fibers. In this study, the carbon nanofiber paper was employed as an inter-layer and surface layer of composite laminates to enhance the damping properties. Experiments conducted using the nanocomposite beam indicated up to 200-700% increase of the damping ratios at higher frequencies. The scanning electron microscopy (SEM) characterization of the carbon nanofiber paper and the nanocomposites was also conducted to investigate the impregnation of carbon nanofiber paper by the resin during the VARTM process and the mechanics of damping augmentation. The study showed a complete penetration of the resin through the carbon nanofiber paper. The connectivities between carbon nanofibers and short glass fibers within the carbon nanofiber paper were responsible for the significant energy dissipation in the nanocomposites during the damping tests.
机译:真空辅助树脂传递模塑(VARTM)工艺用于通过将碳纳米纤维纸集成到传统的玻璃纤维增​​强复合材料中来制造纳米复合材料。碳纳米纤维纸具有多孔结构,其具有高度缠结的碳纳米纤维和短玻璃纤维。在这项研究中,碳纳米纤维纸被用作复合层压板的中间层和表面层,以增强阻尼性能。使用纳米复合材料束进行的实验表明,在较高频率下,阻尼比最多可提高200-700%。还对碳纳米纤维纸和纳米复合材料进行了扫描电子显微镜(SEM)表征,以研究VARTM过程中树脂对碳纳米纤维纸的浸渍作用以及阻尼增强的机理。研究表明树脂完全渗透了碳纳米纤维纸。碳纳米纤维纸中的碳纳米纤维和短玻璃纤维之间的连通性是阻尼试验过程中纳米复合材料中大量能量耗散的原因。

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