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首页> 外文期刊>Polymers & Polymer Composites >Processing,Impact Response and Damage Characterisation of Plain-Weave Carbon/Epoxy-Nanoclay Nanocomposites
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Processing,Impact Response and Damage Characterisation of Plain-Weave Carbon/Epoxy-Nanoclay Nanocomposites

机译:平纹碳/环氧-纳米粘土纳米复合材料的加工,冲击响应和损伤表征

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An organically modified montmorillonite nanoclay,was used to modify a toughened epoxy system using the sonication route.The modified epoxy was then used to fabricate 15-layer plain weave carbon/epoxy laminates using hand-layup followed by vacuum bag moulding.X-ray diffraction studies were carried out to investigate the basal spacing between the clay galleries.The results indicated that an intercalated clay structures was produced.Samples were cut from the laminates and subjected to low-velocity impact loading using an instrumented drop-weight system.Transient responses of the samples were recorded and analysed in terms to load-energy versus time relations.Impact damage was characterised by utilising an ultrasonic non-destructive evaluation system.Results of the study indicated that nanoclay reinforced laminates exhibited better impact performance in terms of higher peak load and reduced damage size than the controlled samples at any given energy level.
机译:使用有机改性的蒙脱土纳米粘土,通过超声处理方法来改性增韧的环氧体系,然后将改性的环氧树脂用于手工铺设然后真空袋成型的15层平织碳/环氧树脂层压板。进行了研究以研究粘土画廊之间的基础间距,结果表明产生了层间的粘土结构,从层压板上切下了样品,并使用仪器降重系统对样品进行了低速冲击载荷。记录样品并分析其载荷-能量与时间的关系。利用超声波无损评估系统对冲击损伤进行表征。研究结果表明,纳米粘土增强层压板在更高的峰值载荷和更大的冲击强度下表现出更好的冲击性能。在任何给定的能量水平下,与对照样品相比,损伤尺寸减小了。

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