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首页> 外文期刊>Journal of Reinforced Plastics and Composites >Impact and damage tolerance of shear thickening fluids-impregnated carbon and glass fabric composites
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Impact and damage tolerance of shear thickening fluids-impregnated carbon and glass fabric composites

机译:剪切增稠流体浸渍碳和玻璃织物复合材料的冲击和损伤耐受性

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This work investigates impact and damage performance of shear thickening fluids-treated carbon and glass fabric composites. Carbon and glass fabrics were impregnated with shear thickening fluids at three different silica ratios (10-20 wt%) and infused with epoxy resin to convert thermoset composites using vacuum infusion method. Shear thickening fluids-treated fabrics and composites were subjected to 30 Joules and 20-100 Joules, respectively to analyse their impact behaviours. It was revealed that the addition of shear thickening fluids-enhanced energy absorption and maximum loads of carbon and glass fabrics due creating shear thickening effect during impact loading. Although shear thickening behaviour were not observed for composites due to creating a solid thermoset network around shear thickening fluids during impact testing, energy absorption of glass and carbon composites were increased by lowering the interfacial bonding and increasing ductility. Compression and compression after impact strength of glass and carbon composites were decreased after using shear thickening fluids-treated fabrics. However, they exhibited much higher residual strength compared to neat glass and carbon composites.
机译:这项工作研究了剪切增稠流体处理的碳和玻璃织物复合材料的影响和损伤性能。碳和玻璃织物以三种不同的二氧化硅比(10-20wt%)浸渍剪切增稠流体,并用环氧树脂注入,以使用真空输注法转换热固性复合材料。剪切增稠流体处理的织物和复合材料分别进行30焦耳和20-100焦耳,分析其影响行为。据透露,添加剪切增稠流体 - 增强的能量吸收和最大负载的碳和玻璃织物由于在冲击载荷期间产生剪切增稠效果。尽管由于在冲击试验期间在剪切增稠流体周围产生固体热固性网络而未观察到剪切增稠行为,但通过降低界面粘合和增加延展性,增加了玻璃和碳复合材料的能量吸收。在使用剪切增稠流体处理的织物后,降低玻璃和碳复合材料的冲击强度后的压缩和压缩。然而,与纯玻璃和碳复合材料相比,它们表现出更高的剩余强度。

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