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Effect of physical modification of matrix by nano(polyvinyl alcohol) fibers on fatigue performance of carbon fiber fabric-reinforced vinylester composites

机译:纳米(聚乙烯醇)纤维对基体的物理改性对碳纤维织物增强乙烯基酯复合材料疲劳性能的影响

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摘要

The vinylester resins were physically modified by 0.05 and 0.1 wt% nano polyvinyl alcohol fibers with about 80 nm in diameter prepared by electrospinning. Addition of nano polyvinyl alcohol fiber with 0.05-0.1 wt% improved the fracture toughness of vinylester resin slightly by similar to 14.3%, while the carbon fiber/vinylester resin adhesion was almost unchanged. Then, carbon fiber/vinylester resin composites were fabricated by using modified vinylester resin as matrix and carbon fiber plain-woven fabrics as reinforcement. Low and high-cycle fatigue tests were conducted under the laboratory condition as well as static tensile tests. The tensile strength of carbon fiber/vinylester resin/polyvinyl alcohol composites increased slightly due to increased resistance to damage propagation at transverse bundles and resin-rich region. The fatigue properties of carbon fiber/vinylester resin composites were improved significantly by 3-50 times with the addition of no more than 0.1 wt% nano polyvinyl alcohol fibers. Due to the incorporation of nano filler, damage degree in carbon fiber/vinylester resin/polyvinyl alcohol composite was reduced at the fatigue initial stage based on thermoelastic stress damage analysis. Furthermore, a delay of delamination growth was found as well at the fatigue middle stage according to CT-scan and scanning electron microscopy investigation. The resistance to fatigue damage accumulation due to energy absorption by the addition of nano fiber contributed to fatigue life extension.
机译:乙烯基酯树脂被通过电纺丝制备的直径为约80nm的0.05和0.1wt%的纳米聚乙烯醇纤维物理改性。添加0.05-0.1wt%的纳米聚乙烯醇纤维使乙烯基酯树脂的断裂韧性稍微提高了约14.3%,而碳纤维/乙烯基酯树脂的粘合力几乎不变。然后,以改性乙烯基酯树脂为基体,以碳纤维平纹织物为增强材料,制备了碳纤维/乙烯基酯树脂复合材料。在实验室条件下进行了低循环疲劳试验和高循环疲劳试验以及静态拉伸试验。碳纤维/乙烯基酯树脂/聚乙烯醇复合材料的拉伸强度由于对横向束和富含树脂的区域的破坏传播的抵抗力增强而略有提高。碳纤维/乙烯基酯树脂复合材料的疲劳性能通过添加不超过0.1 wt%的纳米聚乙烯醇纤维而显着提高了3至50倍。由于掺入了纳米填料,基于热弹性应力损伤分析,降低了碳纤维/乙烯基酯树脂/聚乙烯醇复合材料在疲劳初期的损伤程度。此外,根据CT扫描和扫描电子显微镜研究,在疲劳中间阶段也发现了分层生长的延迟。由于添加纳米纤维而吸收能量,对疲劳损伤累积的抵抗力有助于延长疲劳寿命。

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