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Mechanical behavior of electrophoretically modified CFRP composites at elevated temperatures: An assessment of the influence of graphene carboxyl bath concentration

机译:电泳改性CFRP复合材料在高温下的力学行为:石墨烯羧基浴浓度影响的评估

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摘要

The study aims at investigating the mechanical behavior of carbon fiber reinforced polymer (CFRP) composites modified with graphene carboxyl at elevated temperature (ET-110 degrees C) and understanding the effect of electrophoretic deposition bath concentration (0.5 g/L, 1.0 g/L, and 1.5 g/L) on their mechanical behavior at ET. The 1.5 g/L composite has revealed a maximum improvement in energy absorbed before failure of 33.25 at RT and 22.54 at ET for flexural testing and similar to 35 at RT for short beam shear testing, over neat CFRP composite. The modified composites have shown an improved flexural strain to failure at both RT and ET, with 1.5 g/L composite exhibiting maximum enhancement of 12.41 at RT and 26.52 at ET over neat composite. However, at ET, modified composites exhibited lower flexural strength and interlaminar shear strength values in comparison to that of neat. Viscoelastic behavior of all composites was studied to understand bath concentration's effect on thermal behavior via dynamic mechanical thermal analysis. Differential scanning calorimetry was employed for governing the glass transition temperature of composites. Fractography of tested samples (both ET and RT) was performed utilizing a scanning electron microscope to determine the prominent failure mode.
机译:本研究旨在研究石墨烯羧基改性的碳纤维增强聚合物(CFRP)复合材料在高温(ET-110°C)下的力学行为,并了解电泳沉积液浓度(0.5 g/L、1.0 g/L和1.5 g/L)对其在ET条件下的力学行为的影响。与纯CFRP复合材料相比,1.5 g/L复合材料在室温下和在ET下在弯曲试验中吸收的能量分别提高了33.25%和22.54%,在室温下短梁剪切试验中与35%相似。改性复合材料在室温和ET下均表现出更好的弯曲破坏应变,1.5 g/L复合材料在室温下的最大增强率为12.41%,在ET下的最大增强率为26.52%。然而,在ET时,与纯复合材料相比,改性复合材料表现出较低的抗弯强度和层间剪切强度值。通过动态力学热分析研究了所有复合材料的粘弹性行为,以了解镀液浓度对热行为的影响。采用差示扫描量热法控制复合材料的玻璃化转变温度。使用扫描电子显微镜对测试样品(ET 和 RT)进行断层扫描,以确定突出的失效模式。

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