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Mechanical performance of carbon fiber/epoxy composites cured by self-resistance electric heating method

机译:碳纤维/环氧复合材料的机械性能通过自阻电电加热法固化

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摘要

Carbon fiber reinforced plastic self-resistance electric (SRE) heating has been conceived as an alternative to out-of-autoclave technology due to its characteristics of uniform heating, fast heating/cooling, low energy consumption, and low equipment investment. In this work, a series of SRE heating experiments were conducted, in which the temperature distribution field, energy consumption, and curing time of SRE curing process were characterized. Comprehensive mechanical tests and microscopic characterization were carried out. The experimental results exhibit that the rapid heating rate of SRE curing process resulted in a weaker matrix performance because of the insufficient time of void elimination, which finally leads to an inferior compression and flexural strength for the composite part, while the fiber preferential heating effect can significantly improve the fiber-resin interfacial strength, because the naturally formed temperature difference along the interfacial area enhanced the adhesive strength of the resin around the interface, which improved the macroscopic tension and interlaminar shear strength.
机译:碳纤维增强塑料的自电阻电(SRE)加热被设想作为替代外的高压釜技术由于均匀加热,快速加热/冷却,能耗低,以及低的设备投资的其特性。在这项工作中,一系列的SRE加热进行实验,其中,所述温度分布领域,能源消耗,和SRE固化过程的固化时间进行表征。综合力学性能测试和微观表征进行了。实验结果显示出该SRE固化过程的快速加热速率导致较弱的矩阵表现,因为空隙消除的时间不足其最终导致较差的压缩和挠曲强度为复合部件,而纤维优先加热效果显著提高纤维 - 树脂的界面强度,因为沿着所述界面面积的自然形成的温度差提高了界面,提高了宏观张力和层间剪切强度周围的树脂的粘合强度。

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