Parameter design of continuous carbon fiber-reinforced phenolic resin composites via in situ-curing 3D printing technology

Wencai Dong, Chonggao Bao, Rongzhen Liu, Shijia Li
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Abstract

To improve the print quality and mechanical properties, the process parameters of the continuous carbon fiber-reinforced phenolic resin (CF/PF) composites were systematically investigated based on the in situ-curing 3D printing technology. The printing spacing and printing thickness affected the bonding between fiber bundles. Under the optimized parameters, the surface of the CF/PF composites was smooth and flat, without obvious gaps between the adjacent prepregs and printing layers. Especially, we optimized the resin impregnation temperature ( T i) and analyzed the influence mechanism on mechanical properties. With the increasing impregnation temperature, the resin content and the squeezing force applied to fiber bundles decrease, while the wettability between fiber and resin increases. The resin contents and the squeezing force play more important role on the mechanical properties of the CF/PF composites. With the combined influence of the above effects, the flexural strength of CF/PF composites reaches maximum value of 471.1 MPa under the impregnation temperature of 30°C, printing spacing of 0.80 mm, and printing thickness of 0.10 mm, with minimum defect volume, uniform distribution of fiber and resin, and appropriate fiber/resin interaction.
通过原位固化三维打印技术进行连续碳纤维增强酚醛树脂复合材料的参数设计
为了提高打印质量和机械性能,基于原位固化三维打印技术,对连续碳纤维增强酚醛树脂(CF/PF)复合材料的工艺参数进行了系统研究。打印间距和打印厚度会影响纤维束之间的粘结。在优化参数下,CF/PF 复合材料表面光滑平整,相邻预浸料和打印层之间无明显间隙。特别是对树脂浸渍温度(T i)进行了优化,并分析了其对力学性能的影响机理。随着浸渍温度的升高,树脂含量和纤维束受到的挤压力降低,而纤维与树脂之间的润湿性增加。树脂含量和挤压力对 CF/PF 复合材料力学性能的影响更为重要。在上述效应的综合影响下,CF/PF 复合材料在浸渍温度为 30°C、印刷间距为 0.80 mm、印刷厚度为 0.10 mm、缺陷体积最小、纤维与树脂分布均匀、纤维与树脂相互作用适当的条件下,其抗弯强度达到最大值 471.1 MPa。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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