Fractographic Investigation of Cryogenic Temperature Mode-II Delamination Behavior of Filament Wound CFRP Laminates with Varied Resin Systems

IF 3 Q2 MATERIALS SCIENCE, COMPOSITES
Recep Ufuk, Kaan Bilge, Barış Emre Kıral, Murat Ereke, Arif Karabeyoğlu
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Abstract

This study investigates the mode-II delamination performance of filament-wound unidirectional composites with different types of epoxies as their matrix phase under room and cryogenic temperatures. A typical vacuum infusion resin, an aerospace-grade cold-curing resin and crack-resistant toughened resin systems were wet-wound with 12K carbon fiber tows to manufacture the composite samples. Test samples with a (0)16 ply sequence were tested according to ASTM D7905-19. The tested samples were investigated via microscopic analysis to assess the failure mechanisms associated with varying the matrix material and temperature. ENF tests at room temperature were found to be susceptible to the inherent variance in the fiber architectures along with resin-viscosity-driven fiber wetting. Cryogenic conditions induce a shift in the mode-II delamination behavior from a rather complex failure mechanism to a consistent fiber/matrix debonding mode with diminishing GIIc values except for the toughened resin system. The provided comprehensive fractographic analysis enables an understanding of the various causes of fracture, which determines the laminate performance. The combined evaluation of the distinctive damage modes reported in this study provides guidance on the conventional wet-winding process, which still remains a volumetrically dominant and viable option for cryogenic applications, particularly for vessels with limited operational durations like sounding rockets.
不同树脂体系缠绕CFRP复合材料的低温ii型分层行为断口学研究
本文研究了以不同类型环氧树脂为基体相的长丝缠绕单向复合材料在室温和低温下的ii型分层性能。采用典型的真空灌注树脂、航空级冷固化树脂和抗裂增韧树脂体系,用12K碳纤维束湿缠绕制备复合材料样品。根据ASTM D7905-19测试具有(0)16层序列的测试样品。通过微观分析对试样进行了研究,以评估与基体材料和温度变化有关的破坏机制。室温下的ENF测试被发现容易受到纤维结构的固有变化以及树脂粘度驱动的纤维润湿的影响。低温条件诱导ii型脱层行为从相当复杂的破坏机制转变为一致的纤维/基体脱粘模式,除增韧树脂体系外,GIIc值逐渐减小。所提供的全面断口分析可以帮助我们了解断裂的各种原因,从而决定层压材料的性能。本研究报告中对不同损伤模式的综合评估为传统的湿缠绕工艺提供了指导,湿缠绕工艺在低温应用中仍然是一种体积上占主导地位的可行选择,特别是对于像探空火箭这样运行时间有限的容器。
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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来源期刊
Journal of Composites Science
Journal of Composites Science MATERIALS SCIENCE, COMPOSITES-
CiteScore
5.00
自引率
9.10%
发文量
328
审稿时长
11 weeks
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