层序不连续单向CFRP层合板的损伤行为

IF 2.9 4区 材料科学 Q3 MATERIALS SCIENCE, COMPOSITES
M. J. Mohammad Fikry, Yutaro Arai, Ryo Inoue, Vladimir Vinogradov, K. T. Tan, Shinji Ogihara
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引用次数: 0

摘要

本文对具有层序不连续的单向碳纤维增强塑料层合板的材料性能和损伤行为进行了全面的定量研究。对不同树脂间隙长度的层压板进行了评价。采用原位边缘观察和x射线计算机断层扫描来评估层间不连续区域的损伤过程。这些方法检查了最初发生的裂缝、次生裂缝和分层。在本研究中观察到一些意想不到的开裂行为。例如,观察到初始裂缝不是在界面上形成的,而是在与树脂-层界面的距离上形成的,这可能是由于树脂在固化过程中化学收缩引起的约束条件。此外,树脂区域的所有裂缝都向中心弯曲,依次形成的裂缝曲率更高。这种行为可归因于初始裂纹后树脂袋内主应力的重新分布。在基体开裂之后,从基体裂纹的尖端开始分层,并向试样的末端发展。此外,树脂缝隙的长度和试样厚度和宽度的均匀性也会影响树脂袋裂纹的数量和位置。除了实验研究外,还采用了基于应力的变分分析来预测层合板的裂纹起始应力。该分析成功地计算了不同树脂袋长度层合板的能量释放率,并提供了裂纹开始应力的预测。分析预测结果与实验结果吻合较好,增强了对CFRP复合材料中树脂袋行为的理解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Damage Behavior in Unidirectional CFRP Laminates with Ply Discontinuity

This study presents a comprehensive quantitative investigation into the material properties and damage behavior of unidirectional carbon fiber reinforced plastic laminates with ply discontinuities. Laminates with varying resin gap lengths were evaluated. In situ edge observations and X-ray computed tomography were employed to assess the damage processes in the area of the ply discontinuity. These methods examined initially occurring cracks, secondary cracks, and delamination. Some unexpected cracking behavior was observed in this study. For instance, initial cracks were observed to form not at the interface but at a distance from the resin–ply interface, likely due to a constraint condition caused by the chemical shrinkage of the resin during the curing process. Furthermore, all cracks in the resin region curved toward the center, with successively formed cracks having higher curvatures. This behavior can be attributed to the redistribution of principal stresses within the resin pocket following the initial cracks. The matrix cracking was followed by delamination that started from the tips of the matrix cracks and progressed toward the ends of the specimen. Additionally, the number and locations of cracks in the resin pocket were influenced by the length of the resin gap and the uniformity of the thickness and width of the specimen. In addition to the experimental investigation, a stress-based variational analysis was employed to predict crack onset stresses in the laminates. The analysis successfully calculated the energy release rate for laminates with varying resin pocket lengths and provided predictions for crack onset stresses. The analytical predictions demonstrated good agreement with the experimental observations, enhancing the understanding of resin pocket behavior in CFRP laminates.

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来源期刊
Applied Composite Materials
Applied Composite Materials 工程技术-材料科学:复合
CiteScore
4.20
自引率
4.30%
发文量
81
审稿时长
1.6 months
期刊介绍: Applied Composite Materials is an international journal dedicated to the publication of original full-length papers, review articles and short communications of the highest quality that advance the development and application of engineering composite materials. Its articles identify problems that limit the performance and reliability of the composite material and composite part; and propose solutions that lead to innovation in design and the successful exploitation and commercialization of composite materials across the widest spectrum of engineering uses. The main focus is on the quantitative descriptions of material systems and processing routes. Coverage includes management of time-dependent changes in microscopic and macroscopic structure and its exploitation from the material''s conception through to its eventual obsolescence.
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