碳/环氧复合材料层合板冲击损伤中层合层聚类作用的实验-数值研究

IF 7 Q2 MATERIALS SCIENCE, COMPOSITES
P.G. Rodríguez-Luján, R. del Cuvillo, J.M. Rodríguez-Sereno, J.A. Artero-Guerrero, D. Varas, J. Pernas-Sánchez
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引用次数: 0

摘要

本研究通过实验和数值分析研究了碳/环氧编织层压板的冲击行为,特别强调了层聚类的影响。对三种不同层数聚类配置进行了落锤塔试验。此外,3D数字图像相关(DIC)技术用于分析面外位移,从而更深入地了解触发失效机制的现象。使用超声c扫描技术进一步表征内部损伤,以量化损伤程度。这项工作的主要贡献是基于连续损伤力学的三维本构模型的发展,该模型包含多种破坏机制,特别关注横向剪切损伤。对所有三种层压板配置进行了落锤塔试验的数值模拟,验证了本构模型预测力和能量响应的能力,以及在试验中观察到的破坏机制。本构模型有助于理解面外载荷条件下层间和层内破坏机制之间的相互作用,如落重塔试验和其他冲击场景。该研究强调了层压板聚类对射孔阻力的重要性,以及将横向剪切损伤纳入数值模型以准确捕获射孔过程的必要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The role of ply clustering in the impact damage of woven carbon/epoxy laminates: An experimental-numerical study

The role of ply clustering in the impact damage of woven carbon/epoxy laminates: An experimental-numerical study
This study investigates the impact behaviour of carbon/epoxy woven laminates through experimental and numerical analysis, with particular emphasis on the effects of ply clustering. Drop weight tower tests were performed for three different ply clustering configurations. In addition, 3D Digital Image Correlation (DIC) techniques were used to analyse out-of-plane displacements, providing a deeper insight into the phenomenon that triggers the failure mechanisms. Internal damage was further characterized using ultrasonic C-scan techniques to quantify the extent of damage. A major contribution of this work is the development of a three-dimensional constitutive model based on continuum damage mechanics that incorporates multiple failure mechanisms, with special attention to transverse shear damage. Numerical simulations of the drop-weight tower tests were performed for all three laminate configurations, validating the ability of the constitutive model to predict force and energy responses, as well as the failure mechanisms observed during the tests. The constitutive model was found to be useful in understanding the interaction between interlaminar and intralaminar failure mechanisms under out-of-plane loading conditions, such as drop weight tower tests and other impact scenarios. The study highlights the importance of laminate clustering for perforation resistance and the need to incorporate transverse shear damage into numerical models to accurately capture the perforation process.
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来源期刊
Composites Part C Open Access
Composites Part C Open Access Engineering-Mechanical Engineering
CiteScore
8.60
自引率
2.40%
发文量
96
审稿时长
55 days
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