Multiscale finite element procedure to predict the effective elastic properties of woven composites

IF 7 Q2 MATERIALS SCIENCE, COMPOSITES Composites Part C Open Access Pub Date : 2024-10-01 Epub Date: 2024-11-23 DOI:10.1016/j.jcomc.2024.100539
Lyazid Bouhala, Samet Ozyigit, Abdelghani Laachachi, Ahmed Makradi
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Abstract

This paper integrates numerical and experimental approaches to predict the mechanical properties of a woven composite with carbon fiber-based fabrics. Initially, a multiscale modeling approach based on the finite element method ascertained the micro-scale properties of the composite tows, taking into account the effect of voids present in the epoxy resin. Subsequently, a meso-scale model was built and employed to predict the mechanical properties of the composite at this scale. The representative volume elementary (RVE) was generated using TexGen software, and was then imported and used by Abaqus software to compute the effective mechanical properties. Lastly, a macro-scale model of a composite beam was created, simulating a three-point bending test using the effective mechanical properties obtained previously. Concurrently, a physical counterpart of the composite beam was manufactured and subjected to a laboratory three-point bending test, measuring the flexural modulus and many other parameters. A comparison of the two sets of results revealed a high degree of consistency.
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预测编织复合材料有效弹性特性的多尺度有限元程序
本文综合运用数值方法和实验方法来预测碳纤维基织物编织复合材料的机械性能。首先,基于有限元法的多尺度建模方法确定了复合材料丝束的微尺度特性,并考虑了环氧树脂中存在的空隙的影响。随后,建立了中尺度模型,用于预测复合材料在此尺度下的机械性能。使用 TexGen 软件生成了代表性体积基元(RVE),然后导入 Abaqus 软件用于计算有效机械性能。最后,创建了复合材料梁的宏观模型,利用之前获得的有效力学性能模拟了三点弯曲试验。同时,还制造了复合材料梁的实物,并在实验室进行了三点弯曲试验,测量了弯曲模量和许多其他参数。两组结果的比较显示出高度的一致性。
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
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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