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Progressive damage analysis of an adhesively bonded composite T-joint under bending, considering micro-scale effects of fiber volume fraction of adherends

机译:弯曲下粘粘合复合T关节的渐进式损伤分析,考虑到粘附纤维体积分数的微观效应

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摘要

In this study, a numerical study on failure assessment and stress distribution on the adhesive region in a composite T-joint under bending load case is investigated using cohesive zone method (CZM). The Finite Element Model (FEM) has been verified with experimental results. To study the load transfer capability of the T-joint, five different adhesives are considered in the adhesive region and the effect of geometrical parameters such as stringer thickness, corner radius, and adherend thickness as well as micromechanical properties of reinforced fiber composite adherends are investigated. Effective properties of two composite adherends including Carbon-Epoxy (IM7/8552) and Glass-Epoxy (E-glass/Epon 828) with various fiber volume fractions are estimated using a 3D representative volume element (RVE) and employing period boundary conditions (PBC) through Python scripts in ABAQUS. The results show that the fiber volume fraction of composite adherends has a significant effect on failure behavior. For instance, increasing fiber volume fraction of carbon/epoxy composite from 0.4 to 0.7 resulted in a 78% increase in elastic stiffness and a 41% enhancement in maximum load-bearing capacity. Among different adhesive types used in this study, FM300 resulted in the strongest structure and S7752 led to a more ductile T-joint.
机译:在该研究中,使用粘性区域法(CZM)研究了在弯曲载壳下的复合载荷壳体中粘合区域的粘合区域的失效评估和应力分布的数值研究。有限元模型(FEM)已通过实验结果进行了验证。为了研究T关节的负载转移能力,研究了五种不同的粘合剂,在粘合区域中考虑了诸如纵梁厚度,角半径和粘附厚度的几何参数等几何参数的影响以及增强纤维复合粘物的微机械性能。使用3D代表体积元素(RVE)和使用期限边界条件(PBC)估计包括碳 - 环氧(IM7 / 8552)和具有各种纤维体积分数的碳环(IM7 / 8552)和玻璃环氧(E-玻璃/ EPON 828)的有效性质。(PBC )通过Abaqus的Python脚本。结果表明,复合粘物的纤维体积分数对失效行为具有显着影响。例如,将碳/环氧基复合材料的纤维体积分数从0.4升至0.7增加,弹性刚度的增加78%,最大承载能力增加了41%的增强。在本研究中使用的不同粘合剂类型中,FM300导致最强的结构,S7752导致更韧性的T关节。

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