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首页> 外文期刊>Composite structures >Micro-mechanical analysis of the effect of ply thickness on curing micro-residual stresses in a carbon/epoxy composite laminate
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Micro-mechanical analysis of the effect of ply thickness on curing micro-residual stresses in a carbon/epoxy composite laminate

机译:层厚对碳/环氧树脂复合材料层合板中微残余应力固化影响的微观力学分析

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During the manufacturing of thermoset-based carbon fiber reinforced polymers (CFRPs), micro-residual stresses are developed in the material, due a mismatch of the chemical-thermal-mechanical properties of the fibers and the polymer matrix. This ultimately leads to a reduction in the mechanical performance of the composite material. In this work, a representative volume element (RVE) of a composite sub-laminate with a 90 degrees ply discretized at micro-scale level, stacked within homogenized plies, is proposed to study the micro-residual stresses and the ply mechanical response considering the in-situ effect caused by the constraining adjacent layers. A model framework is developed using finite elements in Abaqus REG;/Standard with user-subroutines. The retrieved micro-residual stresses in the 90 degrees layer are generated by the dissimilar chemical shrinkage and thermal expansions, plus the additional residual meso-scale stresses caused by the constraining effect of adjacent plies. The residual stresses in the constrained condition can achieve almost 80 of the ply failure load for the 0/90/0 sublaminate, meaning lower sub-laminate strain to failure. Thick laminates retrieve more residual stresses in the transverse 90 degrees layer and exhibit lower constrained strength and more unstable post-failure response, demonstrating that thin-ply laminates exhibit beneficial constraining effects during the curing process.
机译:在热固性碳纤维增强聚合物 (CFRP) 的制造过程中,由于纤维和聚合物基体的化学-热-机械性能不匹配,材料中会产生微残余应力。这最终导致复合材料的机械性能降低。本文提出了一种在微尺度上离散化的90度离散复合子层合板的代表性体积单元(RVE),该层叠加在均质层内,以研究考虑约束相邻层引起的原位效应的微残余应力和层力学响应。模型框架是使用 Abaqus & REG;/Standard 中的有限元和用户子程序开发的。90度层中反演的微残余应力是由不同的化学收缩和热膨胀以及相邻层的约束作用引起的附加细观应力产生的。对于0/90/0层压板,受限条件下的残余应力可以达到层破坏载荷的近80%,这意味着子层压板的破坏应变更低。厚层压板在横向 90 度层中回收更多的残余应力,并表现出更低的约束强度和更不稳定的失效后响应,表明薄层层压板在固化过程中表现出有益的约束效应。

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