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Numerical Analysis on the Cure-Induced Deformation of Fiber Composite Laminates

机译:固化纤维复合层压材料变形的数值分析

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During the cure process of fiber reinforced resin matrix composites, the residual stress and deformation can be generated. The cure-dependent elastic model, which is the earliest constructed and the simplified form of the viscoelastic model, is most universally applied to the finite element analysis on the cure-induced deformation. However, stress relaxation and creep are the unique properties of resin matrix composites, which can affect the residual stress and deformation in some degrees. In this study, both the elastic model and the viscoelastic model were used to predict the residual stress and deformation of fiber composite laminates by means of the finite element method, and then a comparison between them was made. The results show that the difference between them decreases with the increase of fiber volume fraction or the decrease of resin curing shrinkage.
机译:在纤维增强树脂基复合材料的固化过程中,可以产生残余应力和变形。固化依赖性弹性模型是最早构造的和粘弹性模型的简化形式,最普遍地应用于固化变形的有限元分析。然而,应力松弛和蠕变是树脂基质复合材料的独特性质,其可以影响剩余的应力和在某些程度上的变形。在该研究中,弹性模型和粘弹性模型都用于通过有限元方法预测纤维复合层压板的残余应力和变形,然后制备它们之间的比较。结果表明,随着纤维体积分数的增加或树脂固化收缩的降低,它们之间的差异降低。

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