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Mesoscale Process Modeling of a Thick Pultruded Composite with Variability in Fiber Volume Fraction

机译:具有纤维体积分数变异性的厚带复合材料的Mescle过程建模

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摘要

Pultruded fiber-reinforced polymer composites are susceptible to microstructural nonuniformity such as variability in fiber volume fraction (Vf), which can have a profound effect on process-induced residual stress. Until now, this effect of non-uniform Vf distribution has been hardly addressed in the process models. In the present study, we characterized the Vf distribution and accompanying nonuniformity in a unidirectional fiber-reinforced pultruded profile using optical light microscopy. The identified nonuniformity in Vf was subsequently implemented in a mesoscale thermal–chemical–mechanical process model, developed explicitly for the pultrusion process. In our process model, the constitutive material behavior was defined locally with respect to the corresponding fiber volume fraction value in different-sized representative volume elements. The effect of nonuniformity on the temperature and cure degree evolution, and residual stress was analyzed in depth. The results show that the nonuniformity in fiber volume fraction across the cross-section increased the absolute magnitude of the predicted residual stress, leading to a more scattered residual stress distribution. The observed Vf gradient promotes tensile residual stress at the core and compressive residual stress at the outer regions. Consequently, it is concluded that it is essential to take the effects of nonuniformity in fiber distribution into account for residual stress estimations, and the proposed numerical framework was found to be an efficient tool to study this aspect.
机译:覆膜纤维增强的聚合物复合材料易于微观结构不均匀性,例如纤维体积级分(VF)的可变性,这可以对过程诱导的残余应力具有深远的影响。到目前为止,在过程模型中几乎没有解决非均匀VF分布的这种影响。在本研究中,我们使用光学光学光学显微镜表征了在单向纤维增强的覆膜型曲线上的VF分布和伴随不均匀性。随后在Mescle热化学机械过程模型中实施了VF中所识别的非均匀性,明确地开发了针刺工艺。在我们的过程模型中,本地材料行为在不同尺寸代表体元素中的相应光纤体积分数值本地定义。深度分析了不均匀性对温度和固化程度的影响和残余应力。结果表明,横截面纤维体积分数的不均匀性增加了预测残余应力的绝对幅度,导致更散落的残余应力分布。观察到的VF梯度促进了外部区域的芯和压缩残余应力的拉伸残余应力。因此,得出结论是,对于残余应力估计,必须对纤维分布的非均匀性作用,并且发现所提出的数值框架是研究这一方面的有效工具。

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