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On the Longitudinal Compressive Strength Prediction of Unidirectional Laminated Composites Based on an Improved Model

机译:基于改进模型的单向层合复合材料纵向抗压强度预测

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The compressive failure of unidirectional (UD) composite laminates is investigated using an improved model. Most of the existing models to predict the compressive strength of UD composites are either based on micro-buckling or kinking of fibers. However, the failure mechanism analysis based on the SEM microscopy observations of failed specimens shows that the two mechanisms are responsible for the failure simultaneously when kinking occurs following the microbuckling of fibers. Therefore, the fiber microbuckling and fiber kinking models are combined to predict the compressive strength of UD T300/QY8911 composite laminate. Furthermore, this study proposes a new model for the stiffness of the foundation determination, making the predicted microbuckling strength closer to its real value. Also the effects of parameters presented in the prediction formula on the compressive strength are discussed, and it is found that the Young's modulus of matrix is the most important parameter. The predicted compressive strength using the improved model with combined modes shows a very good agreement with the experiment measurement.
机译:使用改进的模型研究了单向(UD)复合材料层压板的压缩破坏。预测UD复合材料抗压强度的大多数现有模型都基于纤维的微屈曲或扭结。然而,基于SEM显微镜观察失败样品的破坏机理分析表明,当纤维微屈曲后发生扭结时,这两种机理是同时造成破坏的原因。因此,结合纤维微屈曲和纤维扭结模型来预测UD T300 / QY8911复合层压板的抗压强度。此外,这项研究为基础确定的刚度提出了一个新模型,使预测的微屈曲强度更接近其实际值。还讨论了预测公式中给出的参数对抗压强度的影响,发现矩阵的杨氏模量是最重要的参数。使用带有组合模式的改进模型预测的抗压强度与实验测量结果非常吻合。

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