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首页> 外文期刊>KSME International Journal >Modelling of Low Velocity Impact Damage in Laminated Composites
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Modelling of Low Velocity Impact Damage in Laminated Composites

机译:层状复合材料低速冲击损伤的建模

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摘要

In this study a simple model is developed that predicts impact damage in a composite laminate avoiding the need of the time-consuming dynamic finite element method (FEM). The analytical model uses a non-linear approximation method (Rayleigh-Ritz) and the large deflection plate theory to predict the number of failed plies and damage area in a quasi-isotropic composite circular plate (axisymmetric problem) due to a point impact load at its centre. It is assumed that the deformation due to a static transverse load is similar to that oc curred in a low velocity impact. It is found that the model, despite its simplicity, is in good agreement with FEM predictions and experimental data for the deflection of the composite plate and gives a good estimate of the number of failed plies due to fibre breakage. The predicted damage zone could be used with a fracture mechanics model developed by the second investigator and co-workers to calculate the compression after impact strength of such laminates. This approach could save significant running time when compared to FEM solutions.
机译:在这项研究中,开发了一种简单的模型,该模型可以预测复合材料层压板的冲击损伤,从而避免了耗时的动态有限元方法(FEM)的需要。该分析模型使用非线性逼近方法(Rayleigh-Ritz)和大挠度板理论来预测准各向同性复合圆板(轴对称问题)中由于点冲击载荷引起的破坏层数和损伤区域它的中心。假定由于静态横向载荷引起的变形类似于在低速冲击中发生的变形。发现该模型尽管简单,但与FEM预测和复合板挠度的实验数据非常吻合,并且可以很好地估计由于纤维断裂而导致的失效层数。可以将预测的损坏区域与第二个研究人员和同事开发的断裂力学模型一起使用,以计算此类层压板的冲击强度后的压缩率。与FEM解决方案相比,这种方法可以节省大量的运行时间。

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