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A Progressive Damage Model for Predicting Permanent Indentation and Impact Damage in Composite Laminates

机译:一种渐进式损伤模型,用于预测复合层压板的永久性压痕和冲击损伤

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In this paper, a progressive damage model was established on the basis of ABAQUS software for predicting permanent indentation and impact damage in composite laminates. Intralaminar and interlaminar damage was modelled based on the continuum damage mechanics (CDM) in the finite element model. For the verification of the model, low-velocity impact tests of quasi-isotropic laminates with material system of T300/5228A were conducted. Permanent indentation and impact damage of the laminates were simulated and the numerical results agree well with the experiments. It can be concluded that an obvious knee point can be identified on the curve of the indentation depth versus impact energy. Matrix cracking and delamination develops rapidly with the increasing impact energy, while considerable amount of fiber breakage only occurs when the impact energy exceeds the energy corresponding to the knee point. Predicted indentation depth after the knee point is very sensitive to the parameter mu which is proposed in this paper, and the acceptable value of this parameter is in range from 0.9 to 1.0.
机译:本文在ABAQUS软件的基础上建立了逐步损害模型,以预测复合层压板中的永久性压痕和冲击损伤。基于有限元模型中的连续损伤力学(CDM)来建模腔内和层间损伤。对于验证模型,对T300 / 5228A的材料系统进行了准各向同性层压材料的低速冲击试验。模拟了层压板的永久压痕和冲击损伤,数值结果与实验很好。可以得出结论,可以在压痕深度与冲击能量的曲线上识别明显的膝关节点。基质开裂和分层随着越来越多的冲击能量而迅速发展,而当冲击能量超过对应于膝关节的能量时,才会发生大量的纤维破裂。在本文中提出的参数MU非常敏感后预测的压痕深度,并且该参数的可接受值在0.9至1.0的范围内。

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