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首页> 外文期刊>Mechanics of Advanced Materials and Structures >Dynamic Mode I and Mode II Crack Propagation in Fiber Reinforced Composites
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Dynamic Mode I and Mode II Crack Propagation in Fiber Reinforced Composites

机译:纤维增强复合材料的动态模式I和模式II裂纹扩展

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摘要

Dynamic crack phenomena in unidirectional composite laminates are investigated. The proposed formulation is based on the combination of beam and interface methodologies, which are utilized to predict crack behavior in the context of the steady state fracture mechanics. The relevant quantities related to delamination phenomena are discussed with reference to Lagrange and penalty methods utilized to simulate the connection between the sublaminates adjoining the delamination plane. Analytical solutions of the governing equations are proposed and closed form expressions for simple cases, involving pure mode I and mode II components, are provided. The accuracy of the proposed approach is validated through comparisons with results arising from continuum analysis obtained by finite element procedures. Some applications are developed to point out the influence of the crack front speed, the shear deformability and the inertial contributions on the energy release rate. The main features of the proposed model are investigated in the context of an energy balance approach based on the J-integral formulation and thus providing results useful to model delamination growth for simple cases involving pure mode I and mode II loading conditions. Special attention is devoted to analyzing the allowable speeds of the moving crack. In particular, a parametric study in terms of the main characteristic geometric parameters of the laminate is proposed to show the main features of the crack tip behavior.
机译:研究了单向复合材料层合板中的动态裂纹现象。所提出的公式是基于梁和界面方法的组合,用于在稳态断裂力学的情况下预测裂纹行为。参考拉格朗日和惩罚方法讨论了与分层现象有关的相关量,该惩罚方法用于模拟邻接分层平面的子层之间的连接。提出了控制方程的解析解,并提供了包含纯模式I和模式II分量的简单情况的闭式表达式。通过与有限元程序连续分析得出的结果进行比较,验证了所提方法的准确性。已开发出一些应用程序来指出裂纹前速度,剪切变形性和惯性对能量释放速率的影响。在基于J积分公式的能量平衡方法的背景下研究了所提出模型的主要特征,从而为涉及纯I和II型载荷条件的简单情况提供了对分层生长建模有用的结果。要特别注意分析运动裂纹的允许速度。特别地,提出了关于层压板的主要特征几何参数的参数研究,以显示裂纹尖端行为的主要特征。

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