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A non-linear Ritz method for the analysis of low velocity impact induced dynamics in variable angle tow composite laminates

机译:一种非线性ritz方法,用于分析可变角丝复合层压板中的低速撞击诱导动力学

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Variable angle tow (VAT) laminates feature composite layers reinforced by fibres following continuous curved paths and offer a wide structural design space for the manufacturing of composite components. In this work, a formulation for the analysis of the impact-induced dynamics in VAT laminated plates is proposed, implemented and tested in this work. The method is based on the adoption of first order shear deformation kinematics and includes von Karman non-linear strains. The discrete system is obtained by employing a pb-2 Ritz series expansion into the Hamilton's variational statement, while the impact loading is modelled through Hertzian contact law. The resulting non-linear governing equations are solved using a Newmark time step integration algorithm, coupled with an iterative solution strategy. After validation against available literature data, several tests on different VAT configurations are performed, highlighting analogies and differences between different layups in terms of impact-induced dynamic response.
机译:可变角度丝束(VAT)层压板特征复合层由连续弯曲路径之后的纤维加强,并为复合部件制造提供宽的结构设计空间。在这项工作中,提出了一种用于分析增值税层压板中的冲击引起的动力学的制剂,在这项工作中实施和测试。该方法基于采用一阶剪切变形运动学,包括von Karman非线性菌株。通过使用PB-2 Ritz系列扩展来获得离散系统,进入汉密尔顿的变分语言,而冲击载荷通过赫兹联系法进行了建模。使用纽约标记时间步长集成算法解决了所得到的非线性控制方程,耦合与迭代解决方案策略。在验证可用文献数据后,在冲击引起的动态响应方面执行了对不同增值税配置的几次测试,突出显示不同汇总的类比和差异。

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