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CHARACTERIZATION OF NONLINEAR COUPLED DYNAMICS IN SANDWITCH STRUCTURES

机译:夹头结构中非线性耦合动力学的特征

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In this work, the nonlinear coupled dynamics of a sandwich structure with hexagonal honeycomb core are characterized in terms of Proper Orthogonal Decomposition modes. A high fidelity nonlinear finite element model is derived to describe geometric nonlinearity and displacement and rotation fields that govern the coupled dynamics. Contrary to equivalent continuum models used to predict vibration properties of lattice and sandwich structures, a high fidelity finite element model allows for a quite detailed description of the distributed complicated geometric nonlinearity of the core. It was found that the free dynamics excited by a blast load and the forced dynamics excited by a harmonic force posses POD modes which are localized in space and time. The processing of the simulated dynamics by the Time Discrete Proper Transform forms a means to study the nonlinear coupled dynamics of sandwich structures in the context of nonlinear normal modes of vibration and reduced order models.
机译:在这项工作中,具有六边形蜂窝芯的夹层结构的非线性耦合动力学的特征在于适当的正交分解模式。推导出高保真非线性有限元模型来描述管理耦合动力学的几何非线性和位移和旋转字段。与用于预测晶格和夹层结构的振动性能的等效连续体型相反,高保真有限元模型允许对核心的分布式复杂几何非线性的相当详细描述。发现通过爆炸载荷激发的自由动态和由谐波力激发的强制动力可能在空间和时间内定位的POD模式。通过时间离散的变换来处理模拟动力学,形成研究夹层结构的非线性耦合动力学在振动的非线性正常模式的背景下的方法。

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