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Geometrically nonlinear analysis of sandwich beams under low velocity impact: analytical and experimental investigation

机译:低速影响下夹层梁的几何非线性分析:分析与实验研究

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摘要

Nonlinear low velocity impact response of sandwich beam with laminated composite face sheets and soft core is studied based on Extended High Order Sandwich Panel Theory (EHSAPT). The face sheets follow the Third order shear deformation beam theory (TSDT) that has hitherto not reported in conventional EHSAPT. Besides, the two dimensional elasticity is used for the core. The nonlinear Von Karman type relations for strains of face sheets and the core are adopted. Contact force between the impactor and the beam is obtained using the modified Hertz law. The field equations are derived via the Ritz based applied to the total energy of the system. The solution is obtained in the time domain by implementing the wellknown Runge-Kutta method. The effects of boundary conditions, core-to-face sheet thickness ratio, initial velocity of the impactor, the impactor mass and position of the impactor are studied in detail. It is found that each of these parameters have significant effect on the impact characteristics which should be considered. Finally, some low velocity impact tests have been carried out by Drop Hammer Testing Machine. The contact force histories predicted by EHSAPT are in good agreement with that obtained by experimental results.
机译:基于延长的高阶夹层面板理论(EHSAPT),研究了夹层梁与层压复合面板和软芯的非线性低速冲击响应。面板遵循迄今为止在传统EHSAPT中报告的第三阶剪切变形光束理论(TSDT)。此外,两维弹性用于芯。采用了面板株的非线性von Karman型关系和核心。使用修改的赫兹法获得冲击器和光束之间的接触力。现场方程通过应用于系统的总能量的RITZ来导出。通过实现众所周知的跳动-Kutta方法,在时域中获得解决方案。边界条件,芯对面板厚度,撞击器的初始速度,撞击器的初始速度,冲击器的效果。结果发现,这些参数中的每一个对应考虑的冲击特性产生显着影响。最后,通过下落锤试验机进行了一些低速冲击试验。 EHSAPT预测的接触力历史与通过实验结果获得的协议很好。

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