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Numerical and experimental study of crashworthiness parameters of honeycomb structures

机译:蜂窝结构耐撞性参数的数值与实验研究

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Crashworthiness parameters of aluminum hexagonal honeycomb structures under impact loads are investigated by using finite element methods and conducting experiments. To validate the finite element models, numerical results are compared with experimental measurements and theoretical results reported in literature. In numerical simulations of honeycomb structures, out-of-plane loads are considered while the aluminum foil thickness, cell side size, cell expanding angle, impact velocity and mass are varying, and dynamic behavior and crashworthiness parameters are examined. It is observed that there are good agreements between numerical, experimental and theoretical results. Numerical simulations predict that crashworthiness parameters depend on cell specification and foil thickness of the honeycomb structure and are independent of impact mass and velocity.
机译:采用有限元方法并进行了实验,研究了铝六角形蜂窝结构在冲击载荷下的耐撞性参数。为了验证有限元模型,将数值结果与实验测量值进行比较,并在文献中报告理论结果。在蜂窝结构的数值模拟中,考虑了平面外载荷,同时改变了铝箔的厚度,孔的侧面尺寸,孔的膨胀角,冲击速度和质量,并检查了动态性能和耐撞性参数。可以看出,数值,实验和理论结果之间都有很好的一致性。数值模拟预测,耐撞性参数取决于蜂窝结构的孔格规格和箔厚度,并且与冲击质量和速度无关。

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