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Effects of Stacking Sequence and Impactor Diameter on Impact Damage of Glass Fiber Reinforced Aluminum Alloy Laminate

机译:堆叠序列和抗冲击器直径对玻璃纤维增​​强铝合金层压板冲击损伤的影响

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摘要

The methods of numerical simulation and test are combined to analyze the impact behavior of glass fiber reinforced aluminum alloy laminate(GLARE).A new failure criteria is proposed to obtain the impact failure of GLARE,and combined with material progressive damage method by writing code of LS-DYNA.Low velocity impact test of GLARE is employed to validate the feasibility of the finite element model established.The simulation results have been shown that progressive damage finite element model established is reliable.Through the application of the finite element model established,the delamination of GLARE evolution progress is simulated,various failure modes of GLARE during impact are obtained,and the effects of stacking sequence and impactor diameter on the impact damage of GLARE are obtained.
机译:组合了数值模拟和测试的方法,分析了玻璃纤维增​​强铝合金层压板(眩光)的冲击性能。建议采用眩光的冲击失效,并通过写作守则来获得眩光的影响失效LS-DYNA.LOW眩光的速度冲击试验用于验证建立的有限元模型的可行性。已经表明,建立的渐进损伤有限元模型是可靠的。用于建立有限元模型的应用。模拟了眩光进化进展的分层,获得了各种眩光的眩光模式,获得了堆叠序列和撞击器直径对眩光冲击损伤的影响。

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