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Research on the Blow-Off Impulse Effect of a Composite Reinforced Panel Subjected to Lightning Strike

机译:雷击复合强化面板的窜漏脉冲效应研究

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摘要

The blow-off impulse effect of a composite reinforced panel subjected to lightning strike is studied combing electric-thermal coupling with explicit dynamic methods. A finite element model of a composite reinforced panel is established under the action of 2.6/10.5 µs impulse current waveform with current peak 60 kA. Blow-off impulse elements are selected according to numerical results of electric-thermal coupling analysis. Elements failure, pressure, and von Mises stress distribution are discussed when blow-off impulse analysis is completed. The results show that the blow-off impulse effect can alter the damage forms of a composite reinforced panel and causes the damage distribution to deviate from the initial fiber direction in each layer. Elements failure modes around the blow-off impulse area are similar to that around the attachment area of the lightning strike. The blow-off impulse effect can well model the internal damage, concave pit, and bulge phenomenon around the attachment area. Additionally, pressure contours are not presented as an anisotropic characteristic but an isotropic characteristic under the blow-off impulse effect, which indicates that the mechanical behavior of composite materials presents as an anisotropic characteristic in low pressure while as an isotropic characteristic in high pressure. This method is suitable to evaluate shock damage of a composite reinforced panel induced by lightning strike.
机译:采用显式动态方法研究了雷击复合强化面板的吹扫脉冲效果。在具有电流峰值60ka的脉冲电流波形的动作下建立复合增强板的有限元模型。根据电热耦合分析的数值结果选择吹扫脉冲元件。元素发生故障,压力和VOMS误差分布在禁止脉冲分析完成时讨论。结果表明,禁止脉冲效果可以改变复合增强板的损伤形式,并导致损伤分布偏离每层中的初始纤维方向。吹除脉冲区域周围的元件失效模式与雷击区域周围的相似。吹扫脉冲效果可以很好地模拟附件区域周围的内部损坏,凹坑和凸起现象。另外,压力轮廓未作为各向异性特征呈现,但在吹扫脉冲效应下的各向同性特征,表明复合材料的机械性能呈现为低压的各向异性特征,同时在高压下作为各向同性特征。该方法适用于评估雷击诱导的复合增强面板的冲击损伤。

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