首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >DYNAMIC RESPONSE OF SANDWICH PANELS WITH FUNCTIONALLY GRADED ALUMINUM FOAM CORES SUBJECTED TO UNDERWATER EXPLOSION
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DYNAMIC RESPONSE OF SANDWICH PANELS WITH FUNCTIONALLY GRADED ALUMINUM FOAM CORES SUBJECTED TO UNDERWATER EXPLOSION

机译:用水下爆炸功能梯度铝泡沫芯的三明治面板的动力响应

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Numerical investigations were conducted using the MSC.Dytran software on the dynamic response of functionally graded sandwich panels when subjected to underwater explosion. The effects of the number of layers and density distribution of graded cores on the blast performance were analyzed in several aspects under the constraint of equivalent mass. The simulation results have demonstrated that sandwich panels experience both bending and large plastic stretching deformation. Compared to single layered sandwich panel, those panels with graded cores overall possess smaller central permanent displacement and better energy absorption capability. Central deflection of bottom face sheet decreases as the density of cores descends from top to bottom face. A large proportion of the energy dissipates in the plastic deformation of top face sheet by the end of response, followed by the bottom face sheet, and core compression absorbers the minimum. Utilizing the high efficiency of energy absorption by adjusting those cores with greater density near to the top face sheet can further mitigate the damage from explosion.
机译:在经过水下爆炸时,使用MSC.DYTRAN软件进行数值调查,对功能分级夹心板的动态响应进行了动态响应。在等效质量约束下的几个方面分析了层数和渐变芯的渐变芯的次数和密度分布的影响。仿真结果表明,夹层面板经历弯曲和大型塑料拉伸变形。与单层夹层面板相比,整体上具有渐变芯的那些面板具有较小的中央永久性位移和更好的能量吸收能力。随着芯的密度从上到下表面下降,底面片材的中央偏转减小。在响应结束时,大部分能量在顶面片材的塑性变形中散发,然后是底部面部片,并且芯压缩吸收最小。利用高效率的能量吸收通过调节顶部面板附近具有更大密度的核心可以进一步减轻爆炸损伤。

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