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Experimental analysis of an attenuation method for Hydrodynamic Ram effects

机译:水动力拉姆效应衰减方法的实验分析

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The Hydrodynamic Ram (HRAM) phenomenon occurs when an object with a high-kinetic energy impacts against a fluid-filled structure, which could induce important damages. An attenuation technique would be of great interest for structures which could be subjected to impact. In this work, honeycomb panels are used to fill the entire space inside the structure in such a way that they are able to alleviate the loading onto it. Experimental tests were carried out varying aluminium honeycomb cells orientation, to determine the configuration that mitigates more efficiently the effects of HRAM comparing the results with a non-protected structure. The experimental tests were analysed using a high speed video camera, strain gauges, residual displacement of the structure walls and the deformation of the honeycomb panels. It is shown that for all the configurations, the honeycomb is able to reduce the plastic deformation of the structure. The honeycomb allows to reduce the cavity expansion in the fluid, which is the most dangerous phenomenon in the studied cases. The best configuration is able to diminish up to 54% the residual expanded volume in the structure walls, and hence considerably attenuating the HRAM effect on the structure. (C) 2018 Elsevier Ltd. All rights reserved.
机译:当具有高动能的物体撞击充满流体的结构时,就会发生流体动力学Ram(HRAM)现象,这可能会引起重要的损坏。对于可能遭受冲击的结构,衰减技术将引起极大的兴趣。在这项工作中,蜂窝板用于填充结构内部的整个空间,从而减轻了结构上的负荷。进行了不同的铝蜂窝单元定向实验,以确定与非保护结构相比,可更有效地缓解HRAM影响的配置。使用高速摄像机,应变仪,结构壁的残余位移和蜂窝板的变形对实验测试进行了分析。结果表明,对于所有构造,蜂窝都能够减少结构的塑性变形。蜂窝可以减少流体中的空腔膨胀,这在所研究的情况下是最危险的现象。最佳配置能够减少结构壁中剩余的扩展体积最多54%,从而显着减弱HRAM对结构的影响。 (C)2018 Elsevier Ltd.保留所有权利。

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