首页> 外文期刊>Proceedings of the institution of mechanical engineers >Use of aluminum foam core sandwich structures to improve the blast-mitigation performance of light tactical vehicle side-vent-channel solution
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Use of aluminum foam core sandwich structures to improve the blast-mitigation performance of light tactical vehicle side-vent-channel solution

机译:使用铝泡沫芯夹芯结构来改善轻型战术车辆侧面排气通道解决方案的爆炸缓解性能

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In our recent work, a side-vent-channel blast-mitigation concept/solution for light tactical vehicles was proposed. As a part of this solution, side-vent channels are attached to the V-shaped vehicle underbody, in order to promote venting of the soil ejecta and gaseous detonation products and, in turn, generate a downward thrust on the targeted light tactical vehicle. As a consequence, the blast loads resulting from a shallow-buried mine detonated underneath a light tactical vehicle are mitigated, improving the probability for vehicle survival. The concept was motivated by the principles of operation of the so-called "pulse detonation" rocket engines. To quantify the utility and blast-mitigation capacity of this concept, use was made of several computational and design optimization methods and tools in our prior work. It was found that the capacity of the proposed blast-mitigation solution is relatively small, but still noteworthy. The present work focuses on further improvements in the blast-mitigation capacity of the side-vent-channel solution. Specifically, the benefits offered by substitution of the all-steel side-vent channels with side-vent channels made of sandwich structures (consisting of steel face-sheets and aluminum foam core) for all-steel side-vent channels are explored. The results obtained clearly demonstrated that this substitution can improve the blast-mitigation efficiency of the side-vent-channel solution. In addition, through the use of a design optimization analysis, it was established that this improvement can be further increased through proper grading of the aluminum foam density profile through the sandwich structure core.
机译:在我们最近的工作中,提出了一种用于轻型战术车辆的侧面通风道爆炸缓解概念/解决方案。作为该解决方案的一部分,侧面排气通道连接到V形车辆的车身底部,以促进排泄土壤和气体爆炸产物,并进而在目标轻型战术车辆上产生向下的推力。结果,减轻了由轻型战术车辆下方引爆的浅埋地雷引起的爆炸载荷,从而提高了车辆生存的可能性。该概念是由所谓的“脉冲爆震”火箭发动机的工作原理引起的。为了量化该概念的实用性和缓解爆炸的能力,在我们先前的工作中使用了几种计算和设计优化方法和工具。已经发现,所提出的爆炸缓解方案的容量相对较小,但是仍然值得注意。目前的工作集中于进一步改善侧通风道解决方案的爆炸消除能力。特别是,探索了用夹层结构(由钢面板和泡沫铝芯组成)制成的侧通气道代替全钢侧通气道来替代全钢侧通气道的好处。获得的结果清楚地表明,这种替代可以提高侧通风通道溶液的爆炸缓解效率。另外,通过使用设计优化分析,可以确定,通过对夹层结构芯的泡沫铝密度分布进行适当分级,可以进一步提高这种改进。

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