Transient Response of Laminated Plates Subject to Close Proximity Explosions

J. Coggin, Jeffrey M. K. Chock, R. Kapania, E. Johnson
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引用次数: 2

Abstract

We study the transient response of simply supported composite plates subject to close proximity explosions. Many studies are currently availiable in which the blast load is applied uniformly across the plate; and is described by step, N-pulse, or Friedlander equations. The novel aspect considered here is the case for which the blast pressure is due to a close proximity explosion, and is therefore taken to be both spatially and temporally varying. Two methods for calculating blast pressures are developed for arbitrary blast size and distance. A FORTAN program is described that automates the application of an arbitrary blast load to a generic finite element mesh. Modal superposition and NASTRAN solution procedures are verified for several load types and stacking sequences. Results are obtained within the framework of classical and first order plate theories for a variety of parameters including; stacking sequence, blast size, blast distance, and blast calculation method.
近距离爆炸作用下层合板的瞬态响应
研究了近距离爆炸作用下简支复合材料板的瞬态响应。目前有许多研究表明,爆炸荷载在钢板上均匀施加;用阶跃、n脉冲或弗里德兰德方程来描述。这里考虑的新方面是,爆炸压力是由于近距离爆炸,因此被认为是空间和时间变化的。针对任意爆破尺寸和爆破距离,提出了两种爆破压力计算方法。描述了一个FORTAN程序,该程序可自动将任意爆炸载荷应用于一般有限元网格。模态叠加和NASTRAN解决程序验证了几种负载类型和堆叠顺序。在经典和一阶板理论的框架内得到了各种参数的结果,包括;堆垛顺序、爆破尺寸、爆破距离、爆破计算方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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