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首页> 外文期刊>Journal of Sound and Vibration >Linear elastic response of tubes to internal detonation loading
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Linear elastic response of tubes to internal detonation loading

机译:管对内部爆轰载荷的线性弹性响应

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This paper deals with the structural response of a tube to an internal gaseous detonation. An internal detonation produces a pressure load that propagates down the tube. Because the speed of the gaseous detonation can be comparable to the flexural wave group speed, excitation of flexural waves in the tube wall must be considered. Flexural waves can result in much higher strains and stresses than static loading with the same loading pressures. Experiments and numerical simulations were used to determine the structural response. In the experiments, a detonation tube was instrumented with a number of strain gages. A series of experiments was carried out under different conditions. Strains were measured that exceeded the equivalent static strain by up to a factor of 3.9. Special attention was paid to the influence of the detonation speed, reflection and interference of structural waves at flanges and also at the tube end, the linearity of the response, the transient development of the deflection profile, and the influence of detonation cell size. Analytical models and finite element models were used to interpret the observations and to make quantitative predictions of the peak strain. (C) 2002 Elsevier Science Ltd. All rights reserved. [References: 24]
机译:本文讨论了管对内部气体爆炸的结构响应。内部爆炸会产生压力负荷,该压力负荷会向下传播。因为气体爆炸的速度可以与弯曲波群的速度相媲美,所以必须考虑在管壁中激发弯曲波。与相同加载压力下的静态加载相比,弯曲波会产生更高的应变和应力。实验和数值模拟被用来确定结构响应。在实验中,爆轰管装有许多应变计。在不同条件下进行了一系列实验。测得的菌株超过了等效静态应变达3.9倍。尤其要注意爆炸速度,法兰和管端结构波的反射和干涉,响应的线性,偏转轮廓的瞬态发展以及爆炸孔尺寸的影响。使用分析模型和有限元模型来解释观测值,并对峰值应变进行定量预测。 (C)2002 Elsevier ScienceLtd。保留所有权利。 [参考:24]

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