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首页> 外文期刊>International Journal for Numerical Methods in Engineering >Crush dynamics of square honeycomb sandwich cores
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Crush dynamics of square honeycomb sandwich cores

机译:方形蜂窝夹芯的破碎动力学

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摘要

Square honeycombs are effective as cores for all-metal sandwich plates in that they combine excellent crushing strength and energy absorption with good stiffness and strength in out-of-plane shear and in-plane stretch. In applications where sandwich plates must absorb significant energy in crushing under intense impulsive loads, dynamic effects play a significant role in the behaviour of the core. Three distinct dynamic effects can be identified: (i) inertial resistance, (ii) inertial stabilization of webs against buckling, and (iii) material strain-rate dependence. Each contributes to dynamic strengthening of the core. These effects are illustrated and quantified with the aid of detailed numerical calculations for rates of deformation characteristic of shock loads in air and water. A continuum model for high rate deformation of square honeycomb cores is introduced that can be used to simulate core behaviour in large structural calculations when it is not feasible to mesh the detailed core geometry. The performance of the continuum model is demonstrated for crushing deformations. Copyright (c) 2005 John Wiley & Sons, Ltd.
机译:方形蜂窝有效地用作全金属夹芯板的核心,因为它们结合了出色的抗压强度和能量吸收能力,以及在平面外剪切和平面内拉伸时具有良好的刚度和强度。在夹心板在强烈的冲击载荷下必须吸收大量能量的应用中,动态效应在型芯的性能中起着重要作用。可以识别出三种不同的动态效果:(i)惯性阻力;(ii)腹板抗扭曲的惯性稳定;以及(iii)材料应变率依赖性。每个都有助于动态增强核心。借助详细的数值计算来说明和量化这些影响,以计算空气和水中冲击载荷的变形率。引入了方形蜂窝芯高速率变形的连续模型,当无法对详细的芯几何进行网格划分时,该模型可用于在大型结构计算中模拟芯行为。连续模型的性能被证明可以压碎变形。版权所有(c)2005 John Wiley&Sons,Ltd.

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