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Energy absorption of aluminium alloy circular and square tubes under an axial explosive load

机译:轴向爆炸载荷下铝合金圆管和方管的能量吸收

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摘要

The energy absorption of circular and square aluminium alloy tubes subjected to an axial explosive load, which is transmitted to a tube by a small attached mass, is discussed. Particular attention is paid to the interaction between the inertia of the attached mass and a tube when the importance of the initial compression phase is revealed. The effect of this phase on the mean load, which is characteristic of the energy absorption capacity of structural elements, is demonstrated. The influence of the material models on the prediction of the response of aluminium alloy circular and square tubes is also discussed in relation with the temperature effects caused by the high strain rates. The analysis shows that the material properties play an important role for the formation of the buckling pattern due to the finite duration of the initial compression phase when plastic stress waves at different speeds propagate along a shell.
机译:讨论了承受轴向爆炸载荷的圆形和方形铝合金管的能量吸收,该能量通过较小的附着质量传递到管上。当揭示了初始压缩阶段的重要性时,应特别注意附着质量和管的惯性之间的相互作用。证明了该阶段对平均载荷的影响,这是结构元件的能量吸收能力的特征。还讨论了材料模型对铝合金圆管和方管响应预测的影响,以及高应变速率引起的温度效应。分析表明,当不同速度的塑性应力波沿壳体传播时,由于初始压缩阶段的持续时间有限,材料特性对于屈曲图案的形成起着重要作用。

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