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首页> 外文期刊>International journal of non-linear mechanics >Propagation of a stress wave through a virtual functionally graded foam
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Propagation of a stress wave through a virtual functionally graded foam

机译:通过虚拟功能梯度泡沫传播应力波

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Stress wave propagation through a Functionally Graded Foam Material (FGFM) is analysed in this paper using the finite element method. A finite element model of the Split Hopkinson Pressure Bar (SHPB) is developed to apply realistic boundary conditions to a uniform density foam and is validated against laboratory SHPB tests. Wave propagation through virtual FGFMs with various gradient functions is then considered. The amplitude of the stress wave is found to be shaped by the gradient functions, i.e., the stress can be amplified or diminished following propagation through the FGFMs. The plastic dissipation energy in the specimens is also shaped by the gradient functions. This property of FGFMs provides significant potential for such materials to be used for cushioning structures.
机译:本文使用有限元方法分析了应力波在功能梯度泡沫材料(FGFM)中的传播。斯普利特霍普金森压力杆(SHPB)的有限元模型被开发用于将现实的边界条件应用于均匀密度的泡沫,并经过实验室SHPB测试验证。然后考虑通过具有各种梯度函数的虚拟FGFM的波传播。发现应力波的振幅由梯度函数定形,即,应力可以在通过FGFM传播后被放大或减小。样品中的塑性耗散能量也由梯度函数决定。 FGFM的这种特性为将这种材料用于缓冲结构提供了巨大的潜力。

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