机械
流体学
休克(循环)
牛顿流体
非牛顿流体
减震器
卡罗流体
冲击响应谱
阀体孔板
计算
带宽遏流
材料科学
经典力学
物理
热力学
机械工程
计算机科学
加速度
航空航天工程
工程类
气体压缩机
内科学
医学
算法
作者
Laura H. Goldstein,Dotan Ilssar,Amir D. Gat
摘要
Shock-absorbers often involve throttling of viscous fluids through small orifices. This gives rise to high rates-of-strain and non-Newtonian behavior even in fluids which are commonly assumed Newtonian, which affects impact mitigation properties. We here derive an asymptotic approximation describing the dynamics of fluidic shock-absorbers while focusing on weak Carreau type non-Newtonian effects and annular geometries. We validate our model by numerical computations and experiments with a medium-sized shock-absorber used to mitigate the impact caused by a free-falling weight. We then leverage the theoretical model to calculate the shock-absorber's optimal geometry and present experimental results of the fabricated optimal configuration, showing good agreement with the theory and nearly optimal impact mitigation properties.
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