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A study of the influence of diameter and wall thickness of cylindrical tubes on their axial collapse

机译:圆柱管直径和壁厚对其轴向塌陷影响的研究

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Axial compression experiments on aluminium cylindrical shells of diameter to thickness ratios (D/t) between 11.5 and 31.49 were conducted on a gravity drop hammer set up and Zwick machine. Typical histories of their deformation, variation of shell thickness along the fold length, inner and outer radii, folding parameter and size of fold, load-compression curves, energy absorbing capacity, initial peak load, and mean collapse loads obtained from the experiments are presented. Influence of the D/t values of the shell on their modes of collapse and energy absorption capacities are discussed. The shells are numerically simulated and analysed in detail by using the finite element code FORGE2. The material was modelled as rigid-viscoplastic. The experimental and computed results are compared. Typical contours of equivalent strain, equivalent strain rate, different stress components and velocity distribution are presented. The impact response of the shells is compared with their static response.
机译:在重力落锤装置和Zwick机器上对直径与厚度之比(D / t)在11.5和31.49之间的铝制圆柱壳进行了轴向压缩实验。给出了其变形的典型历史,沿折叠长度的壳厚度变化,内半径和外半径,折叠参数和折叠大小,载荷压缩曲线,能量吸收能力,初始峰值载荷以及从实验中获得的平均塌陷载荷。讨论了壳的D / t值对其塌陷模式和能量吸收能力的影响。使用有限元代码FORGE2对壳进行了数值模拟和详细分析。该材料被建模为刚粘塑性。比较了实验结果和计算结果。给出了等效应变,等效应变率,不同应力分量和速度分布的典型轮廓。将壳体的冲击响应与其静态响应进行比较。

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