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Quasi-Static and Dynamic Axial Crushing of Various Polygonal Tubes

机译:各种多边形管的准静态和动态轴压

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Various polygonal tubes were compressed in the axial direction under quasi-static and dynamic loading conditions. The effect of the polygonal shape and the wall thickness on the crush behavior is investigated, in which the cyclic buckling takes place. The numbers of polygonal edges were 3, 4, 5, 6 and 7 in the experiment. A circular tube was also tested for comparison. The tubes were machined from aluminum alloy A5056 bar. Crush strength is estimated as an index of the energy absorption capacity of the tube. It increases with increasing the number of polygonal edges of the tube, although it almost saturates when the number of polygonal edges is more than 6. For the wider variety of polygonal tubes than that in the experiment, numerical simulation is performed using the dynamic explicit finite element code DYNA3D. The computed crush behavior well agrees with the corresponding experimental one, however, the difference in collapse mode arises due to the slight imperfections in experiment. The deformation pattern becomes more irregular for the thinner-walled tube. Further, it is presumed that the large hardening exponent in the plastic property of the material could prevent the buckling switching from the symmetric mode to asymmetric one in the crushing of circular tube.
机译:在准静态和动态负载条件下,各种多边形管在轴向上被压缩。研究了多边形形状和壁厚对挤压行为的影响,其中发生循环屈曲。在实验中,多边形边缘的数量为3,4,5,6和7。还测试了圆形管以进行比较。用铝合金A5056棒加工管。挤压强度估计为管的能量吸收能力指数。随着管的多边形边缘的数量增加,虽然当多边形边缘的数量大于6时,它随着多边形的数量大于6.对于更广泛的多边形管而言,但是使用动态显式有限性进行数值模拟元素代码Dyna3D。计算的挤压行为很好地同意相应的实验,然而,由于实验中的微小缺陷,塌陷模式的差异产生。变形图案对于较薄的壁管变得更不规则。此外,假设材料的塑料性质中的大型硬化指数可以防止屈曲从对称模式切换到圆形管的破碎中的不对称。

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