首页> 外文会议>Asia-Pacific Symposium on Engineering Plasticity and Its Applications;AEPA; 20060925-29;20060925-29; Nagoya(JP);Nagoya(JP) >Dynamic Mechanical Behaviors of Aluminium Foam Filled Circular Tubes under Transverse Compressive Load
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Dynamic Mechanical Behaviors of Aluminium Foam Filled Circular Tubes under Transverse Compressive Load

机译:横向压缩载荷下泡沫铝圆管的动态力学行为

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摘要

The experimental studies on the static and dynamic mechanical properties of aluminium foam material are presented first. Finite element models of four structures, including circular tube filled and bonded with aluminium foam, circular tube filled but unbonded with aluminium foam, single aluminium foam column and empty aluminium tube, under dynamic transverse compression are established by FEMB code. The dynamic mechanical behaviors of the structures are analyzed using LS-DYNA finite element code. The simulating results at certain cases are compared with experimental measurements and the satisfying consistency confirmed the validity of the model. The further numerical simulations are carried on the dynamic mechanical behaviors of four structures with outer tubes of different wall-thickness. It is found that aluminium foam filling can greatly improve the load-bearing capacity and energy-absorbing efficiency of structures. On the other hand, the effect of the aluminium outer tube on the structure is obvious compared with single aluminium foam column, in spite of the foam core and the tube are bonded together or unbonded. Another result can be seen that the bonding between the foam and outer tube affects the structure weakly for both thinner and thicker tubes. Finally, the simulating results show that the thicker wall of tube can improve the load-bearing capacity and energy-absorbing ability of the structure.
机译:首先介绍了泡沫铝材料静态和动态力学性能的实验研究。利用FEMB代码建立了在动态横向压缩下填充泡沫铝的圆管,填充泡沫铝的无圆管,填充铝泡沫但无粘结的圆管,单根铝泡沫柱和空铝管四种结构的有限元模型。使用LS-DYNA有限元代码分析了结构的动态力学行为。将某些情况下的仿真结果与实验测量结果进行比较,令人满意的一致性证实了该模型的有效性。对具有不同壁厚的外管的四种结构的动力力学行为进行了进一步的数值模拟。研究发现,泡沫铝的填充可以大大提高结构的承载能力和能量吸收效率。另一方面,尽管泡沫芯和管是粘结在一起或未粘结的,但与单个铝泡沫柱相比,铝外管对结构的影响是明显的。可以看到另一个结果,对于较细和较粗的管子,泡沫和外管之间的粘结对结构的影响很小。最后,仿真结果表明,较厚的管壁可以提高结构的承载能力和能量吸收能力。

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