Energy absorption of metallic cylindrical shells with induced non-axisymmetric folding patterns

被引:84
作者
Marsolek, J
Reimerdes, HG
机构
[1] ABAQUS Deutschland GmbH, D-52062 Aachen, Germany
[2] Rhein Westfal TH Aachen, Dept Aerosp & Lightweight Struct, D-52062 Aachen, Germany
关键词
cylindrical shells; non-axisymmetric folding patterns; trigger mechanism; energy absorption;
D O I
10.1016/j.ijimpeng.2004.06.006
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
Metallic cylindrical shells are common structural elements. They can be used for controlled absorption of kinetic crash energy, e.g. in automobile and train structures. The energy absorption process of metallic shells subjected to axial loading is based on the formation of plastic folds. In order to optimise the energy absorption behaviour of such metallic cylindrical shell structures, the influence of different induced folding modes is investigated with the help of experiments as well as numerical finite element (FE) calculations and a simplified analytical model by Marsolek's Energieabsorptionsverhalten zylinderschalenformiger Struktureiemente aus Metall und Faserverbundwerkstoff, dissertation. In quasi-static and dynamic tests a special load introduction device is used to induce non-axisymmetric folding patterns with different circumferential folding wave numbers. The load-deformation characteristics and the energy absorption capability resulting from different folding modes are compared. Explicit FE simulations using a fine mesh are performed. The simulation results are compared with the experimental results. The geometry of the trigger mechanism is optimised by varying the fraction of the shell circumference used for load introduction in FE simulations. In addition a simplified analytical model is developed, which is based on a detailed geometric idealisation of the folding process with stationary and moving plastic folds. It allows to predict the average crush force. The results of the analytical model confirm the tendencies found in experiments and FE simulations. (C) 2004 Elsevier Ltd. All rights reserved.
引用
收藏
页码:1209 / 1223
页数:15
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