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带有圆弧形凹槽金属薄壁圆管抗撞性优化设计
引用本文:谭丽辉,徐涛,崔晓梅,张炜,赵世佳.带有圆弧形凹槽金属薄壁圆管抗撞性优化设计[J].爆炸与冲击,2014,34(5):547-553.
作者姓名:谭丽辉  徐涛  崔晓梅  张炜  赵世佳
作者单位:1.吉林大学机械科学与工程学院,吉林 长春 130022
基金项目:国家自然科学基金项目,吉林省科技发展计划项目,一汽集团科技创新项目,the National Natural Science Foundation of China
摘    要:在金属薄壁圆管的基础上,引入圆弧形凹槽诱导结构并以其为研究对象,建立以凹槽数量及其半径为优化参数,以比吸能和压溃力效率为评价指标的多目标优化模型。分析研究均布设置诱导凹槽对结构吸能、最大峰值压溃力及压溃力曲线平稳性的影响。采用有限元软件LS-DYNA得到不同几何参数模型的碰撞响应,结合径向基函数法构造近似函数,并采用理想点法进行优化设计,得出使结构最优时的凹槽数量和半径,从而得到了理想的诱导凹槽优化结构。

关 键 词:爆炸力学    优化设计    圆弧形凹槽    薄壁圆管    比吸能    压溃力    径向基函数
收稿时间:2013-03-04

Design optimization for crashworthiness of metal thin-walled cylinders with circular arc indentations
Tan Li-hui,Xu Tao,Cui Xiao-mei,Zhang Wei,Zhao Shi-jia.Design optimization for crashworthiness of metal thin-walled cylinders with circular arc indentations[J].Explosion and Shock Waves,2014,34(5):547-553.
Authors:Tan Li-hui  Xu Tao  Cui Xiao-mei  Zhang Wei  Zhao Shi-jia
Institution:1.College of Mechanical Science and Engineering, Jilin University, Changchun 130022, Jilin, China2.Department of Mechatronics, Jilin Institute of Chemical Technology, Jinlin 132022, Jilin, China
Abstract:Circular arc indentations were introduced into metal thin-walled cylinders.And a multi-objective optimization model was built by taking the number and the radius of the indentations as optimization parameters, as well as the specific energy absorption and the crushing force efficiency as evaluation indexes.The effects of the circular arc indentations introduced with uniform intervals were analyzed on the structural energy absorption, the maximum crushing force and the smoothness of the crushing force curve.The collision responses of different geometrical models were obtained by using the finite element software LS-DYNA.The objective functions were constructed based on the radial basis function.The multi-objective optimization for the thin-walled cylinders with the induced indentations was presented by using the ideal point method.The number and the radius of the optimal indentations were obtained.So the optimization design was achieved for the ideal indentations.
Keywords:mechanics of explosion  design optimization  circular arc indentation  thin-walled cylinder  specific energy absorption  crushing force  radial basis function
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