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基于显式有限元技术的梁截面抗撞性优化
引用本文:侯淑娟,李青,龙述尧.基于显式有限元技术的梁截面抗撞性优化[J].数值计算与计算机应用,2006,27(4):271-280.
作者姓名:侯淑娟  李青  龙述尧
作者单位:1. 湖南大学工程力学系,长沙,410082
2. 湖南大学机械与汽车工程学院,长沙,410082;悉尼大学航空、机械和机电一体化工程学院,悉尼 NSW 2006 澳大利亚
基金项目:国家973资助项目(2004CB719402),国家自然科学基金(10372029).
摘    要:本文基于显式有限元技术,采用响应面法,以结构的比吸能为优化函数,以提高吸能原件的抗撞性为目的,对正方形截面的金属薄壁梁进行了形状优化.经过数值分析,得出了正方形截面梁的比吸能关于壁厚和截面边长的变化规律,这些规律可以用于实际吸能原件的设计,并为进一步研究奠定了基础.

关 键 词:设计优化  有限元法  抗撞性  比吸能  梁截面
修稿时间:2005年10月14

OPTIMIZATION OF BEAM SECTION WITH CRASHWORTHINESS CRITERION BASED ON THE EXPLICIT FINITE ELEMENT TECHNOLOGY
Hou Shujuan,Li Qing,Long Shuyao.OPTIMIZATION OF BEAM SECTION WITH CRASHWORTHINESS CRITERION BASED ON THE EXPLICIT FINITE ELEMENT TECHNOLOGY[J].Journal on Numerical Methods and Computer Applications,2006,27(4):271-280.
Authors:Hou Shujuan  Li Qing  Long Shuyao
Abstract:In this paper,the size optimization of the metal thin-walled component with a square cross-section is performed,where the Specific Energy Absorption(SEA) is taken as the objective function by using the Response Surface Method(RSM) on a basis of explicit Finite Element(FE)algorithm.The main purpose of the size optimization of the beam section is to improve its crashworthiness for energy- absorption.The response function of SEA with respect to thickness and side length of the square sectional beam is obtained through the numerical analysis. The conclusions can be thus used to the optimal design of the practical energy- absorbing element and the further study.
Keywords:design optimization  finite element method  crashworthiness  Specific Energy Absorption  beam section
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