DocumentCode :
3777268
Title :
Geometry parameter optimization method for automobile energy-absorbing box
Author :
Qing Zhang; Lasheng Zhao; Qiang Zhang; Xiaopeng Wei
Author_Institution :
Key Laboratory of Advanced Design and Intelligent Computing, Dalian university, Dalian economic technological development zone, Liaoning, China, 116622
Volume :
1
fYear :
2015
Firstpage :
295
Lastpage :
299
Abstract :
Automobile bumper and energy-absorbing box are the most important parts for automobile passive safety and play an important role in the safety of automobile crash. In order to improve car crash safety and reduce fuel consumption of vehicle, in this study we analyze the deformation and endoergic process of energy-absorbing box during the collision based on the software ANSYS/LS-DYNA. Taking automobile absorbing box wall thickness and geometry size as the design variable, the energy-absorbing box of the car is optimally designed by combining the sampling techniques of Latin Hypercube experimental, the approximate model and genetic algorithm under the conditions of strength, stiffness and energy absorption. Compared with the original energy-absorbing box, the optimized results show that the energy absorption of the energy-absorbing box is improved, and the weight is reduced.
Keywords :
"Optimization","Data models","Analytical models","Automobiles","Solid modeling","Absorption","Finite element analysis"
Publisher :
ieee
Conference_Titel :
Computer Science and Network Technology (ICCSNT), 2015 4th International Conference on
Type :
conf
DOI :
10.1109/ICCSNT.2015.7490755
Filename :
7490755
Link To Document :
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