STRUCTURAL DESIGN AND OPTIMIZATION OF FUNCTIONALLY GRADED MATERIAL ENERGY ABSORBING BOX
|更新时间:2024-07-05
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STRUCTURAL DESIGN AND OPTIMIZATION OF FUNCTIONALLY GRADED MATERIAL ENERGY ABSORBING BOX
Journal of Mechanical Strength Vol. 46, Issue 2, Pages: 371-380(2024)
作者机构:
1. 福建工程学院机械与汽车工程学院
作者简介:
基金信息:
The project supported by the Natural Science Foundation of Fujian Province (No. 2021J05214), the Fujian Provincial Department of Finance(No. GY-221004), the Research Fund of Fujian University of Technology (No. GY-220170), the Open Project Fund of Fujian Additive Manufacturing Innovation Center (No. ZCZZ202-05), the Education and Scientific Research Project for Young and Middle-aged Teachers in Fujian Province (No. JAT190409), and the Research Foundation of Fujian University of Technology (No. GY-Z19122).
ZHANG QingYong, WANG YuChao, WANG Hui. STRUCTURAL DESIGN AND OPTIMIZATION OF FUNCTIONALLY GRADED MATERIAL ENERGY ABSORBING BOX. [J]. Journal of Mechanical Strength , 2024,46(2):371-380.
DOI:
ZHANG QingYong, WANG YuChao, WANG Hui. STRUCTURAL DESIGN AND OPTIMIZATION OF FUNCTIONALLY GRADED MATERIAL ENERGY ABSORBING BOX. [J]. Journal of Mechanical Strength , 2024,46(2):371-380. DOI: 10.16579/j.issn.1001.9669.2024.02.015.
STRUCTURAL DESIGN AND OPTIMIZATION OF FUNCTIONALLY GRADED MATERIAL ENERGY ABSORBING BOX
The structure design of traditional energy absorbing box has some shorteomings
such as failure to realize stable and orderly folding and collapsing during collision and poor energy-absorbing ability in unit mass
which limits the improvement of automobile safety performanee. The aluminum alloy was added into the traditional 316L stainless steel composition to form afunetionally graded material (FCM) structure of the energy obsorbing box
and the cross section was optimized to be a stick insect tibia cross-sectional structure. The cross section of the energy absorbing box is then optimized by multiple objectives based on the optimized Latin hypercube experimental design and response surface model. The results show that the optimized bionic funetionally graded energy absorbing box can be folded and collapsed stably from head to tail. In addition
the energy-absorbing effect in unit mass was also improved as compared to the traditional energy absorbing box. The results indieate that the damage of the car body in collision can be effectively weakened by the FGM and bionie designed energy absorbing box.
关键词
吸能盒功能梯度结构仿生截面结构设计多目标优化
Keywords
Energy absorbing boxFGM structureBionic cross sectionGeometry designMulti-objective optimization