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典型文献
Study on Functional Mechanical Performance of Honeycomb Array Structures Inspired by Gideon Beetle
文献摘要:
To obtain bio-inspired structures with superior biological function,four bio-inspired structures named regular arrangement honeycomb structure(RAHS),staggered arrangement honeycomb structure(SAHS),floral arrangement honeycomb struc-ture(FLAHS)and functional arrangement honeycomb structure(FUAHS)are designed by observing the microstructure of the Gideon beetle,based on the optimal size bio-inspired cells by response surface method(RSM)and particle swarm optimization(PSO)algorithm.According to Euler theory and buckling failure theory,compression deformation properties of bio-inspired structures are explained.Experiments and simulations further verify the accuracy of theoretical analysis results.The results show that energy absorption of FLAHS is,respectively,increased by 26.95%,22.85%,and 121.45%,compared with RAHS,SAHS,and FUAHS.Elastic modulus of FLAHS is 110.37%,110.37%,and 230.56%of RAHS,SAHS,and FUAHS,respectively.FLAHS perfectly inherits crashworthiness and energy absorption properties of the Gideon beetle,and FLAHS has the most stable force.Similarly,RAHS,SAHS,and FUAHS,respectively,inherit mechanical properties of the Gideon beetle top horn,the Gideon beetle middle horn,and the abdomen of the beetle.This method,designing bio-inspired structures with biological functions,can be introduced into the engineering field requiring the special function.
文献关键词:
作者姓名:
Ruiyao Liu;Guofeng Yao;Zezhou Xu;Xue Guo;Kuiyang Gao;Qing Cao;Zhenglei Yu;Zhihui Zhang;Chunyang Han;Jiabao Liu
作者机构:
Department of Mechanics,School of Mechanical and Aerospace Engineering,Jilin University,Changchun 130022,China;Key Laboratory of Engineering Bionics,Ministry of Education,Jilin University,Changchun 130022,China;Key Laboratory for Cross-Scale Micro and Nano Manufacturing,Ministry of Education,Changchun University of Science and Technology,Changchun 130000,China;Changchun Institute of Optics,Fine Mechanics and Physics,Chinese Academy of Sciences,Changchun 130022,China;Archives,Jilin Construction University,Changchun 130000,China
引用格式:
[1]Ruiyao Liu;Guofeng Yao;Zezhou Xu;Xue Guo;Kuiyang Gao;Qing Cao;Zhenglei Yu;Zhihui Zhang;Chunyang Han;Jiabao Liu-.Study on Functional Mechanical Performance of Honeycomb Array Structures Inspired by Gideon Beetle)[J].仿生工程学报(英文版),2022(04):1024-1035
A类:
Gideon,RAHS,FLAHS,FUAHS
B类:
Study,Functional,Mechanical,Performance,Honeycomb,Array,Structures,Inspired,by,Beetle,To,obtain,inspired,structures,superior,biological,four,named,regular,arrangement,honeycomb,staggered,SAHS,floral,functional,designed,observing,microstructure,beetle,optimal,size,cells,response,surface,method,RSM,particle,swarm,optimization,PSO,algorithm,According,Euler,theory,buckling,failure,compression,deformation,properties,explained,Experiments,simulations,further,verify,accuracy,theoretical,analysis,results,show,that,energy,absorption,respectively,increased,compared,Elastic,modulus,perfectly,inherits,crashworthiness,has,most,stable,force,Similarly,mechanical,top,horn,middle,abdomen,This,designing,functions,can,introduced,into,engineering,field,requiring,special
AB值:
0.45573
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