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Static and dynamic design based on hierarchical optimization for materials and structure of porous metals 被引量:4

Static and dynamic design based on hierarchical optimization for materials and structure of porous metals
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摘要 A static and dynamic collaborative optimization method for materials and structure with uniform periodic microstructure is presented.The sensitivity formulae of hierarchical optimization,i.e.,material design,structure design and integrated design for porous metals,are given.On the base of the hierarchical optimization model,numerical experiments of an MBB beam and a cantilever one were carried out.Based on porous metals bearing multi-functionality,the differences and applicability of hierarchical optimization are discussed in the structure loading field.It is concluded that structure design is mainly oriented to structure efficiency,material design is mainly oriented to multi-functionality,and integrated design is oriented to structure efficiency and multi-functionality.This work provides some useful ideas for the selection of porous metals design method. A static and dynamic collaborative optimization method for materials and structure with uniform periodic microstructure is presented.The sensitivity formulae of hierarchical optimization,i.e.,material design,structure design and integrated design for porous metals,are given.On the base of the hierarchical optimization model,numerical experiments of an MBB beam and a cantilever one were carried out.Based on porous metals bearing multi-functionality,the differences and applicability of hierarchical optimization are discussed in the structure loading field.It is concluded that structure design is mainly oriented to structure efficiency,material design is mainly oriented to multi-functionality,and integrated design is oriented to structure efficiency and multi-functionality.This work provides some useful ideas for the selection of porous metals design method.
出处 《Science China(Technological Sciences)》 SCIE EI CAS 2012年第10期2808-2814,共7页 中国科学(技术科学英文版)
基金 supported by the National Basic Research Program of China ("973" Project) (Grant No. 2010CB832700) the Science and Technology Development Fundation of Academy of Engineering Physics(Grant No. 2008A0302011)
关键词 多孔金属材料 结构优化设计 基础 静态 动态层 优化设计方法 金属结构设计 多功能性 porous metals multi-objectives hierarchical optimization material design structure design integrated design of materials and structure
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