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Topology optimization of 3D shell structures with porous infill 被引量:5

Topology optimization of 3D shell structures with porous infill
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摘要 This paper presents a 3D topology optimization approach for designing shell structures with a porous or void interior. It is shown that the resulting structures are significantly more robust towards load perturbations than completely solid structures optimized under the same conditions. The study indicates that the potential benefit of using porous structures is higher for lower total volume fractions.Compared to earlier work dealing with 2D topology optimization, we found several new effects in 3D problems. Most notably, the opportunity for designing closed shells significantly improves the performance of porous structures due to the sandwich effect. Furthermore, the paper introduces improved filter boundary conditions to ensure a completely uniform coating thickness at the design domain boundary. This paper presents a 3D topology optimization approach for designing shell structures with a porous or void interior. It is shown that the resulting structures are significantly more robust towards load perturbations than completely solid structures optimized under the same conditions. The study indicates that the potential benefit of using porous structures is higher for lower total volume fractions.Compared to earlier work dealing with 2D topology optimization, we found several new effects in 3D problems. Most notably, the opportunity for designing closed shells significantly improves the performance of porous structures due to the sandwich effect. Furthermore, the paper introduces improved filter boundary conditions to ensure a completely uniform coating thickness at the design domain boundary.
出处 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2017年第4期778-791,共14页 力学学报(英文版)
基金 financial support from the Villum Foundation (the Next Top Project) DTU Mechanical Engineering
关键词 porous shells topology interior perturbations opportunity dealing earlier stiffness struc porous shells topology interior perturbations opportunity dealing earlier stiffness struc
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