This paper introduces an alternative approach for the topological design of microstructures of materials that are composed of three or more constituent phases. It is assumed that the materials are made up of periodic microstructures. Bi-directional Evolutionary Structural Optimization (BESO) methodology is applied for designing materials' microstructures with maximum bulk modulus, shear modulus or thermal conductivity. Constituent phases are divided into groups and sensitivity analyses are performed in order to estimate their effects on the variation of the objective function. Changing the elemental properties in the finite element model of the microstructure is performed based on this sensitivity analyses and by imposing volume constr...
Heat and mass transfer in macellular materials signifies an important topic of research for a range ...
Based on the bi-direction evolutionary structural optimization (BESO) method, a concurrent two-scale...
Topological design with multiple constraints is of great importance in practical engineering design ...
This paper presents a computational technique for the topological design of microstructures for func...
This paper presents a new approach to designing periodic microstructures of cellular materials. The ...
This paper presents the bidirectional evolutionary structural optimization (BESO) method for the des...
A method for the multi-scale design of composite thermoelastic macrostructure and periodic microstru...
The aim of this study was to design isotropic periodic microstructures of cellular materials using t...
This paper introduces a two-scale topology optimization approach by integrating optimized structures...
© 2016, Springer-Verlag Berlin Heidelberg. Metamaterials usually refer to artificially engineered co...
Different from the independent optimization of macrostructures or materials, a two-scale topology op...
This paper presents a new approach to designing periodic microstructures of cellular materials. The ...
This paper proposes a methodology for maximizing dynamic stress response reliability of continuum st...
This paper presents a concurrent topology optimization methodology for minimizing the frequency resp...
This paper studies the influence of heat conduction in both structural and material designs in two d...
Heat and mass transfer in macellular materials signifies an important topic of research for a range ...
Based on the bi-direction evolutionary structural optimization (BESO) method, a concurrent two-scale...
Topological design with multiple constraints is of great importance in practical engineering design ...
This paper presents a computational technique for the topological design of microstructures for func...
This paper presents a new approach to designing periodic microstructures of cellular materials. The ...
This paper presents the bidirectional evolutionary structural optimization (BESO) method for the des...
A method for the multi-scale design of composite thermoelastic macrostructure and periodic microstru...
The aim of this study was to design isotropic periodic microstructures of cellular materials using t...
This paper introduces a two-scale topology optimization approach by integrating optimized structures...
© 2016, Springer-Verlag Berlin Heidelberg. Metamaterials usually refer to artificially engineered co...
Different from the independent optimization of macrostructures or materials, a two-scale topology op...
This paper presents a new approach to designing periodic microstructures of cellular materials. The ...
This paper proposes a methodology for maximizing dynamic stress response reliability of continuum st...
This paper presents a concurrent topology optimization methodology for minimizing the frequency resp...
This paper studies the influence of heat conduction in both structural and material designs in two d...
Heat and mass transfer in macellular materials signifies an important topic of research for a range ...
Based on the bi-direction evolutionary structural optimization (BESO) method, a concurrent two-scale...
Topological design with multiple constraints is of great importance in practical engineering design ...