The mechanical response of cellular materials with spinodal topologies is numerically and experimentally investigated. Spinodal microstructures are generated by the numerical solution of the Cahn-Hilliard equation. Two different topologies are investigated: ‘solid models,’ where one of the two phases is modeled as a solid material and the remaining volume is void space; and ‘shell models,’ where the interface between the two phases is assumed to be a solid shell, with the rest of the volume modeled as void space. In both cases, a wide range of relative densities and spinodal characteristic feature sizes are investigated. The topology and morphology of all the numerically generated models are carefully characterized to extract key geometrica...
Cellular materials have useful properties that allow wide range of applications like absorbers of ki...
The paper investigates the cyclic response of soft cellular materials undergoing repeated local inst...
The compression behaviour in quasi-static and dynamic conditions of cellular materials is crucial fo...
The mechanical response of cellular materials with spinodal topologies is numerically and experiment...
For decades, high strength and high fracture toughness have been among the most sought-after mechani...
Architected materials (or metamaterials) are engineered multiphase (composite) or single-phase (cell...
Cellular materials are widespread. Some, like wood and bone, occur in nature, while others, like pol...
noIn recent years there have been major advances in our understanding of the mechanisms of phase sep...
Cellular materials are ubiquitous in our world being found in natural and engineered systems as stru...
We present a two-scale topology optimization framework for the design of macroscopic bodies with an ...
The mechanical response of interpenetrating phase composites (IPCs) with stochastic spinodal topolog...
The objective of this research is to characterize the mechanical properties of hollow spheres and PC...
Effective mechanical properties of cellular materials depend strongly on the specimen size to the ce...
Cellular structures with highly controlled micro-architectures are promising materials for orthopedi...
The advancements in 3D printing technologies have resulted in the ease of manufacturing cellular mic...
Cellular materials have useful properties that allow wide range of applications like absorbers of ki...
The paper investigates the cyclic response of soft cellular materials undergoing repeated local inst...
The compression behaviour in quasi-static and dynamic conditions of cellular materials is crucial fo...
The mechanical response of cellular materials with spinodal topologies is numerically and experiment...
For decades, high strength and high fracture toughness have been among the most sought-after mechani...
Architected materials (or metamaterials) are engineered multiphase (composite) or single-phase (cell...
Cellular materials are widespread. Some, like wood and bone, occur in nature, while others, like pol...
noIn recent years there have been major advances in our understanding of the mechanisms of phase sep...
Cellular materials are ubiquitous in our world being found in natural and engineered systems as stru...
We present a two-scale topology optimization framework for the design of macroscopic bodies with an ...
The mechanical response of interpenetrating phase composites (IPCs) with stochastic spinodal topolog...
The objective of this research is to characterize the mechanical properties of hollow spheres and PC...
Effective mechanical properties of cellular materials depend strongly on the specimen size to the ce...
Cellular structures with highly controlled micro-architectures are promising materials for orthopedi...
The advancements in 3D printing technologies have resulted in the ease of manufacturing cellular mic...
Cellular materials have useful properties that allow wide range of applications like absorbers of ki...
The paper investigates the cyclic response of soft cellular materials undergoing repeated local inst...
The compression behaviour in quasi-static and dynamic conditions of cellular materials is crucial fo...