Cellular materials are ubiquitous in our world being found in natural and engineered systems as structural materials, sound and energy absorbers, heat insulators and more. Stochastic foams made of polymers, metals and even ceramics find wide use due to their novel properties when compared to monolithic materials. Properties of these so called hybrid materials, those that combine materials or materials and space, are derived from the localization of thermomechanical stresses and strains on the mesoscale as a function of cell topology. The effects of localization can only be generalized in stochastic materials arising from their inherent potential complexity, possessing variations in local chemistry, microstructural inhomogeneity and topologi...
Foams and microlattices are examples of hybrid materials, being composites of material and space. In...
In the last decades the use of cellular materials, either in the form of foams or lattices, has wide...
Most cellular solids are random materials, while practically all theoretical structure-property rela...
Cellular materials are ubiquitous in our world being found in natural and engineered systems as stru...
Recent advances in direct manufacturing open the door for promising materials, such as ordered struc...
Cellular solids are materials made out of solid strut or thin plate like structures bridged together...
New materials with enhanced properties are of high scientific and industrial interests. Researchers ...
Cellular materials are widespread. Some, like wood and bone, occur in nature, while others, like pol...
Cellular materials have useful properties that allow wide range of applications like absorbers of ki...
A family of robust stretch-dominated bimaterial lattices is introduced which combines low (or zero) ...
The present study is concerned with a scheme for numerical prediction of the macroscopic properties ...
In nature, structure, material and function are constantly evolving in tandem. This work employs pol...
The use of cellular foams as a core material in light-weight optical and structural systems is of co...
Cellular lattice structures have been gaining traction because of its fairly low mass and density, ...
Metallic and polymeric foams typically possess a low tensile failure strain of a few percent despite...
Foams and microlattices are examples of hybrid materials, being composites of material and space. In...
In the last decades the use of cellular materials, either in the form of foams or lattices, has wide...
Most cellular solids are random materials, while practically all theoretical structure-property rela...
Cellular materials are ubiquitous in our world being found in natural and engineered systems as stru...
Recent advances in direct manufacturing open the door for promising materials, such as ordered struc...
Cellular solids are materials made out of solid strut or thin plate like structures bridged together...
New materials with enhanced properties are of high scientific and industrial interests. Researchers ...
Cellular materials are widespread. Some, like wood and bone, occur in nature, while others, like pol...
Cellular materials have useful properties that allow wide range of applications like absorbers of ki...
A family of robust stretch-dominated bimaterial lattices is introduced which combines low (or zero) ...
The present study is concerned with a scheme for numerical prediction of the macroscopic properties ...
In nature, structure, material and function are constantly evolving in tandem. This work employs pol...
The use of cellular foams as a core material in light-weight optical and structural systems is of co...
Cellular lattice structures have been gaining traction because of its fairly low mass and density, ...
Metallic and polymeric foams typically possess a low tensile failure strain of a few percent despite...
Foams and microlattices are examples of hybrid materials, being composites of material and space. In...
In the last decades the use of cellular materials, either in the form of foams or lattices, has wide...
Most cellular solids are random materials, while practically all theoretical structure-property rela...