This work demonstrates how the geometric and topological characteristics of substructures within heterogeneous materials can be employed to tailor the mechanical responses of soft crystals under large strains. The large deformation mechanical behaviors of elastomeric composites possessing long-range crystalline order are examined using both experiments on 3D-printed prototype materials and precisely matched numerical simulations. The deformation mechanisms at small and large strains are elucidated for six sets of morphologies: dispersed particles on each of the simple cubic, body-centered cubic or face-centered cubic lattices, and their bi-continuous counterparts. Comparison of results for the six types of morphologies reveals that the topo...
Colloidal assemblies, biopolymer networks, membranes, and many other soft materials present interact...
This is the final version of the article. It first appeared from Nature Publishing Group via http://...
Synthetic approaches to prepare designer materials that localize deformation, by combining rigidity ...
Soft matter denotes a large category of materials showing unique properties, resulting from a low e...
Actuation of rotational motion in machines and robotics is generally achieved through highly enginee...
It has been shown that unlike its constituent nanocrystalline (NC) phase, a heterogeneous lamella (H...
We present an approach to solving problems in computational micromechanics that is amenable to massi...
Liquid crystal elastomers are rubbery networks of entropically dominated polymer chains that exhibit...
We use a molecular dynamics (MD) framework to study the mechanical properties of triblock copolymer...
We consider the equilibrium stress-strain behavior of polydomain liquid crystal elastomers (PLCEs). ...
It has been shown that unlike its constituent nanocrystalline (NC) phase, a heterogeneous lamella (H...
Liquid crystal elastomers (LCEs) are rubber-like solids that incorporate nematic mesogens (stiff rod...
We perform thorough molecular-dynamics simulations to compare elasticity and yielding of atomic crys...
Liquid crystal elastomers (LCE) — polymer networks with embedded liquid crystal units — are function...
Up until recently, the rational design of mechanical metamaterials has usually involved devising geo...
Colloidal assemblies, biopolymer networks, membranes, and many other soft materials present interact...
This is the final version of the article. It first appeared from Nature Publishing Group via http://...
Synthetic approaches to prepare designer materials that localize deformation, by combining rigidity ...
Soft matter denotes a large category of materials showing unique properties, resulting from a low e...
Actuation of rotational motion in machines and robotics is generally achieved through highly enginee...
It has been shown that unlike its constituent nanocrystalline (NC) phase, a heterogeneous lamella (H...
We present an approach to solving problems in computational micromechanics that is amenable to massi...
Liquid crystal elastomers are rubbery networks of entropically dominated polymer chains that exhibit...
We use a molecular dynamics (MD) framework to study the mechanical properties of triblock copolymer...
We consider the equilibrium stress-strain behavior of polydomain liquid crystal elastomers (PLCEs). ...
It has been shown that unlike its constituent nanocrystalline (NC) phase, a heterogeneous lamella (H...
Liquid crystal elastomers (LCEs) are rubber-like solids that incorporate nematic mesogens (stiff rod...
We perform thorough molecular-dynamics simulations to compare elasticity and yielding of atomic crys...
Liquid crystal elastomers (LCE) — polymer networks with embedded liquid crystal units — are function...
Up until recently, the rational design of mechanical metamaterials has usually involved devising geo...
Colloidal assemblies, biopolymer networks, membranes, and many other soft materials present interact...
This is the final version of the article. It first appeared from Nature Publishing Group via http://...
Synthetic approaches to prepare designer materials that localize deformation, by combining rigidity ...