Heterogeneous materials with tailored, site-specific physical properties, ubiquitously found in biological systems, can reach optimal performances in applications. Compared to homogeneous materials or composite materials with random, disordered microstructures, materials with locally addressable properties achieve higher strength at lower density, or record-high shock absorption properties. A classic example of tailored, heterogeneous materials are functionally graded materials or materials where stiffness variations in bulk are controllable. However, current methods to locally control stiffness in a solid are mostly limited to geometrical variation of architected micro-structures, or to the creation of multi-material composites. Here, a no...
Externally triggered lengthening or shortening (actuation) of one or more members in a lattice mater...
We propose a method for fabricating deformable objects with spatially varying elasticity using 3D pr...
Natural porous materials adjust their resulting mechanical properties by the optimal use of matter a...
Heterogeneous materials with tailored, site-specific physical properties, ubiquitously found in biol...
Engineered heterogeneous materials have gained a lot of research interest in recent years. Materials...
Natural cellular biomaterials typically consist of hard and soft constituent materials that are hier...
Materials found in nature present, in some cases, unique properties from their constituents that are...
By designing materials with variable stiffness, structures can adapt to various functional requireme...
The integration of materials and architectural features at multiple length scales into structural me...
Biological composites display exceptional mechanical properties owing to a highly organized, heterog...
Two-photon (2P) lithography shows great potential for the fabrication of three dimensional micro- an...
International audience3D Direct laser writing (3D DLW) based on two photon polymerization represents...
Nature has evolved materials with outstanding mechanical properties, which attain high values of bot...
3D architectures with nearly arbitrary geometry and features on the submicron scale can be fabricate...
Materials with dense architectures are composed of stiff and strong building blocks that are arrange...
Externally triggered lengthening or shortening (actuation) of one or more members in a lattice mater...
We propose a method for fabricating deformable objects with spatially varying elasticity using 3D pr...
Natural porous materials adjust their resulting mechanical properties by the optimal use of matter a...
Heterogeneous materials with tailored, site-specific physical properties, ubiquitously found in biol...
Engineered heterogeneous materials have gained a lot of research interest in recent years. Materials...
Natural cellular biomaterials typically consist of hard and soft constituent materials that are hier...
Materials found in nature present, in some cases, unique properties from their constituents that are...
By designing materials with variable stiffness, structures can adapt to various functional requireme...
The integration of materials and architectural features at multiple length scales into structural me...
Biological composites display exceptional mechanical properties owing to a highly organized, heterog...
Two-photon (2P) lithography shows great potential for the fabrication of three dimensional micro- an...
International audience3D Direct laser writing (3D DLW) based on two photon polymerization represents...
Nature has evolved materials with outstanding mechanical properties, which attain high values of bot...
3D architectures with nearly arbitrary geometry and features on the submicron scale can be fabricate...
Materials with dense architectures are composed of stiff and strong building blocks that are arrange...
Externally triggered lengthening or shortening (actuation) of one or more members in a lattice mater...
We propose a method for fabricating deformable objects with spatially varying elasticity using 3D pr...
Natural porous materials adjust their resulting mechanical properties by the optimal use of matter a...