We propose a method for fabricating deformable objects with spatially varying elasticity using 3D printing. Using a single, relatively stiff printer material, our method designs an assembly of smallscale microstructures that have the effect of a softer material at the object scale, with properties depending on the microstructure used in each part of the object. We build on work in the area of metamaterials, using numerical optimization to design tiled microstructures with desired properties, but with the key difference that our method designs families of related structures that can be interpolated to smoothly vary the material properties over a wide range. To create an object with spatially varying elastic properties, we tile the object's i...
Up until recently, the rational design of mechanical metamaterials has usually involved devising geo...
Up until recently, the rational design of mechanical metamaterials has usually involved devising geo...
Up until recently, the rational design of mechanical metamaterials has usually involved devising geo...
We propose a method for fabricating deformable objects with spatially varying elasticity using 3D pr...
We propose a method for fabricating deformable objects with spatially varying elasticity using 3D pr...
We propose a method for fabricating deformable objects with spatially varying elasticity using 3D pr...
We propose a method for fabricating deformable objects with spatially varying elasticity using 3D pr...
International audienceNature offers a marvel of astonishing and rich deformation behaviors. Yet, mos...
Figure 1: Two examples of real and replicated objects. Thanks to our data-driven process, we are abl...
Figure 1: Six basic elastic textures are used to obtain a large range of homogenized isotropic mater...
We present a design optimization and manufacturing approach for the creation of complex three-dimens...
We present a design optimization and manufacturing approach for the creation of complex three-dimens...
We present a design optimization and manufacturing approach for the creation of complex three-dimens...
We present a design optimization and manufacturing approach for the creation of complex three-dimens...
We present a design optimization and manufacturing approach for the creation of complex three-dimens...
Up until recently, the rational design of mechanical metamaterials has usually involved devising geo...
Up until recently, the rational design of mechanical metamaterials has usually involved devising geo...
Up until recently, the rational design of mechanical metamaterials has usually involved devising geo...
We propose a method for fabricating deformable objects with spatially varying elasticity using 3D pr...
We propose a method for fabricating deformable objects with spatially varying elasticity using 3D pr...
We propose a method for fabricating deformable objects with spatially varying elasticity using 3D pr...
We propose a method for fabricating deformable objects with spatially varying elasticity using 3D pr...
International audienceNature offers a marvel of astonishing and rich deformation behaviors. Yet, mos...
Figure 1: Two examples of real and replicated objects. Thanks to our data-driven process, we are abl...
Figure 1: Six basic elastic textures are used to obtain a large range of homogenized isotropic mater...
We present a design optimization and manufacturing approach for the creation of complex three-dimens...
We present a design optimization and manufacturing approach for the creation of complex three-dimens...
We present a design optimization and manufacturing approach for the creation of complex three-dimens...
We present a design optimization and manufacturing approach for the creation of complex three-dimens...
We present a design optimization and manufacturing approach for the creation of complex three-dimens...
Up until recently, the rational design of mechanical metamaterials has usually involved devising geo...
Up until recently, the rational design of mechanical metamaterials has usually involved devising geo...
Up until recently, the rational design of mechanical metamaterials has usually involved devising geo...