Recent experiments have imposed controlled swelling patterns on thin polymer films, which subsequently buckle into three-dimensional shapes. We develop a solution to the design problem suggested by such systems, namely, if and how one can generate particular three-dimensional shapes from thin elastic sheets by mere imposition of a two-dimensional pattern of locally isotropic growth. Not every shape is possible. Several types of obstruction can arise, some of which depend on the sheet thickness. We provide some examples using the axisymmetric form of the problem, which is analytically tractable
Local undulating patterns of thin structures are a common phenomenon in nature and engineering. The ...
International audienceWe investigate the out-of-plane shape morphing capability of single-material e...
International audienceWe investigate the out-of-plane shape morphing capability of single-material e...
We work with two different mechanisms to generate geometric frustration on thin elastic sheets; isot...
We work with two different mechanisms to generate geometric frustration on thin elastic sheets; isot...
Thin films that exhibit spatially heterogeneous swelling often buckle into the third dimension to mi...
Thin films that exhibit spatially heterogeneous swelling often buckle into the third dimension to mi...
This paper investigates swelling-induced shaping in bilayer thin plates. Sphere-like and nearly deve...
This paper investigates swelling-induced shaping in bilayer thin plates. Sphere-like and nearly deve...
International audienceWe investigate the out-of-plane shape morphing capability of single-material e...
International audienceWe investigate the out-of-plane shape morphing capability of single-material e...
International audienceWe investigate the out-of-plane shape morphing capability of single-material e...
Transforming flat two-dimensional (2D) sheets into three-dimensional (3D) structures by combining ca...
International audienceWe investigate the out-of-plane shape morphing capability of single-material e...
International audienceWe investigate the out-of-plane shape morphing capability of single-material e...
Local undulating patterns of thin structures are a common phenomenon in nature and engineering. The ...
International audienceWe investigate the out-of-plane shape morphing capability of single-material e...
International audienceWe investigate the out-of-plane shape morphing capability of single-material e...
We work with two different mechanisms to generate geometric frustration on thin elastic sheets; isot...
We work with two different mechanisms to generate geometric frustration on thin elastic sheets; isot...
Thin films that exhibit spatially heterogeneous swelling often buckle into the third dimension to mi...
Thin films that exhibit spatially heterogeneous swelling often buckle into the third dimension to mi...
This paper investigates swelling-induced shaping in bilayer thin plates. Sphere-like and nearly deve...
This paper investigates swelling-induced shaping in bilayer thin plates. Sphere-like and nearly deve...
International audienceWe investigate the out-of-plane shape morphing capability of single-material e...
International audienceWe investigate the out-of-plane shape morphing capability of single-material e...
International audienceWe investigate the out-of-plane shape morphing capability of single-material e...
Transforming flat two-dimensional (2D) sheets into three-dimensional (3D) structures by combining ca...
International audienceWe investigate the out-of-plane shape morphing capability of single-material e...
International audienceWe investigate the out-of-plane shape morphing capability of single-material e...
Local undulating patterns of thin structures are a common phenomenon in nature and engineering. The ...
International audienceWe investigate the out-of-plane shape morphing capability of single-material e...
International audienceWe investigate the out-of-plane shape morphing capability of single-material e...