We present a design optimization and manufacturing approach for the creation of complex three-dimensional (3D) curved rod structures with spatially variable material distributions that exhibit active deformation behavior, enabled by the shape memory effect (SME) of 3D printed photopolymers—so-called four-dimensional (4D) printing. Our framework optimizes the cross-sectional properties of a rod structure, in particular the Young's modulus, such that under given loading conditions it can obtain one or more target shapes resulting from geometrically nonlinear deformation, from which the structure can then actively deform back to the original shape due to the SME. Our approach includes a novel algorithm to generate physical realizations from th...
Shape-shifting materials are a powerful tool for the fabrication of reconfigurable materials. Upon a...
In recent developments in the field of multi-material additive manufacturing, differences in materia...
We propose a method for fabricating deformable objects with spatially varying elasticity using 3D pr...
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...
Additive manufacturing (AM), as one of the most powerful manufacturing methods, is fabricating a thr...
We present a new 4D printing approach that can create high resolution (up to a few microns), multima...
Three-dimensional (3D) printing allows for significant simplifications in the design cycle through t...
Slender 1D structures are ubiquitous in nature and engineering and serve as building blocks for 3D s...
Four-dimensional (4D) printing is gaining interest in the past few years. The prototyping freedom of...
Slender 1D structures are ubiquitous in nature and engineering and serve as building blocks for 3D s...
Slender 1D structures are ubiquitous in nature and engineering and serve as building blocks for 3D s...
Slender 1D structures are ubiquitous in nature and engineering and serve as building blocks for 3D s...
Shape-shifting materials are a powerful tool for the fabrication of reconfigurable materials. Upon a...
In recent developments in the field of multi-material additive manufacturing, differences in materia...
We propose a method for fabricating deformable objects with spatially varying elasticity using 3D pr...
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...
Additive manufacturing (AM), as one of the most powerful manufacturing methods, is fabricating a thr...
We present a new 4D printing approach that can create high resolution (up to a few microns), multima...
Three-dimensional (3D) printing allows for significant simplifications in the design cycle through t...
Slender 1D structures are ubiquitous in nature and engineering and serve as building blocks for 3D s...
Four-dimensional (4D) printing is gaining interest in the past few years. The prototyping freedom of...
Slender 1D structures are ubiquitous in nature and engineering and serve as building blocks for 3D s...
Slender 1D structures are ubiquitous in nature and engineering and serve as building blocks for 3D s...
Slender 1D structures are ubiquitous in nature and engineering and serve as building blocks for 3D s...
Shape-shifting materials are a powerful tool for the fabrication of reconfigurable materials. Upon a...
In recent developments in the field of multi-material additive manufacturing, differences in materia...
We propose a method for fabricating deformable objects with spatially varying elasticity using 3D pr...