The aim of this paper is to introduce tunable continuous-stable metamaterials with reversible thermomechanical memory operations by four-dimensional (4D) printing technology. They are developed based on an understanding on glassy-rubbery behaviors of shape memory polymers and hot/cold programming derived from experiments and theory. Fused decomposition modeling as a well-known 3D printing technology is implemented to fabricate mechanical metamaterials. They are experimentally tested revealing elastic-plastic and hyper-elastic behaviors in low and high temperatures at a large deformation range. A computational design tool is developed by implementing a 3D phenomenological constitutive model coupled with a geometrically non-linear finite elem...
Mechanical metamaterials are engineered materials with unconventional mechanical behavior that origi...
Mechanical metamaterials are engineered materials with unconventional mechanical behavior that origi...
This article shows how four-dimensional (4D) printing technology can engineer adaptive metastructure...
This article aims at introducing triple shape memory polymers (SMPs) by four-dimensional (4D) printi...
The present study aims at introducing reconfigurable mechanical metamaterials by utilising four-dime...
Additive manufacturing (AM), as one of the most powerful manufacturing methods, is fabricating a thr...
4D printing is an emerging technology and presents a significant advancement over 3D printing. By l...
The aim of this paper is to introduce dual-material auxetic meta-sandwiches by four-dimensional (4D)...
4D printing is an emerging technology and presents a significant advancement over 3D printing. By l...
The aim of this paper is to introduce dual-material auxetic meta-sandwiches by four-dimensional (4D)...
The aim of this paper is to introduce dual-material auxetic meta-sandwiches by four-dimensional (4D)...
4D printing refers to a novel trend in the field of active materials, regarding the employment of ad...
4D printing refers to a novel trend in the field of active materials, regarding the employment of ad...
Three-dimensional (3D) printing allows for significant simplifications in the design cycle through t...
The emerging 4D printing techniques open new horizons for fabricating self-actuated deformable objec...
Mechanical metamaterials are engineered materials with unconventional mechanical behavior that origi...
Mechanical metamaterials are engineered materials with unconventional mechanical behavior that origi...
This article shows how four-dimensional (4D) printing technology can engineer adaptive metastructure...
This article aims at introducing triple shape memory polymers (SMPs) by four-dimensional (4D) printi...
The present study aims at introducing reconfigurable mechanical metamaterials by utilising four-dime...
Additive manufacturing (AM), as one of the most powerful manufacturing methods, is fabricating a thr...
4D printing is an emerging technology and presents a significant advancement over 3D printing. By l...
The aim of this paper is to introduce dual-material auxetic meta-sandwiches by four-dimensional (4D)...
4D printing is an emerging technology and presents a significant advancement over 3D printing. By l...
The aim of this paper is to introduce dual-material auxetic meta-sandwiches by four-dimensional (4D)...
The aim of this paper is to introduce dual-material auxetic meta-sandwiches by four-dimensional (4D)...
4D printing refers to a novel trend in the field of active materials, regarding the employment of ad...
4D printing refers to a novel trend in the field of active materials, regarding the employment of ad...
Three-dimensional (3D) printing allows for significant simplifications in the design cycle through t...
The emerging 4D printing techniques open new horizons for fabricating self-actuated deformable objec...
Mechanical metamaterials are engineered materials with unconventional mechanical behavior that origi...
Mechanical metamaterials are engineered materials with unconventional mechanical behavior that origi...
This article shows how four-dimensional (4D) printing technology can engineer adaptive metastructure...