316L and Cu-based inks are developed to 3D-printed tetrachiral auxetic structures. The main objectives of the work are to study the effects of powders composition and powder:binder volume ratio on rheological properties and printability of the inks. Following these results, customized Gcode is developed using FullControl Gcode Designer open-source software to 3D print intricate tetrachiral auxetic structures. The results reported in this work show how powder composition (316L versus Cu) has less effect on the inks' rheological behavior than powder size distribution and powders:binder volume ratio. In terms of rheological parameters, the zero-shear rate viscosity mainly affects the capability of the printed ink to retain its shape after prin...
Direct ink writing (DIW) is the most versatile AM technique in terms of materials development, it en...
Direct ink writing (DIW) is an extrusion-based technique that is increasingly used for extrusion of ...
The ability to pattern complex materials with high-speed and low-cost three-dimensional (3D) printin...
Direct-Ink-Writing (or robocasting) is a subset of extrusion-based additive manufacturing techniques...
Direct ink writing, a widely used additive manufacturing technique, has some disadvantages in fabric...
In order to achieve high-quality 3D printing of inorganic materials, a thorough evaluation of approp...
Material extrusion enables deposition of filaments with designed structures, and such sub-categories...
Direct Ink Writing (DIW), an extrusion-based 3D printing technique, offers a broad application space...
In this report, alumina-silica composite ceramic is manufactured by using the 3D-Direct Ink Writing ...
Inkjet printing is an excellent printing technique and an attractive alternative to conventional tec...
3D printing of inorganic particles was first introduced in the 1990s, and since, multiple technologi...
Multilayer ceramics composites are currently manufactured using a combination of multitude processes...
The thermoelectric (TE) generator is a solid-state device that directly converts the flow rate (temp...
New micro- and nanoscale fabrication methods are of vital importance to drive scientific and technol...
Direct ink writing (DIW) is an extrusion-based 3D printing technique. Recently, the advancement usin...
Direct ink writing (DIW) is the most versatile AM technique in terms of materials development, it en...
Direct ink writing (DIW) is an extrusion-based technique that is increasingly used for extrusion of ...
The ability to pattern complex materials with high-speed and low-cost three-dimensional (3D) printin...
Direct-Ink-Writing (or robocasting) is a subset of extrusion-based additive manufacturing techniques...
Direct ink writing, a widely used additive manufacturing technique, has some disadvantages in fabric...
In order to achieve high-quality 3D printing of inorganic materials, a thorough evaluation of approp...
Material extrusion enables deposition of filaments with designed structures, and such sub-categories...
Direct Ink Writing (DIW), an extrusion-based 3D printing technique, offers a broad application space...
In this report, alumina-silica composite ceramic is manufactured by using the 3D-Direct Ink Writing ...
Inkjet printing is an excellent printing technique and an attractive alternative to conventional tec...
3D printing of inorganic particles was first introduced in the 1990s, and since, multiple technologi...
Multilayer ceramics composites are currently manufactured using a combination of multitude processes...
The thermoelectric (TE) generator is a solid-state device that directly converts the flow rate (temp...
New micro- and nanoscale fabrication methods are of vital importance to drive scientific and technol...
Direct ink writing (DIW) is an extrusion-based 3D printing technique. Recently, the advancement usin...
Direct ink writing (DIW) is the most versatile AM technique in terms of materials development, it en...
Direct ink writing (DIW) is an extrusion-based technique that is increasingly used for extrusion of ...
The ability to pattern complex materials with high-speed and low-cost three-dimensional (3D) printin...