Additive manufacturing, or three-dimensional (3D) printing, is an accessible, quick, and user-friendly tool for fabricating reactors and chemical processing devices. Here we report a method for printing filtration and separation devices using fused-deposition modelling (FDM) which incorporate commercial porous membranes. By using exogenous membranes, membrane pore size and material can be arbitrarily specified allowing much greater versatility in device design. We show for the first time that fully operational monolithic devices can be created without need for post-printing assembly and demonstrate the efficacy of the approach by making and testing three distinct devices: dead-end filters, which can be made in a range of sizes and are shown...
Three dimensional (3D) printing is actively sought after in recent years as a promising novel techno...
We have developed a sequential stereolithographic co-printing process using two different resins for...
Assembly and bonding are major obstacles in manufacturing of functionally integrated fluidic devices...
Additive manufacturing, or three-dimensional (3D) printing, is an accessible, quick, and user-friend...
AbstractAdditive manufacturing, likewise known as 3-dimensional (3D) printing and rapid prototyping,...
Multimaterial 3D printing facilitates the rapid production of complex devices with integrated materi...
© 2019 IOP Publishing Ltd. All rights reserved. Separation methods using membranes are used in many ...
The aim of this this work is to explore and study the functionality of 3D-printed devices for applic...
The commercialization of sustainable 3D printing technology changed the face of manufacturing with i...
The need for multifunctional, robust, reusable, and high-flux filters is a constant challenge for su...
Research in the field of 3D printing and water industry, in particular, on the fabrication and evalu...
One of the largest impediments in the development of microfluidic-based smart sensing systems is the...
Membrane fouling is a major setback for membrane filtration processes because it causes problems suc...
In this work the 3D extrusion printing fabrication process for intricate structures is examined. Req...
3D printing is an emerging enabling technology that can facilitate the production of complex 3D stru...
Three dimensional (3D) printing is actively sought after in recent years as a promising novel techno...
We have developed a sequential stereolithographic co-printing process using two different resins for...
Assembly and bonding are major obstacles in manufacturing of functionally integrated fluidic devices...
Additive manufacturing, or three-dimensional (3D) printing, is an accessible, quick, and user-friend...
AbstractAdditive manufacturing, likewise known as 3-dimensional (3D) printing and rapid prototyping,...
Multimaterial 3D printing facilitates the rapid production of complex devices with integrated materi...
© 2019 IOP Publishing Ltd. All rights reserved. Separation methods using membranes are used in many ...
The aim of this this work is to explore and study the functionality of 3D-printed devices for applic...
The commercialization of sustainable 3D printing technology changed the face of manufacturing with i...
The need for multifunctional, robust, reusable, and high-flux filters is a constant challenge for su...
Research in the field of 3D printing and water industry, in particular, on the fabrication and evalu...
One of the largest impediments in the development of microfluidic-based smart sensing systems is the...
Membrane fouling is a major setback for membrane filtration processes because it causes problems suc...
In this work the 3D extrusion printing fabrication process for intricate structures is examined. Req...
3D printing is an emerging enabling technology that can facilitate the production of complex 3D stru...
Three dimensional (3D) printing is actively sought after in recent years as a promising novel techno...
We have developed a sequential stereolithographic co-printing process using two different resins for...
Assembly and bonding are major obstacles in manufacturing of functionally integrated fluidic devices...