To facilitate the ongoing transition toward a circular economy, the availability of renewable materials for additive manufacturing becomes increasingly important. Here, we report the successful fabrication of complex shaped prototypes from biobased acrylate photopolymer resins, employing a commercial stereolithography apparatus (SLA) 3D printer. Four distinct resins with a biobased content ranging from 34 to 67% have been developed. All formulations demonstrated adequate viscosity and were readily polymerizable by the UV-laser-based SLA process. Increasing the double-bond concentration within the resin results in stiff and thermally resilient 3D printed products. High-viscosity resins lead to high-resolution prototypes with a complex microa...
Formulating resins for Additive Manufacturing (AM), utilizing UV laser stereolithography, is a new t...
3D printing technologies discern themselves from standard manufacturing techniques by building requi...
Stereolithography (SLA), one of the seven different 3D printing technologies, uses photosensitive re...
To facilitate the ongoing transition toward a circular economy, the availability of renewable materi...
The accessibility of cost-competitive renewable materials and their application in additive manufact...
The accessibility of renewable materials that are both sustainable and competitive is essential to a...
The global market for 3D printing materials has grown exponentially in the last decade. Today, photo...
Advances in additive manufacturing (often referred to as “3D printing”) technologies have greatly si...
Stereolithography (SLA)-based additive manufacturing (“SLA 3D printing”) has gained significant inte...
3D printing has become very relevant in our coming time. Many companies have embraced 3D printing an...
Materials obtained from renewable sources are emerging to replace the starting materials of petroleu...
The global market for 3D printing materials has grown exponentially in the last decade. Today, photo...
Acrylic photopolymer resins are widely used in stereolithographic 3D printing. However, the growing ...
In the past decade, the healthcare industry has seen a significant increase in the use of additive m...
Formulating resins for Additive Manufacturing (AM), utilizing UV laser stereolithography, is a new t...
3D printing technologies discern themselves from standard manufacturing techniques by building requi...
Stereolithography (SLA), one of the seven different 3D printing technologies, uses photosensitive re...
To facilitate the ongoing transition toward a circular economy, the availability of renewable materi...
The accessibility of cost-competitive renewable materials and their application in additive manufact...
The accessibility of renewable materials that are both sustainable and competitive is essential to a...
The global market for 3D printing materials has grown exponentially in the last decade. Today, photo...
Advances in additive manufacturing (often referred to as “3D printing”) technologies have greatly si...
Stereolithography (SLA)-based additive manufacturing (“SLA 3D printing”) has gained significant inte...
3D printing has become very relevant in our coming time. Many companies have embraced 3D printing an...
Materials obtained from renewable sources are emerging to replace the starting materials of petroleu...
The global market for 3D printing materials has grown exponentially in the last decade. Today, photo...
Acrylic photopolymer resins are widely used in stereolithographic 3D printing. However, the growing ...
In the past decade, the healthcare industry has seen a significant increase in the use of additive m...
Formulating resins for Additive Manufacturing (AM), utilizing UV laser stereolithography, is a new t...
3D printing technologies discern themselves from standard manufacturing techniques by building requi...
Stereolithography (SLA), one of the seven different 3D printing technologies, uses photosensitive re...