PostProcess Technologies launches DEMI X 520 for Dental PolyJet
Built specifically to meet the unique requirements of dental labs utilizing PolyJet 3D printing technology
PostProcess Technologies, an automated post-processing solutions provider to the additive manufacturing industry, has launched the DEMI X 520 for Dental PolyJet, a system built specifically to meet the unique requirements of dental labs utilizing PolyJet 3D printing technology. This advanced automated solution offers dental labs unparalleled efficiency, consistency, and part quality.
The new DEMI X 520 for Dental PolyJet system is based on the proven DEMI X 520 platform – engineered specifically to address the post-processing challenges of dental PolyJet applications. Based on the proprietary Axial Flow Technology, this solution incorporates controlled variable pump speed and pre-set software controls to offer consistent and efficient results.
“As a dental lab utilizing PolyJet technology, we are always looking for solutions that enable us to be more efficient without compromising quality,” said Olivier Mangot, Co-director of Ninety!, a dental production center located in Saint-Etienne, France. “I am no longer dependent on an operator. With this solution, I can clean 20 times more parts than before and get incredibly high-quality results.”
“At PostProcess Technologies, we’re committed to delivering innovative, safe, and efficient solutions that empower dental labs to meet the demands of today’s rapidly evolving additive manufacturing market,” said Jeff Mize, CEO of PostProcess Technologies. “The DEMI X 520 for Dental PolyJet reflects that commitment by providing an application-specific production system that simplifies and automates the post-printing workflow, maximizing lab productivity and safety.”
PostProcess’ proprietary digital platform, AUTOMAT3D, allows for full customization, recipe storage, and automation with one-touch operation. By automating the support removal process, dental labs can now achieve higher levels of productivity and consistent output while significantly reducing labor costs.




