AMS X

Researchers Discover Method of Printing Electroluminescent Coatings on 3D Objects to Make Them Glow

Formnext

Share this Article

id40133In a development that may one day prove useful to 3D printed objects, the Karlsruhe Institute of Technology says they’ve created a process where conventional, flexible electroluminescent (EL) foils can be applied onto flat surfaces using an imprinting method.

Working in cooperation with Franz Binder GmbH & Co., the process allows for the direct printing of electroluminescent layers onto three-dimensional components to provide a glowing result.

Dr Rainer Kling

Dr Rainer Kling

The researchers say these EL components could easily be adapted to safety applications in buildings in case of power failures, and they add that the process might also be used in displays and watches or even interior design.

The process allows materials with flexible surfaces such as paper and plastic to be coated to make them glow.

“By means of the innovative production process we developed together with our industry partner, any type of three-dimensional object can be provided with electroluminescent coatings at low costs,” says Dr. Rainer Kling of the Light Technology Institute at KIT.

Dr. Kling says the this luminescent material is often placed between two plastic layers within what they call “carrier foils.”

Since these electroluminescent layers are printed directly onto a given object without the need for any additional structures, convex and concave surfaces can be coated.

electroluminescent coatingThe electroluminescent and the electrically conductive materials are applied by a pad printing process which uses an elastic rubber printing surface that can easily follow the contours of curved surfaces.

One of the engineers who developed the materials and process, Elodie Chardin, says it’s possible to provide many surfaces – and even spheres – with a glowing, homogeneous coating at very low cost.

“Homogeneity of the coating of about one tenth of a millimeter in thickness was one of the challenges of this project,” says Elisabeth Warsitz of Franz Binder. “The process requires a few production steps only and, hence, is characterized by a low consumption of resources. By using various luminescent substances, various colors may be applied to the same surface.”

The research and development work was done by the KIT in cooperation with the Binder Connector Group. The project took approximately two years to complete, and funds came from the German Foundation for the Environment. That foundation funds environmental protection projects.

Can you see applications to 3D printed objects for this technology from the Karlsruhe Institute of Technology? Let us know in the Printing Electroluminescent Coatings on 3D Objects forum thread on 3DPB.com.

00200001

 

 

 



Share this Article


Recent News

EOS Bets on Mexico’s AM Market with Axiomatek Sales Channel Deal

AI Design and Point-of-Care Integration Headline ADDITIV Medical 2026



Categories

3D Design

3D Printed Art

3D Printed Food

3D Printed Guns


You May Also Like

3D Printing Financials: $28M in China, U.S. Deals and a Metal AM Comeback

Money continues to go into additive manufacturing (AM). From a $30 million raise for a Chinese metal 3D printing company to new funding for naval AM and a European company...

AmeraLabs Offers New Dental 3D Printing Resins

Lithuania-based AmeraLabs is putting new dental 3D printing resins on the market. Its new Made in Europe resins will include one material for impression trays, one for surgical guides, and...

AM Pulse Asia: Consumer Metal AM, Nuclear Parts and Rockets Push New Ground

The second half of August produced financing milestones, facility openings, and qualification results across Asia-Pacific additive manufacturing. Rongsu Technology closed a CNY 100 million Series A+ and launched a consumer...

3D Printing Financials: New Money Flows Into Medical, Industrial and AI 3D

Money continued to move into 3D printing in the second half of August. Hike Medical raised $22.5 million as it grows its 3D printed custom medical device business. Swiss additive...