News and Media

 

Press Release / 29.10.2024

The Robotic Hand Learns to Feel

Fraunhofer IWS Combines Nature-based Concepts with Sensor Technology and 3D Printing

 

Press Release / 27.10.2023

Fraunhofer IWS Installs Europe’s Unique Industrial 3D Printer

“SpreeTec next”: Powder Bed-Based Additive Laser Manufacturing System

 

Press Release / 11.11.2022

Ultrasound Makes 3D Printed Parts Stronger and More Durable

Start of the project “UltraGrain“

 

Press Release / 14.4.2022

POWDERscreen Monitors Streams of Powder into the Laser Melt

 

Press Release / 7.4.2022

HICLAD® Enables Resilient Laser Cladding with High-power Laser

Efficient, Fast and Sustainable Coatings for Industrial Components

 

News / 31.3.2022

ESA-ASPIRER

Aerospike Rocket Engine with 6000 Newton Thrust from the Powder Bed 3D Printer

 

Press Release / 2.11.2021

Additively manufactured copper components for linear accelerators

World first: Fraunhofer IWS for the Very First Time Prints Quadrupole Components 

 

News / 11.8.2021

Functional Conductor Paths from the 3D Printer

Functional Structures as Reliable and Low-cost Alternatives to Manual Cabling

 

Press Release / 28.6.2021

When the Hip Joint Comes Out of the Printer

 

Press Release / 22.3.2021

Additively Manufactured Rocket Engine Features an Aerospike Nozzle for Microlaunchers

 

News / 17.3.2021

Innovations in Hybrid Manufacturing for Aerospace

Development of a New Demonstrator with Lower Starting Materiel Volume

 

News / 24.8.2020

Fraunhofer IWS and RMIT University are Starting Partnership in Additive Manufacturing

 

Press Release / 13.8.2020

Green Laser Melts Pure Copper

Fraunhofer IWS Applies Innovative Laser Melting System for Complex Copper Components for the First Time

 

Press Release / 25.6.2020

Hot Patterns in Cold Space

Fraunhofer IWS Prints Heaters for Space Flight

Publications

 

Brochure

COAX system technology

Solutions for laser cladding and additive manufacturing

 

Flyer

Additive Manufacturing

More Information

Press releases and News

Fraunhofer IWS Dresden