Designed on Earth. Proven in orbit.
Modern space applications demand rapid iteration, lightweight design, and flexible manufacturing workflows. At the same time, reliability, traceability, and performance remain non-negotiable in mission-critical environments. Today, additive manufacturing (AM) is used to produce complex, mission-critical components from high-performance materials. It combines unparalleled design freedom with a level of quality that is consistent, repeatable, and ready for industrial production.
As a mature production technology, AM enables the manufacture of qualified, flight-ready hardware for launch and satellite applications.
Functional integration, reduced part counts, and optimized weight are not theoretical advantages but proven engineering approaches used across today's space industry. These capabilities simplify manufacturing while improving system performance and overall reliability.
This development is supported by stable process control across the entire production chain, from parameter definition to in-situ monitoring. At the same time, dependencies on traditional tooling and complex supply chains can be reduced. As a result, additive manufacturing enables more efficient development cycles and supports scalable production strategies for the next generation of space systems.
Coming soon!
Digital Expert Session on
UAVs & Drones
Digital Expert Session on
UAVs & Drones
Neil van Es | Geek in Chief at Parts On Demand
Ronnie Petersson | Sales Director at Prototal
Why Use Industrial 3D Printing for Space?
More Insights from the Space Industry
Blog | How Additive Manufacturing Is Enabling the Next Era of Space Exploration
A Space Industry in Transition and AM as Key Technology
AM is rapidly becoming a key enabler in the space industry: driving faster development, higher performance, and efficient production of mission-critical components.
Additive Snack Podcast | Space Exploration and Additive Manufacturing
Roundtable with NASA, Rocket Lab & The European Space Agency
From advanced materials to production challenges: industry leaders discuss the real impact of AM in space. Listen now to explore key insights, challenges, and innovations.
Engineered for Space Performance
Customized machines and materials tailored to meet the rapidly evolving needs of the space market: enabling greater flexibility, performance, and scalability for next-generation applications.

