Rogal® Select - Ultra-Pure Copper Powders for Additive Manufacturing (3D Printing)
Engineered copper powder solutions for your industrial 3D printing processes
With over 140 years of experience in copper powder production, SCHLENK offers the Rogal® Select product series -high-performance copper powders specifically developed for Additive Manufacturing (e.g. Laser Powder Bed Fusion, Metal Binder Jetting, and more). These powders stand out for their high purity, excellent electrical and thermal conductivity, and superior processability. Idealfor demanding industrial 3D printing applications.
Product Features of Rogal® Select Copper Powders:
- Inert gas atomized for optimal particle morphology
- Spherical particle shape for excellent flowability
- Very low oxygen content ensures maximum electrical & thermal conductivity
- Free from ceramic impurities
- High metallurgical purity for stable and repeatable processes
Available from 1 kg upwards – from test batches to full-scale serial production quantities.
Optimized for All Common 3D Printing Technologies:
- Laser Powder Bed Fusion (LPBF)
- Metal Binder Jetting
- Cold Gas Spray
- Electron Beam Melting (EBM)
- Directed Energy Deposition (DED)
Our copper powders are tailored to application-specific requirements in terms of particle size distribution and flow characteristics.
Your Benefits with Rogal® Select by SCHLENK:
- Engineered Custom copper powder solutions for Additive Manufacturing
- Scalable quantities – from 1 kg test batches to full production volumes
- Consistent quality through comprehensive production and final inspections
- Made in Germany – secure and reliable supply chains
- Close collaboration with our experienced copper specialists
Ready to unlock the full potential of your additive manufacturing? Choose SCHLENK’s ultra-pure copper powders – engineered for performance.
Specific requirements? We develop customized solutions.
Our powder experts work with you to develop the right copper powder for your specific application and manufacturing process.
Contact us now.