Housing over 80 employees from the three GKN Powder Metallurgy’s businesses, Hoeganaes, GKN Sinter Metals and GKN Additive, the space is designed to inspire teamwork and enhance exceptional customer experiences. The building includes 20,700 square feet of collaborative working areas and 17,700 square feet of shop floor space to complete the cohesive working environment.
“We are excited to start a new journey in Auburn Hills with a space that is dedicated to our team, our community and the advanced technology we create for our customers,” said Reid Southby, President, GKN Sinter Metals Large Segment. “This building reinforces our commitment to the North American market and continued global growth.”
The building includes a 3,200 square foot AM Customer Center, equipped with two EOS M290 Direct Metal Laser Sinter (DMLS) printers. The DMLS machines incorporate powder bed fusion technology, creating functional prototypes within a two-week lead time and allowing customers to test factors such as usability, ergonomics, manufacturability and materials in the early stages of the development process.
This metro-Detroit location expands GKN Powder Metallurgy’s global 3D printing network, providing customers the exclusive opportunity for efficient lead times and local customer support at their fingertips. The building offers room for growth, and GKN Powder Metallurgy stays committed to global development in metal AM for prototypes, medium series and aftermarket.
“GKN Powder Metallurgy is at an exhilarating point in its journey of growth and innovation,” Southby added. “We now have the opportunity to provide our customers and strategic partners with local and exceptional support on all fronts of our business.”
(Source: GKN Sinter Metals Engineering GmbH)
CALDE® MICA verbessert den Spulenschutz und die Effizienz bei der Auskleidungserneuerung in Induktionsöfen
Calderys, ein weltweit führender Anbieter von Hochtemperaturlösungen, gibt die Markteinfürung von CALDE® MICA bekannt, das entwickelt wurde, um den Spulenschutz und die Wartungseffizienz von Induktionstiegelöfen zu verbessern.





