Next Generation Medical Alloys
Signer Titanium – Your partner for next-generation high-performance alloys. In addition to titanium alloys, we also supply a wide range of high-performance materials for critical end-use applications – from implants to surgical instruments.
Our alloys are manufactured by Carpenter Technology Corporation (USA) – a leading supplier with over 130 years of expertise in the development and manufacture of high-performance metals.
Stainless steels for the most demanding requirements – for bone plates and fracture fixations
CarTech Biodur® 316LS
A high-strength, austenitic stainless steel with excellent corrosion resistance, proven biocompatibility, and outstanding mechanical stability – ideal for orthopedic and trauma surgery applications.
CarTech Biodur® 108
This essentially nickel- and cobalt-free premium melted austenitic stainless steel alloy offers maximum strength while maintaining the austenitic microstructure – specially developed for patients with metal intolerances.
Cobalt-based alloys – for long-term mechanical stress – for hip and knee implants
Co-Cr-Mo alloys (CCM)
Proven combination of high strength, excellent corrosion resistance, and proven biocompatibility – ideal for long-term stable implants. Nickel-containing variants have improved strength and excellent fatigue resistance – particularly suitable for vascular applications and high-performance implants.
Typical applications:
Fracture fixation
- CarTech Biodur® 316LS (1.4441)
- CarTech Biodur® 108
Endoprosthetics (hip and knee replacements)
- CarTech Biodur® CCM (2.4979)
- CarTech Biodur® CCM Plus
Vascular implants & stents
- CarTech MP35N® (2.4999)
- CarTech L-605® (2.4964)
Future-proof materials – available and reliable.
Whether for orthopedics, traumatology, or cardiology, with medical alloys from Signer Titanium, you can rely on tested quality, international standards, and materials with outstanding performance profiles.
Contact us – we will be happy to advise you on the selection, availability, and processing of our materials.