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Titanium & Alloys

Titanium is considered to be one of the strongest metals. Its strength, heat, water and salt resistance, and its light weight make it the ideal metal for a variety of applications. These applications range from medical implants to airplanes and ships. Pure titanium is strong and corrosive resistant. Titanium alloys retain the same strength and corrosion resistance, but takes on the greater flexibility and malleability of the metal it is combined with.

Titanium alloys, therefore, have more applications than pure titanium. There are six grades of pure titanium (grades 1, 2, 3, 4, 7 and 11) and 4 varieties of titanium alloys. Titanium alloys typically contain traces of aluminum, molybdenum, vanadium, niobium, tantalum, zirconium, manganese, iron, chromium, cobalt, nickel, and copper.
Ti grades 1, 5, 7, 11 and 12
In form of powder, blocs, plates, foils, rods, tubes and wire.

Aluminum & Alloys

Series 1000: 1050, 1060, 1070, 1080, 1085
Series 2000: 2017, 2024
Series 3000: 3003, 3103, 3004, 3005, 3105, 3104
Series 4000: 4006
Series 5000: 5005, 5006, 5010, 5049, 5050, 5052, 5754, 5083
Series 6000: 6082, 6061
Series 7000: 7010, 7020, 7075
  • In coils, sheets, plates and foils
  • Thickness: 0,10 - 3,0 mm x Width: 50 – 1570 mm


Metal matrix composites SupremEX® are fabricated by powder metallurgy. They are 100% dense and they have a fine and homogenous microstructure.
The advantage of these composites SupremEX® is based on the physical properties: low density and high stiffness.
Furthermore, they have good mechanical properties, especially for the fine powder grades (XF and XG grades).
These materials have good resistance corrosion (based on the Al matrix), and the wearing resistance (thanks to the ceramic reinforcement).
These materials are used for high precision applications for automotive race, space, aeronautic, defense, and precision instrumentation.
  • Billets
  • Extruded plates
  • Forged plates
  • Machined and coated pieces

Aluminium by Melt Spinning

RSP Technology has created a new generation of lightweight materials, by using its leading edge Rapid Solidification Processing (RSP) method. The RSP alloys are produced with cooling speeds of 1 million degrees per second, which results in ultra-fine and homogeneous microstructures. This provides the fundamental base for the advanced characteristics of RSP aluminum alloys. As a spin off from various high performance F1 and defense applications, RSP has developed a line of aluminum alloys for optical applications.
The alloys offer revolutionary advantages when it comes to surface roughness (typical RMS values of 2 nanometer) and shape stability.
In addition the RSP alloys offer unique opportunities for combining this with additional physical and/or mechanical properties such as: High strength at RT and elevated Temperatures, high stiffness and low thermal expansion.
  • Plates and blocs
  • Extruded bars
  • Machined pieces (machined / coated)
  • Typical dimensions: 45, 110, 200 and 300 mm rods and billets
Physical and mechanical properties

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Acal BFi France S.A.S. SIRET 392 078 192 00011. APE 4652 Z - R.C.S. Evry N° 1993 B 01624.