For Plastic Deformation and High-Strength Applications

FLEXIA® is a family of master alloys developed for jewellery production through plastic deformation processes. Engineered to deliver exceptional strength and maximum plasticity, it ensures reliable performance in demanding manufacturing conditions. Its fine grain structure allows the production of complex and lightweight components while maintaining structural integrity and consistency.

Strength engineered for deformation

FLEXIA® is designed to support the most demanding deformation processes, combining high mechanical strength with excellent ductility. Its fine grain structure enhances resistance to stress and corrosion, making it particularly suitable for hollow and lightweight jewellery applications. The alloys ensure stable behaviour during deformation, reducing the risk of breakage even at high cold working rates. At the same time, their performance in machining operations improves efficiency and process control. The result is a robust and versatile solution for manufacturers looking to push the limits of form, weight and structural performance.

FLEXIA
  • High mechanical strength combined with excellent plasticity
  • Fine grain structure for improved corrosion resistance
  • Ideal for hollow and lightweight jewellery production
  • Stable performance during high cold deformation processes
  • Enhanced machinability and chip control in CNC operations

Frequently Asked Questions

Yes. FLEXIA® is specifically developed to improve workability during mechanical deformation, allowing more deformation between annealing cycles. This helps reduce production time, energy consumption and overall manufacturing costs.

FLEXIA® is the ideal solution for manufacturing hollow chains and lightweight jewellery. Its optimized mechanical properties provide excellent strength while reducing weight, helping manufacturers meet current market demands.

Yes. Thanks to its excellent ductility and controlled mechanical properties, FLEXIA® simplifies wire and tube processing, reducing production interruptions and improving overall efficiency.