
Copper
A highly conductive metal with excellent thermal and electrical conductivity, ideal for heat exchangers, electrical components, and functional prototypes.

Stainless Steel (316L & 17-4PH)
Durable metal alloys offering excellent corrosion resistance (316L) and high strength with hardness after heat treatment (17-4PH).

Titanium (Ti6Al4V)
A lightweight, high-strength alloy with outstanding corrosion resistance and biocompatibility, widely used in aerospace and medical applications.

Zirconia (ZrO2)
A tough, high-strength ceramic with superior fracture resistance and thermal stability, suitable for precision and high-stress components.

Silicon Carbide (SiC)
A high-performance ceramic offering exceptional hardness, thermal conductivity, and resistance to extreme temperatures and wear—ideal for demanding industrial applications.

Aluminium Nitride
Aluminium Nitride (AlN) is a high‑performance ceramic offering exceptional mechanical strength, excellent thermal conductivity, and electrical insulation—ideal for advanced electronics, power modules, substrates, and components requiring reliable heat management and dielectric performance.

Silicon Nitride
Silicon nitride is one of the hardest and most durable technical ceramics, with high resistance to thermal shock, wear, and corrosion. It is used in pumps, valves, semiconductors, and other components.

HAP
Hydroxyapatite/TCP is a bioactive ceramic with a chemical composition similar to natural bone, ideal for biomedical applications. It promotes excellent osteointegration, making it suitable for bone grafts, implants, and regenerative solutions.

Silice SiO2
Silica (SiO₂) ceramic offers excellent thermal stability and precision, making it ideal for foundry cores, investment casting applications, and optical components where high temperature resistance, dimensional accuracy, and surface quality are critical.

TCP
Tricalcium Phosphate (TCP) is a bioceramic widely used for medical implants and bone repair, especially for replicating spinal structures due to its excellent biocompatibility and similarity to natural bone composition.