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Materials by Platform

17-4 Stainless Steel

17-4 PH is a precipitation hardening steel used in a wide range of industrial applications including those with mildly corrosive environments and high-strength requirements.

316L Stainless Steel

Characterized by its corrosion resistance and performance at both high and low temperatures, 316L is a fully austenitic stainless steel ideal for harsh environments.

H13 Tool Steel

Characterized by its hardness and abrasion resistance, H13 is a hot work tool steel with exceptional hot hardness, resistance to thermal fatigue cracking, and stability in heat treatment — making it an ideal metal for both hot work and cold work tooling applications.

4140 Chromoly Steel

One of the most versatile steels, 4140 is characterized by its toughness, high fatigue strength, and abrasion and impact resistance, making it a great all-purpose steel for industrial applications.

Copper

Characterized by its electrical and thermal conductivity and ductility, Copper is ideal for electrical equipment, plumbing, and heat transfer.

Ti64

Ti64 is a titanium alloy with high strength and excellent corrosion resistance.

17-4 Stainless Steel

17-4 PH stainless steel is a precipitation hardening steel used in a wide range of industrial applications including those with mildly corrosive environments and high-strength requirements.

316L Stainless Steel

316L stainless steel is a fully austenitic, non-magnetic steel ideal for harsh environments and characterized by its corrosion resistance, performance at both high and low temperatures, and high ductility.

CoCrMo

Cobalt Chrome (F75) is an alloy of Cobalt and Chrome for use in demanding applications and characterized by its corrosion resistance with high strength and wear resistance.

PA6 + Carbon Fiber

Our PA6 nylon with carbon fiber reinforcement boasts a tensile strength 30x stronger than ABS and a high fatigue level—making it great for 3D printing high-wear manufacturing jigs and fixtures.

PEEK + Carbon Fiber

PEEK is characterized by its exceptional mechanical properties and high resistance to surface abrasion, is inherently flame retardant, and can withstand high temperatures (above 200­­ °C). When 3D printed with continuous carbon fiber, the resulting composite is strong, stiff, and well-suited for extreme environments.

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