
Plastics
ABS
Tough, machinable, paintable thermoplastic. The default for indoor consumer enclosures and prototype housings.
Filter by manufacturing process, 3D printing technology, or specific properties — heat resistance, food safety, weldability, and more. Items marked “guide coming soon” are part of the catalog and will gain dedicated pages over time.
Material extrusion — molten filament deposited layer by layer.

Plastics
Tough, machinable, paintable thermoplastic. The default for indoor consumer enclosures and prototype housings.

Plastics
Continuous-use temperature 260 °C, near-universal chemical resistance, machines like aluminum. The high-performance polymer.

Plastics
Stronger than PLA, easier to process than ABS. Common for FDM functional prototypes, packaging, and food-contact parts.

Elastomers
Tough thermoplastic elastomer. Bridges the gap between rubber and rigid plastics — flexible but durable.
Plastics
Plant-derived thermoplastic, low warp, biodegradable in industrial composting. The default FDM material for visual prototypes, fixtures, and consumer parts that don't see heat.
Plastics
ABS-equivalent toughness with excellent UV and weather resistance. The default FDM choice for outdoor housings, automotive trim, and architectural signage.
Plastics
Low-cost commodity polyolefin. Excellent chemical resistance, fatigue resistance for living hinges, food-safe. The default for high-volume consumer parts.
Standard thermoplastics
Detailed guide coming soon.
Standard thermoplastics
Detailed guide coming soon.
Standard thermoplastics
Detailed guide coming soon.
Composite / reinforced
Detailed guide coming soon.
Composite / reinforced
Detailed guide coming soon.
Composite / reinforced
Detailed guide coming soon.
High performance / industrial
Detailed guide coming soon.
High performance / industrial
Detailed guide coming soon.
High performance / industrial
Detailed guide coming soon.
Vat photopolymerization — laser-cured resin.
Plastics
The base SLA resin family. Excellent surface finish and detail; brittle compared to thermoplastics. The default for cosmetic prototypes, dental models, and figurines.
Resin families
Detailed guide coming soon.
Resin families
Detailed guide coming soon.
Resin families
Detailed guide coming soon.
Resin families
Detailed guide coming soon.
Resin families
Detailed guide coming soon.
Resin families
Detailed guide coming soon.
Resin families
Detailed guide coming soon.
Selective laser sintering — polymer powder fusion.

Plastics
Powder-bed fusion's workhorse polymer. Isotropic mechanical properties, good chemical resistance, and reliable cosmetic results.

Composites
Carbon-fiber-reinforced PA12 with significantly higher modulus than unfilled nylon. Strong, lightweight, ideal for jigs, brackets, and end-of-arm tooling.
Plastics
Castor-oil-derived nylon for powder-bed fusion. More elongation and impact resistance than PA12; preferred for living hinges, snap-fits, and impact-loaded parts.
Powder polymers
Detailed guide coming soon.
Powder polymers
Detailed guide coming soon.
Powder polymers
Detailed guide coming soon.
Direct metal laser sintering — metal powder fusion.

Metals
The most common titanium alloy. Strength-to-weight competitive with steel, biocompatible, and corrosion-resistant in nearly any environment.
Metals
Aerospace and oilfield superalloy. Maintains strength to 700 °C, exceptional fatigue and corrosion resistance, available as machined stock and DMLS/SLM powder.
Metals
Aerospace, marine, and oilfield precipitation-hardening stainless. Higher strength than 304/316L while retaining good corrosion resistance.
Metals
Hard, biocompatible cobalt-chromium superalloy. Standard for dental copings, orthopedic implants, and gas-turbine vanes — DMLS-printed or cast.
Metal powders
Detailed guide coming soon.
Metal powders
Detailed guide coming soon.
Material jetting — multi-material photopolymer jets.
Plastics
Industrial multi-material photopolymer. Surface finish rivals injection molding for prototypes; supports color and rigid-flex multi-material parts.
Photopolymer families
Detailed guide coming soon.
Photopolymer families
Detailed guide coming soon.
Photopolymer families
Detailed guide coming soon.
Photopolymer families
Detailed guide coming soon.
Photopolymer families
Detailed guide coming soon.

Metals
Versatile, weldable aluminum alloy with great machinability, anodizing quality, and corrosion resistance. The most-quoted CNC material on Uretyco.

Metals
Aerospace-grade aluminum with ~1.7x the strength of 6061. Machines well, anodizes acceptably, and is the choice when strength-to-weight matters most.

Metals
The most common austenitic stainless. Excellent corrosion resistance for indoor environments and most food applications. Affordable and widely stocked.

Metals
Molybdenum-bearing austenitic stainless with excellent chloride resistance. The grade for marine, pharma, and process plant equipment.

Metals
The cheap, weldable, machinable mild steel for structural and prototype work. Standard stock for brackets, plates, and weldments.

Metals
Pre-hardened chromoly alloy steel. Higher strength than mild steel, common for shafts, gears, fixtures, and tooling.

Metals
Free-cutting brass with the highest machinability rating of any metal. Standard for fittings, valves, fasteners, and decorative hardware.

Metals
High-conductivity electrolytic tough pitch copper. Standard for bus bars, electrical contacts, and heat exchanger components.
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