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The Process
SLA technology directs a focused UV (ultra-violet) laser beam on to a basin of liquid resin solidifying and curing thin two-dimensional cross-sections layer-upon-layer producing a solid part. The part is created in layers from the bottom up, each layer only thousandths of an inch thick. The result is a precise physical replication of the CAD model.

Characteristics
High Detail – Accuracy – Smooth Finish

Material Selection
Accura 25 – Polypropylene-like, white
Accura Xtreme – ABS-like, grey
Accura 55 – ABS-like, white
Accura 60 – Polycarbonate-like, clear

Applications
  • Concept model, communication/visual aid, presentation model
  • Form-Fit-Function Prototypes and
    Assemblies
  • Test Flow Analysis
  • One-off to low run production parts
  • Investment casting and RTV mold
    patterns
  • Rapid Tooling
Click HERE for Application samples
Accura 60IdeaAccura 60Idea for applications that require clear, polycarbonate-like material.
Contact Us today to discuss our SLA services.

The Process
SLS technology directs a focused CO2 laser beam on to a bed of thermoplastic powder sintering (fusing together) thin two-dimensional cross-sections layer-upon-layer producing a solid engineered-plastic or metal part.

Characteristics
Strong - Tough - Durable

Material Selection
DuraForm EX – Tough, flexible nylon, natural
DuraForm HST – Strong, stiff nylon/glass composite, natural
LaserForm A6
Fully dense A6 tool steel, metal

Applications
  • High-temperature applications
  • Metal tooling inserts
  • Complex geometries and features
  • Short runs of metal parts and prototypes
Click HERE for Application samples
Accura 60Idea
Contact Us today to discuss our SLS services.

The Process
A subtractive manufacturing process, CNC (Computer Numerical Control) provides flexible, versatile, and precise control over advanced high-speed machining centers using a variety of machine tools to mill plastics or metals into parts representing the original CAD design..

Characteristics
Accuracy – Affordable – End Use Materials

Material Selection
A wide variety of engineered plastics and metals

Applications
  • One-off prototypes
  • Short to medium productive runs
  • Complex geometries and features
Click HERE for Application samples

Contact Us today to discuss our CNC services.

The Process
A silicone RTV mold is made from an SLA master pattern. After curing, the mold is cut, separated, and the SLA pattern is removed. The RTV mold is reassembled and urethane resin is poured into the mold. After curing in a vacuum chamber, the mold is disassembled and the completed part is removed..

Characteristics
Durable - Cost Effective - Good Detail

Material Selection
Urethane castings are made from a wide variety of simulated engineered plastics including ABS-like, PE-like, elastomers, PP-like, glass-filled, high strength, transparent, and high temp.

Applications
  • Low volume production runs
  • Marketing samples
  • Test prototypes
Click HERE for Application samples

Contact Us today to discuss our Casting services.

The Process
High-definition wax patterns are printed from 3D printing machines. The patterns are cleaned and molded in a ceramic shell and cured. After curing, the patterns are melted out of the mold. Molten metal is then poured into the shell and allowed to cool. Once cool, the shell is broken revealing the completed metal part..

Characteristics
Accuracy – High Detail – End Use Material

Material Selection
Stainless Steel (various alloys)
Aluminum (A380, 7075)
Gold (10K, 14K, 18K)
Silver (Sterling, Fine)
Nickel (200, 400, Nickel Silver)
Bronze (Silicone, Phosphor)
Copper, Tin, Lead
Titanium

Applications
Functional metal parts for:
  • Medical
  • Consumer Goods
  • Electronics
Click HERE for Application samples

Contact Us today to discuss our SciCast PMC services.

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