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Secoa Technology

Secoa Technology is dedicated to being the supplier of choice to a wide variety of industries requiring High Performance coatings and plating on their parts. We provide engineering solutions for all of our customers finishing needs. We pride ourselves in helping our customers find the coating or plating that best meets their requirements, and then delivering a quality finished product in a timely manner at a competitive, value added price. 

Our capabilities range from covering very small or very large parts, and our through-put volume ranges from a few pieces at once, to thousands of parts per day. 

Secoa Technology processes include:
Fluoropolymers Hard Anodizing Wet Coating
Powder Coating Coating on Plastics Metalizing
Diamonite View our Full Brochure (4.7meg)

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Introducing DIAMONITE™
The Hard Chrome Replacement

Diamonite is a metal plating process used to deposit hard, wear-resistant composite coatings on a variety of metallic substrates. Diamonite is a composition of hard wear resistant metal alloys that are ideal for depositing a very smooth and uniform plating barrier on inside diameters and on complex configurations of parts. Diamonite significantly outwears hard chrome and nickel plating and in some cases can outperform tungsten carbide because of its hardness and low coefficient of friction. The Diamonite Plus process is the same system with a low frictional polymer added to the composite to help reduce the coefficient of friction.

Secoa is positioning Diamonite as a hard chrome replacement in a wide variety of industries. Significant success has been achieved in the cylinders, shafts, molds, mixing blades, injection molding tips, yarn guides. Put your parts to the test with Diamonite:

  1. Outwears hard chrome 1.5-3 times
  2. Diamonite exhibits excellent adhesion to most metals
  3. Ductile even when heat treated to Rockwell 72C-74C hardness.
  4. Diamonite is non-fatiguing on high strength steels and titanium as it does not induce hydrogen embrittlement.
  5. Re-workable and solderable with no effect to most alloys