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This paper describes the development of a new class of polyurea polymer coating. Specifically, the use of polyaspartic ester compounds, which are secondary aliphatic diamines, in combination with aliphatic polyisocyanates to form aliphatic polyurea coatings are described in this paper.
This paper describes the development of a new class of polyurea polymer coating. Specifically, the use of polyaspartic ester compounds, which are secondary aliphatic diamines, in combination with aliphatic polyisocyanates to form aliphatic polyurea coatings are described in this paper. Polyaspartic ester-based polyurea topcoats are non-yellowing, exhibit good outdoor weathering and long potlife. The moderately fast reactivity, combined with the relatively low viscosity of the polyaspartic ester compounds allows for a broader range of applications in two component coatings.
A method of using spray polyurea coatings and woven aramid, fiber wet-out with a proprietary material to form a composite. The composite is built in place and used to retrofit structures and vehicles to resist the effects of explosive blasts.
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Polyaspartic coatings can offer excellent performance characteristics typically expected of SSPC Specification Number 36, Level 3, for Aliphatic Polyurethane Topcoats. In addition, polyaspartates will pass an industry standard for corrosion protection in medium corrosivity environments direct to metal. These features offer the typical industrial maintenance customer high performance for gloss and color retention, while reducing application time and costs.
This presentation will high light the new ultra-high solids tank lining products and discuss the equipment necessary to properly apply them, giving owners the ability to return their tank to service in a very short time frame.