Euclid EverClear is a solvent-based pure acrylic cure and seal in a 5 gallon pail. It leaves a clear, non-yellowing satin film on stamped, exposed-aggregate, and colored decorative concrete.
Euclid EverClear is a solvent-based pure acrylic cure and seal. It is used on stamped concrete, exposed aggregate, terrazzo, pavers, driveways, sidewalks, and acid-stained decorative overlays. The film is harder than standard polymer-blend cure and seals and protects against traffic, weather, and de-icing salts. Air and surface temperature should be between 40 F and 90 F.
| Property | Value |
|---|---|
| Solids content | > 25% |
| Dry to touch | < 1 hour at 70 F |
| Recoat | minimum 4 hours |
| Foot traffic | 4 to 6 hours |
| Wheel traffic | 6 to 10 hours |
| Coverage, new concrete 1st coat | 300 to 350 ft²/gal |
| VOC | 681 g/L |
| ASTM C1315 | Type 1 Class A |
| ASTM C309 | Type 1, Classes A and B |
| Application temperature | 40 F to 90 F |
EverClear Technical Data Sheet
Where is Euclid EverClear used?
Euclid EverClear is used on stamped concrete, exposed aggregate, terrazzo, driveways, sidewalks, concrete pavers, acid-stained concrete, and decorative overlays. It is a solvent-based pure acrylic cure and seal for decorative work.
What is the dry-to-touch time of Euclid EverClear?
Typical laboratory dry-to-touch time is less than 1 hour at 70 F. Recoat is a minimum of 4 hours. Expect reasonable variation under field conditions.
What is the VOC of Euclid EverClear?
The VOC of Euclid EverClear is 681 g/L.
What is the coverage of Euclid EverClear on new concrete?
Approximate first-coat coverage on new concrete is 300 to 350 ft²/gal. Second coat is 350 to 400 ft²/gal. Rates are for estimating only.
What application temperature does Euclid EverClear need?
Surface and ambient temperature should be between 40 F and 90 F. Do not apply Euclid EverClear to frost-filled or frozen substrates.
How soon is Euclid EverClear ready for foot traffic?
Typical laboratory foot traffic is 4 to 6 hours. Wheel traffic is 6 to 10 hours at 70 F. Expect reasonable variation under field conditions.
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