EVERBUILD MIRRORMATE is a premium-grade, one-component, solvent-free mirror adhesive formulated to provide a strong and permanent bond between mirrors and various substrates. Its non-corrosive formulation ensures that the mirror’s silver backing is not damaged over time, making it especially suitable for use in sensitive interior environments such as bathrooms and fitness areas. It adheres to most building materials including wood, concrete, plaster, metal, and tiles.
Supplied in a 310ml cartridge, MIRRORMATE is ready-to-use with a standard sealant gun and cures to form a durable, flexible bond that absorbs surface movement without compromising adhesion.
Solvent-free – will not damage mirror backing
Strong initial grab and excellent final bond strength
Non-slump formula – ideal for vertical application
White finish – suitable for behind or around mirrors
Compatible with coated glass and acrylic mirrors
Ideal for humid areas – mould-resistant
Over-paintable once cured
Type: Solvent-free water-based polymer adhesive
Colour: White
Packaging: 310ml cartridge
Application Method: Standard caulking gun
Skin Time: 10–15 minutes
Cure Time: ~24–48 hours depending on thickness
Tack-Free Time: Approx. 30 minutes
Density: ~1.6 g/cm³
Temperature Resistance (Service): -10°C to +60°C
Application Temperature: +5°C to +30°C
Shelf Life: 12 months (stored in cool, dry conditions)
Fixing mirrors to walls (plaster, timber, metal, concrete)
Bathroom and shower wall installations
Gyms, salons, and retail fittings
Mounting mirrored panels and decorative glass
Use on ceramic tiles, painted surfaces, and laminate
Preparation: Ensure surfaces are clean, dry, and free from dust, grease, or loose material.
Application: Apply in vertical beads (approx. 50mm apart) to the back of the mirror.
Positioning: Press the mirror firmly into place and support until cured (typically 24 hours).
Curing: Allow adequate ventilation and avoid disturbing during curing.
Cleaning: Clean excess adhesive immediately with a damp cloth. Cured product must be removed mechanically.