Rayston Latex
Rayston Latex Ultra
Rayston Cure 2
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Rayston Latex
Water Resistant, S.B.R Bonding Emulsion and Mortar Additive
- Rayston Latex is a modified styrene butadiene emulsion. Due to its polymeric action, mortars containing Rayston Latex have superior adhesion, good compressive strengths and considerably improved flexural and tensile strengths. In addition, Rayston Latex mortars have greatly reduced water permeability, improved resistance to chemicals and to abrasion; are Non-Toxic and non-corrosive.
- Rayston Latex mortars possess excellent freeze thaw resistance coupled with resistance to long term water immersion.
USES
- High strength floor screeds.
- Repair mortar for patching and filling.
- For filling and patching mortars that require thin layer finishing.
- For tile adhesive systems.
- For producing floor screeds with enhanced freedom from ‘dusting’, but with improved flexibility and resistance to cracking.
- Suitable for use in cement mortars in contact with drinking water.
- Bond Strength (ASTM-C-882)
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Rayston Latex Ultra
Water Resistant Bonding Agent
- Rayston Latex Ultra A synthetic rubber emulsion for adding to cementitious mixes where good adhesion and water resistance are required. Complies to ASTM C-1059-91
USES
- Thin layer patching mortars.
- Renders.
- Floor screeds.
- Concrete repairs.
- Abrasion resistant linings.
- Tile fixing mortars.
- Masonry mortars.
- Dust proffer.
- For Bonding of old to new concrete.
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Rayston Cure 2
A Polymer, Water-Based, Concrete Curing Compound
- Rayston Cure 2 is a solvent-free, polymer, water- based emulsion, suitable for spray application to freshly poured concrete. The resultant film retains sufficient moisture in the concrete to ensure full hydration
of the cement; essential for optimum strength development. Membrane-cured concrete is typically harder and exhibits a dust-free surface with a reduced incidence of drying shrinkage cracks.
USES
- As a more effective and economical alternative to Hessian, water and polythene curing regimes. Suitable for use on all concrete surfaces.