CHRYSO®Optima 277
High range water reducing Super plasticizing admixture
CHRYSO®Optima 277 is a new generation superplasticizer, based on modified polycarboxylate, particularly recommended for ready mix concrete and civil engineering construction. CHRYSO®Optima 277 intends to create a
high water reduction and/or an increased period of workability retention. It allows to manufacture concrete with a long workability retention without prejudicial set retarding effect.
CHRYSO®Optima 277 may be used in a large concrete range. It is particularly adapted to homogeneous SCC formulations with a high filling capacity. CHRYSO®Optima 277 is compatible with most cements.
Download technical data sheet Download FDSCHRYSO®Optima 277
High range water reducing Super plasticizing admixture
CHRYSO®Optima 277 is a new generation superplasticizer, based on modified polycarboxylate, particularly recommended for ready mix concrete and civil engineering construction. CHRYSO®Optima 277 intends to create a
high water reduction and/or an increased period of workability retention. It allows to manufacture concrete with a long workability retention without prejudicial set retarding effect.
CHRYSO®Optima 277 may be used in a large concrete range. It is particularly adapted to homogeneous SCC formulations with a high filling capacity. CHRYSO®Optima 277 is compatible with most cements.
Download technical data sheet Download FDSTinted waterproofing liquid hardener for precast concrete
A ready-to-use tinted hardener (non film-forming) for the strengthening, the waterproofing and the enhancement of all mineral porous substrate made of cement
CHRYSO®Revello Color waterproofs the surface and renders it highly resistant to chemical attacks (de-icing salts, cleaning products, high pressure cleaning, climatic aggressions…)
CHRYSO®Revello Color gives to concrete a harder surface, stops the dusting phenomena and neutralizes the alkali process of concrete, thus reducing efflorescence.
Thanks to its tailor-made matching coloring, it homogenizes the treated surfaces while not modifying their mineral aspect
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