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The material selection platform
Coatings Ingredients
The material selection platform
Coatings Ingredients
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19 products match your search
Product Name
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Description
Surfynol® 104PA is a non-ionic wetting and defoaming agent by Evonik. It is a multifunctional surfactant. Offers reduced water sensitivity. Used in water- & solvent-borne and radiation curing car... view more
TEGO® Airex 902 W by Evonik acts as a deaerator. It is highly compatible (minimized risk of surface defects) and prevents micro- and macro-foam. Used in architectural coatings, printing inks and... view more
TEGO® Airex 920 by Evonik is a defoamer and deaerator for non-aqueous formulations. Used in wood and furniture coatings, parquet coatings, printing inks and overprint varnishes. It is recommended for... view more
Tego® Flow 425 by Evonik acts as a flow and leveling agent for radiation-curing varnishes, coatings for plastics, parquet coatings, wood and furniture coatings, automotive and industrial coatings... view more
Tego® Glide 110 by Evonik acts as a flow/ leveling and slip agent for water-borne, radiation-curing and solvent-borne formulations. Exhibits improved scratch resistance. Imparts good clarity in... view more
Tego® Glide 432 by Evonik acts as a flow/leveling and slip agent. Suggested for radiation-curing formulations in printing inks, overprint varnishes, wood and furniture coatings, industrial coatings... view more
Polyether siloxane copolymer. Used as a flow/leveling and slip additive for waterborne, radiation-curing and solventborne formulations in overprint varnishes, silk screen inks, industrial coatings... view more
Tego® Glide 440 is a flow/leveling and slip additive by Evonik. Offers improved scratch resistance. Is highly effectiev and highly compatible (minimized risk of haziness). Produces a slippery handle... view more
Tego® Rad 2010 is a radically cross-linkable silicone polyether acrylate by Evonik. Acts as a substrate wetting, slip, anti-block and flow additive. Used for radiation-curing formulations, printing... view more
Tego® Rad 2011 by Evonik is a radically cross-linkable acts as substrate wetting and flow additive. Exhibits outstanding cost/ performance ratio and very good flow promotion. Offers good... view more
TEGO® Rad 2200 N by Evonik acts as wetting, flow and levelling agents. It is a radically cross-linkable, highly effective and compatible slip additive for waterborne. It also acts as a radiation-curing... view more
Tego® Rad 2250 by Evonik acts as a substrate wetting, slip and flow agent. Offers very good substrate wetting. Exhibits improved scratch resistance. Designed for water-borne and radiation-curing... view more
TEGO® Rad 2330 by Evonik is an efficient low-foaming, radically cross-linkable substrate wetting and slip additive based on organomodified silicone acrylate. It provides strong surface tension... view more
Tego® Rad 2500 by Evonik acts as a slip agent and deaerator for radiation-curing formulations. Used in silk screen inks, flexo inks, wood and furniture coatings, overprint varnishes and coatings for... view more
TEGO® Rad 2550 by Evonik acts as a broadly usable, radically cross-linkable defoamer, wetting and slip agent. It is a clear, low viscosity liquid that effectively reduces static and dynamic surface... view more
Tego® Wet 270 is a substrate wetting agent by Evonik. Designed for water- & solvent-borne, solvent-free and radiation-curing formulations. Used in automotive coatings, industrial coatings... view more
Tego® Airex 980 is by Evonik is an anti-crater aid and defoamer. It offers improved flow and surface slip. It helps to prevent patchy matting and surface irregularities through the controlled... view more
Tego® Flow ZFS 460 by Evonik is a silicon-free, flow and leveling additive for solvent-borne and radiation curing formulations. It offers heat stable and good recoatability. It provides additional... view more
Tego® Rad 2300 by Evonik is silicone acrylate, radically cross-linkable. It acts as a curing agent. It imparts very good substrate wetting & flow promotion, good slip effect and defoaming effect. It... view more
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