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Solution of a silicone modified polymer Effective defoamer for water-based coating systems with a good relation between defoaming and compatibility. An effective defoamer and deaerator. Prevents the formation of foam and blisters during manufacturing and application. It has a very good compatibility compared with good defoaming and deaeration properties and therefore it is very suitable for clear coat applications Very universal in use. Recommended for most of the water-based systems, especially clear applications. For use in grinding/mill bases AFCONA-2502 or AFCONA-2503 are better options. Can then be used as a post-additive.
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Modified polysiloxane defoamer and deaerator for water-based systems. Best in polyurethane dispersions. Good defoaming as well as leveling and anti-crater action. Very easy to incorporate, even in low-shear conditions.
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Organically modified Polysiloxane with hydrophobic silica Water based defoamer that suitable for clear coating and pigment concentrate preparation AFCONA- 2507 is an organically modified polysiloxane with hydrophobic silica which designed to give excellent performance in defoamer and anti-foam in all water based coating. AFCONA – 2507 have below performance and properties: 1) Suitable to eliminate process foams in PUD and polyarylic emulsion resins system. 2) Gives good shear force resistance. Suitable for pigment concentrate preparation and defoamer for printing ink systems. 3) It has low sensitivity against crater formation
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Organically modified Polysiloxane Water based defoamer and anti-foam, especially for micro foams AFCONA-2505 is an organically modified polysiloxane which designed to give good defoamer and anti-foam in all water based coating. It has excellent performance against micro foam.AFCONA –2505 have below performance and properties:1)It has very good performance in high shear application. Under high shear environment such as long period of grinding, it still can maintain it good defoaming and anti-foam performance. Thus verysuitable to use as defoamer in pigment concentration preparation and high speed flexo printing process.2)It also effective as defoamer in normally coating ranging from PU dispersion to normal acrylic based decorativepaint.3)Beside good defoaming and anti-foam properties, it also has excellent performance against microfoams.4)It has low sensitivity against crater formation.
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Modified polysiloxane defoamer for water-based applications. Used as a preparation of pigment concentrates.
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Modified polysiloxane with fine silica for water-based systems. Very high resistance to shear forces and temperature.
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Non-silicone polymer defoamer for solvent-based and solvent-free systems of epoxy, polyurethane, UPE and UV coatings.
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Organically modified polyalkyl polysiloxane AFCONA –2280 is a very effective defoamer and air-releaser for solvent-based and solvent-lesssystems. AFCONA –2280is a silicone-based product developed to produce rapid de-aeration for pigmented and mat finish of wood coatingin NC,AC and PU.For high gloss and transparent wood coating,It may cause some in can haziness when the dosage ishigher than 0.50% in PU and AC system. It’s also suitable for polyurethane and epoxy compounds used in flooring or general industrial application.AFCONA –2280also acts as a very good levelling agent,giving a smooth surface to the coating.It functions differently from AFCONA 2722 asthe siliconecontent is higher and the real active ingredient as defoamer is also higher.
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Non-silicone polymer based defoamer for solvent-based systems. Very suitable for pigmented and matte UV coatings, epoxies, polyurethanes and baking paints.
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Non-silicone polymer based defoamer for solvent-based systems. Economy replacement for Afcona 2020.
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Silicone-based modified polysiloxane defoamer and deaerator for solvent-based systems. Best suitable for medium to high polar systems such as epoxy, TPA and unsaturated polyesters. Outstanding in polyurethane systems.
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Silicone-based modified polysiloxane defoamer and deaerator for solvent-based systems. Has additional leveling properties in comparison to 2035.