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Coatings Ingredients
The material selection platform
Coatings Ingredients
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19 products match your search
Product Name
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Description
Aptalon™ W8030 by Lubrizol is a water-borne self-matting, self-crosslinking polyurethane dispersion. It has been designed using patented polyamide polyol technology and has a naturally low gloss... view more
Sancure™ 1004B by Lubrizol is an aliphatic waterborne urethane polymer. It has flame retardancy built into the polymer which allows wash ability. It is readily crosllinkable. It shows medium... view more
Sancure™ 12954S by Lubrizol is an aliphatic waterborne urethane polymer. It can produce a tough, clear, high gloss films with outstanding chemical resistance. It can be crosslinked with a... view more
Sancure™ 20051 by Lubrizol is a tough, flexible, low VOC, formaldehyde-free, aliphatic polyurethane polymer dispersion. It is a co-solvent-free and does not contain alkylphenol ethoxylates... view more
Sancure™ 20066 by Lubrizol is a crosslinkable, APEO-free, soft flexible aliphatic polyurethane dispersion. It is designed for use in textile, synthetic fabric and non-woven coatings. Sancure™ 20066... view more
Applications
Sancure™ 2026C by Lubrizol is an aliphatic waterborne urethane polymer. It forms a soft, flexible, clear film upon drying. It shows excellent elongation, along with toughness. It is suitable for... view more
Polyester-based aromatic TPU. Exhibits hardness and very good low-temperature flexibility. Used in a variety of applications such as melt coatings on textile substrates. It complies with F.D.A... view more
Polyester-based thermoplastic polyurethane. Exhibits hardness with excellent low-temperature flexibility. Used mostly in melt coatings on textile substrates. It complies with F.D.A. regulations... view more
Applications
Polyester-based thermoplastic polyurethane. Exhibits hardness with very good low-temperature flexibility. Used in a variety of applications such as melt coatings on textile substrates. It complies... view more
Polyether-based TPU. Exhibits adequate hardness, low-temperature flexibility and very good hydrolysis resistance. It is used in melt coatings on textile substrates, for end-uses in industrial... view more
Polyester-based aromatic TPU. Exhibits hardness with very good low-temperature flexibility. Recommended for use in a variety of applications such as melt coatings on textile substrates. Listed in... view more
Polyester-based aromatic TPU. Exhibits hardness with very good low-temperature flexibility. Recommended for use in a variety of applications such as melt coatings on textile substrates. Listed in... view more
Polyether-copolymer- based TPU. Exhibits hardness with very good low-temperature flexibility and good hydrolysis resistance. Possesses excellent abrasion resistance, excellent touch and feather-like... view more
Polyether-based TPU. Provides adequate hardness. Exhibits low-temperature flexibility and very good hydrolysis resistance. Recommended for use in melt coatings on textile substrates, for end-uses in... view more
Polyether-based TPU. Exhibits hardness with very good low-temperature flexibility and very good hydrolysis resistance. Recommended for use in a wide range of applications such as melt coatings on... view more
Polyether-based TPU. Provides adequate hardness. Exhibits low-temperature flexibility and very good hydrolysis resistance. Recommended for use in melt coatings on textile substrates, for end-uses in... view more
Polyether-based TPU. Provides adequate hardness. Exhibits low-temperature flexibility and very good hydrolysis resistance. Recommended for use in melt coatings on textile substrates, for end-uses in... view more
Polyether-based TPU. Exhibits adequate hardness, low-temperature flexibility and very good hydrolysis resistance. Recommended for use in melt coatings on textile substrates, for end-uses in... view more
Polyether-based aliphatic TPU. Exhibits hardness with good low-temperature flexibility. Provides very good hydrolysis and light resistance. Recommended for use in a wide range of applications such... view more
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