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EASTMAN CA-398-3 FOOD CONTACT is one of the lower viscosity solution grades of cellulose acetate. The average ASTM viscosity of EASTMAN CA-398-3 FOOD CONTACT is 3 seconds. EASTMAN CA-398-3 FOOD CONTACT is supplied in the form of a fine, dry, free-flowing powder. EASTMAN CA-398-3 FOOD CONTACT can offer a multipurpose rheology enhancer that provides high strength and good resistance to ultraviolet light, heat, oils, and greases. Useful in lacquers for glass, plastic, wire, and release coatings. It may be blended with appropriate solvents, plasticizers, and other modifying resins to formulate coatings for paper, glass, plastic, wire screen, and electrical wiring. When dissolved in appropriate solvents selected for EASTMAN CA-398-3 FOOD CONTACT, a clear, colourless solution is produced.
FINNTALC M30 is a functional extender made from a hydrated magnesium silicate with a chemical formula of Mg3Si4O10(OH)2. That provides great properties of being good barrier properties, good anti-corrosion properties, good reinforcement of paint film, good adhesion and standability, and matting of high PVC paint. FINNTALC M30 is perfect for your application in paints & coating, adhesives, sealants, plastics & fertilisers.
EASTMAN™ CELLULOSE ACETATE BUTYRATE (CAB-531-1) is a cellulose ester with a higher butyryl level than Eastman CAB-381 type esters. Tough films with good resistance to marring and weathering are possible through combinations of cellulose acetate butyrate with thermoplastic acrylic resins. Eastman CAB-531-1 and CAB-381 esters are similar in hydroxyl content and solubility characteristics, both being soluble in a wide range of solvents. Eastman CAB-531-1 is a more flexible resin that requires lower plasticizer modification than the Eastman CAB-381 esters. When CAB-531-1 is dissolved in appropriate solvents, a clear, colorless solution is produced. Eastman CAB-531-1 is based on cellulose, one of the most abundant natural renewable resources. The calculated approximate bio-content value of 38% for Eastman CAB-531-1 was determined by using six bio-based carbon atoms per anhyroglucose unit divided by the total number of carbons per anhyroglucose unit. Although the value reported is not specifically measured for bio-carbon, it can be estimated based on typical partition data.