COATING MATERIAL COMPOSITION, FORMATION OF COATED FILM AND COATED MATERIAL
PROBLEM TO BE SOLVED: To obtain a coating material composition laving a glistening brilliance on a highlight part, capable of providing a solid tone on a face or a shade part and a coated material and to provide a method for forming a coated film. SOLUTION: This resin composition comprises 10-60 pts...
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creator | NIIMI EIZO NAKADA MASANOSUKE MASUKO SHINICHI |
description | PROBLEM TO BE SOLVED: To obtain a coating material composition laving a glistening brilliance on a highlight part, capable of providing a solid tone on a face or a shade part and a coated material and to provide a method for forming a coated film. SOLUTION: This resin composition comprises 10-60 pts.wt. of a pigment component obtained by blending 100 pts.wt. calculated as a solid content with (1) an aluminum flake pigment A having 18-30μm average particle diameter (D50 ), 0.5-1.5μm average particle thickness and >=2.5 gradient (n) in a Rosin- Rammler diagram, (2) a pigment B having >=0.1μm average particle diameter and =0.5. The coating composition is applied and then a clear coated film is formed. |
format | Patent |
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SOLUTION: This resin composition comprises 10-60 pts.wt. of a pigment component obtained by blending 100 pts.wt. calculated as a solid content with (1) an aluminum flake pigment A having 18-30μm average particle diameter (D50 ), 0.5-1.5μm average particle thickness and >=2.5 gradient (n) in a Rosin- Rammler diagram, (2) a pigment B having >=0.1μm average particle diameter and <=30m /g BET specific surface area, (3) a pigment C having <0.1μm average particle diameter and >30 BET specific surface area in the weight ratios of (4) the components (A/B) of (2/8-5/5) and (5) the components (A+B)/(A+B+C) of >=0.5. 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SOLUTION: This resin composition comprises 10-60 pts.wt. of a pigment component obtained by blending 100 pts.wt. calculated as a solid content with (1) an aluminum flake pigment A having 18-30μm average particle diameter (D50 ), 0.5-1.5μm average particle thickness and >=2.5 gradient (n) in a Rosin- Rammler diagram, (2) a pigment B having >=0.1μm average particle diameter and <=30m /g BET specific surface area, (3) a pigment C having <0.1μm average particle diameter and >30 BET specific surface area in the weight ratios of (4) the components (A/B) of (2/8-5/5) and (5) the components (A+B)/(A+B+C) of >=0.5. 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SOLUTION: This resin composition comprises 10-60 pts.wt. of a pigment component obtained by blending 100 pts.wt. calculated as a solid content with (1) an aluminum flake pigment A having 18-30μm average particle diameter (D50 ), 0.5-1.5μm average particle thickness and >=2.5 gradient (n) in a Rosin- Rammler diagram, (2) a pigment B having >=0.1μm average particle diameter and <=30m /g BET specific surface area, (3) a pigment C having <0.1μm average particle diameter and >30 BET specific surface area in the weight ratios of (4) the components (A/B) of (2/8-5/5) and (5) the components (A+B)/(A+B+C) of >=0.5. The coating composition is applied and then a clear coated film is formed.</abstract><edition>6</edition><oa>free_for_read</oa></addata></record> |
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subjects | ADHESIVES APPLYING LIQUIDS OR OTHER FLUENT MATERIALS TO SURFACES, IN GENERAL CHEMICAL PAINT OR INK REMOVERS CHEMISTRY COATING COMPOSITIONS, e.g. PAINTS, VARNISHES ORLACQUERS CORRECTING FLUIDS DYES FILLING PASTES INKS METALLURGY MISCELLANEOUS APPLICATIONS OF MATERIALS MISCELLANEOUS COMPOSITIONS NATURAL RESINS PAINTS PASTES OR SOLIDS FOR COLOURING OR PRINTING PERFORMING OPERATIONS POLISHES PROCESSES FOR APPLYING LIQUIDS OR OTHER FLUENT MATERIALS TOSURFACES, IN GENERAL SPRAYING OR ATOMISING IN GENERAL TRANSPORTING USE OF MATERIALS THEREFOR WOODSTAINS |
title | COATING MATERIAL COMPOSITION, FORMATION OF COATED FILM AND COATED MATERIAL |
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