FIELD: chemistry.
SUBSTANCE: claimed invention relates to artificial marble, which has translucent amorphous texture. Described is artificial marble, which has translucent amorphous texture, which contains matrix and texture component, where said texture component has specific density from approximately 1.6 to approximately 2.0 and contains solidified resin composition, which forms textures (A), which contains binding agent and acrylic polymerisable monomer, where said binding agent contains halogenated urethane acrylate, halogenated epoxy acrylate or their combination, where mentioned resin composition, which forms texture component (A), contains from approximately 50 to approximately 90 weight parts of binding agent and from approximately 10 to approximately 50 weight parts of acrylic polymerisable monomer basing on the total weight of resin composition, which forms texture component (A), where said resin composition, which forms texture component (A), further contains inorganic filler in quantity 30 weight parts or less basing on 100 weight parts of mixture of binding agent and acrylic polymerisable monomer to ensure good translucence, where said matrix is formed from suspension, which represents mixture of dissolved polyacrylate and acryl monomer. Also described is method of obtaining claimed artificial marble, in which polymerisable acryl monomer and inorganic filler are mixed with binding agent, which contains halogenated urethane acrylate, halogenated epoxy acrylate or their combination, with obtaining resin composition, which forms texture component (A); polyacrylate is dissolved in acryl monomer with obtaining suspension, which forms matrix (B); texture-forming resin composition (A), and matrix-forming suspension (B), is non-continuously supplied into mould and resin composition, which forms texture component (A), and matrix-forming suspension (B) are solidified.
EFFECT: obtaining artificial marble, which has translucent amorphous texture, good smoothness without emergence of concavity effect.
7 cl, 5 dwg, 1 tbl, 3 ex
Authors
Dates
2015-02-27—Published
2010-11-05—Filed