Aqueous dispersoid of fluorine-containing seed polymer particles and aqueous coating combination
A technology of polymer particles and water-based dispersions, applied in the direction of coating, etc., can solve the problems of fluoropolymer compatibility reduction, white turbidity, phase separation, etc., and achieve the effect of excellent compatibility
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Embodiment 1
[0111] Add the VdF / TFE / CTFE copolymer (=72.1 / 14.9 / 13 (mol%)) 128.2 parts by mass of an aqueous dispersion (solid content concentration: 46.8% by mass) of particles, 14.3 parts by mass of Newcol 707SF and 85.2 parts by mass of ion-exchanged water were added thereto and mixed well to prepare an aqueous dispersion.
[0112] Next, after heating in a water bath with stirring until the internal temperature reaches 75° C., 88.1 parts by mass of methyl methacrylate (MMA), 49.0 parts by mass of n-butyl acrylate (BA), and 1.5 parts by mass of acrylic acid were continuously added dropwise for 3 hours. (AA), 0.7 parts by mass of a mixed monomer of γ-methacryloxypropyltriethoxysilane, and 22.1 parts by mass of ammonium persulfate (APS) (1 mass % aqueous solution), and polymerization was performed. After the dropwise addition of the mixed monomers was terminated, aging was carried out for another 2 hours. After aging, the reaction solution was cooled to room temperature to terminate the re...
Embodiment 2
[0115] Add the VdF / TFE / CTFE copolymer (=72.1 / 14.9 / 13 (mol%)) 213.5 parts by mass of an aqueous dispersion (solid content concentration: 46.8% by mass) of particles, 14.3 parts by mass of Newcol 707SF and 55.5 parts by mass of ion-exchanged water were added thereto and mixed well to prepare an aqueous dispersion.
[0116] Next, after heating in a water bath with stirring until the internal temperature reaches 75° C., 63.2 parts by mass of methyl methacrylate (MMA), 35.7 parts by mass of n-butyl acrylate (BA), and 1.1 parts by mass of acrylic acid were continuously added dropwise for 3 hours. (AA), 0.5 parts by mass of a mixed monomer of γ-methacryloxypropyltriethoxysilane, and 15.8 parts by mass of ammonium persulfate (APS) (1 mass % aqueous solution), and polymerization was performed. After the dropwise addition of the mixed monomers was terminated, aging was carried out for another 2 hours. After aging, the reaction solution was cooled to room temperature to terminate the re...
Embodiment 3
[0119]In Example 2, as monomers for seed polymerization, 62.2 parts by mass of methyl methacrylate (MMA), 35.7 parts by mass of n-butyl acrylate (BA), 1.1 parts by mass of acrylic acid (AA), 1.0 parts by mass of γ - Except for methacryloxypropyltriethoxysilane, seed polymerization was carried out in the same manner as in Example 2 to obtain an aqueous dispersion of a fluorine-containing seed polymer having a solid content concentration of 51.0% by mass. The obtained fluorine-containing seed polymer had a fluorine content of 29% by mass, a particle diameter of 195 nm, and a minimum film-forming temperature of 52.2°C.
[0120] Using the aqueous dispersion of the fluorine-containing seed polymer, the haze value of the produced film was measured while changing the drying temperature (1 day at 40° C., 10 minutes at 100° C., and 5 minutes at 150° C.). The results are listed in Table 1.
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