Method for the prevention of mist formation in a device comprising rolls during the coating of flexible media with a crosslinkable liquid silicone composition
An organosilicon coating, organosilicon technology, applied in the direction of devices without pigment coating, coating liquid on the surface, coating, etc., can solve the problem of not providing quantitative elements, etc.
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Embodiment 1
[0291] Example 1 - Preparation of anti-fogging additive E1 according to the present invention:
[0292] In a 25 mL single-necked flask, 10.0 g of PDMS (5) and 0.039 g of acrylic acid were mixed, which resulted in a molar ratio r = 0.63 and a molar ratio J = 1.26. The reaction mixture was kept under magnetic stirring at a temperature of 50 °C for 7 days. No post-reaction treatment was applied. in CDCl 3 of the product obtained at 27 °C 1 H NMR analysis (128 scans) showed that the acrylic functional group had disappeared.
Embodiment 2
[0293] Example 2 - Preparation of anti-fogging additive E2 according to the invention:
[0294] In a 25 mL single-necked flask, 13.48 g of organopolysiloxane (4) and 0.022 g of acrylic acid were mixed, which resulted in obtaining a molar ratio r=0.52 and a molar ratio J=1.03. The reaction mixture was kept under magnetic stirring at a temperature of 50 °C for 8 days. No post-reaction treatment was applied. in CDCl 3 of the product obtained at 27 °C 1H NMR analysis (128 scans) showed that the acrylic functional group had disappeared.
Embodiment 3
[0295] Example 3 - Preparation of anti-fogging additive E3 according to the invention:
[0296] In a 25 mL single-necked flask, 10.01 g of organopolysiloxane (3) and 0.461 g of acrylic acid were mixed, which resulted in obtaining a molar ratio r=0.5 and a molar ratio J=0.99. The reaction mixture was kept under magnetic stirring at a temperature of 50 °C for 7 days. No post-reaction treatment was applied. in CDCl 3 of the product obtained at 27 °C 1 H NMR analysis (128 scans) showed that the acrylic functional group had disappeared.
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