UV cured film with excellent water resistance

A recent work describes the synthesis of UV-curable waterborne Polyurethane–acrylate modified with hydroxyl-terminated polydimethylsiloxane.

Rain pattering on a black surface as a symbolic image.
The weathering performance of an epoxy coating could be improved. Image source:  Sourabh Yadav - Pixabay (symbol image).

A series of UV-curable waterborne polyurethane–acrylate (WPUA) emulsions were synthesised by using isophorone diisocyanate (IPDI) as the hard segment, polybutylene adipate glycol (PBAG) and different dosages of hydroxyl-terminated polydimethylsiloxane (HTPDMS) as the soft segment, 2,2-dimethylolpropionic acid (DMPA) as hydrophilic chain extender, and pentaerythritol triacrylate (PETA) as the blocking agents.

Increased water resistance

Test results indicated that with increasing HTPDMS content in the WPUA, the particle size of the emulsion was increased significantly, while the absolute value of Zeta potential was increased slightly. The resistance of WPUA cured film to water was increased. The ultimate water absorption declined from 11.12 % to 6.81 % and the equilibrium time of water absorption extended from 50 h to more than 100 h.

When the HTPDMS content of WPUA was 10.0 wt%, the water contact angle of the cured film was the largest at 114°, which indicated that the surface of the cured film has been changed from a hydrophilic surface to a hydrophobic one. Thermogravimetric analysis results showed that the initial decomposition temperature of WPUA film gradually increased with adding of HTPDMS, performing better thermal stability.

The study has been published in Progress in Organic Coatings, Volume 156, July 2021.

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