Reactive mixture for coating molded objects by means of reaction injection molding and coated molded object
A reaction injection molding, reactive technology, applied in the direction of nanotechnology, coating, transportation and packaging for materials and surface science, which can solve the problems of short cycle time, inaccessibility, high climate stability and low energy consumption, high hardness effect
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Embodiment 1
[0109] Comparative Example 1 was essentially repeated, except here that the curing by UV radiation was carried out after thermal curing of the coated injection molded part. The coating remains crack-free. The scratch resistance of the coatings was studied in small-scale experiments using steel wool, where the coatings thus obtained achieved a scratch resistance of 3 (good scratch resistance).
Embodiment 2
[0114] Comparative Example 2 was essentially repeated, except here that the curing by UV radiation was carried out after thermal curing of the coated injection molded part. The coating remains crack-free. The scratch resistance of the coatings was investigated in pilot tests using steel wool, the coatings thus obtained achieving a scratch resistance of 3 (good scratch resistance).
Embodiment 3
[0116] Example 1 was essentially repeated, but here a compound containing 97.75% by weight trimethylolpropane triacrylate, 0.25% by weight bis(4-tert-butylcyclohexyl) peroxydicarbonate (thermal initiator) and 2% by weight 1 - Benzoylcyclohexanol ( 184) reactive mixture.
[0117] The thermal curing reaction started after about 15 seconds. After UV curing, a crack-free coating was obtained, which had a thickness of approximately 20 μm (average of four individual measurements).
[0118] The scratch resistance of the coatings was investigated in pilot tests using steel wool, the coatings thus obtained achieving a scratch resistance of 1 (very good scratch resistance).
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