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Radiation-curable formulations, effect

The objective of the present work was to determine the influence of the light intensity on the polymerization kinetics and on the temperature profile of acrylate and vinyl ether monomers exposed to UV radiation as thin films, as well as the effect of the sample initial temperature on the polymerization rate and final degree of cure. For this purpose, a new method has been developed, based on real-time infrared (RTIR) spectroscopy 14, which permits to monitor in-situ the temperature of thin films undergoing high-speed photopolymerization, without introducing any additive in the UV-curable formulation 15. This technique proved particularly well suited to addressing the issue of thermal runaway which was recently considered to occur in laser-induced polymerization of divinyl ethers 13>16. [Pg.64]

Table 2. Effect of Polymeric Chain Length and Placement of Unsaturation Sites on Adhesive Bonding Capability For Radiation Curable Coating Formulations... Table 2. Effect of Polymeric Chain Length and Placement of Unsaturation Sites on Adhesive Bonding Capability For Radiation Curable Coating Formulations...

See other pages where Radiation-curable formulations, effect is mentioned: [Pg.366]    [Pg.8]    [Pg.258]    [Pg.331]    [Pg.23]    [Pg.242]    [Pg.468]    [Pg.302]    [Pg.125]    [Pg.1797]   


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Formulation effects

Radiation effects

Radiation-curable formulations

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