Abstract
The curing of oligodienediol with a combined system consisting of a polyisocyanate and a (meth)acrylate-containing compound, which allows it to be structured with the polyisocyanate both at the terminal hydroxyl groups and double bonds due to the (meth)acrylate component, has been studied. The effect of the concentration of the (meth)acrylate component and a peroxide initiator to the degree of cross linking and strength properties of elastomers has been revealed. It has been shown that the participation of oligomer double bonds to form a vulcanization structure, creating the effect of “healing” defects from functional heterogeneity, allows one to increase the degree of cross linking and strength properties of polyurethanes.
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Original Russian Text © V.P. Medvedev, V.V. Chapurkin, A.V. Murzin, M.A. Vaniev, V.I. Frolova, G.V. Medvedev, I.A. Novakov, 2017, published in Klei, Germetiki, Tekhnologii, 2017, No. 10, pp. 14–18.
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Medvedev, V.P., Chapurkin, V.V., Murzin, A.V. et al. Properties of Polyurethanes Prepared by Structuring Oligodienediols at Double Bonds and Hydroxyl Groups. Polym. Sci. Ser. D 11, 174–178 (2018). https://doi.org/10.1134/S1995421218020107
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DOI: https://doi.org/10.1134/S1995421218020107