Polymer networks
The invention relates to polymer networks comprising dimethacrylates of formula CH 2 ═CCH 3 COO—X—O—COCCH 3 ═CH 2 and thiols as main components, X representing a bifunctional radical. Said dimethacrylate/modifier networks represent materials whose properties are determined essentially by the properties of the X group as a result of the very short polymethacrylate blocks used. The networks are very soft and flexible or highly solid, tough, and solvent-resistant depending on the type of the X group that is used.
1 . A polymer network, comprising in polymerized form
A) from 60 to 100 parts of dimethacrylates of the formula (1)
CH 2 ═CCH 3 COO—X—O—COCCH 3 ═CH 2 , (1)
where X is a bifunctional radical from the group of the unsubstituted or substituted alkanes, esters, dimethylsiloxanes, and polypropylene oxides,
B) from 40 to 0 parts of vinyl compounds B copolymerizable with (1),
C) from 1 to 40 parts of mercaptans RS—H characterized in that the molar ratio of dimethacrylate to mercaptan is <10.
2 . The polymer network as claimed in claim 1 , wherein the molar ratio of dimethacrylate to mercaptan is in the range from 1.5 to 4.5.
3 . The polymer network as claimed in claim 1 , wherein X is an alkylidene radical having from 8 to 300 carbon atoms.
4 . The polymer network as claimed in claim 1 , wherein
X=-(-A-OCO—B—COO-) m -A-, -(-D-COO-) n -A-(-OCOD-) n -,
in which A, B, and D, independently of one another, are an alkylidene or arylidene radical having from 2 to 20 carbon atoms, m is from 1 to 100, and n is from 1 to 50.
5 . A method for the production of a hydrolytically degradable article comprising producing an article with the polymer network as claimed in claim 4 .
6 . A method for the production of an antidrumming composition comprising producing, an antidrumming composition with the polymer network as claimed in claim 1 .
7 . A process for preparation of polymer networks as claimed in claim 1 , wherein dimethacrylates of formula (1) and mercaptans RS—H are polymerized under free-radical polymerization conditions in a molar ratio of dimethacrylate to mercaptan of from 1.5:1 to 10:1.