Polydiorganosiloxane polyurea segmented copolymers and a process for making same
First Claim
1. A process for making polydiorganosiloxane polyurea segmented copolymers comprising the steps (a) continuously providing reactants to a reactor, wherein the reactants comprise at least one polyisocyanate and at least one polyamine, wherein the polyamine is at least one polydiorganosiloxane diamine or a mixture of at least one polydiorganosiloxane diamine and at least one organic polyamine,(b) mixing the reactants in the reactor, (c) allowing the reactants to react to form a polydiorganosiloxane polyurea copolymer, and (d) conveying the polymer from the reactor.
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Accused Products
Abstract
Melt-processable polydiorganosiloxane polyurea segmented copolymer compositions are provided. The compositions comprise alternating soft polydiorganosiloxane units and hard diisocyanate residue units, the diisocyanate residue being the diisocyanate minus the —NCO groups, the units being connected together by urea linkages which also provide hard units. The compositions are prepared by continuously providing at least one diisocyanate and at least one polydiorganosiloxane diamine to a reactor, mixing the diisocyanate and the polydiorganosiloxane diamine in the reactor under substantially solvent-free conditions, allowing the diisocyanate and polydiorganosiloxane diamine to react to form a polydiorganosiloxane polyurea copolymer, and conveying the copolymer from the reactor.
195 Citations
5 Claims
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1. A process for making polydiorganosiloxane polyurea segmented copolymers comprising the steps (a) continuously providing reactants to a reactor, wherein the reactants comprise at least one polyisocyanate and at least one polyamine, wherein the polyamine is at least one polydiorganosiloxane diamine or a mixture of at least one polydiorganosiloxane diamine and at least one organic polyamine,
(b) mixing the reactants in the reactor, (c) allowing the reactants to react to form a polydiorganosiloxane polyurea copolymer, and (d) conveying the polymer from the reactor.
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3. A process of making a release film comprising the steps of:
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(a) continuously providing reactants to a reactor, wherein the reactants comprise at least one polyisocyanate and at least one polyamine, wherein the polyamine is at least one polydiorganosiloxane diamine or a mixture of at least one polydiorganosiloxane diamine and at least one organic polyamine, (b) mixing the reactants in the reactor, (c) allowing the reactants to react to form a polydiorganosiloxane polyurea copolymer, (d) conveying the polymer from the reactor, and (e) passing the polymer through a die to form a film.
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4. A process of making a release film comprising the steps of:
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(a) continuously providing reactants to a reactor, wherein the reactants comprise at least one polyisocyanate and at least one polyamine, wherein the polyamine is at least one polydiorganosiloxane diamine or a mixture of at least one polydiorganosiloxane diamine and at least one organic polyamine, (b) mixing the reactants in the reactor, (c) allowing the reactants to react to form a polydiorganosiloxane polyurea copolymer, and (d) conveying the polymer through a die with a co-extruded second polymer to form a film.
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5. A melt-processable polydiorganosiloxane polyurea segmented copolymer comprising the reaction product of (a) at least one polyamine, wherein the polyamine comprises at least one polydiorganosiloxane diamine, or a mixture of at least one polydioganosiloxane diamine and at least one organic polyamine, and (b) at least one polyisocyanate:
- wherein (i) the mol ratio of isocyanate;
amine present during synthesis of the reaction product was between 0.9;
1 and 0.95;
1 or between 1.05;
1 and about 1.3;
1, and (ii) the copolymer is represented by the repeating unit;
wherein;
each R is a perfluoroalkyl group or a perfluoroether-containing group;
each Z is a polyvalent radical that is (i) an arylene radical or an aralkylene radical having from about 6 to 20 carbon atoms, or (ii) an alkylene or cycloalkylene radical having from about 6 to 20 carbon atoms;
each Y is a polyvalent radical that independently is (i) an alkylene radical of 1 to 10 carbon atoms, or (ii) an aralkylene radical or an arylene radical having 6 to 20 carbon atoms;
each D is selected from the group consisting of hydrogen, an alkyl radical of 1 to 10 carbon atoms, phenyl, and a radical that completes a ring structure including B or Y to form a heterocycle;
B is a polyvalent radical selected from the group consisting of alkylene, aralkylene, cycloalkylene, phenylene, polyalkylene oxide, including copolymers and mixtures thereof, m is a number that is 0 to about 1000;
n is a number that is equal to or greater than 1; and
p is a number that is about 10 or larger.
- wherein (i) the mol ratio of isocyanate;
Specification