Claims
- 1. A silicone-based antifoam composition in the form of an emulsion, said emulsion having a dispersed phase and a continuous phase, said dispersed phase being a secondary silicone composition and said continuous phase being a nonpolar organic medium selected from the group consisting of polyisobutylene and mineral oil, said emulsion being prepared by reacting components comprising:
- (A) about 5 to 25 weight parts, of a primary silicone composition; and
- (B) about 10 to 50 weight parts of a polydiorganosiloxane having condensable terminal groups and a viscosity of about 10 to 50,000 mm.sup.2 /sec at 25.degree. C., in the presence of;
- (C) a catalytic amount of a second condensation catalyst;
- said primary silicone composition (A), said polydiorganosiloxane (B) and said second condensation catalyst (C) being dispersed in about 25 to 80 weight parts of (D) a nonpolar organic medium selected from the group consisting of polyisobutylene and mineral oil, per 100 parts of the combined weights of (A), (B) and (D), during said reacting step;
- said reacting step forming said secondary silicone composition of said dispersed phase;
- said primary silicone composition being the reaction product, formed at a temperature of 50.degree. C. to 300.degree. C., of a mixture comprising:
- (i) 1 to 100 parts by weight of a diluent selected from the group consisting of polydiorganosiloxane, polyisobutylene and mineral oil;
- (ii) 5 to 100 parts by weight of a polyorganosiloxane having a viscosity of 200 to about 100 million mm.sup.2 /s at 25.degree. C. expressed by the general formula R.sup.1.sub.a (R.sup.2 O).sub.b SiO.sub.(4-a-b)/2 in which R.sup.1 is a monovalent hydrocarbon or halogenated hydrocarbon group having 1 to 10 carbon atoms, R.sup.2 is hydrogen or a monovalent hydrocarbon group having 1 to 10 carbon atoms, a has an average value of 1.9 to 2.2 and b has a sufficiently large value to give at least one --OR.sup.2 group in each molecule, at least one such --OR.sup.2 group being present at the end of the molecular chain;
- (iii) 0.5 to 20 parts by weight for every 100 parts by weight of the combined weight of components (i) and (ii) of at least one silicon compound selected from the group consisting of
- (a) an organosilicon compound of the general formula R.sup.3.sub.c SiX.sub.4-c in which R.sup.3 is a monovalent hydrocarbon group having 1 to 5 carbon atoms, X is selected from a halogen atom or a hydrolyzable group and c has an average value of one or less,
- (b) a partially hydrolyzed condensate of said compound (a),
- (c) a siloxane resin comprising (CH.sub.3).sub.3 SiO.sub.1/2 units and SiO.sub.4/2 units wherein the ratio of (CH.sub.3).sub.3 SiO.sub.1/2 units to SiO.sub.4/2 units is 0.4:1 to 1.2:1, or
- (d) a condensate of said compound (c) with said compound (a) or (b); and
- (iv) a catalytic amount of a first condensation catalyst.
- 2. A composition in accordance with claim 1 wherein said (A) primary silicone composition further comprises (v) 0.5 to 30 parts by weight of a finely divided filler for every 100 parts by weight of the combined weight of components (i) and (ii).
- 3. A composition in accordance with claim 2 wherein said (A) primary silicone composition further comprises (vi) 1 to 20 parts by weight for every 100 parts by weight of the combined weight of components (i) and (ii) of a polyorganosiloxane having a viscosity of 5 to about 200 mm.sup.2 /s at 25.degree. C. expressed by the general formula R.sup.4.sub.e (R.sup.5 O).sub.f SiO.sub.(4-e-f)/2 in which R.sup.4 is a monovalent hydrocarbon or halogenated hydrocarbon group having 1 to 10 carbon atoms, R.sup.5 is hydrogen or a monovalent hydrocarbon group having 1 to 10 carbon atoms, e has an average value of 1.9 to 2.2 and f has a sufficiently large value to give at least two --OR.sup.5 groups in each molecule at the end of a molecular chain.
- 4. A composition in accordance with claim 1 wherein said reacting step of components (A), (B) and (C) is carried out at room temperature.
- 5. A composition in accordance with claim 1 wherein said silicone-based antifoam composition has a viscosity between about 10,000 and 30,000 mm.sup.2 /sec.
- 6. A composition in accordance with claim 5 wherein said second catalyst (C) is neutralized after said reacting step of components (A), (B) and (C).
- 7. A composition in accordance with claim 1 wherein component (C), said second condensation catalyst, is a surface active catalyst.
- 8. A composition in accordance with claim 1 wherein said catalytic amount of component (C) said second catalyst is between about 0.5 and 2.0 weight percent of the combined weights of components (A), (B) and (D).
- 9. A composition in accordance with claim 1 wherein component (B) has a viscosity between about 20 and 2,000 mm.sup.2 /sec.
- 10. A composition in accordance with claim 1 further comprising (E) a finely divided hydrophobic filler.
- 11. A method of preparing a silicone based antifoam in the form of an emulsion, said emulsion having a dispersed phase and a continuous phase, said dispersed phase being a secondary silicone composition and said continuous phase being a nonpolar organic medium selected from the group consisting of polyisobutylene and mineral oil, said method comprising the steps of:
- (I) preparing a primary silicone composition (A) by
- 1. reacting, at a temperature of 50.degree. C. to 300.degree. C., a mixture comprising:
- (i) 1 to 100 parts by weight of a diluent selected from the group consisting of polydiorganosiloxane, polyisobutylene and mineral oil;
- (ii) 5 to 100 parts by weight of a polyorganosiloxane having a viscosity of 200 to about 100 million mm.sup.2 /s at 25.degree. C. expressed by the general formula R.sup.1.sub.a (R.sup.2 O).sub.b SiO.sub.(4-a-b)/2 in which R.sup.1 is a monovalent hydrocarbon or halogenated hydrocarbon group having 1 to 10 carbon atoms, R.sup.2 is hydrogen or a monovalent hydrocarbon group having 1 to 10 carbon atoms, a has an average value of 1.9 to 2.2 and b has a sufficiently large value to give at least one --OR.sup.2 group in each molecule, at least one such --OR.sup.2 group being present at the end of the molecular chain;
- (iii) 0.5 to 20 parts by weight for every 100 parts by weight of the combined weight of components (i) and (ii) of at least one silicon compound selected from the group consisting of
- (a) an organosilicon compound of the general formula R.sup.3.sub.c SiX.sub.4-c in which R.sup.3 is a monovalent hydrocarbon group having 1 to 5 carbon atoms, X is selected from a halogen atom or a hydrolyzable group and c has an average value of one or less,
- (b) a partially hydrolyzed condensate of said compound (a),
- (c) a siloxane resin comprising (CH.sub.3).sub.3 SiO.sub.1/2 units and SiO.sub.4/2 units wherein the ratio of (CH.sub.3).sub.3 SiO.sub.1/2 units to SiO.sub.4/2 units is 0.4:1 to 1.2:1, or
- (d) a condensate of said compound (c) with said compound (a) or (b);
- (iv) a catalytic amount of a first condensation catalyst; and
- 2. neutralizing the first condensation catalyst; (II) mixing, under conditions of shear, the components comprising:
- (A) about 5 to 25 weight parts of the primary silicone composition prepared in step (I);
- (B) about 10 to 50 weight parts of a polydiorganosiloxane having condensable terminal groups and a viscosity of about 10 to 50,000 mm.sup.2 /sec at 25.degree. C., in the presence of
- (C) a catalytic amount of a second condensation catalyst;
- (D) about 25 to 80 weight parts of a nonpolar organic medium selected from the group consisting of polyisobutylene and mineral oil, per 100 parts of the combined weights of (A), (B) and (D);
- said mixing step (II) causing reaction between components (A) and (B), thus forming said secondary silicone composition of said dispersed phase of said emulsion;
- said nonpolar organic medium form said continuous phase of said emulsion.
- 12. A method in accordance with claim 11 further comprising the step of (III) neutralizing said second condensation catalyst (C) after said emulsion reaches a viscosity between about 10,000 and 30,000 mm.sup.2 /sec.
CROSS-REFERENCE TO RELATED APPLICATIONS
The present application for patent is a continuation-in-part of U.S. patent application Ser. Nos. 635,043, (now U.S. Pat. No. 5,777,059), 635,119 and 635,346, all of which were filed on Apr. 19, 1996, and U.S. patent application Ser. No. 789,143, (now U.S. Pat. No. 5,861,453), filed on Jan. 28, 1997, which is a continuation-in-part of U.S. patent application Ser. No. 635,347, also filed on Apr. 19, 1996 and now abandoned.
US Referenced Citations (6)
Related Publications (3)
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635119 |
Apr 1996 |
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635346 |
Apr 1996 |
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789143 |
Jan 1997 |
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Continuation in Parts (2)
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635043 |
Apr 1996 |
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Parent |
635347 |
Apr 1996 |
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