Claims
- 1. A method of bonding a surface of a first substrate to a surface of a second substrate employing a low temperature vulcanizing carborane siloxane adhesive composition comprising:
- (a) forming a solution comprising (1) a polycarborane siloxane polymer having vinyl groups attached to the backbone thereof, the concentration of vinyl groups per carborane group ranging from about 3 to 30%, (2) a silane curing agent comprising two terminal --SiH groups, (3) a hydrosilation catalyst comprising a complex of platinum, palladium, or rhodium, and (4) a solvent for said polymer, said curing agent and said catalyst;
- (b) applying said solution to at least one of said surfaces;
- (c) allowing said solvent to evaporate, forming a film of said adhesive on said at least one of said surfaces;
- (d) bringing said surfaces of said substrates into contact; and
- (e) bonding said surfaces of said substrates together by application of heat.
- 2. The method of claim 1 wherein said concentration of said vinyl groups per carbonate group is about 5%.
- 3. The method of claim 1 wherein said catalyst is selected from the group consisting of chloroplatinic acid, tetrakis triphenylphosphine palladium, and rhodium complexes.
- 4. The method of claim 3 wherein said transition metal complexes are selected from the group consisting of platinum divinyltetramethyldisiloxane complex, platinum bistriphenylphosphine ethylene complex, platinum cyclovinylmethylsiloxane complex, and the bis ethene complex of platinum dichloride.
- 5. The method of claim 1 wherein said catalyst is present in an amount to provide about 5 to 75 parts per million of said metal in said polymer.
- 6. The method of claim 1 wherein said curing agent is selected from the group consisting of diphenyl silane, m-carboranebis(2-hydridotetramethyldisiloxane), m-carboranebis(3-hydridohexamethyltrisiloxane), carborane bisdimethyl silane, tetramethyldisiloxane, polymeric methylhydrosiloxanes, and cyclic methylhydrosiloxanes.
- 7. The method of claim 1 wherein the molar ratio of silane groups of said silane curing agent to said polymer is about 85 to 95% of the number of said vinyl groups.
- 8. The method of claim 1 wherein said solvent is selected from the group consisting of (a) single-ring aromatic compounds, (b) halogenated aliphatic compounds, and (c) halogenated single-ring aromatic compounds.
- 9. The method of claim 8 wherein said solvent is selected from the group consisting of chlorobenzene, benzene, toluene, and chloroform.
- 10. The method of claim 1 wherein said bonding is performed at a temperature within the range of about 100.degree. to 140.degree. C.
- 11. The method of claim 1 wherein said surfaces of said substrates are bonded together by application of pressure in addition to application of said heat.
- 12. The method of claim 11 wherein said bonding is performed using an amount of pressure that ranges from about 5 to 50 pounds per square inch or about 351 to 3,515 grams per square centimeter.
- 13. The method of claim 1 wherein said bonding is carried out for a period of time ranging from about 4 to 24 hours.
- 14. The method of claim 1 wherein said surface coated with said film of adhesive is stored for a period of time at a temperature below room temperature prior to bonding said surfaces together.
- 15. The method of claim 14 wherein said surface coated with said film of adhesive is stored at a temperature not exceeding about -10.degree. C.
- 16. The method of claim 1 wherein said first substrate comprises a solar cell and said second substrate comprises a solar cell cover wherein said solution is applied to one surface of said solar cell cover.
- 17. In combination, a substrate having a surface provided with a film of a low temperature vulcanizing carborane siloxane adhesive composition comprising:
- (a) a polycarborane siloxane polymer having vinyl groups attached to the backbone thereof, the concentration of vinyl groups per carborane group ranging from about 3 to 30%;
- (b) a silane curing agent comprising two terminal --SiH groups; and
- (c) a hydrosilation catalyst comprising a complex of platinum, palladium, or rhodium.
- 18. The combination of claim 17 wherein said concentration of vinyl groups is about 5%.
- 19. The combination of claim 17 wherein said catalyst is selected from the group consisting of chloroplatinic acid, tetrakis triphenylphosphine palladium, and rhodium complexes.
- 20. The combination of claim 19 wherein said transition metal complexes are selected from the group consisting of platinum divinyltetramethyldisiloxane complex, platinum bistriphenylphosphine ethylene complex, platinum cyclovinylmethylsiloxane complex, and the bis ethene complex of platinum dichloride.
- 21. The combination of claim 17 wherein said catalyst is present in an amount to provide about 5 to 75 parts per million of said metal in said polymer.
- 22. The combination of claim 17 wherein said curing agent is selected from the group consisting of diphenyl silane, m-carboranebis(2-hydridotetramethyldisiloxane), m-carboranebis(3-hydridohexamethyltrisiloxane), carborane bisdimethyl silane, tetramethyldisiloxane, polymeric methylhydrosiloxanes, and cyclic methylhydrosiloxanes.
- 23. The combination of claim 17 wherein the molar ratio of silane groups of said silane curing agent to said polymer is about 85 to 95% of the number of said vinyl groups.
- 24. The combination of claim 17 wherein said substrate comprises a solar cell or a solar cell cover.
- 25. A method of bonding a surface of a first substrate to a surface of a second substrate employing a low temperature vulcanizing carborane siloxane adhesive composition comprising:
- (a) forming a solution comprising (1) a polycarborane siloxane polymer having vinyl groups attached to the backbone thereof, the concentration of vinyl groups per carborane group ranging from about 3 to 30%, (2) a silane curing agent comprising two terminal --SiH groups, (3) a hydrosilation catalyst comprising a complex of platinum, palladium, or rhodium, and (4) a solvent for said polymer, said curing agent and said catalyst;
- (b) providing a third substrate;
- (c) applying said solution to the surface of said third substrate;
- (d) allowing said solvent to evaporate, forming a film of said adhesive on said surface of said third substrate;
- (e) removing said film from said surface of said third substrate;
- (f) bringing said surfaces of said first and second substrates into contact with opposite sides of said film;
- (g) bonding said surfaces of said substrates together by application of heat.
CROSS-REFERENCE TO RELATED APPLICATIONS
The present application is a continuation-in-part of application Ser. No. 07/895,061, filed Jun. 8, 1992.
Government Interests
This invention was made with United States Government support under Contract No. F33615-86-C-5081 awarded by the Department of the Air Force. The United States Government has certain rights in this invention.
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Ellion et al. |
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Non-Patent Literature Citations (2)
Entry |
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E. Hedaya et al, "D.sub.2 -meta-Carborane-Siloxanes. IV. Synthesis of Linear, High Molecular Weight Polymers", Journal of Polymer Science, Polymer Chemistry Edition, vol. 15, pp. 2229-2238 (1977). |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
895061 |
Jun 1992 |
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