Claims
- 1. A composition consisting essentially of:
- a silicone prepolymer having a plurality of norbornenyl groups of the formula: ##STR14## bound to silicon atoms of a first polyorganosiloxane residue, where R is H or methyl, R.sup.1 is a direct bond or --C(.dbd.O)O-- and R.sup.4 is ethylene, ethenylene, propylene or propenylene;
- a silicone prepolymer having a plurality of hydride groups bound to silicon atoms of a second polyorganosiloxane residue, said first and second polyorganosiloxane residues being different and said silicone prepolymers being present in amounts to provide an equivalent ratio of between 2:1 and 1:2 norbornene to silicon hydride groups; and
- an effective amount for cure initiation of a hydrosilation catalyst.
- 2. A composition as in claim 1 wherein the hydrosilation catalyst is a platinum based catalyst and is present at a level of between 10 and 500 ppm Pt.
- 3. A composition as in claim 1 wherein the norbornene functional silicone prepolymer is substantially free of groups of the formula: ##STR15## bound to silicon atoms thereof where R and R.sup.1 are as previously described and R.sup.2 is vinyl, ethynyl, allyl or propargyl.
- 4. A composition as in claim 1 wherein the SiH functional prepolymer b) includes more than two SiH groups per molecule.
- 5. A polymer produced by curing a composition as in claim 1.
- 6. A composition curable to a crosslinked polyorganosiloxane the composition comprising:
- a) a silicone prepolymer having a plurality of norbornene functional groups of the formula: ##STR16## bound to silicone atoms thereof, where R is H or methyl, R.sup.1 is a direct bond or --C(.dbd.O)O-- and R.sup.4 is ethylene, ethenylene, propylene or propenylene,
- b) a coreactive SiH functional silicone prepolymer, said silicone polymers (a) and (b) being present in an equivalent ratio of between 2:1 and 1:2 norbornene to silicon hydride groups, and
- c) an effective amount for initiating cure of a hydrosilation cure catalyst, the total reactive functionality of the composition being greater than 4.
- 7. A composition as in claim 6 wherein the hydrosilation catalyst is a platinum based catalyst and is present at a level of between 10 and 500 ppm Pt.
- 8. A polymer produced by curing a composition as in claim 7.
- 9. A composition as in claim 6 wherein the polyorganosiloxane prepolymers (a) and (b) comprise different organosiloxane backbones.
- 10. A composition as in claim 6 wherein the norbornene functional silicone prepolymer is substantially free of groups of the formula: ##STR17## bound to silicon atoms thereof where R and R.sup.1 are as previously described and R.sup.2 is vinyl, ethynyl, allyl or propargyl.
- 11. A composition as in claim 6 wherein the SiH functional prepolymer (b) includes more than two SiH groups per molecule.
- 12. A composition curable to a crosslinked polyorganosiloxane the composition comprising:
- a) a silicone prepolymer having a plurality of norbornene functional groups of the formula: ##STR18## bound to silicone atoms thereof, where R is H or methyl, R.sup.1 is a direct bond or --C(.dbd.O)O-- and R.sup.4 is ethylene, ethenylene, propylene or propenylene, said norbornene functional prepolymer being substantially free of groups of the formula: ##STR19## bound to silicon atoms thereof where R and R.sup.1 are as previously described and R.sup.2 is vinyl, ethynyl, allyl or propargyl,
- b) a coreactive SiH functional silicone prepolymer, said silicone polymers (a) and (b) being present in an equivalent ratio of between 2:1 and 1:2 norbornene to silicon hydride groups, and
- c) an effective amount for initiating cure of a hydrosilation cure catalyst.
- 13. A composition as in claim 12 wherein the SiH functional prepolymer b) includes more than two SiH groups per molecule.
Parent Case Info
This application is a division of Ser. No. 07/315,431, filed Feb. 24, 1989, now U.S. Pat. No. 5,034,490, which is a continuation-in-part of application Ser. No. 099,676, filed Sept. 21, 1987, now U.S. Pat. No. 4,808,638, as a continuation-in-part of Ser. No. 917,962, filed Oct. 14, 1986, now abandoned.
US Referenced Citations (20)
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EPX |
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Non-Patent Literature Citations (1)
Entry |
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Divisions (1)
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Parent |
315431 |
Feb 1989 |
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Continuation in Parts (2)
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99676 |
Sep 1987 |
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Parent |
917962 |
Oct 1986 |
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