Claims
- 1. A solid star-branched block copolymer wherein each branch comprises at least two ( 2) alternating blocks bonded to each other, the free end of each branch being a block of at least one polymerized hydrocarbon conjugated diene (I) monomer containing at least five (5) carbon atoms, with at least one carbon atom of each pair of residual double-bonded carbon atoms of polymerized diene (I) units being additionally single-bonded to two carbon atoms, or a copolymer of at least one diene (I) and at least one aryl-substituted olefin, the blocks adjacent to said polymerized diene (I)-containing blocks constituting at least 50 wt. % of said copolymer and being a polymer of at least one hydrocarbon conjugated diene (B), which is different from diene (I) and contains at least four (4) carbon atoms, with each residual double-bonded carbon atom of polymerized diene (B) units being additionally bonded to a hydrogen atom.
- 2. The copolymer of claim 1 wherein polymerized diene (B)-containing blocks contain at least about 25 wt. % of 1,2-units if they are a polymer of predominantly 1,3-butadiene, and said block copolymer is selectively hydrogenated so that the ethylenic unsaturation in said polymerized conjugated diene (B) units is substantially completely hydrogenated, while said polymerized conjugated diene (I) units retain sufficient amount of their ethylenic unsaturation to vulcanize said copolymer.
- 3. The copolymer of claim 2 wherein, after the hydrogenation reaction, the Iodine Number of the (I) polymer or copolymer blocks is about 10 to about 100% of the Iodine Number prior to the hydrogenation reaction.
- 4. The copolymer of claim 3 wherein, after the hydrogenation reaction, the Iodine Number of the (I) polymer or copolymer blocks is about 25 to about 100% of the Iodine Number prior to the hydrogenation reaction.
- 5. The copolymer of claim 4 wherein, after the hydrogenation reaction, the Iodine Number of the (I) polymer or copolymer blocks is about 50 to about 100% of the Iodine Number prior to the hydrogenation reaction.
- 6. The copolymer of claim 2 wherein, after the hydrogenation reaction, the Iodine Number of the (B) polymer blocks is about 0 to about 10% of the Iodine Number prior to the hydrogenation reaction.
- 7. The copolymer of claim 2 wherein diene (I) is isoprene, 2,3-dimethyl-butadiene, 2-methyl-1,3-pentadiene, myrcene, 2-methyl-1,3-pentadiene, 3-methyl-1,3-pentadiene, 4-methyl-1,3-pentadiene, 2-phenyl-1,3-butadiene, 2-phenyl-1,3-pentadiene, 3-phenyl-1,3-pentadiene, 2,3-dimethyl-1,3-pentadiene, 4-methyl-1,3-pentadiene, 2-hexyl-1,3-butadiene, 3-methyl-1,3-hexadiene, 2-benzyl-1,3-butadiene, 2-p-tolyl-1,3-butadiene or mixtures thereof.
- 8. The copolymer of claim 7 wherein diene (I) is isoprene, myrcene or 2-methyl-1,3-pentadiene.
- 9. The copolymer of claim 8 wherein diene (I) is isoprene.
- 10. The copolymer of claim 2 wherein diene (B) is 1,3-butadiene, 1,3-pentadiene, 2,4-hexadiene, 1,3-hexadiene, 1,3-heptadiene, 2,4-heptadiene, 1,3-octadiene, 2,4-octadiene, 3,5-octadiene, 1,3-nonadiene, 2,4-nonadiene, 3,5-nonadiene, 1,3-decadiene, 2,4-decadiene, 3,5-decadiene or mixtures thereof.
- 11. The copolymer of claim 10 wherein diene (B) is 1,3-butadiene, 1,3-pentadiene, 2,4-hexadiene or 1,3 hexadiene.
- 12. The copolymer of claim 11 wherein diene (B) is 1,3-butadiene.
- 13. The copolymer of claim 12 wherein each of the (B) polymer blocks, prior to the selective hydrogenation reaction, has at least about 25% wt. of the 1,2-units.
- 14. The copolymer of claim 13, wherein each of the (B) polymer blocks, prior to the selective hydrogenation reaction, has about 30 to about 90% wt. of the 1,2-units.
- 15. The copolymer of claim 14 wherein each of the (B) polymer blocks, prior to the selective hydrogenation reaction, has about 35 to about 65% wt. of the 1,2-units.
- 16. The copolymer of claim 2 wherein the blocks at said free end of each branch is a copolymer of said diene (I) and at least one aryl-substituted olefin selected from the group of styrene, alpha-methyl styrene, and 1,1-diphenylethylene.
- 17. A solid star-branched block copolymer in which each branch comprises at least two alternating blocks:
- I-B-
- wherein the free end is an I block which is a polymer comprising at least one polymerized conjugated diene having at least five (5) carbon atoms and the following formula ##STR8## wherein R.sup.1 -R.sup.6 are each hydrogen or a hydrocarbyl group, provided that at least one of R.sup.1 -R.sup.6 is a hydrocarbyl group, and further provided that the structure of the residual double bond in the polymerized I block has the following formula ##STR9## wherein R.sup.I, R.sup.II, R.sup.III and R.sup.IV are each hydrogen or a hydrocarbyl group, provided that either both R.sup.I and R.sup.II are hydrocarbyl groups or both R.sup.II and R.sup.IV are hydrocarbyl groups;
- and the B block is an interior block which a polymer of at least one polymerized conjugated diene, different from the polymerized diene of the I block, having at least four (4) carbon atoms and the following formula ##STR10## wherein R.sup.7 -R.sup.12 are each hydrogen or a hydrocarbyl group, provided that the structure of the residual double bond in the polymerized B block has the following formula ##STR11## wherein R.sup.a, R.sup.b, R.sup.c and R.sup.d are each hydrogen (H) or a hydrocarbyl group, provided that one of R.sup.a or R.sup.b is hydrogen, one of R.sup.c or R.sup.d is hydrogen and at least one of R.sup.a, R.sup.b, R.sup.c or R.sup.d is a hydrocarbyl group, said B blocks constituting at least about 50 wt. % of said copolymer.
- 18. The polymer of claim 17 wherein said B block contains at least about 25 wt. % of 1,2-units if it is a polymer of predominantly 1,3-butadiene, and said polymer is selectively hydrogenated so that the ethylenic unsaturation in each of the B blocks is substantially completely hydrogenated, while each of the I blocks retains a sufficient amount of its original ethylenic unsaturation to vulcanize said copolymer.
- 19. A solid star-branched block copolymer in which each branch comprises at least two alternating blocks:
- A-D-
- wherein the free end is an A block which is a polymer comprising at least one aryl-substituted olefin and at least one conjugated diene having at least five (5) carbon atoms and the following formula ##STR12## wherein R.sup.1 -R.sup.6 are each hydrogen or a hydrocarbyl group, provided that at least one of R.sup.1 -R.sup.6 is a hydrocarbyl group, and further provided that the structure of the residual double bond in the I block has the following formula ##STR13## wherein R.sup.I, R.sup.II, R.sup.III and R.sup.IV are each hydrogen or a hydrocarbyl group, provided that either both R.sup.I and R.sup.II are hydrocarbyl groups or both R.sup.III and R.sup.IV are hydrocarbyl groups;
- and the D block is an interior block which a polymer of at least one polymerized conjugated diene, different from the polymerized diene of the A block, having at least four (4) carbon atoms and the following formula ##STR14## wherein R.sup.7 -R.sup.12 are each hydrogen or a hydrocarbyl group, provided that the structure of the residual double bond in the B block has the following formula ##STR15## wherein R.sup.a, R.sup.b, R.sup.c and R.sup.d are each hydrogen (H) or a hydrocarbyl group, provided that one of R.sup.a or R.sup.b is hydrogen, one of R.sup.c or R.sup.d is hydrogen and at least one of R.sup.a, R.sup.b, R.sup.c or R.sup.d is a hydrocarbyl group, said D blocks constituting at least about 50 wt. % of said star-branched block polymer.
- 20. The polymer of claim 19 wherein said D block contains at least about 25 wt. % of 1,2- units if it is a polymer of predominantly 1,3-butadiene, and said polymer is selectively hydrogenated so that the ethylenic unsaturation in each of the blocks D is substantially completely hydrogenated, while each of the A blocks retains a sufficient amount of its original ethylenic unsaturation to vulcanize said copolymer.
- 21. A solid star-branched block copolymer in which each branch comprises at least three alternating blocks:
- I-D-A
- wherein the free end is either the I or the A block, and the I block is a polymer of least one conjugated diene having at least five (5) carbon atoms and the following formula ##STR16## wherein R.sup.1 -R.sup.6 are each hydrogen or a hydrocarbyl group, provided that at least one of R.sup.1 -R.sup.6 is a hydrocarbyl group, and further provided that the structure of the residual double bond in the I block has the following formula ##STR17## wherein R.sup.I, R.sup.II, R.sup.III and R.sup.IV are each hydrogen or a hydrocarbyl group, provided that either both R.sup.I and R.sup.II are hydrocarbyl groups or both R.sup.III and R.sup.IV are hydrocarbyl groups;
- and the D block is an interior block which a polymer of at least one polymerized conjugated diene, different from the polymerized diene of the I block, having at least four (4) carbon atoms and the following formula ##STR18## wherein R.sup.7 -R.sup.12 are each hydrogen or a hydrocarbyl group, provided that the structure of the residual double bond in the B block has the following formula ##STR19## wherein R.sup.a, R.sup.b, R.sup.c and R.sup.d are each hydrogen (H) or a hydrocarbyl group, provided that one of R.sup.a or R.sup.b is hydrogen, one of R.sup.c or R.sup.d is hydrogen and at least one of R.sup.a, R.sup.b, R.sup.c or R.sup.d is a hydrocarbyl group, said D blocks constituting at least about 50 wt. % of said star-branched block polymer.
- the A block is a copolymer of at least one aryl-substituted olefin and at least one conjugated diene having at least five (5) carbon atoms and the following formula ##STR20## wherein R.sup.1 -R.sup.6 are each hydrogen or a hydrocarbyl group, provided that at least one of R.sup.1 -R.sup.6 is a hydrocarbyl group, and further provided that the structure of the residual double bond in the A block has the following formula ##STR21## wherein R.sup.I, R.sup.II, R.sup.III and R.sup.IV are each hydrogen or a hydrocarbyl group, provided that either both R.sup.I and R.sup.II are hydrocarbyl groups or both R.sup.III and R.sup.IV are hydrocarbyl groups, said D blocks consituting at least 50 wt. % of said star-branched block polymer.
- 22. The polymer of claim 21 wherein the polymerized diene units in said D block contain at least about 25 wt. % of 1,2-units if it is a polymer of predominantly 1,3-butadiene, and said star-branched polymer is selectively hydrogenated, so that the ethylenic unsaturation in each of the D blocks is substantially completely hydrogenated, while each of the I and A blocks retains a sufficient amount of its original ethylenic unsaturation to vulcanize said copolymer.
CROSS-REFERENCE TO RELATED APPLICATIONS
This application is a continuation-in-part of application Ser. No. 08/443,743, filed May 18, 1995, now abandoned, which is a divisional of application Ser. No. 08/361,072, filed Dec. 21, 1994 and now U.S. Pat. No. 5,457,161, which is a divisional of application Ser. No. 08/225,681, filed Apr. 11, 1994 and now U.S. Pat. No. 5,376,722, which is a divisional of application Ser. No. 08/029,507, filed Mar. 11, 1993 and now U.S. Pat. No. 5,306,780, which is a divisional of application Ser. No. 07/952,127, filed Sep. 28, 1992 and now U.S. Pat. No. 5,268,427, which is a divisional of application Ser. No. 07/466,233, filed Jan. 16, 1990 and now U.S. Pat. No. 5,187,236. Of the foregoing patents, U.S. Pat. No. 5,306,780 claims solid star-branched block copolymers.
This application is also related by subject matter to application Ser. No. 07/466,135, Filed Jan. 16, 1990, now U.S. Pat. No. 5,149,895 and to application Ser. No. 07/466,136, filed Jan. 16, 1990.
The entire contents of application Ser. No. 07/466,136 are incorporated herein by reference.
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Divisions (5)
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361072 |
Dec 1994 |
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225681 |
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952127 |
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466233 |
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Continuation in Parts (1)
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