IP Library Granted Patent US 7,592,390
Granted Patent B2
US 7,592,390 · App. 11/388,629 · Granted Sep 22, 2009

Hydrogenated block copolymer compositions

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Quick Facts
Patent No.
US 7,592,390
App. No.
11/388,629
Granted
Sep 22, 2009
Kind
B2
Abstract

The present invention relates to novel compositions comprising (a) anionic block copolymers of mono alkenyl arenes and conjugated dienes, and (b) tailored softening modifiers have a particular polydispersity index that results in a surprising improvement in properties for the composition. Also included are processes for the manufacturing such novel compositions and various end-uses and applications for such compositions.

Claims (79)

1. A block copolymer composition comprising:

(a) 100 parts by weight of a solid selectively hydrogenated block copolymer having the general configuration A-B, A-B-A, A-B-A-B, (A-B) n , (A-B-A) n , (A-B-A) n X, (A-B) n X or mixtures thereof, where n is an integer from 2 to about 30, and X is coupling agent residue and wherein:

i. prior to hydrogenation each A block is a mono alkenyl arene polymer block and each B block is a conjugated diene block having a vinyl content (V 1 ) between 25 weight percent and 85 weight percent;

ii. subsequent to hydrogenation about 0-10% of the arene double bonds have been reduced, and at least about 90% of the conjugated diene double bonds have been reduced;

iii. each A block having a number average molecular weight between about 3,000 and about 60,000 and each B block having a number average molecular weight (MW 1 ) between about 30,000 and about 300,000; and

iv. the total amount of mono alkenyl arene in the hydrogenated block copolymer is about 20 percent weight to about 80 percent weight; and

(b) 5 to 250 parts by weight of a hydrogenated tailored softening modifier which is structurally related to the character of the B block of said selectively hydrogenated block copolymer wherein:

i. said softening modifier contains at least one hydrogenated conjugated diene wherein prior to hydrogenation said modifier has a vinyl content V 2 , such that the ratio of V 2 /V 1 is between 0.8 and 1.2;

ii. subsequent to hydrogenation at least about 90% of the conjugated diene double bonds have been reduced;

iii. the ratio (MW 2 )/(MW 1 ) of the number average molecular weight of said softening modifier (MW 2 ) to the number average molecular weight of said B block (MW 1 ) is 0.01 to 0.3, with a minimum molecular weight (MW 2 ) of 2,000 and a maximum molecular weight (MW 2 ) of 20,000; and

iv. when the polydispersity index (PDI) of said softening modifier is between 1.0 and less than 1.5, the number average molecular weight of said softening modifier is between 2,000 and 7,000, and when the PDI is between 1.5 and 4.0, the number average molecular weight is between 2,000 and 20,000, where the polydispersity index is the ratio of the weight average molecular weight divided by the number average molecular weight;

and

(c) wherein said tailored softening modifier is formed in solution in the presence of a solvent in a second reactor to form a second solution and combined with a first solution prepared in a first reactor having a solvent to form a common solution, wherein said hydrogenated block copolymer is polymerized in said first solution or said common solution, and

(d) the solvent is removed from the common solution subsequent polymerization of the hydrogenated block copolymer, providing an intimate mixture of said selectively hydrogenated block copolymer and said tailored softening modifier.

2. The composition according to claim 1 wherein said mono alkenyl arene for the selectively hydrogenated block copolymer is selected from styrene, alpha-methyl styrene and mixtures thereof and wherein said conjugated diene for the selectively hydrogenated block copolymer and the softening modifier is selected from the group consisting of isoprene, 1,3-butadiene and mixtures thereof.

3. The composition according to claim 2 wherein said conjugated diene is 1,3-butadiene and wherein about 25 to about 80 mol percent of the condensed butadiene units in block B and in the softening modifier have 1,2-configuration prior to hydrogenation.

4. The composition according to claim 3 wherein said selectively hydrogenated block copolymer is selected from the group consisting of (i) block copolymers having an overall structure A-B-A, said block A having a molecular weight of between 5,000 and 45,000, said block B having a molecular weight of between 30,000 and 300,000, and (ii) block copolymers having an overall structure (A-B) n X where n is between 2 and 6, said block A having a molecular weight of between 5,000 and 45,000, said block B having a molecular weight of between 30,000 and 150,000, and wherein said softening modifier has a number average molecular weight of between 2,000 and 7,000 and a polydispersity index of between 1.0 and less than 1.5.

5. The composition according to claim 3 wherein said selectively hydrogenated block copolymer is selected from the group consisting of (i) block copolymers having an overall structure A-B-A, said block A having a molecular weight of between 5,000 and 45,000, said block B having a molecular weight of between 30,000 and 300,000, and (ii) block copolymers having an overall structure (A-B) n X where n is between 2 and 6, said block A having a molecular weight of between 5,000 and 45,000, said block B having a molecular weight of between 30,000 and 150,000, and wherein said softening modifier has a number average molecular weight of between 2,000 and 20,000 and a polydispersity index of between 1.5 and 4.0.

6. The composition according to claim 3 wherein said first solution and second solution are combined after polymerization of both the selectively hydrogenated block copolymer and the tailored softening modifier, and prior to hydrogenation, and said common solution is hydrogenated.

7. The composition according to claim 3 wherein said first solution and second solution are combined after hydrogenation of both the selectively hydrogenated block copolymer and the tailored softening modifier, and prior to finishing.

8. The composition according to claim 3 wherein said second solution is added to said first solution prior to polymerization of said selectively hydrogenated block copolymer.

9. The composition according to claim 3 wherein said second solution is added to said first solution during the polymerization of said selectively hydrogenated block copolymer.

10. A block copolymer composition comprising:

(a) 100 parts by weight of a solid selectively hydrogenated block copolymer having the general configuration A-B, A-B-A, A-B-A-B, (A-B) n , (A-B-A) n , (A-B-A) n X, (A-B) n X or mixtures thereof, where n is an integer from 2 to about 30, and X is coupling agent residue and wherein:

i. prior to hydrogenation each A block is a mono alkenyl arene polymer block and each B block is a polymer block of at least one conjugated diene having a vinyl content (V 1 ) between 25 weight percent and 85 weight percent;

ii. subsequent to hydrogenation about 0-10% of the arene double bonds have been reduced, and at least about 90% of the conjugated diene double bonds have been reduced;

iii. each A block having a peak molecular weight between about 3,000 and about 60,000 and each B block having a peak molecular weight (MW 1 ) between about 30,000 and about 300,000; and

iv. the total amount of mono alkenyl arene in the hydrogenated block copolymer is about 20 percent weight to about 80 percent weight; and

(b) 5 to 250 parts by weight of a hydrogenated tailored softening modifier which is structurally related to the character of the B block of said selectively hydrogenated block copolymer wherein:

i. said softening modifier contains at least one hydrogenated conjugated diene wherein prior to hydrogenation said modifier has a vinyl content V 2 , such that the ratio of V 2 /V 1 is between 0.8 and 1.2;

ii. subsequent to hydrogenation at least about 90% of the conjugated diene double bonds have been reduced;

iii. the ratio (MW 2 )/(MW 1 ) of the number average molecular weight of said softening modifier (MW 2 ) to the number average molecular weight of said B block (MW 1 ) is 0.01 to 0.3, with a minimum molecular weight (MW 2 ) of 2,000 and a maximum molecular weight (MW 2 ) of 20,000; and

iv. when the polydispersity index (PDI) of said softening modifier is between 1.0 and less than 1.5, the number average molecular weight of said softening modifier is between 2,000 and 7,000, and when the PDI is between 1.5 and 4.0, the number average molecular weight is between 2,000 and 20,000, where the polydispersity index is the ratio of the weight average molecular weight divided by the number average molecular weight;

and

(c) wherein said selectively hydrogenated block copolymer is formed in solution in a reactor in the presence of a solvent and said tailored softening modifier is formed in the same solution in the same reactor; and

(d) the solvent is removed from the solution, providing an intimate mixture of said selectively hydrogenated block copolymer and said tailored softening modifier.

11. The composition according to claim 10 wherein said mono alkenyl arene for the selectively hydrogenated block copolymer is selected from styrene, alpha-methyl styrene and mixtures thereof and wherein said conjugated diene for the selectively hydrogenated block copolymer and the softening modifier is selected from the group consisting of isoprene, 1,3-butadiene and mixtures thereof.

12. The composition according to claim 11 wherein said conjugated diene is butadiene, and wherein about 25 to about 80 mol percent of the condensed butadiene units in block B and in the softening modifier have 1,2-configuration prior to hydrogenation.

13. The composition according to claim 12 wherein said selectively hydrogenated block copolymer is selected from the group consisting of (i) block copolymers having an overall structure A-B-A, said block A having a molecular weight of between 5,000 and 45,000, said block B having a molecular weight of between 30,000 and 300,000, and (ii) block copolymers having an overall structure (A-B) n X where n is between 2 and 6, said block A having a molecular weight of between 5,000 and 45,000, said block B having a molecular weight of between 30,000 and 150,000, and wherein said softening modifier has a number average molecular weight of between 2,000 and 7,000 and a polydispersity index of between 1.0 and less than 1.5.

14. The composition according to claim 12 wherein said selectively hydrogenated block copolymer is selected from the group consisting of (i) block copolymers having an overall structure A-B-A, said block A having a molecular weight of between 5,000 and 45,000, said block B having a molecular weight of between 30,000 and 300,000, and (ii) block copolymers having an overall structure (A-B) n X where n is between 2 and 6, said block A having a molecular weight of between 5,000 and 45,000, said block B having a molecular weight of between 30,000 and 150,000, and wherein said softening modifier has a number average molecular weight of between 2,000 and 20,000 and a polydispersity index of between 1.5 and 4.0.

15. The composition according to claim 12 wherein said softening agent is polymerized prior to the polymerization of said selectively hydrogenated block copolymer.

16. The composition according to claim 12 wherein said softening agent is polymerized during the polymerization of the B block of said selectively hydrogenated block copolymer.

17. The composition according to claim 12 wherein said softening agent is polymerized after the polymerization of said selectively hydrogenated block copolymer.

18. A formulated composition comprising the composition of claim 1 and at least one component selected from fillers, reinforcements, polymer extending oils, tackifying resins, lubricants, stabilizers, styrene polymers, antioxidants, styrene/diene block copolymers and polyolefins.

19. An article comprising the composition of claim 18 , wherein said article is formed in a process selected from injection molding, over molding, dipping, extrusion, roto molding, slush molding, fiber spinning, film making or foaming.

20. An article comprising the composition of claim 18 , wherein said article is selected from closures, synthetic corks, cap seals, tubing, food containers, beverage containers, interior automotive parts, window gaskets, oil gels, foamed products, bicomponent fibers, monofilaments, adhesives, cosmetics and medical goods.

21. A block copolymer composition comprising:

(a) 100 parts by weight of a solid selectively hydrogenated block copolymer having the general configuration A-B, A-B-A, A-B-A-B, (A-B) n , (A-B-A) n , (A-B-A) n X, (A-B) n X or mixtures thereof, where n is an integer from 2 to about 30, and X is coupling agent residue and wherein:

i. prior to hydrogenation each A block is a mono alkenyl arene polymer block and each B block is a polymer block of at least one conjugated diene having a vinyl content (V 1 ) between 25 weight percent and 85 weight percent;

ii. subsequent to hydrogenation about 0-10% of the arene double bonds have been reduced, and at least about 90% of the conjugated diene double bonds have been reduced;

iii. each A block having a peak molecular weight between about 3,000 and about 60,000 and each B block having a peak molecular weight (MW 1 ) between about 30,000 and about 300,000; and

iv. the total amount of mono alkenyl arene in the hydrogenated block copolymer is about 20 percent weight to about 80 percent weight; and

(b) 5 to 250 parts by weight of a hydrogenated tailored softening modifier which is structurally related to the character of the B block of said selectively hydrogenated block copolymer wherein:

i. said softening modifier contains at least one hydrogenated conjugated diene wherein prior to hydrogenation said modifier has a vinyl content V 2 , such that the ratio of V 2 /V 1 is between 0.8 and 1.2;

ii. subsequent to hydrogenation at least about 90% of the conjugated diene double bonds have been reduced;

iii. the ratio (MW 2 )/(MW 1 ) of the number average molecular weight of said softening modifier (MW 2 ) to the number average molecular weight of said B block (MW 1 ) is 0.01 to 0.3, with a minimum molecular weight (MW 2 ) of 2,000 and a maximum molecular weight (MW 2 ) of 20,000; and

iv. when the polydispersity index (PDI) of said softening modifier is between 1.0 and less than 1.5, the number average molecular weight of said softening modifier is between 2,000 and 7,000, and when the PDI is between 1.5 and 4.0, the number average molecular weight is between 2,000 and 20,000, where the polydispersity index is the ratio of the weight average molecular weight divided by the number average molecular weight;

(c) wherein said selectively hydrogenated block copolymer is dissolved in the presence of a solvent in a first reactor to form a first solution and said softening modifier is polymerized in solution in the presence of a solvent in a second reactor to form a second solution;

(d) said first and second solutions are combined to form a common solution; and

(e) the solvent is removed from the common solution, providing an intimate mixture of said selectively hydrogenated block copolymer and said tailored softening modifier.

22. The composition according to claim 1 wherein said A block consists of a mixture of styrene and alpha-methyl styrene, wherein the amount of alpha-methyl styrene is from 25 to 50 mol percent based on the total amount of styrene and alpha-methyl styrene in said A block, and said conjugated diene is selected from the group consisting of isoprene, 1,3-butadiene and mixtures thereof.

23. The composition according to claim 10 wherein said A block consists of a mixture of styrene and alpha-methyl styrene, wherein the amount of alpha-methyl styrene is from 25 to 50 mol percent based on the total amount of styrene and alpha-methyl styrene in said A block, and said conjugated diene is selected from the group consisting of isoprene, 1,3-butadiene and mixtures thereof.

24. A block copolymer composition comprising:

(a) 100 parts by weight of a solid selectively hydrogenated block copolymer having the general configuration A-B, A-B-A, A-B-A-B, (A-B) n , (A-B-A) n , (A-B-A) n X, (A-B) n X or mixtures thereof, where n is an integer from 2 to about 30, and X is coupling agent residue and wherein:

i. prior to hydrogenation each A block is a mono alkenyl arene polymer block and each B block is a conjugated diene block having a vinyl content (V 1 ) between 25 weight percent and 85 weight percent;

ii. subsequent to hydrogenation about 0-10% of the arene double bonds have been reduced, and at least about 90% of the conjugated diene double bonds have been reduced;

iii. each A block having a number average molecular weight between about 3,000 and about 60,000 and each B block having a number average molecular weight (MW 1 ) between about 30,000 and about 300,000; and

iv. the total amount of mono alkenyl arene in the hydrogenated block copolymer is about 20 percent weight to about 80 percent weight; and

(b) 5 to 250 parts by weight of an unhydrogenated tailored softening modifier which is structurally related to the character of the B block of said selectively hydrogenated block copolymer wherein:

i. said softening modifier contains at least one unhydrogenated conjugated diene which has a vinyl content V 2 , such that the ratio of V 2 /V 1 is between 0.8 and 1.2;

ii. the ratio (MW 2 )/(MW 1 ) of the number average molecular weight of said softening modifier (MW 2 ) to the number average molecular weight of said B block (MW 1 ) is 0.01 to 0.3, with a minimum molecular weight (MW 2 ) of 2,000 and a maximum molecular weight (MW 2 ) of 20,000; and

iii. when the polydispersity index (PDI) of said softening modifier is between 1.0 and less than 1.5, the number average molecular weight of said softening modifier is between 2,000 and 7,000, and when the PDI is between 1.5 and 4.0, the number average molecular weight is between 2,000 and 20,000, where the polydispersity index is the ratio of the weight average molecular weight divided by the number average molecular weight;

and

(c) wherein said selectively hydrogenated block copolymer is formed in a first solution in the presence of a solvent in a first reactor and said tailored softening modifier is formed in solution in the presence of a solvent in a second reactor to form a second solution;

(d) said first and second solutions are combined to form a common solution; and

(e) the solvent is removed from the common solution, providing an intimate mixture of said selectively hydrogenated block copolymer and said tailored softening modifier.

25. The composition of claim 1 further comprising polypropylene.

26. The composition of claim 10 further comprising polypropylene.

27. The composition of claim 21 further comprising polypropylene.

Assignments (12)
RELEASE OF SECURITY INTEREST IN PATENTS Recorded Jul 24, 2024
From: GOLDMAN SACHS BANK USA, AS COLLATERAL AGENT
To: KRATON CHEMICAL, LLC; KRATON CORPORATION
Reel/Frame 068671/0836 →
CORRECTIVE ASSIGNMENT TO CORRECT THE PATENT NO. 8837224 TO PATENT NO. 7737224 PREVIOUSLY RECORDED AT REEL: 037448 FRAME: 0453. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Jun 11, 2022
From: KRATON POLYMERS U.S. LLC; ARIZONA CHEMICAL COMPANY, LLC
To: BANK OF AMERICA, N.A.
Reel/Frame 060344/0919 →
SECURITY INTEREST Recorded Mar 18, 2022
From: KRATON CHEMICAL, LLC; KRATON POLYMERS LLC; KRATON POLYMERS U.S. LLC
To: GOLDMAN SACHS BANK USA, AS COLLATERAL AGENT
Reel/Frame 059864/0455 →
SECURITY INTEREST Recorded Mar 18, 2022
From: KRATON CHEMICAL, LLC; KRATON POLYMERS LLC; KRATON POLYMERS U.S. LLC
To: GOLDMAN SACHS BANK USA, AS COLLATERAL AGENT
Reel/Frame 059525/0804 →
RELEASE OF SECURITY INTEREST Recorded Mar 16, 2022
From: BANK OF AMERICA, N.A.
To: KRATON POLYMERS U.S. LLC; KRATON CHEMICAL, LLC F/K/A ARIZONA CHEMICAL COMPANY, LLC; KRATON POLYMERS LLC; KRATON CORPORATION; KRATON CHEMICAL B.V.
Reel/Frame 059910/0017 →
RELEASE OF SECURITY INTEREST Recorded Mar 15, 2022
From: CREDIT SUISSE AG, CAYMAN ISLANDS BRANCH, AS COLLATERAL AGENT
To: KRATON POLYMERS U.S. LLC
Reel/Frame 059366/0611 →
SECURITY INTEREST Recorded Apr 16, 2020
From: KRATON POLYMERS U.S. LLC; KRATON CHEMICAL, LLC F/K/A ARIZONA CHEMICAL COMPANY, LLC; KRATON POLYMERS LLC; KRATON CORPORATION
To: BANK OF AMERICA, N.A.
Reel/Frame 053020/0101 →
PATENT SECURITY AGREEMENT Recorded Jan 7, 2016
From: KRATON POLYMERS U.S. LLC
To: CREDIT SUISSE AG, CAYMAN ISLANDS BRANCH, AS COLLATERAL AGENT
Reel/Frame 037457/0843 →
CORRECTIVE ASSIGNMENT TO CORRECT THE PATENT NUMBER 8837224 TO PATENT NUMBER 7737224 PREVIOUSLY RECORDED AT REEL: 037448 FRAME: 0453. ASSIGNOR(S) HEREBY CONFIRMS THE SECURITY INTEREST. Recorded Jan 6, 2016
From: KRATON POLYMERS U.S. LLC; ARIZONA CHEMICAL COMPANY, LLC
To: BANK OF AMERICA, N.A.
Reel/Frame 037448/0453 →
RELEASE OF SECURITY INTEREST Recorded Mar 28, 2013
From: BANK OF AMERICA, N.A.
To: KRATON POLYMERS U.S. LLC
Reel/Frame 030108/0288 →
NOTICE OF GRANT OF SECURITY INTEREST IN PATENTS Recorded Mar 4, 2011
From: KRATON POLYMERS U.S. LLC
To: BANK OF AMERICA N.A., AS COLLATERAL AGENT
Reel/Frame 025899/0176 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 5, 2009
From: BENING, ROBERT C.; DE GROOT, HENK; HANDLIN, DALE L., JR; MUYLDERMANS, XAVIER; WILLIS, CARL L.; WRIGHT, KATHRYN J.
To: KRATON POLYMERS U.S. LLC
Reel/Frame 023054/0245 →