IP Library Granted Patent US 7,056,976
Granted Patent B2
US 7,056,976 · App. 10/626,983 · Granted Jun 6, 2006

Pultrusion systems and process

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Quick Facts
Patent No.
US 7,056,976
App. No.
10/626,983
Granted
Jun 6, 2006
Kind
B2
Abstract

Polyisocyanate-based reaction systems, a pultrusion process of those systems to produce reinforced matrix composites, and to composites produced thereby. The polyisocyanate-based systems are mixing activated reaction systems that include a polyol composition, an optional chain extender or crosslinker, and a polyisocyanate. The polyisocyanate-based systems exhibit improved processing characteristics in the manufacture of fiber reinforced thermoset composites via reactive pultrusion.

Claims (56)

1. A reaction system for the preparation of a fiber reinforced composite according to the pultrusion process comprising:

(a) a reaction mixture comprising an isocyanate reactive composition, a polyisocyanate composition, and optionally one or more additives; and

(b) a continuous fiber reinforcing material,

wherein the reaction mixture initially contains both free isocyanate groups and flee alcoholic —OH groups, has a gel time greater than 768 seconds at 25° C., and a gel time less than 120 seconds at 175° C.; and

wherein the polyisocyanate composition comprises one or more polyisocyanates of the MDI series, has a number averaged functionality of isocyanate groups in the range of from 2.3 to 2.9, and a free isocyanate group content in the range of from 10% by weight to 33.6% by weight.

2. A reaction system for the preparation of a fiber reinforced composite according to the pultrusion process comprising:

(a) a reaction mixture comprising an isocyanate reactive composition, a polyisocyanate composition, and optionally one or more additives; and

(b) a continuous fiber reinforcing material,

wherein the reaction mixture initially contains both free isocyanate groups and free alcoholic —OH groups, has a gel time greater than 768 seconds at 25° C., and a gel time less than 120 seconds at 175° C.; and

wherein the isocyanate reactive composition comprises a mixture of (i) from greater than 0 up to 20% by weight of at least one polyol having a number averaged molecular weight of 1500 or greater and a number averaged functionality of 2 to 4, (ii) 60 to 100% weight of at least one polyol having a number averaged molecular weight between 250 and 750 and a number averaged functionality of 3 to 4, and (iii) 2 to about 30% by weight of at least one polyol having a number averaged functionality of 2 to 3 and a number averaged molecular weight of less than 200; wherein the weights of (i)+(ii)+(iii) total 100% of the isocyanate reactive composition.

3. A reaction system for the preparation of a fiber reinforced composite according to the pultrusion process comprising:

(a) a reaction mixture comprising an isocyanate reactive composition, a polyisocyanate composition, and optionally one or more additives; and

(b) a continuous fiber reinforcing material,

wherein the reaction mixture initially contains both free isocyanate groups and free alcoholic —OH groups, has a gel time greater than 768 seconds at 25° C., and a gel time less than 120 seconds at 175° C.; and

wherein the isocyanate reactive composition comprises a mixture of (I) 60 to 100% weight of at least one polyol having a number averaged molecular weight between 250 and 750 and a number averaged functionality of 3 to 4, and (II) 2 to about 30% by weight of a least one polyol having a number averaged functionality of 2 to 3 and a number averaged molecular weight of less than 200; wherein the weights of (I)+(II) total 100% of the isocyanate reactive composition.

4. A reaction system for the preparation of a fiber reinforced composite according to the pultrusion process comprising:

(a) a reaction mixture comprising an isocyanate reactive composition, a polyisocyanate composition, and optionally one or more additives; and

(b) a continuous fiber reinforcing material,

wherein the reaction mixture initially contains both free isocyanate groups and free alcoholic —OH groups, has a gel time greater than 768 seconds at 25° C., and a gel time less than 120 seconds at 175° C.; and

wherein the isocyanate reactive composition comprises a total of at least 10% by weight, relative to the total weight of the isocyanate reactive composition, of at least one hydrophobic polyol selected from the group consisting of hydrocarbon backbone polyols of number averaged molecular weight greater than 500, fatty ester polyols of number averaged molecular weight greater than 500, and fatty polyester polyols of number averaged molecular weight greater than 500.

5. The reaction system according to claim 4 , wherein the at least one hydrophobic polyol is a fatty polyester polyol having a number averaged functionality of organically bound isocyanate-reactive hydroxyl groups of greater than 2.

6. The reaction system according to claim 5 , wherein the additive comprises an organobismuth catalyst, an organozinc catalysts, or mixtures thereof.

7. The reaction system according to claim 5 , wherein the additive comprises at least one organobismuth catalyst and at least one organozinc catalyst.

8. The reaction system according to claim 5 , wherein the fatty polyester polyol is castor oil.

9. A reaction system for the preparation of a fiber reinforced composite according to the pultrusion process comprising:

(a) a reaction mixture comprising an isocyanate reactive composition, a polyisocyanate composition, and optionally one or more additives; and

(b) a continuous fiber reinforcing material,

wherein the reaction mixture initially contains both free isocyanate groups and free alcoholic —OH groups, has a gel time greater than 768 seconds at 25° C., and a gel time less than 120 seconds at 175° C.; and

wherein the isocyanate reactive composition comprises castor oil and at least one other polyol.

10. A reaction system for the preparation of a fiber reinforced composite according to the pultrusion process comprising:

(a) a reaction mixture comprising an isocyanate reactive composition, a polyisocyanate composition, and optionally one or more additives; and

(b) a continuous fiber reinforcing material,

wherein the reaction mixture initially contains both free isocyanate groups and free alcoholic —OH groups, has a gel time greater than 768 seconds at 25° C., and a gel time less than 120 seconds at 175° C.; and

wherein the additive comprises an organobismuth catalyst, an organozinc catalysts, or mixtures thereof.

11. A reaction system for the preparation of a fiber reinforced composite according to the pultrusion process comprising:

(a) a reaction mixture comprising an isocyanate reactive composition, a polyisocyanate composition, and optionally one or more additives; and

(b) a continuous fiber reinforcing material,

wherein the reaction mixture initially contains both free isocyanate groups and free alcoholic —OH groups, has a gel time greater than 768 seconds at 25° C., and a gel time less than 120 seconds at 175° C.; and

wherein the additive comprises at least one organobismuth catalyst and at least one organozinc catalyst.

12. The reaction system according to claim 10 , wherein the isocyanate reactive composition comprises a total of at least 10% by weight, relative to the total weight of the isocyanate reactive composition, of at least one hydrophobic polyol selected from the group consisting of hydrocarbon backbone polyols of number averaged molecular weight greater than 500, fatty ester polyols of number averaged molecular weight greater than 500, and fatty polyester polyols of number averaged molecular weight greater than 500.

13. The reaction system according to claim 11 , wherein the isocyanate reactive composition comprises a total of at least 10% by weight, relative to the total weight of the isocyanate reactive composition, of at least one hydrophobic polyol selected from the group consisting of hydrocarbon backbone polyols of number averaged molecular weight greater than 500, fatty ester polyols of number averaged molecular weight greater than 500, and fatty polyester polyols of number averaged molecular weight greater than 500.

14. A reaction system for the preparation of a fiber reinforced composite according to the pultrusion process comprising:

(a) a reaction mixture comprising an isocyanate reactive composition, a polyisocyanate composition, and optionally one or more additives; and

(b) a continuous fiber reinforcing material,

wherein the reaction mixture initially contains both free isocyanate groups and free alcoholic —OH groups, has a gel time greater than 768 seconds at 25° C., and a gel time less than 120 seconds at 175° C.; and

wherein the polyisocyanate composition comprises a total of at least 5% by weight, relative to the total weight of the polyisocyanate composition, of at least one isocyanate terminated prepolymer formed from a hydrophobic polyol selected from the group consisting of hydrocarbon backbone polyols of number averaged molecular weight greater than 500, fatty ester polyols of number averaged molecular weight greater than 500, and fatty polyester polyols of number averaged molecular weight greater than 500.

15. A reaction system for the preparation of a fiber reinforced composite according to the pultrusion process comprising:

(a) a reaction mixture comprising an isocyanate reactive composition, a polyisocyanate composition, and optionally one or more additives; and

(b) a continuous fiber reinforcing material,

wherein the reaction mixture initially contains both free isocyanate groups and free alcoholic —OH groups, has a gel time greater than 768 seconds at 25° C., and a gel time less than 120 seconds at 175° C.; and

wherein the polyisocyanate composition comprises an isocyanate terminated prepolymer formed from a fatty polyester polyol having a number averaged functionality of organically bound isocyanate-reactive hydroxyl groups of greater than 2.

16. A reaction system for the preparation of a fiber reinforced composite according to the pultrusion process comprising:

(a) a reaction mixture comprising an isocyanate reactive composition, a polyisocyanate composition, and optionally one or more additives; and

(b) a continuous fiber reinforcing material,

wherein the reaction mixture initially contains both free isocyanate groups and free alcoholic —OH groups, has a gel time greater than 768 seconds at 25° C., and a gel time less than 120 seconds at 175° C.; and

wherein the polyisocyanate composition comprises an isocyanate terminated prepolymer formed from castor oil.

Assignments (5)
TERMINATION AND RELEASE OF SECURITY INTEREST IN UNITED STATES TRADEMARKS AND PATENTS Recorded Jun 13, 2018
From: JPMORGAN CHASE BANK, N.A.
To: HUNTSMAN INTERNATIONAL LLC
Reel/Frame 046355/0243 →
CORRECTIVE ASSIGNMENT TO CORRECT THE CHANGE NATURE OF CONVEYANCE FROM ASSIGNMENT TO SECURITY AGREEMENT PREVIOUSLY RECORDED ON REEL 025855 FRAME 0783. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Jun 28, 2011
From: DEUTSCHE BANK TRUST AG NEW YORK BRANCH, AS RESIGNING ADMINISTRATIVE AGENT AND COLLATERAL AGENT
To: JPMORGAN CHASE BANK N.A., AS COLLATERAL AGENT
Reel/Frame 026515/0617 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 28, 2011
From: DEUTSCHE BANK TRUST AG NEW YORK BRANCH, AS RESIGNING ADMINISTRATIVE AGENT AND COLLATERAL AGENT
To: JPMORGAN CHASE BANK, N.A., AS COLLATERAL AGENT
Reel/Frame 025855/0783 →
SECURITY INTEREST Recorded Nov 21, 2005
From: HUNTSMAN INTERNATIONAL LLC
To: DEUTSCHE BANK AG NEW YORK BRANCH, AS AGENT
Reel/Frame 021158/0479 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 15, 2004
From: JOSHI, RAVI R.; CHEOLAS, EVAN H.
To: HUNTSMAN INTERNATIONAL LLC
Reel/Frame 014886/0492 →