Claims
- 1. A spoolable composite tube, comprising:
an inner liner; and a composite layer enclosing said liner, wherein said composite layer comprises fibers embedded in a catalytically cured matrix.
- 2. The spoolable composite tube of claim 1, wherein said catalytically cured matrix is a polymer comprising ether moieties in a backbone chain of said polymer.
- 3. The spoolable composite tube of claim 1, wherein said catalytically cured matrix is a catalytically cured thermoset resin.
- 4. The spoolable composite tube of claim 3, wherein said catalytically cured thermoset resin is a catalytically cured epoxy resin.
- 5. The spoolable composite tube of claim 1, wherein said fibers may be independently selected from the group consisting of glass and carbon.
- 6. The spoolable composite tube of claim 1, wherein said composite layer comprises a first ply and a second ply, wherein said first ply comprises a first set of fibers and said second ply comprises a second set of fibers, wherein said first set and said second set are substantially different.
- 7. The spoolable composite tube of claim 6, wherein said first set of fibers are glass and said second set of fibers are carbon.
- 8. The spoolable composite tube of claim 1, wherein said inner liner is substantially fluid impervious.
- 9. The spoolable composite tube of claim 3, wherein said catalytically cured thermoset resin is a metal complex cured thermoset resin, wherein said metal complex is selected from formulas MLxBy, M[AI]xBz, and MLxBy[AI]z; and wherein
M is a metal; L is chelate forming ligand; AI is an acid ion of an inorganic acid; B is a Lewis base; x is a number from 1 to about 8; y is a number from 1 to about 8; and z is a number from 1 to about 8.
- 10. The spoolable composite tube of claim 9, wherein said metal is selected from the group consisting of cobalt, nickel, iron, zinc, and manganese.
- 11. The spoolable composite tube of claim 9, wherein said Lewis base is selected from the group consisting of pyridines, imidazoles, tetrahydrofuran, alcohols, ketones, thioethers and mercaptans.
- 12. The spoolable composite tube of claim 1, wherein said catalytically cured matrix has a tensile modulus of elasticity of at least about 400 kpsi.
- 13. The spoolable composite tube of claim 1, wherein said catalytically cured matrix has a glass transition temperature of at least about 350° F.
- 14. The spoolable composite tube of claim 1, wherein said catalytically cured matrix further comprises a toughening agent.
- 15. The spoolable composite tube of claim 14, wherein said catalytically cured matrix further comprises one or more of the group selected from UV stabilizers, flame retardants, antioxidants, thixotropic agents, stabilizing agents, pigments, and binding agents.
- 16. A method for making a spoolable composite tube, comprising:
providing a tubular liner, and forming a composite layer on said liner by:
applying fibers on said liner; applying a thermosetting polymer comprising a catalytic agent on said liner; and curing said composite layer.
- 17. The method of claim 16, wherein said thermosetting polymer is an epoxy resin.
- 18. The method of claim 17, wherein said epoxy resin comprises bisphenol A.
- 19. The method of claim 16, wherein said catalytic agent is a metal complex is selected from formulas MLxBy, M[AI]xBz and MLxBy[AI]z; and wherein
M is a metal; L is chelate forming ligand; AI is an acid ion of an inorganic acid; B is a Lewis base; x is a number from 1 to about 8; y is a number from 1 to about 8; and z is a number from 1 to about 8.
- 20. The method of claim 19, wherein said metal is selected from the group consisting of cobalt, nickel, iron, zinc, and manganese.
- 21. The method of claim 19, wherein said Lewis base is selected from the group consisting of pyridines, imidazoles, tetrahydrofuran, alcohols, ketones, thioethers and mercaptans.
- 22. The method of claim 17, wherein said catalytic agent is between about 0.005 and about 0.5 parts by weight of said epoxy resin.
- 23. The method of claim 22, wherein said catalytic agent is between about 0.01 and about 0.05 parts by weight of said epoxy resin.
- 24. The method of claim 16, wherein said catalytic agent is applied below a polymerization initiation temperature of said polymer.
- 25. The method of claim 24, wherein said curing comprises heating said tube at temperature of above about 50° C.
- 26. The method of claim 24, wherein said curing comprises heating said tube at a temperature of above 100° C.
- 27. The method of claim 16, wherein said thermoset polymer further comprises a toughening agent.
- 28. A spoolable composite tube, comprising:
an inner liner; and a composite layer enclosing said liner, wherein said composite layer comprises a polymer comprising a plurality of ether moietes in the backbone chain of said polymer.
RELATED APPLICATION INFORMATION
[0001] This application claims the benefit of priority to Provisional Patent Application 60/337,242, filed Nov. 5, 2001, which is hereby incorporated by reference in its entirety.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60337242 |
Nov 2001 |
US |