IP Library › Granted Patent US 8,171,711
Granted Patent B2
US 8,171,711 · App. 11/884,872 · Granted May 8, 2012

Hybrid carbon fiber spun yarn and hybrid carbon fiber spun yarn fabric using the same

Assignee: Kureha Corporation
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 8,171,711
App. No.
11/884,872
Granted
May 8, 2012
Kind
B2
Abstract

A hybrid carbon fiber spun yarn having a core region with carbon fibers as a main component, and a surrounding region with carbon fibers as a main component and covers an outer peripheral surface of the core region. 20% by mass or more of fibers forming the core region are long carbon fibers having a fiber length of 500 mm or longer. 80% by mass or more of fibers forming the surrounding region are short carbon fibers having a fiber length of less than 500 mm. A mass ratio between the long carbon fibers and the short carbon fibers (long carbon fibers:short carbon fibers) is in a range of 20:80 to 80:20.

Claims (23)

1. A hybrid carbon fiber spun yarn comprising a core region which comprises carbon fibers as a main component, and a surrounding region which comprises carbon fibers as a main component and covers an outer peripheral surface of the core region;

wherein 20% by mass or more of fibers forming the core region are long carbon fibers having a fiber length of 500 mm or longer,

80% by mass or more of fibers forming the surrounding region are short carbon fibers having a fiber length of less than 500 mm, and

a mass ratio between the long carbon fibers and the short carbon fibers (long carbon fibers:short carbon fibers) is in a range of 20:80 to 80:20.

2. The hybrid carbon fiber spun yarn according to claim 1 , wherein the long carbon fibers are at least one kind of carbon fibers selected from the group consisting of pitch-based anisotropic carbon fibers, polyacrylonitrile-based carbon fibers, and rayon-based carbon fibers.

3. The hybrid carbon fiber spun yarn according to claim 1 , wherein the short carbon fibers are pitch-based isotropic carbon fibers and/or polyacrylonitrile-based carbon fibers.

4. The hybrid carbon fiber spun yarn according to claim 1 , wherein the long carbon fibers are polyacrylonitrile-based carbon fibers, and the short carbon fibers are pitch-based isotropic carbon fibers.

5. The hybrid carbon fiber spun yarn according to claim 1 , wherein a content of carbon fibers having a fiber length of 150 mm or longer and less than 500 mm in the short carbon fibers is in a range of 3 to 30% by mass.

6. The hybrid carbon fiber spun yarn according to claim 1 , wherein the surrounding region comprises a twisted yarn comprising the short carbon fibers as a main component, and the outer peripheral surface of the core region is covered with the twisted yarn by twisting the twisted yarn together with the core region comprising the long carbon fibers as a main component.

7. The hybrid carbon fiber spun yarn according to claim 6 , wherein a twist number of the hybrid carbon fiber spun yarn is in a range of 50 to 400 turns/m.

8. The hybrid carbon fiber spun yarn according to claim 1 , wherein a density of the long carbon fibers is in a range of 1.7 to 2.3 g/cm 3 , and a density of the short carbon fibers is in a range of 1.5 to 1.8 g/cm 3 .

9. The hybrid carbon fiber spun yarn according to claim 1 , wherein a mass per 1000 m (tex) is in a range of 30 to 150 g.

10. A hybrid carbon fiber spun yarn fabric comprising the hybrid carbon fiber spun yarn according to claim 1 , in an amount of 30% by mass or more.

11. A method for manufacturing a hybrid carbon fiber spun yarn according to claim 1 , said spun yarn comprising a core region which comprises carbon fibers as a main component, and a surrounding region which comprises carbon fibers as a main component and covers an outer peripheral surface of the core region, said method comprising the steps of:

mix-spinning long carbon fiber bundles which contain long carbon fibers having a fiber length of 500 mm or longer in an amount of 20% by mass or more with short carbon fiber bundles which contain short carbon fibers having a fiber length of less than 500 mm in an amount of 80% by mass or more, in such a manner that a mass ratio between the long carbon fibers and the short carbon fibers (long carbon fibers:short carbon fibers) is in a range of 20:80 to 80:20, while the short carbon fiber bundles are drafted and twisted, to obtain the hybrid carbon fiber spun yarn in which a twisted yarn forming the surrounding region formed by the short carbon fiber bundles has wound around the outer peripheral surface of the core region formed by long carbon fiber bundles.

12. A gas diffuser for a solid polymer electrolyte fuel cell comprising the hybrid carbon fiber spun yarn according to claim 1 .

13. A composite reinforcement in a field of space aeronautics comprising the hybrid carbon fiber spun yarn according to claim 1 .

14. A C/C composite material comprising the hybrid carbon fiber spun yarn according to claim 1 .

15. A heater comprising the hybrid carbon fiber spun yarn according to claim 1 .

16. A reinforcement material for a molded heat insulation material comprising the hybrid carbon fiber spun yarn according to claim 1 .

17. A heat insulation comprising the hybrid carbon fiber spun yarn according to claim 1 .

18. A sliding member comprising the hybrid carbon fiber spun yarn according to claim 1 .

19. A conductive material comprising the hybrid carbon fiber spun yarn according to claim 1 .

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 22, 2007
From: KOBAYASHI, TATSUO; SONOBE, NAOHIRO; IWAMOTO, SHIGEKI
To: KUREHA CORPORATION
Reel/Frame 019784/0116 →
Priority Claims (1)
JP 2005-046155 · Feb 22, 2005 · national
Continuity (1)
Related Publication 20080152906A1 · Jun 26, 2008