Claims
- 1. A hybrid cord for rubber reinforcement comprising fiber strands of two or more kinds having different elastic moduli which are twisted together, wherein
at least one higher-modulus fiber strand having a higher elastic modulus is disposed at the center side of the cord and lower-modulus fiber strands having a lower elastic modulus are disposed at the skin side of the cord.
- 2. A hybrid cord for rubber reinforcement as claimed in claim 1, wherein the elastic modulus of the higher-modulus fiber strand is 120 GPa or more and the elastic modulus of the lower-modulus fiber strand is 90 GPa or less.
- 3. A hybrid cord for rubber reinforcement as claimed in claim 2, wherein the elastic modulus of the higher-modulus fiber strand is in a range from 120 to 400 GPa and the elastic modulus of the lower-modulus fiber strand is in a range from 60 to 90 GPa.
- 4. A hybrid cord for rubber reinforcement as claimed in claim 1, wherein the difference in elastic modulus between the higher-modulus fiber strand and the lower-modulus fiber strand is 30 Gpa or more.
- 5. A hybrid cord for rubber reinforcement as claimed in claim 4, wherein the difference in elastic modulus between the higher-modulus fiber strand and the lower-modulus fiber strand is in a range from 70 to 320 Gpa.
- 6. A hybrid cord for rubber reinforcement as claimed in claim 1, wherein the higher-modulus fiber strand is made of polyparaphenylene bezobisoxazole fiber, carbon fiber, or aramid fiber.
- 7. A hybrid cord for rubber reinforcement as claimed in claim 1, wherein the lower-modulus fiber strand is made of glass fiber or aramid fiber.
- 8. A hybrid cord for rubber reinforcement as claimed in claim 6, wherein the higher-modulus fiber strand is made of polyparaphenylene benzobisoxazole fiber and the lower-modulus fiber strand is made of glass fiber.
- 9. A hybrid cord for rubber reinforcement as claimed in claim 1, wherein the total cross sectional area of the higher-modulus fiber strand is in a range from 10 to 40% of the total cross sectional area of the cord.
- 10. A hybrid cord for rubber reinforcement as claimed in claim 1, wherein the twisting rate of the higher-modulus fiber strand is 0-2.0 turns/25 mm.
- 11. A hybrid cord for rubber reinforcement as claimed in claim 1, wherein the twisting rate of the lower-modulus fiber strand is 1.5-3.5 turns/25 mm.
- 12. A hybrid cord for rubber reinforcement as claimed in claim 1, wherein the lower-modulus fiber strand is treated with a treating liquid comprising, as a main component, a mixture of rubber latex and a product, said product being an initial condensation product of resorcin and formalin.
- 13. A hybrid cord for rubber reinforcement as claimed in claim 1, wherein the twisting rate of the final twist of the cord is 1.0-10 turns/25 mm.
- 14. A hybrid cord for rubber reinforcement as claimed in claim 1, wherein the outer surface of the cord is overcoated with rubber.
- 15. A rubber product employing a hybrid cord for rubber reinforcement as claimed in claim 1.
- 16. A rubber product as claimed in claim 15, wherein the content of the hybrid cord is in a range from 10 to 70% by weight.
- 17. A rubber product as claimed in claim 15, wherein the rubber product is a rubber belt or a rubber tire.
Priority Claims (1)
Number |
Date |
Country |
Kind |
2002-081257 |
Mar 2002 |
JP |
|
CROSS REFERENCE TO RELATED APPLICATION
[0001] This is a continuation application of PCT/JP03/02764 filed on Mar. 10, 2003.
Continuations (1)
|
Number |
Date |
Country |
Parent |
PCT/JP03/02764 |
Mar 2003 |
US |
Child |
10866876 |
Jun 2004 |
US |