The present invention relates to a tire cord fabric which is used as reinforcement in vehicle tires and wherein the cord twists within its structure vary depending on the area to which they will correspond, and a production method thereof.
The physical properties of the cords used in vehicle tires are strongly dependent on twist levels.
For a polymeric material used as cord material, the results of the increase in cord twist are as follows:
As it can be understood from the results mentioned above, the physical features of the cords having strong effect on the tire performance can be controlled by changing the twist level or the cord helix angle (for a material such as rayon, polyester, polyamide yarns).
According to the tire and tire cord technologies in the state of the art, tire reinforcement cords are the elements twisted homogenously (constant twist along the cord). On the other hand, in carcass of the passenger vehicle tire;
Japanese Patent application no JP2009029310, an application known in the state of the art, discloses a pneumatic radial tire having a reinforcement layer supported with steel cords. The reinforcement layer is comprised of a great number of steel cords and coating rubber which coats the said steel cords. The S and Z twisted steel cords present in a strip together have similar cord diameter and are made of similar material, but they have different twisting direction.
Japanese Patent document no JP2008044550, another application known in the state of the art, discloses a pneumatic radial tire which is reinforced with a carcass layer having different areas corresponding to different parts of the tire. Carcass has a belt layer comprising one or more than one processed material. At least one part of the said processed material is manufactured from rubber coated fabric formed from organic fiber cords or carbon fiber cords, and its other part is manufactured from rubber coated fabric formed from steel cords. The cords within the processed material are parallel to each other and their twisting directions are different in each yam.
A similar application is also mentioned in Japanese Patent document no JP2008044396.
The objective of the present invention is to provide a tire cord fabric which is used as carcass reinforcement and has different twist levels depending on the different parts of the tire, and a production method thereof.
Another objective of the present invention is to provide a tire cord fabric that provides a good tire performance with variable twist which is the most important parameter controlling the fatigue resistance of the cord since the carcass cord in a pneumatic radial tire is subjected to different stresses and fatigue in different parts of the tire, and a production method thereof.
“A tire cord fabric and a production method thereof” developed to fulfill the objectives of the present invention is illustrated in the accompanying figures, in which:
The components given in the figures are numbered and the numbers refer to the following:
11. Tire cord fabric
12. Processed cord
13. Twist reduction-increase zones
14. Twist point
15. Low twist zone
16. High twist zone
17. Initial twist zone
18. Underbelt zone
19. Carcass zone
20. Rigid zone
The inventive tire cord fabric (1) comprises
In one embodiment of the invention, at least one twist reduction-increase zone (3) is a low twist zone (5) which is formed as a result of the cord with initial twist (K) being twisted in opposite direction (D) of twist direction from the twist point (4).
In one embodiment of the invention, at least one twist reduction-increase zone (3) is a high twist zone (6) which is formed as a result of the cord with initial twist (K) being twisted in the same direction (D) with twist direction from the twist point (4).
In one embodiment of the invention, at least one twist reduction-increase (3), which is the zone of the cord with initial twist (K) wanted to be kept in the middle twist being different from the low and high twist zones (5, 6), is an initial twist zone (7) which is separated from the said zones (5, 6) by a twist point (4) so that it is not affected by the twists in the said zones (5, 6).
In the preferred embodiment of the invention, the underbelt zone (8) forming the part of the tire cord fabric (1) corresponding to the part of the tire (L) contacting the ground has a low twist zone (5) wherein less fatigue resistance is sufficient compared to the cord with initial twist (K).
In the preferred embodiment of the invention, the carcass zone (9) forming the part of the tire cord fabric (1) corresponding to the shoulder zone (S) of the tire (L) has a high twist zone (6) which has higher fatigue resistance compared to the cord with initial twist (K).
In the preferred embodiment of the invention, the rigid zone (8), forming the part of the tire cord fabric (1) corresponding to the part of the tire (L) between the tire sidewall (W) and the bead (B), has a low twist zone (5) since it is subjected to less fatigue compared to the cord with initial twist (K).
By means of the inventive tire cord fabric (1), a reinforcement element, which can be adjusted to different twist levels according to the requirements of different zones (carcass turn up zone, tire bead zone, tire sidewall zone, shoulder zone and underbelt zone) of the tire (L), can be developed.
The tire cord fabric (1) used as reinforcement in the radial pneumatic vehicle tire (L) has different twist levels depending on the different positions of the tire. The twist difference between the low and high twist zones (5, 6) is between 15-60%. For example, in a 1440x2dtex (linear density) PET radial carcass reinforcement: the shoulder twist is 350 tpm whereas the sidewall is 290 tpm (turns per meter). The maximum twist zone is the shoulder zone requiring high flexibility. In the cord reinforcement corresponding to sidewall and the underbelt zones, the twist level is 15% less than the shoulder zone.
The inventive tire cord fabric production method comprises the steps of
In producing the inventive tire cord fabric (1), preparing different twist decrease-increase zones (3) is performed right before weaving the tire cord fabric or during weaving. The twist points (4) which are the transition points between the different twist reduction-increase zones (3) are fixed with thermal, mechanical and/or chemical methods. By means of the fixing process, twist transfer from the high twist zone (6) to the low twist zone (5) and/or to the initial twist zone (7) along the cord is prevented. Thus, the stability in the twist reduction-increase zones (3) with different twist is protected. By means of the thermal processing, the torques of the cords (2) are reduced.
Within the framework of these basic concepts, it is possible to develop a wide variety of embodiments of the inventive tire cord fabric (1) and a production method thereof. The invention cannot be limited to the examples described herein and it is essentially as defined in the claims.
Number | Date | Country | Kind |
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2012/12031 | Oct 2012 | TR | national |
Filing Document | Filing Date | Country | Kind |
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PCT/IB2013/058607 | 9/17/2013 | WO | 00 |