IP Library Granted Patent US 11,305,583
Granted Patent B2
US 11,305,583 · App. 15/786,490 · Granted Apr 19, 2022

Pneumatic tire

Inventor: Hideki Hamanaka (Hiratsuka, JP)
B60C3/04B60C9/0292B60C9/185B60C9/20B60C9/2006B60C9/22B60C9/2204B60C9/28B60C11/005B60C2009/1871B60C2009/208B60C2009/209B60C2009/2016B60C2009/2019B60C2009/2022B60C2009/2051B60C2009/2061B60C2009/2064B60C2009/2083B60C2009/2093B60C2009/2238B60C2009/2242B60C2009/2276B60C2011/0025B60C2200/06Y10T152/1081Y10T152/10792Y10T152/10801
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Quick Facts
Patent No.
US 11,305,583
App. No.
15/786,490
Granted
Apr 19, 2022
Kind
B2
Abstract

A pneumatic tire comprises a carcass layer, a belt layer disposed on an outer side of the carcass layer in a tire radial direction, and a tread rubber disposed on the outer side of the belt layer in the tire radial direction. The belt layer formed by laminating an angle belt having a belt angle ≥45° and ≤70° in absolute values, a pair of cross belts, having belt angles of ≥10° and ≤45° in absolute values and having belt angles of mutually opposite signs, and a circumferential reinforcing layer having a belt angle within a range of ±5° with respect to a tire circumferential direction. A tread width TW and a cross-sectional width Wca of the carcass layer have a relationship such that 0.82≤TW/Wca≤0.92. A width Ws of the circumferential reinforcing layer and a cross-sectional width Wca of the carcass layer such that 0.60≤Ws/Wca≤0.70.

Claims (50)

1. A pneumatic tire comprising a carcass layer, a belt layer disposed on an outer side of the carcass layer in a tire radial direction, and a tread rubber disposed on the outer side of the belt layer in the tire radial direction, wherein

the belt layer is formed by laminating a large angle belt having a belt cord angle of not less than 45° and not more than 70° in absolute values, a pair of cross belts having belt cord angles of not less than 10° and not more than 45° in absolute values and having belt cord angles of mutually opposite signs, and a circumferential reinforcing layer having a belt cord angle within a range of ±5° with respect to a tire circumferential direction,

a tread width TW and a cross-sectional width Wca of the carcass layer have a relationship such that 0.82≤TW/Wca≤0.92,

a width Ws of the circumferential reinforcing layer and a cross-sectional width Wca of the carcass layer have a relationship such that 0.60≤Ws/Wca≤0.70,

a width Wb2 of a wider cross belt of the pair of cross belts, and the cross-sectional width Wca of the carcass layer have a relationship such that 0.79≤Wb2/Wca≤0.85, and

a diameter Ya of the highest position of the carcass layer and a diameter Yc of the widest position of the carcass layer have a relationship such that 0.80≤Yc/Ya≤0.90.

2. The pneumatic tire according to claim 1 , wherein a width Wb1 of the large angle belt and a width Wb3 of a narrower cross belt of the pair of cross belts have a relationship such that 0.85≤Wb1/Wb3≤1.05.

3. The pneumatic tire according to claim 1 , wherein the belt cords of the circumferential reinforcing layer are steel wire and have a number of ends of not less than 17 ends/50 mm and not more than 30 ends/50 mm.

4. The pneumatic tire according to claim 1 , wherein the belt cords of the large angle belt have a number of ends of not less than 15 ends/50 mm and not more than 25 ends/50 mm.

5. The pneumatic tire according to claim 1 , wherein the pair of cross belts are disposed on the outer side in the tire radial direction of the large angle belt,

the circumferential reinforcing layer is disposed on the outer side in the tire radial direction of the pair of cross belts, between the pair of cross belts, on the inner side in the tire radial direction of the pair of cross belts, or on the inner side in the tire radial direction of the large angle belt, and

a belt cord angle of the cross belt on the inner side in the tire radial direction of the pair of cross belts, and a belt cord angle of the large angle belt have the same sign.

6. The pneumatic tire according to claim 1 , wherein the belt cords of the pair of cross belts have a number of ends of not less than 18 ends/50 mm and not more than 28 ends/50 mm.

7. The pneumatic tire according to claim 1 , wherein:

the circumferential reinforcing layer comprises the circumferential reinforcing layer belt cords covered by a coating rubber; and

a modulus Es at 100% elongation of the coating rubber of the circumferential reinforcing layer is in ranges such that 4.5 MPa≤Es≤7.5 MPa.

8. The pneumatic tire according to claim 1 , wherein:

the large angle belt comprises the large angle belt cords covered by a coating rubber;

the circumferential reinforcing layer comprises the circumferential reinforcing layer belt cords covered by a coating rubber; and

a modulus E1 at 100% elongation of the coating rubber of the large angle belt and a modulus Es at 100% elongation of the coating rubber of the circumferential reinforcing layer are in ranges such that 0.90≤Es/E1≤1.10.

9. The pneumatic tire according to claim 1 , wherein:

each cross belt of the pair of cross belts comprises the cross belt cords covered by a coating rubber;

the circumferential reinforcing layer comprises the circumferential reinforcing layer belt cords covered by a coating rubber; and

moduli E2, E3 at 100% elongation of coating rubbers of the pair of cross belts and the modulus Es at 100% elongation of the coating rubber of the circumferential reinforcing layer are in ranges such that 0.90≤Es/E2≤1.10 and 0.90≤Es/E3≤1.10.

10. The pneumatic tire according to claim 1 , wherein:

the circumferential reinforcing layer comprises the circumferential reinforcing layer belt cords covered by a coating rubber; and

a breaking elongation λs of the coating rubber of the circumferential reinforcing layer is equal to or greater than 200%.

11. The pneumatic tire according to claim 1 , wherein:

the large angle belt comprises the large angle belt cords covered by a coating rubber; and

a breaking elongation λ 1 of the coating rubber of the large angle belt is equal to or greater than 200%.

12. The pneumatic tire according to claim 1 , wherein:

each cross belt of the pair of cross belts comprises the cross belt cords covered by a coating rubber; and

breaking elongations λ 2 , λ 3 of the coating rubbers of the pair of cross belts are both equal to or greater than 200%.

13. The pneumatic tire according to claim 1 , further comprising: a belt cushion disposed between the carcass layer and an end portion of the cross belt that is on the inner side of the pair of cross belts in the tire radial direction, wherein

a modulus Ebc at 100% elongation of the belt cushion is in ranges such that 1.5 MPa≤Ebc≤3.0 MPa.

14. The pneumatic tire according to claim 13 , wherein a breaking elongation λbc of the belt cushion is equal to or greater than 400%.

15. The pneumatic tire according to claim 1 , wherein the large angle belt and the cross belt on the inner side in the tire radial direction of the pair of cross belts are disposed contiguous to each other, and

an intercord distance D1 between the belt cords of the large angle belt and the belt cords of the cross belt is in ranges such that 0.50 mm≤D1≤1.50 mm.

16. The pneumatic tire according to claim 1 , wherein the circumferential reinforcing layer is disposed inward in the tire width direction of left and right edges of a narrower cross belt of the pair of cross belts, and

a width Wb3 of the narrower cross belt and a distance S from an edge of the circumferential reinforcing layer to an edge of the narrower cross belt are in ranges such that 0.03≤S/Wb3.

17. The pneumatic tire according to claim 1 , wherein the circumferential reinforcing layer is disposed inward in the tire width direction of left and right edges of a narrower cross belt of the pair of cross belts,

a stress relief rubber disposed between the pair of cross belts and disposed outward in the tire width direction of the circumferential reinforcing layer to flank the circumferential reinforcing layer, and

an edge relief rubber disposed between the pair of cross belts and disposed outward in the tire width direction of the stress relief rubber and in a position contacting an edge of each of the pair of cross belts to flank the stress relief rubber.

18. The pneumatic tire according to claim 17 , wherein a modulus Ein at 100% elongation of the stress relief rubber and a modulus Eco at 100% elongation of coating rubber of the pair of cross belts have a relationship such that Ein<Eco.

19. The pneumatic tire according to claim 17 , wherein the modulus Ein at 100% elongation of the stress relief rubber and the modulus Eco at 100% elongation of coating rubber of the pair of cross belts have a relationship such that 0.6≤Ein/Eco≤0.9.

20. The pneumatic tire according to claim 17 , wherein the modulus Ein at 100% elongation of the stress relief rubber is in ranges such that 4.0 MPa≤Ein≤5.5 MPa.

21. The pneumatic tire according to claim 1 , which is a heavy duty tire with an aspect ratio of 55% or less.

22. The pneumatic tire according to claim 1 , wherein:

the pair of cross belts are disposed on the outer side in the tire radial direction of the large angle belt with the circumferential reinforcing layer being disposed between the pair of cross belts, and

the belt cord angle of the cross belt on the inner side in the tire radial direction of the pair of cross belts and the belt cord angle of the large angle belt have the same sign.

Assignments (2)
CHANGE OF ADDRESS FOR ASSIGNEE Recorded Nov 18, 2023
From: THE YOKOHAMA RUBBER CO., LTD.
To: THE YOKOHAMA RUBBER CO., LTD.
Reel/Frame 065626/0740 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 17, 2017
From: HAMANAKA, HIDEKI
To: THE YOKOHAMA RUBBER CO., LTD.
Reel/Frame 043887/0608 →
Continuity (2)
Division 14404131
Related Publication 20180037063A1 · Feb 8, 2018
Cited By (2)
US 12,370,832 US 12,377,682