IP Library Granted Patent US 12,179,390
Granted Patent B2
US 12,179,390 · App. 17/856,066 · Granted Dec 31, 2024

Pneumatic tire and method of manufacturing the same

Inventors: Takashi Hoshiba (Hiratuska, JP); Masahiro Naruse (Hiratsuka, JP)
Assignee: The Yokohama Rubber Co., LTD.
B29C33/02B29C33/64B29C35/02B29D2030/0682B29L2030/00B60C5/14
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Quick Facts
Patent No.
US 12,179,390
App. No.
17/856,066
Granted
Dec 31, 2024
Kind
B2
Abstract

A pneumatic tire is vulcanized by using a bladder provided with a coating layer formed by a release agent, and the release agent has a thickness, detected by an electron microscope, of 0.1 μm to 100 μm on an inner surface of a tread portion 1.

Claims (12)

1. A method for manufacturing a pneumatic tire, the method comprising: vulcanizing a green tire using a bladder having a coating layer formed by a release agent, and partially transferring the release agent from the bladder to form a transfer layer on an inner surface of a tread portion of the pneumatic tire after the vulcanizing such that a portion of the release agent remains on the bladder, wherein the release agent of the transfer layer has a thickness, detected by an electron microscope, of 0.1 μm to 100 μm on the inner surface of the tread portion of the pneumatic tire after the vulcanization, wherein the release agent of the transfer layer is dispersed on the inner surface of the tread portion of the pneumatic tire after the vulcanization such that the release agent is not provided on an entire surface of the inner surface.

2. The method for manufacturing a pneumatic tire according to claim 1 , wherein the coating layer is formed on the bladder with a coating time t (hour) and a temperature T (° C.) of the coating layer satisfying t≥−0.0571 T+9.14 where t>0 and 10° C. ≤T≤180° C.

3. The method for manufacturing a pneumatic tire according to claim 2 , the method further comprising: disposing a pair of sidewall portions on both sides of the tread portion; and disposing a pair of bead portions inward of the sidewall portions in a tire radial direction, wherein bead cores are embedded in the respective bead portions, bead fillers are disposed on outer circumferences of the respective bead cores, and the transfer layer formed by transferring the release agent is disposed in a partial region of the tire inner surface in a tire lateral direction the partial region at least including a region from a top edge position of one of the bead fillers to an upper edge position of the other one of the bead fillers.

4. The method for manufacturing a pneumatic tire according to claim 2 , the method comprising: disposing a pair of sidewall portions on both sides of the tread portion; and disposing a pair of bead portions inward of the sidewall portions in a tire radial direction, wherein a carcass layer is provided between the bead portions, a belt layer is disposed on an outer circumference side of the carcass layer in the tread portion, and the transfer layer formed by transferring the release agent is disposed in a partial region of the tire inner surface in a tire lateral direction, the partial region being defined between ends in the tire lateral direction of the belt layer.

5. The method for manufacturing a pneumatic tire according to claim 1 , the method further comprising: disposing a pair of sidewall portions on both sides of the tread portion; and disposing a pair of bead portions inward of the sidewall portions in a tire radial direction, wherein bead cores are embedded in the respective bead portions, bead fillers are disposed on outer circumferences of the respective bead cores, and the transfer layer formed by transferring the release agent is disposed in a partial region of the tire inner surface in a tire lateral direction the partial region at least including a region from a top edge position of one of the bead fillers to an upper edge position of the other one of the bead fillers.

6. The method for manufacturing a pneumatic tire according to claim 1 , the method comprising: disposing a pair of sidewall portions on both sides of the tread portion; and disposing a pair of bead portions inward of the sidewall portions in a tire radial direction, wherein a carcass layer is provided between the bead portions, a belt layer is disposed on an outer circumference side of the carcass layer in the tread portion, and the transfer layer formed by transferring the release agent is disposed in a partial region of the tire inner surface in a tire lateral direction, the partial region being defined between ends in the tire lateral direction of the belt layer.

7. A method for manufacturing a pneumatic tire, the method comprising: vulcanizing a green tire using a bladder having a coating layer formed by a release agent, and partially transferring the release agent from the bladder to form a transfer layer on an inner surface of a tread portion of the pneumatic tire after the vulcanizing such that a portion of the release agent remains on the bladder, wherein an amount of silicon in the release agent of the transfer layer detected by X-ray fluorescence analysis is 0.1 wt. % to 10.0 wt. % on the inner surface of the tread portion of the pneumatic tire after the vulcanization, wherein the release agent of the transfer layer is dispersed on the inner surface of the tread portion of the pneumatic tire after the vulcanization such that the release agent is not provided on an entire surface of the inner surface.

8. The method for manufacturing a pneumatic tire according to claim 7 , wherein the coating layer is formed on the bladder with a coating time t (hour) and a temperature T (° C.) of the coating layer satisfying t≥−0.0571 T+9.14 where t>0 and 10° C. ≤ T≤180° C.

9. The method for manufacturing a pneumatic tire according to claim 8 , the method further comprising: disposing a pair of sidewall portions on both sides of the tread portion; and disposing a pair of bead portions inward of the sidewall portions in a tire radial direction, wherein bead cores are embedded in the respective bead portions, bead fillers are disposed on outer circumferences of the respective bead cores, and the transfer layer formed by transferring the release agent is disposed in a partial region of the tire inner surface in a tire lateral direction the partial region at least including a region from a top edge position of one of the bead fillers to an upper edge position of the other one of the bead fillers.

10. The method for manufacturing a pneumatic tire according to claim 8 , the method comprising: disposing a pair of sidewall portions on both sides of the tread portion; and disposing a pair of bead portions inward of the sidewall portions in a tire radial direction, wherein a carcass layer is provided between the bead portions, a belt layer is disposed on an outer circumference side of the carcass layer in the tread portion, and the transfer layer formed by transferring the release agent is disposed in a partial region of the tire inner surface in a tire lateral direction, the partial region being defined between ends in the tire lateral direction of the belt layer.

11. The method for manufacturing a pneumatic tire according to claim 7 , the method further comprising: disposing a pair of sidewall portions on both sides of the tread portion; and disposing a pair of bead portions inward of the sidewall portions in a tire radial direction, wherein bead cores are embedded in the respective bead portions, bead fillers are disposed on outer circumferences of the respective bead cores, and the transfer layer formed by transferring the release agent is disposed in a partial region of the tire inner surface in a tire lateral direction the partial region at least including a region from a top edge position of one of the bead fillers to an upper edge position of the other one of the bead fillers.

12. The method for manufacturing a pneumatic tire according to claim 7 , the method comprising: disposing a pair of sidewall portions on both sides of the tread portion; and disposing a pair of bead portions inward of the sidewall portions in a tire radial direction, wherein a carcass layer is provided between the bead portions, a belt layer is disposed on an outer circumference side of the carcass layer in the tread portion, and the transfer layer formed by transferring the release agent is disposed in a partial region of the tire inner surface in a tire lateral direction, the partial region being defined between ends in the tire lateral direction of the belt layer.

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 Mar 7, 2023
From: HOSHIBA, TAKASHI; NARUSE, MASAHIRO
To: THE YOKOHAMA RUBBER CO., LTD
Reel/Frame 062904/0926 →
Priority Claims (1)
JP 2017-021295 · Feb 8, 2017 · national
Continuity (2)
Division 16484816
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