PNEUMATIC TIRE
20230191839 ยท 2023-06-22
Inventors
- Jonathan Michael DiMonte (Stow, OH, US)
- Brent Reynir Koch (Cleveland, OH, US)
- Mark Allen Grund (Tallmadge, OH, US)
- Edward Earl Simmons (Union City, TN, US)
Cpc classification
B60C15/0018
PERFORMING OPERATIONS; TRANSPORTING
B60C2009/0475
PERFORMING OPERATIONS; TRANSPORTING
B29D30/30
PERFORMING OPERATIONS; TRANSPORTING
B60C15/0045
PERFORMING OPERATIONS; TRANSPORTING
B60C15/0036
PERFORMING OPERATIONS; TRANSPORTING
B60C9/0207
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A pneumatic tire is disclosed and comprises a tread, a belt package located radially beneath the tread, a pair of bead cores, a pair of sidewalls, with each sidewall extending between the tread and each bead core, a carcass comprising a first carcass ply extending under the tread and being anchored to each bead core, wherein the first carcass ply has a reinforced stiffener applied thereto, wherein the carcass further comprising a second carcass ply, wherein the second carcass ply extends under the tread and is anchored to each bead core.
Claims
1. A pneumatic tire comprising a tread, a belt package located radially beneath the tread, a pair of bead cores, a pair of sidewalls, with each sidewall extending between the tread and each bead core, a carcass comprising a first carcass ply extending under the tread and being anchored to each bead core, wherein the first carcass ply has a reinforced stiffener applied thereto, wherein the carcass further comprising a second carcass ply, wherein the second carcass ply extends under the tread and is anchored to each bead core.
2. The pneumatic tire of claim 1 wherein the reinforced stiffener is positioned in the sidewall of the tire between the first and second carcass ply.
3. The pneumatic tire of claim 1 wherein the reinforced stiffener has a first end which is secured between a lateral outer end of the belt package and between the first and second carcass plies.
4. The pneumatic tire of claim 1 wherein each bead core has a radially outer apex, and the reinforced stiffener has a second end which is located radially inward of the radially outer apex.
5. The pneumatic tire of claim 1 wherein the tire has a shoulder area extending between the tread and each sidewall, and wherein the reinforced stiffener is positioned in each shoulder area.
6. The pneumatic tire of claim 5 wherein the shoulder area has a first and second layer of reinforcement ply and the reinforced stiffener positioned therein.
7. The pneumatic tire of claim 1 wherein the reinforced stiffener is divided into two separate strips, with one strip being positioned in each sidewall.
8. The pneumatic tire of claim 1 wherein the reinforced stiffener is formed of tire ply having parallel reinforcement cords.
9. The pneumatic tire of claim 8 wherein the reinforcement cords of the reinforced stiffener are angled in the range of 50 to 115 degrees with respect to the tire circumferential direction.
10. The pneumatic tire of claim 1 wherein the reinforcement cords of the reinforced stiffener are formed of polyester, nylon, aramid, PET, PEN and blends thereof.
11. A method of building a tire on a tire building drum, the method comprising the steps of: applying an innerliner to the tire building drum, applying a first layer of ply over the inner liner, wherein the first layer of ply has a reinforced stiffener secured thereto, applying a second layer of ply, setting a first and second bead core over each end of the first and second layer of ply and then turning up each lateral end of the first and second layer of ply forming a respective turned up end, wherein the reinforced stiffener is positioned in the tire sidewall area of the finished tire.
12. The method of claim 11 wherein the reinforced stiffener is positioned between the first and the second carcass ply.
13. The method of claim 11 wherein the reinforced stiffener is positioned in each sidewall, extending from the belt package to an apex of each bead core.
14. The method of claim 11 wherein each bead core has a radially outer apex, and the reinforced stiffener has a second end which is located radially inward of the radially outer apex.
15. The method of claim 11 wherein the tire has a shoulder area extending between the tread and each sidewall, and wherein the reinforced stiffener is positioned in each shoulder area.
16. The method of claim 11 wherein the shoulder area has a first and second layer of reinforcement ply and the reinforced stiffener positioned therein.
17. The method of claim 11 wherein the reinforced stiffener is divided into two separate strips, with one strip being positioned in each sidewall.
18. The method of claim 11 wherein the reinforced stiffener is formed of tire ply having parallel reinforcement cords.
19. A pneumatic tire comprising a tread, a belt package located radially beneath the tread, a pair of bead cores, a pair of sidewalls, with each sidewall extending between the tread and each bead core, a carcass comprising a first carcass ply extending under the tread and being anchored to each bead core, wherein the carcass further comprising a second carcass ply, wherein the second carcass ply extends under the tread and is anchored to each bead core, and wherein a reinforced stiffener is positioned in the sidewall of the tire.
20. The tire of claim 19 wherein the reinforced stiffener is positioned between the first carcass ply and the second carcass ply.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0021] The invention will be described by way of example and with reference to the accompanying drawings in which:
[0022]
[0023]
[0024]
DETAILED DESCRIPTION OF AN EXAMPLE EMBODIMENT THE INVENTION
[0025]
[0026] The tire 100 of the present invention has a pair of axially spaced bead portions with an annular bead core 20 provided therein. The tire 100 further includes an optional apex 30 which extends radially outward of the bead core 20, and is preferably triangular in cross-sectional shape. The tire 100 further includes a first carcass reinforcing ply 300 extending radially inward of the crown portion of the tire and extending from one bead core to the other bead core 20. The first reinforcing ply 300 is wound around each bead core and apex, forming turnup end portions 330, which terminate radially outward of each bead core. The first reinforcing ply 300 further includes a reinforced stiffener 320 for positioning in each sidewall of the tire for enhanced durability and stiffness. The reinforced stiffener 320 may be a single sheet or divided into two spaced apart discrete reinforced stiffeners. The reinforced stiffeners 320 are preassembled to the first carcass reinforcing ply 300 as shown in
[0027] The pneumatic tire of the present invention further includes a second carcass reinforcing ply 400, which extends radially inward from the crown portion of the tire, and wraps around the bead and apex forming a turn up portion 420. The second carcass reinforcing ply 400 is located radially outward of the first carcass reinforcing ply 300.
[0028] The reinforced stiffener 320 has a first end 322 that is positioned between the first and second reinforcing ply 300,400 and a lateral end 52 of a belt package 50. The reinforced stiffener 320 has a second end 324 that is positioned between the down portions of the first and second reinforcing plies 300,400. The second end is preferably located radially inward of the apex. The second end is also preferably radially inward of turnup 320 and turnup 420.
[0029] The reinforced stiffener 320 may be formed of reinforced tire ply and may have parallel reinforcement cords that are oriented in any desired direction such as being inclined at an angle of 0 to 90 relative to the circumferential direction of the tire. The reinforced stiffener 320 may be formed of reinforced tire ply having reinforcement cords of 1000/2, 2000/2 or 1500/2. The orientation/angle of the reinforcement cords of the stiffener are preferably in the range of 70 to 100 degrees relative to the tire circumferential direction. The reinforced stiffener may also be formed of a fabric with reinforcement cords extending in two directions perpendicular to each other. The reinforcement cords may comprise aramid, polyester, nylon, PET, PEN, or blends or hybrids thereof.
[0030] The method of manufacturing the present invention of the tire of
[0031] Variations in the present invention are possible in light of the description of it provided herein. While certain representative embodiments and details have been shown for the purpose of illustrating the subject invention, it will be apparent to those skilled in this art that various changes and modifications can be made therein without departing from the scope of the subject invention. It is, therefore, to be understood that changes can be made in the particular embodiments described which will be within the full intended scope of the invention as defined by the following appended claims.