Valve stem-based air maintenance tire and method
09796222 ยท 2017-10-24
Assignee
Inventors
Cpc classification
B60C29/005
PERFORMING OPERATIONS; TRANSPORTING
B60C29/068
PERFORMING OPERATIONS; TRANSPORTING
B60S5/043
PERFORMING OPERATIONS; TRANSPORTING
B60C23/135
PERFORMING OPERATIONS; TRANSPORTING
International classification
B60C23/00
PERFORMING OPERATIONS; TRANSPORTING
B60C29/00
PERFORMING OPERATIONS; TRANSPORTING
B60C29/06
PERFORMING OPERATIONS; TRANSPORTING
Abstract
An air maintenance tire assembly includes a tire having a tire cavity bounded by first and second sidewalls extending to a tire tread region, air pump for generating pressurized air for maintaining air pressure within the tire cavity at a preset pressure level, the tire having an elongate valve stem projecting outward from the tire cavity and having an internal valve stem air passageway in communication with the tire cavity and operative to direct pressurized air into the cavity, and a valve housing disposed adjacent an outward end of the valve stem and operative to selectively open and close pressurized air flow from the valve stem internal passageway into the tire cavity.
Claims
1. An air maintenance tire assembly comprising: a tire having a tire cavity bounded by first and second sidewalls extending to a tire tread region; an air pump for generating pressurized air for maintaining air pressure within the tire cavity at a preset pressure level; the tire having an elongate valve stem projecting outward from the tire cavity and having an internal valve stem air passageway in communication with the tire cavity and operative to direct pressurized air into the cavity; and a valve housing disposed adjacent an outward end of the valve stem and operative to selectively open and close pressurized air flow from the valve stem internal passageway into the tire cavity, the valve housing further including a manual fill assembly disposed at an end of the valve housing.
2. The air maintenance tire assembly as set forth in claim 1 wherein the valve housing utilizes a check valve of the valve stem for maintaining air pressure in the tire cavity at the preset pressure level.
3. The air maintenance tire assembly as set forth in claim 1 wherein the valve housing is cylindrical.
4. The air maintenance tire assembly as set forth in claim 1 wherein the valve housing further includes a relief valve that opens and closes to place the air pump in open and closed conditions.
5. The air maintenance tire assembly as set forth in claim 1 wherein the air pump includes a tube within the first tire sidewall, the tube being incrementally flattened by rotation of the tire under load.
6. The air maintenance tire assembly as set forth in claim 1 wherein, as the tire continues to rotate under load along a ground surface, a part of a tube of the air pump is sequentially squeezed when the part is adjacent a tire footprint.
7. The air maintenance tire assembly as set forth in claim 1 wherein sequential flattening of part of the air pump, segment by segment, directs air to the valve housing and the tire cavity.
8. The air maintenance tire assembly as set forth in claim 1 wherein, when air pressure within the tire cavity is below the preset pressure level, air passes through the valve housing, through the valve stem, and into the tire cavity.
9. The air maintenance tire assembly as set forth in claim 1 wherein, when air pressure in the tire cavity is at the preset pressure level, air is vented through a relief valve to atmosphere.
10. A method of maintaining a predetermined air pressure within a tire comprising the steps of: positioning an elongate valve stem to project outward from a tire cavity of the tire, the valve stem having an elongate internal air passageway for delivering pressurized air into the tire cavity; positioning a valve housing onto the valve stem; selectively opening and closing the valve stem internal air passageway to control pressurized air flow from the valve stem internal passageway into the tire cavity; coupling an air pump to the valve housing such that pressurized air is directed through an outward end of the valve stem internal passageway and into the tire cavity; positioning an air passageway within a first tire sidewall operatively located to compress, segment by segment, from an expanded diameter to a substantially reduced diameter responsive to a bending strain introduced into the first sidewall from the rotating tire under load thereby forcing air, segment by segment, along the sidewall air passageway; and connecting the air passageway to a radially outward end of the valve stem thereby directing pressurized air to the tire cavity.
11. The method as set forth in claim 10 further comprising the steps of: supporting the tire on a rim; extending the valve stem from the tire through an aperture in the rim; and positioning the valve housing external to the tire cavity.
12. The method as set forth in claim 10 further comprising a check valve in the valve stem for selectively opening and closing an air passage from the valve stem passageway into the tire cavity.
13. The method as set forth in claim 12 further comprising the steps of: supporting the tire on a rim; extending the valve stem from the tire through an aperture extending through the rim; and positioning the valve housing external to the tire cavity.
14. The method as set forth in claim 10 further comprising the step of incorporating a relief valve within the valve housing.
15. The method as set forth in claim 14 further comprising the steps of: coupling an internal chamber of the valve housing to receive pressurized air from the air pump; and selectively opening and closing a check valve of the valve stem responsive to a presence and absence of pressurized air within the internal chamber.
16. The method as set forth in claim 10 further comprising the steps of: extending the valve stem from the tire through an aperture extending through a rim supporting the tire; and mounting the valve housing to the valve stem.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The invention will be described by way of example and with reference to the accompanying drawings in which:
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DETAILED DESCRIPTION OF AN EXAMPLE OF THE PRESENT INVENTION
(11) Referring to
(12) As seen from
(13) The peristaltic principles of incorporating a deformable air tube within a tire are shown and described in U.S. Pat. No. 8,113,254, incorporated herein by reference in its entirety. In this system, the tube is incorporated within an annular tire passageway formed within the tire proximate a tire bead region. As the tire rotates under load, air from outside the tire is admitted into the tube and pumped along the air tube by the progressive squeezing of the tube within the tire as the tire rotates. Air is thus forced into an outlet valve and then into the tire to maintain air pressure within the tire cavity at a desired pressure level.
(14) The tube 30 may mount closely within the groove 32 in the tire 12 and sequentially flatten as the tire rotates. The segment by segment flattening of the tube 30 as the tire 12 pumps air along the air passageway/groove 32 and into the tire cavity 28 to maintain air pressure. A peristaltic pumping system 14 employing the tube 30 within a sidewall groove 32 is shown in issued U.S. Pat. No. 8,042,586, incorporated herein by reference in its entirety.
(15) Referring to
(16) Referring to
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(18) Referring to
(19) Alternatively, without departing from the present invention, the air passageway 32 may be encapsulated directly within a tire component, omitting the tube 30. In such an assembly (not shown), the air passageway 32 would likewise pump air, segment by segment, as the tire 12 rotates under load and the air passageway would be directly coupled at opposite ends 34, 36 to the tee fitting 38.
(20) As the tire 12 continues to rotate under load along a ground surface, the tube 30 may be sequentially flattened, or squeezed, when adjacent the tire footprint. The sequential flattening of the tube passageway 32, segment by segment, represented by
(21) The check valve 76 of the valve stem 80 and the check valve 202 of the manual fill assembly 200 may include a conventional valve stem core used for conventional inflation of tires and a valve core. The valve core may be a Schrader Valve Core and include an elongate housing through which a valve shaft extends. A valve seal component may seat within the elongate housing and be coupled to the valve shaft. A biasing spring may encircle the valve shaft and bias the sealing component within the elongate housing in an up, or closed position against the valve seal component. An air passageway through the valve core may be biased in the closed state until the valve shaft moves and the valve sealing component is moved thereby to a down, or open position thereby allowing atmospheric air to enter the air passageway and be directed toward the tire cavity 28.
(22) 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.