Tire with pre-stressed toroidal element

US10052919B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10052919-B2
Application numberUS-201514662747-A
CountryUS
Kind codeB2
Filing dateMar 19, 2015
Priority dateApr 7, 2014
Publication dateAug 21, 2018
Grant dateAug 21, 2018

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A tire includes at least one body defining a plurality of body ply layers, and a toroidal element located between the body ply layers. The toroidal element includes inner and outer regions formed by the body ply layers, and a central region formed by an inner rubber component located between the body ply layers. At least a portion of the central region is more elastic than the inner and outer regions. The toroidal element includes a first sidewall portion extending along at least a portion of the first sidewall region of the tire, and a second sidewall portion extending along at least a portion of the second sidewall region of the tire. The toroidal element is pre-stressed such that the first sidewall portion of the toroidal element exerts a first axially outward force, and such that the second sidewall portion of the toroidal element exerts a second axially outward force.

First claim

Opening claim text (preview).

What is claimed is: 1. A non-pneumatic tire and rim assembly comprising: a rim having a pair of wheel flanges, including a first wheel flange and a second wheel flange; a non-pneumatic tire having a crown region and a pair of sidewall regions, including a first sidewall region and a second sidewall region, the non-pneumatic tire comprising: a pair of beads, including a first bead and a second bead; at least one body defining a plurality of body ply layers; a toroidal element located between the body ply layers, wherein the toroidal element includes inner and outer regions formed by the body ply layers, and a central region located between the body ply layers, wherein at least a portion of the central region is more elastic than the inner and outer regions, wherein the toroidal element includes a crown portion extending across the crown region of the tire, wherein the toroidal element includes a first sidewall portion extending along at least a portion of the first sidewall region of the tire, wherein the toroidal element includes a second sidewall portion extending along at least a portion of the second sidewall region of the non-pneumatic tire, and wherein the toroidal element is pre-stressed such that the first sidewall portion of the toroidal element exerts a first axially outward force of at least 1000 pounds against the first wheel flange of the rim, and such that the second sidewall portion of the toroidal element exerts a second axially outward force of at least 1000 pounds against the second wheel flange of the rim. 2. The non-pneumatic tire of claim 1 , wherein the central region of the toroidal element includes at least one high stiffness layer between a pair of lower stiffness layers. 3. The non-pneumatic tire of claim 1 , wherein the inner region, the outer region, and the central region extend from the first bead to the second bead. 4. The non-pneumatic tire of claim 1 , wherein the first sidewall portion of the toroidal element exerts an axially outward force of at least 5000 pounds, and such that the second sidewall portion of the toroidal element exerts an axially outward force of at least 5000 pounds. 5. The non-pneumatic tire of claim 1 , wherein the central region includes a first inner rubber component and a second inner rubber component separated by a second body ply. 6. A non-pneumatic tire and rim assembly comprising: a rim having a pair of wheel flanges, including a first wheel flange and a second wheel flange; a tire fastened to the rim, the non-pneumatic tire including: a tread formed in a crown region of the non-pneumatic tire; a first sidewall region extending from the crown region to a first bead area, the first sidewall region of the tire being affixed to the first wheel flange of the rim; a second sidewall region opposite the first sidewall region, the second sidewall region extending from the crown region to a second bead area, the second sidewall region of the non-pneumatic tire being affixed to the second wheel flange of the rim; a toroidal element extending across a crown region of the non-pneumatic tire, further extending along at least a portion of the first sidewall region of the non-pneumatic tire, and further extending along at least a portion of the second sidewall region of the non-pneumatic tire, the toroidal element having a central region located between inner and outer regions, wherein the central region is more elastic than the inner and outer regions, wherein the toroidal element is pre-stressed such that the toroidal element exerts a first axially outward force of at least 1000 pounds against the first wheel flange of the rim, and wherein the toroidal element exerts a second axially outward force of at least 1000 pounds against the second wheel flange of the rim. 7. The non-pneumatic tire and rim assembly of claim 6 , wherein the central region of the toroidal element includes a layer of rubber. 8. The non-pneumatic tire and rim assembly of claim 7 , wherein the layer of rubber includes a first layer of rubber and a second layer of rubber, separated by a body ply. 9. The non-pneumatic tire and rim assembly of claim 7 , wherein the layer of rubber includes a first layer of rubber, a second layer of rubber, and a third layer of rubber, wherein the first layer of rubber and the second layer of rubber are separated by a first body ply, and wherein the second layer of rubber and the third layer of rubber are separated by a second body ply. 10. The non-pneumatic tire and rim assembly of claim 6 , wherein the first sidewall region of the tire is bolted to the first wheel flange of the rim and wherein the second sidewall region of the tire is bolted to the second wheel flange of the rim. 11. The non-pneumatic tire and rim assembly of claim 6 , wherein the first axially outward force is at least 5000 pounds, and wherein the second axially outward force is at least 5000 pounds. 12. The non-pneumatic tire and rim assembly of claim 6 , wherein the inner region, the outer region, and the central region extend from a first bead area to a second bead area.

Assignees

Inventors

Classifications

  • with ply turn-up up to the belt edges, i.e. folded around the bead core and extending to the belt edges · CPC title

  • Applying the layers; Guiding or stretching the layers during application {(applying tread bands to carcasses B29D30/58; retreading B29D30/54)} · CPC title

  • Fitting the bead-rings or bead-cores; Folding the textile layers around the rings or cores · CPC title

  • Manufacturing run-flat tyres · CPC title

  • Tyres built-up with separate rubber parts · CPC title

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Frequently asked questions

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What does patent US10052919B2 cover?
A tire includes at least one body defining a plurality of body ply layers, and a toroidal element located between the body ply layers. The toroidal element includes inner and outer regions formed by the body ply layers, and a central region formed by an inner rubber component located between the body ply layers. At least a portion of the central region is more elastic than the inner and outer r…
Who is the assignee on this patent?
Bridgestone Americas Tire Operations Llc
What technology area does this patent fall under?
Primary CPC classification B60C17/0009. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue Aug 21 2018 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).