IP Library › Granted Patent US 12,491,737
Granted Patent B2
US 12,491,737 · App. 17/789,294 · Granted Dec 9, 2025

Bump stop for non-pneumatic tire

Inventors: Brandon P. Nelson (Stow, OH); Robert W. Asper (Wadsworth, OH); Steven J. Jenkins (Nashville, TN); Anthony B. Duncan (Akron, OH)
Assignee: Bridgestone Americas Tire Operations, LLC
B60C7/107B60C7/143B60C7/146B60C7/22
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Quick Facts
Patent No.
US 12,491,737
App. No.
17/789,294
Granted
Dec 9, 2025
Kind
B2
Abstract

A non-pneumatic tire includes an annular inner ring, an annular outer ring, and a support structure extending from the annular inner ring to the annular outer ring. The support structure includes a plurality of spokes, webbing, cells, or other open-sided support structure. The tire includes a bump stop. The bump stop includes an inner member radially extending from a radially outer surface of the annular inner ring. The inner member has a radially outer surface facing a radially inner surface of the annular outer ring. The bump stop includes an outer member radially extending from a radially inner surface of the annular outer ring. The outer member has a radially inner surface facing a radially outer surface of the annular inner ring.

Claims (34)

1 . A non-pneumatic tire comprising:

an annular inner ring;

an annular outer ring;

a support structure extending from the annular inner ring to the annular outer ring;

a tread disposed radially around the annular outer ring; and

a bump stop including:

an inner member radially extending from a radially outer surface of the annular inner ring, the inner member having a radially outer surface, wherein a first radial distance from the radially outer surface of the annular inner ring to the radially outer surface of the inner member is less than a second radial distance from the radially outer surface of the annular inner ring to an inner surface of the annular outer ring, and

an outer member radially extending from a radially inner surface of the annular outer ring, the outer member having a radially inner surface facing the radially outer surface of the inner member.

2 . The non-pneumatic tire of claim 1 , wherein the inner member is laterally spaced from an outer perimeter of the annular outer ring.

3 . The non-pneumatic tire of claim 1 , wherein the radially outer surface of the inner member faces a radially inner surface of the annular outer ring.

4 . The non-pneumatic tire of claim 3 , wherein the radially outer surface of the inner member is spaced from the radially inner surface of the annular outer ring.

5 . The non-pneumatic tire of claim 1 , wherein the inner member has a compliant end defining the radially outer surface of the inner member, and wherein a modulus of elasticity of the compliant end is less than a modulus of elasticity of the inner member.

6 . The non-pneumatic tire of claim 1 , wherein the inner member has an outer compliant end defining the radially outer surface of the inner member and the outer member has an inner compliant end defining the radially inner surface of the outer member, wherein a modulus of elasticity of the outer compliant end of the inner member is less than a modulus of elasticity of the inner member, and wherein a modulus of elasticity of the inner compliant end of the outer member is less than a modulus of elasticity of the outer member.

7 . The non-pneumatic tire of claim 1 , wherein the inner member has a radially planar profile with respect to a radial cross-section.

8 . The non-pneumatic tire of claim 1 , wherein the support structure includes a first support structure axially spaced from a second support structure.

9 . The non-pneumatic tire of claim 8 , wherein the inner member is axially disposed between the first support structure and the second support structure.

10 . The non-pneumatic tire of claim 1 , wherein the tread includes a circumferential metal band.

11 . A method of assembling a non-pneumatic tire comprising:

providing an annular inner ring;

providing an annular outer ring;

providing a support structure extending from the annular inner ring to the annular outer ring;

placing a tread radially around the annular outer ring; and

radially extending a bump stop having an outer member from a radially inner surface of the annular outer ring, wherein the outer member has a radially inner surface facing a radially outer surface of the annular inner ring, and wherein a height of the bump stop is less than a radial distance between the radially outer surface of the annular inner ring and the radially inner surface of the annular outer ring.

12 . The method of claim 11 , wherein the radially inner surface of the outer member abuts the radially outer surface of the annular inner ring.

13 . A non-pneumatic tire comprising:

an annular inner ring;

an annular outer ring;

a support structure extending from the annular inner ring to the annular outer ring;

a tread extending radially around the annular outer ring; and

a bump stop having an outer member radially extending from a radially inner surface of the annular outer ring, wherein the outer member has a radially inner surface facing a radially outer surface of the annular inner ring, and wherein a height of the bump stop is less than a radial distance between the radially outer surface of the annular inner ring and the radially inner surface of the annular outer ring.

14 . The non-pneumatic tire of claim 13 , wherein the radially inner surface of the outer member abuts the radially outer surface of the annular inner ring.

15 . The non-pneumatic tire of claim 13 , wherein the tread includes a circumferential metal band.

16 . The non-pneumatic tire of claim 13 , wherein the outer member has a radially planar profile with respect to a radial cross-section.

17 . The non-pneumatic tire of claim 13 , wherein the outer member has a radially non-planar profile with respect to a radial cross-section.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 27, 2022
From: NELSON, BRANDON P.; ASPER, ROBERT W.; JENKINS, STEVEN J.; DUNCAN, ANTHONY B.
To: BRIDGESTONE AMERICAS TIRE OPERATIONS, LLC
Reel/Frame 060318/0584 →
Continuity (3)
Provisional Application 63073660 · Sep 2, 2020
Provisional Application 62954728 · Dec 30, 2019
Related Publication 20230055889A1 · Feb 23, 2023
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