IP Library › Granted Patent US 12,577,981
Granted Patent B2
US 12,577,981 · App. 17/853,546 · Granted Mar 17, 2026

Ball joint with notched outer ring

Inventors: Florent Riviere (Lons le Saunier, FR); Justin Esteve (Crancot, FR); Lucrecia Osegueda (Montain, FR); Vincent Guyard (Assieu, FR)
Assignee: SKF Aerospace France S.A.S
F16C11/0623
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Quick Facts
Patent No.
US 12,577,981
App. No.
17/853,546
Granted
Mar 17, 2026
Kind
B2
Abstract

A ball joint having an outer ring and an inner ring respectively including an interior surface and an exterior surface in contact one against the other. The outer ring including two opposite radial front faces axially delimiting the interior surface and two diametrically opposite notches formed on the interior surface and opening onto one of the front faces. Furthermore, the material of the outer ring includes an alloy with the formula NiCr19Fe18Nb or an alloy with the formula X6NiCrTiMoVB25-15-2 and the material of the inner ring includes an alloy with the formula CoCr29W5.

Claims (18)

1 . A ball joint comprising:

an outer ring having an interior surface and an inner ring having an exterior surface in contact against the interior surface of the outer ring,

the outer ring comprising a first radial front surface and a second radial front surface which are oppositely positioned to axially delimit the interior surface,

the outer ring defining two diametrically opposite notches formed on the interior surface and opening onto the first radial front surface, a perimeter of the two diametrically opposite notches along the first radial front surface each having a central portion that forms a bottom that is linear such that a radial distance between the bottoms of each of the diametrically opposed notches is greater than an outside diameter of the inner ring, when viewing the first radial front surface perpendicularly along an axis of rotation the perimeter of each of the two diametrically opposite notches includes a first arcuate surface and a second arcuate surface each on an opposite end of the central portion that forms a bottom that is linear,

wherein the material of the outer ring includes an alloy with the formula NiCr19Fe18Nb or an alloy with the formula X6NiCrTiMoVB25-15-2 and the material of the inner ring includes an alloy with the formula CoCr29W5.

2 . The ball joint according to claim 1 , in which the two notches are configured so that a radial gap between the two notches is larger than an outside diameter of the inner ring.

3 . The ball joint according to claim 1 , wherein the interior surface of the outer ring is spherical and concave and the exterior surface of the inner ring is spherical and convex.

4 . A method of manufacturing a ball joint comprising:

a step of assembling an outer ring and an inner ring, the outer ring comprising an interior surface, first and second opposite radial front faces axially delimiting the interior surface and two diametrically opposite notches formed on the interior surface and opening onto the first opposite radial front face, a perimeter of the two diametrically opposite notches along the first radial front surface each having a central portion that forms a bottom that is linear such that a radial distance between the bottoms of each of the diametrically opposed notches is greater than an outside diameter of the inner ring, when viewing the first radial front surface perpendicularly along an axis of rotation the perimeter of each of the two diametrically opposite notches includes a first arcuate surface and a second arcuate surface each on an opposite end of the central portion that forms a bottom that is linear, the inner ring being inserted in the outer ring via the two notches so that rotation axes of the outer ring and the inner ring are perpendicular; and

a step of pivoting the inner ring 90° inside the outer ring so that the respective interior surface and exterior surface of the outer ring and the inner ring are radially in contact one against the other and the rotation axes of said outer rings are coaxial, wherein

the material of the outer ring includes an alloy with the formula NiCr19Fe18Nb or an alloy with the formula X6NiCrTiMoVB25-15-2 and the material of the inner ring includes an alloy with the formula CoCr29W5.

5 . The method of manufacture according to claim 4 , comprising, after the pivoting step, a step of lubricating the interior surface of the outer ring and the exterior surface of the inner ring.

6 . The method of manufacture according to claim 5 , wherein the lubricant includes molybdenum disulphide or graphite.

7 . The method according to claim 4 , further comprising, before the assembly step, a step of manufacturing the outer ring and the inner ring.

8 . A ball joint comprising:

an outer ring having an interior surface and an inner ring having an exterior surface in contact against the interior surface of the outer ring,

the outer ring comprising a first radial front surface and a second radial front surface which are oppositely positioned to axially delimit the interior surface, and

the outer ring defining two diametrically opposite notches formed on the interior surface and opening onto the first radial front surface, a perimeter of the two diametrically opposite notches along the first radial front surface each having a central portion that forms a bottom that is linear such that a radial distance between the bottoms of each of the diametrically opposed notches is greater than an outside diameter of the inner ring, when viewing the first radial front surface perpendicularly along an axis of rotation the perimeter of each of the two diametrically opposite notches includes a first arcuate surface and a second arcuate surface each on an opposite end of the central portion that forms a bottom that is linear.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 12, 2022
From: RIVIERE, FLORENT; ESTEVE, JUSTIN; OSEGUEDA, LUCRECIA; GUYARD, VINCENT
To: SKF AEROSPACE FRANCE S.A.S
Reel/Frame 061745/0178 →
Priority Claims (1)
FR 2107835 · Jul 21, 2021 · national
Continuity (1)
Related Publication 20230026105A1 · Jan 26, 2023
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