BALL JOINT WITH NOTCHED OUTER RING
20230026105 · 2023-01-26
Inventors
- Florent RIVIERE (LONS LE SAUNIER, FR)
- Justin ESTEVE (CRANCOT, FR)
- Lucrecia Osegueda (Montain, FR)
- Vincent Guyard (Assieu, FR)
Cpc classification
F16C2226/52
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C2204/72
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C2202/44
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C11/0685
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C11/0638
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C2220/40
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C2240/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C23/045
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C11/0661
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C11/0623
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C2204/70
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C11/0614
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
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
1. A ball joint comprising: 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 comprising 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, 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 the radial gap between the two notches is larger than the 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, two opposite radial front faces axially delimiting the interior surface and two diametrically opposite notches formed on the interior surface and opening onto at least one of the front faces, the inner ring being inserted in the outer ring via the two notches so that the 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 bisulphide 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.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0027] At least one of the embodiments of the present invention is accurately represented by this application's drawings which are relied on to illustrate such embodiment(s) to scale and the drawings are relied on to illustrate the relative size, proportions, and positioning of the individual components of the present invention accurately relative to each other and relative to the overall embodiment(s). Those of ordinary skill in the art will appreciate from this disclosure that the present invention is not limited to the scaled drawings and that the illustrated proportions, scale, and relative positioning can be varied without departing from the scope of the present invention as set forth in the broadest descriptions set forth in any portion of the originally filed specification and/or drawings. Other objects, advantages and features will emerge from the following description given by way of illustration only and with reference to the appended drawings, in which:
[0028]
[0029]
[0030]
[0031]
[0032]
DETAILED DESCRIPTION OF THE INVENTION
[0033] Those of ordinary skill in the art will appreciate from this disclosure that when a range is provided such as (for example) an angle/distance/number/weight/volume/spacing being between one (1 of the appropriate unit) and ten (10 of the appropriate units) that specific support is provided by the specification to identify any number within the range as being disclosed for use with a preferred embodiment. For example, the recitation of a percentage of copper between one percent (1%) and twenty percent (20%) provides specific support for a preferred embodiment having two point three percent (2.3%) copper even if not separately listed herein and thus provides support for claiming a preferred embodiment having two point three percent (2.3%) copper. By way of an additional example, a recitation in the claims and/or in portions of an element moving along an arcuate path by at least twenty (20°) degrees, provides specific literal support for any angle greater than twenty (20°) degrees, such as twenty-three (23°) degrees, thirty (30°) degrees, thirty-three-point five (33.5°) degrees, forty-five (45°) degrees, fifty-two (52°) degrees, or the like and thus provides support for claiming a preferred embodiment with the element moving along the arcuate path thirty-three-point five (33.5°) degrees.
[0034] In accordance with the embodiment illustrated, the ball joint 1 is a radial ball joint.
[0035] The outer ring 2 includes an interior surface 2a forming bore and an exterior surface 2b radially opposite the interior surface 2a. The outer ring 2 also includes two opposite radial front faces 2c, 2d axially delimiting the interior surface 2a and the exterior surface 2b.
[0036] The inner ring 3 includes an interior surface 3a forming a bore and an exterior surface 3b radially opposite the interior surface 3a. The inner ring 3 also includes two opposite radial front faces (no reference number) axially delimiting the interior surface 3a and the exterior surface 3b.
[0037] The interior surface 2a of the outer ring and the exterior surface 3b of the inner ring are in direct contact one against the other to allow relative movement of the exterior and inner rings 2, 3. In the embodiment illustrated, the interior surface 2a of the outer ring and the exterior surface 3b of the inner ring are in contact one against the other in the radial direction.
[0038] The outer ring 2, illustrated in
[0039] The notches 4 and 5 are sized so that the radial gap between the bottoms of the two notches 4 and 5 is larger than the outside diameter of the inner ring 3 so as to facilitate mounting and demounting the inner ring 3.
[0040] In the example illustrated the interior surface 2a of the outer ring is spherical and concave and the exterior surface 3b of the inner ring is spherical and convex so as to form a spherical ball joint.
[0041] The material of the outer ring 2 includes an alloy with the formula NiCr19Fe18Nb or an alloy with the formula X6NiCrTiMoVB25-15-2. The outer ring 2 is preferably made entirely of an alloy with the formula NiCr19Fe18Nb or an alloy with the formula X6NiCrTiMoVB25-15-2.
[0042] The nickel-based alloy with the formula NiCr19Fe18Nb is for example the material known under the trade mark Inconel® 718.
[0043] The alloy with the formula X6NiCrTiMoVB25-15-2 is for example the material known under the trade mark A286®.
[0044] Moreover, the material of the inner ring 3 includes an alloy with the formula CoCr29W5. The inner ring 3 is preferably made entirely of an alloy with the formula CoCr29W5.
[0045] The alloy with the formula CoCr29W5 is for example the material known under the trade mark Alacrite® 602 or Stellite® 6.
[0046] The mechanical strength and corrosion resistance properties of the alloys with the formula NiCr19Fe18Nb, with the formula X6NiCrTiMoVB25-15-2 and with the formula CoCr29W5 are able to withstand conditions of high temperature, above 300° C.
[0047] The combination of these materials of the exterior and inner rings 2 and 3 enables use of the ball joint 1 with the notched outer ring at high temperatures, above 300° C.
[0048] The combination of these materials further imparts the necessary sliding properties to the interior surface 2a and the exterior surface 3b respectively of the exterior and inner rings for relative movement thereof.
[0049]
[0050] In a first or assembly step 6 the inner ring 3 including an alloy with the formula CoCr29W5 is inserted in the outer ring 2 including an alloy with the formula NiCr19Fe18Nb or an alloy with the formula X6NiCrTiMoVB25-15-2 by passing it through the notches 4 and 5.
[0051] The inner ring 3 is then in an intermediate position, illustrated in
[0052] In a subsequent pivoting step 7 the inner ring 3 is pivoted 90° inside the outer ring 2 so that the interior surface 2a and the exterior surface 3b respectively of the outer ring 2 and of the inner ring 3 are disposed face-to-face.
[0053] As can be seen in
[0054] Moreover, the method of manufacture may comprise a step 8 of lubrication of the interior surface 2a of the outer ring 2 and of the exterior surface 3b of the inner ring 3.
[0055] The lubricant is for example a dry lubricant and may include molybdenum bisulphide or graphite.
[0056] In accordance with one embodiment, the method of manufacture may further comprise, before the assembly step 6, a step of manufacturing the outer and inner rings 2, 3. The step of manufacturing the outer and inner rings 2, 3 includes the formation of the two notches 4, 5 on one of the front faces 2c, 2d of the outer ring 2.