Snap-in bearing for automotive ball joint
10605309 ยท 2020-03-31
Assignee
Inventors
- Simon Winter (Toronto, CA)
- Jack McVeigh (Toronto, CA)
- Tyler Kearns (Toronto, CA)
- Rosan Luiz (Toronto, CA)
Cpc classification
F16C33/1065
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C23/046
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C33/046
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C35/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C2226/74
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C17/107
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B62D7/16
PERFORMING OPERATIONS; TRANSPORTING
F16C43/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16C35/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C23/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C33/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C43/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B62D7/16
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A self-aligning rotating joint, for mounting in a first component and connecting to a second component, the rotating joint comprising: a housing having: an external mounting surface; an internal chamber with an internal surface forming a spherical segment symmetric about a center point; a base end with an assembly opening; and an aperture in a cap end opposite the base end; a stud having: a longitudinal axis passing through the center point; a proximal stud end housed within the internal chamber; and a distal connecting end extending through the aperture, the proximal end having a cylindrical surface and a head laterally extending from the cylindrical surface; and a longitudinally split bearing having: an external bearing surface matching the internal surface of the housing; an internal bearing surface matching the cylindrical surface of the stud; and a longitudinal channel extending radially from the internal bearing surface to the external bearing surface.
Claims
1. A self-aligning rotating joint, for mounting in a first component and connecting to a second component, the rotating joint comprising: a housing having: an external mounting surface; an internal chamber with an internal surface forming a spherical segment symmetric about a center point; a base end with an assembly opening; and an aperture in a cap end opposite the base end; a stud having: a longitudinal axis passing through the center point; a proximal stud end housed within the internal chamber; and a distal connecting end extending through the aperture, the proximal end having a cylindrical surface and a head laterally extending from the cylindrical surface; and a longitudinally split bearing having: an external bearing surface matching the internal surface of the housing; an internal bearing surface matching the cylindrical surface of the stud configured to permit the stud to rotate about its longitudinal axis and translate axially relative to the housing; and a longitudinal channel extending radially from the internal bearing surface to the external bearing surface wherein the internal chamber has a maximum lateral width along an equatorial plane of the spherical segment, and includes an assembly portion between the spherical segment and the assembly opening, the spherical segment between the equatorial plane and the assembly portion comprising a bearing detent surface.
2. The self-aligning rotating joint according to claim 1, wherein the assembly portion has one of: a cylindrical surface; and a conical surface tapering radially inward from the assembly opening to the bearing detent surface.
3. The self-aligning rotating joint according to claim 1, wherein the external bearing surface of the split bearing has a maximum lateral width along an equatorial plane of the external bearing surface, extends axially toward the assembly opening, and extends axially toward the aperture.
4. The self-aligning rotating joint according to claim 3, wherein at least one of the internal bearing surface and the external bearing surface includes oil distribution grooves.
5. The self-aligning rotating joint according to claim 1, wherein the split bearing is made from one of: ferrous metal; non-ferrous metal; copper; aluminum; tungstenium; sintered metal; rubber compounds; ceramic; polymer; polyacetal; polytetrafluoroethylene (PTFE); graphite; and composites thereof.
6. The self-aligning rotating joint according to claim 1, wherein the stud includes a middle portion having one of: a cylindrical surface; and a conical surface tapering radially inward from the cylindrical surface of the proximal end to the distal connecting end.
7. The self-aligning rotating joint according to claim 6, wherein the aperture has a diameter larger than a diameter of the stud thereby defining an annular clearance gap surrounding the stud to allow a predetermined angle of roll and pitch stud movement.
8. The self-aligning rotating joint according to claim 1, wherein the housing includes a closure plate disposed in the assembly opening and a peripheral roll formed edge securing the closure plate.
9. The self-aligning rotating joint according to claim 8, wherein the housing includes an abutment flange extending laterally outward from the external mounting surface.
10. The self-aligning rotating joint according to claim 8, wherein the head is configured to translate axially between the closure plate and the longitudinally split bearing.
11. The self-aligning rotating joint according to claim 1, wherein the bearing detent surface narrows radially between the equatorial plane and an inner edge of the assembly portion defining a portion of the bearing detent surface that engages and retains the external bearing surface of the longitudinally split bearing.
12. The self-aligning rotating joint according to claim 1, wherein the longitudinally split bearing rebounds laterally outward into the spherical segment when inserted into the spherical segment from the assembly portion.
Description
DESCRIPTION OF THE DRAWINGS
(1) In order that the invention may be readily understood, one embodiment of the invention is illustrated by way of example in the accompanying drawings.
(2)
(3)
(4)
(5)
(6)
(7)
(8) Further details of the invention and its advantages will be apparent from the detailed description included below.
DETAILED DESCRIPTION OF PREFERRED EMBODIMENTS
(9)
(10) The self-aligning rotating joint has a housing 11 that is press fit mounted in a first component (such as one of the yoke 2 or center axle 1) and connects to a second component (such as the other of the center axle 1 or yoke 2) using a threaded distal end 12 of the stud 9 with a nut (not shown). The housing 11 includes an abutment flange 13 extending laterally outward from the external mounting surface 14 that is press fit into a matching bore in a yoke 2 or center axle 1 in a conventional manner. The housing 11 has a closure plate 15 disposed in an assembly opening 16 and a peripheral roll formed edge 17 that secures the closure plate 15 also in a conventional manner. The closure plate 15 seals the interior of the housing 11 and the bearing 8 is immersed in lubricant.
(11) The housing 11 is best seen in isolation in
(12) As seen in
(13) The spherical segment 21 between the equatorial plane 23 and the inner edge 25 of the assembly portion 24 forms a spherical bearing detent surface 26 which retains the split bearing 8 in a snap-in progressive installation demonstrated in
(14)
(15) The bearing 8 has an external spherical bearing surface 27 matching the spherical segment 21 of the internal surface of the housing 11. The bearing 8 has an internal bearing surface 28 matching the cylindrical surface 29 (see
(16) Referring to
(17) The longitudinal channel 30 and the maximum lateral width along the equatorial plane enable the split bearing 8 to flex slightly as the bearing 8 is compressed laterally in order to be snap-locked and to be secured into position within the spherical segment 21 by the bearing detent surface 26.
(18) Referring to
(19) The stud 9 includes a middle portion 36 having a conical surface that tapers radially inward from the cylindrical surface 29 of the proximal end 33 to the distal connecting end 34. The middle portion 36 could also be cylindrical. As seen in the detail of
(20) The roll and pitch movement of the stud 9 in the direction indicated with angle is permitted by the interaction between the spherical external bearing surface 27 and the spherical segment 21 of the housing 11. Roll and pitch about the center point 22 allows the rotating stud 9 to self-align thereby avoiding the misalignment x with a companion ball joint 5 indicated in
(21) Although the above description relates to a specific preferred embodiment as presently contemplated by the inventors, it will be understood that the invention in its broad aspect includes mechanical and functional equivalents of the elements described herein.