Locking boot for ball joint
09771971 · 2017-09-26
Assignee
Inventors
- Simon Winter (Toronto, CA)
- Jack McVeigh (Toronto, CA)
- Tyler Kearns (Toronto, CA)
- Rosan Luiz (Toronto, CA)
Cpc classification
F16C2326/01
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C11/0671
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C2326/24
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C11/0685
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16J3/042
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B62D7/166
PERFORMING OPERATIONS; TRANSPORTING
B60G7/001
PERFORMING OPERATIONS; TRANSPORTING
F16C11/0623
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C11/0695
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C11/0614
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16C11/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
An automotive component having an opening through which a ball joint extends, the ball joint comprising: a housing having an exterior substantially cylindrical surface, a seating surface radially extending from the exterior surface for abutting an adjacent first side of the automotive component, and a peripheral groove disposed in the exterior surface spaced axially from the seating surface a predetermined distance; a ball stud having a ball end mounted within the housing and a shank extending axially out of a crown of the housing; a flexible boot having an distal end sealingly engaged on the shank and an opposing proximal base end, the base end including a metal base ring with an inwardly extending flexible detent engaged in the peripheral groove in the housing and a base seal sealing engaged on the exterior surface, the base ring having a radially extending abutment surface for retaining an adjacent second side of the automotive component, and wherein the automotive component is selected from the group consisting of: a control arm; a stabilizer link; a stabilizer bar; and a steering linkage.
Claims
1. A ball joint, for mounting into an opening through an automotive component, the ball joint comprising: a housing having an exterior substantially cylindrical surface, a seating surface radially extending from the exterior surface for abutting an adjacent first side of the automotive component, and a peripheral groove disposed in the exterior surface spaced axially from the seating surface a predetermined distance; a ball stud having a ball end mounted within the housing and a shank extending axially out of a crown of the housing; a flexible boot having a distal end sealingly engaged on the shank and an opposing proximal base end, the base end including a metal base ring with an inwardly extending flexible detent engaged in the peripheral groove in the housing and a base seal sealing engaged on the exterior surface, the base ring having a radially extending abutment surface for retaining an adjacent second side of the automotive component against axial movement relative to the housing.
2. The ball joint according to claim 1, wherein the base ring has an annular exterior wall extending from an outer periphery of the abutment surface.
3. The ball joint according to claim 2, wherein the base ring is formed of sheet metal and the detent comprises radially extending resilient tabs.
4. The ball joint according to claim 3, wherein the tabs extend from an inner periphery of the abutment surface in an axial direction toward the crown of the housing.
5. The ball joint according to claim 1 wherein the peripheral groove in the housing has a radially extending detent surface.
6. The ball joint according to claim 5 wherein the peripheral groove in the housing has a tapered surface extending from a radially inward edge of the detent surface to the exterior substantially cylindrical surface of the housing.
7. The ball joint according to claim 1 wherein the crown of the housing has a distal crown diameter less than an at rest inner detent diameter.
8. The ball joint according to claim 1 wherein the base end of the flexible boot includes a laterally extending installation flange of flexible material joined to the metal base ring opposite the abutment surface.
9. The ball joint according to claim 8 comprising a tubular installation tool having an annular contact end engageable with the laterally extending installation flange of the flexible boot and an impact end opposite the annular contact end.
10. An automotive component having an opening through which a ball joint extends, the ball joint comprising: a housing having an exterior substantially cylindrical surface, a seating surface radially extending from the exterior surface for abutting an adjacent first side of the automotive component, and a peripheral groove disposed in the exterior surface spaced axially from the seating surface a predetermined distance; a ball stud having a ball end mounted within the housing and a shank extending axially out of a crown of the housing; a flexible boot having a distal end sealingly engaged on the shank and an opposing proximal base end, the base end including a metal base ring with an inwardly extending flexible detent engaged in the peripheral groove in the housing and a base seal sealing engaged on the exterior surface, the base ring having a radially extending abutment surface for retaining an adjacent second side of the automotive component against axial movement relative to the housing, and wherein the automotive component is selected from the group consisting of: a control arm; a stabilizer link; a stabilizer bar; and a steering linkage.
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.
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(10) Further details of the invention and its advantages will be apparent from the detailed description included below.
DETAILED DESCRIPTION OF PREFERRED EMBODIMENTS
(11)
(12) To retain the housing 3 in the component 2 if the press fit connection fails, a removable retention spring clip 7 is provided adjacent the opposite second side 8 of the automotive component 2. The retention spring clip 7 can be a standard C-shaped snap ring clip or retaining ring removable with needle nosed pliers that are conventionally used. The retention spring clip 7 is radially biased inward and snaps into a peripheral retention groove 9 disposed in the exterior surface of the housing 3. The retention groove 9 is spaced axially from the seating surface 5 a predetermined distance that equals the thickness “t” of the automotive component 2 plus a gap “g”. The gap “g” is generally provided to accommodate manufacturing tolerances and to provide clearance for the points of the snap ring pliers used in installation or removal that project into holes (not shown) in the ends of the C-shaped retention spring clip 7.
(13) The housing 3 encloses a ball stud 10 having a ball end 11 mounted within a lower spherical bearing 12. In the example shown the upper portion of the ball end 11 bears against a spherical surface of the interior of the housing 3, however alternatively an upper bearing may be provided. The ball end 11 and bearing 12 are lubricated and held in the housing 3 by a roll formed edge 15 that is mechanically formed after the closure plate 16 and spring washer 17 are installed in the housing 3. Port 18 is fitted with a grease nipple (not shown) and lubricant is injected into the interior of the housing 3.
(14) The ball stud 10 has a shank 13 extending axially out of a crown 14 of the housing 3. A threaded end 19 of the ball stud 10 has a castle nut 20 and spring pin 21 to connect the ball stud 10 and automotive component 2 to other parts of the automotive suspension or steering system (not shown).
(15) In the prior art example of
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(19) Referring to
(20) The housing 27 has an exterior substantially cylindrical surface that is press fit into the opening 32 from bottom to top as drawn. When fully press fit in place, a flange 38 radially extending from the exterior surface of the housing 27 has a seating surface 39 abutting an adjacent first side 40 of the automotive component 31. The peripheral groove 26 in the exterior surface of the housing 27 is spaced axially from the seating surface 39 a predetermined distance “x” as shown in
(21) Referring to
(22) The base ring 28 best seen in
(23) The base end 29 of the flexible boot 30 includes a laterally extending installation flange 46 of flexible material joined to the metal base ring 28 opposite the abutment surface 43. As indicated in
(24) The present invention uses a single metal base ring 28 to perform two functions, namely to retain the flexible boot 30 on the housing 27 and provide a secondary retention to retain the housing 27 in the automotive component 31 in the event that the primary retention means fails, namely the press fit between the ball joint housing and the automotive component. The size of the housing 27 can be reduced axially compared to the prior art since a single retention groove 26 in the exterior surface of the housing 27 is required to engage a single base ring 28 and detents 34. Installation is simplified since only one part is handled and used. A more durable, protected, superior seal against contaminants is provided for the base end 29 of the flexible boot 27 which fits tightly against the adjacent surface 44 of the automotive component 31 and against the tapered surface 42 of the housing 27. The housing 27 is secured tightly to the automotive component 31 without a gap between the retention device (metal base ring 28) and the automotive component 31.
(25) 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.