BEARING ASSEMBLY
20220373024 ยท 2022-11-24
Inventors
- Dario MOLINELLI (Carnate (Monza e Brianza), IT)
- Franco MAINO (Brugherio (Monza e Brianza), IT)
- Michele RESTUCCIA (Milano, IT)
Cpc classification
F16C23/046
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C35/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C11/0647
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C2229/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C25/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C43/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C2326/43
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A bearing assembly includes a housing, a spherical bearing located within the housing, and two outer races positioned between the spherical bearing and the housing. The outer races are configured in sliding engagement with the spherical bearing to allow the spherical bearing to rotate relative to the housing. The assembly also includes a tightening element configured to engage a first of the two outer races and tighten the outer races against the spherical bearing. The assembly is configured to provide a primary load path from the tightening element to the housing, wherein the primary load path leads from the tightening element to the housing via the outer races whilst bypassing the spherical bearing.
Claims
1. A bearing assembly comprising: a housing; a spherical bearing located within the housing; two outer races positioned between the spherical bearing and the housing, wherein the outer races are configured in sliding engagement with the spherical bearing to allow the spherical bearing to rotate relative to the housing; and a tightening element configured to engage a first of the two outer races and tighten the outer races against the spherical bearing, wherein the assembly is configured to provide a primary load path from the tightening element to the housing, wherein the primary load path leads from the tightening element to the housing via the outer races whilst bypassing the spherical bearing.
2. The bearing assembly of claim 1, wherein the bearing assembly comprises a shim between the first and second outer races, and the primary load path leads through the shim.
3. The bearing assembly of claim 2, wherein the shim contacts the first and second outer races to transfer load therebetween.
4. The bearing assembly of claim 2, wherein the first and second outer races and the shim are positioned concentrically between the spherical bearing and the housing.
5. The bearing assembly of claim 2, wherein the tightening element is configured to tighten so as to press the first outer race against the shim, which in turn presses the second outer race against a portion of the housing so as to provide the primary load path.
6. The bearing assembly of claim 2, wherein the shim is an annular piece.
7. The bearing assembly of claim 1, wherein the tightening element is configured to tighten the outer races against the spherical bearing to provide a preload of the bearing assembly.
8. The bearing assembly of claim 1, wherein the tightening element is a screw.
9. The bearing assembly of claim 1, wherein the housing comprises a surface, optionally a shoulder, against which the second outer race is configured to abut in use.
10. The bearing assembly of claim 1, wherein the housing comprises an inner cylindrical bore with a screw thread which engages with a screw thread of the tightening element.
11. The bearing assembly of claim 1, wherein the two outer races have curved inner surfaces which complement an outer surface of the spherical bearing to permit a continuous sliding contact therebetween.
12. A linear actuator comprising: the bearing assembly of claim 1.
13. A linear actuator as claimed in claim 12, further comprising: a shaft that extends through and is configured to move with the spherical bearing.
14. A maintenance method for the bearing assembly of claim 1, the method comprising: defining an acceptable range of breakaway torque for the spherical bearing; and tightening the tightening member until the breakaway torque is within the acceptable range for the bearing assembly.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0030]
[0031]
[0032]
[0033]
[0034]
DETAILED DESCRIPTION
[0035]
[0036] The size (and especially the width) of the shim 56 is selected so that, in operating conditions, it is able to contact both of the two outer races 34, 36 when these are also in contact with the spherical bearing 26.
[0037] When the outer nut 44 is tightened into contact with the right-hand outer race 34, the outer nut 44 exerts a force onto the right-hand outer race 34 in the same manner as described above in respect of
[0038] In contrast to the arrangement shown in
[0039] Accordingly, by including the shim 56 between the two outer races 34, 36, a lower force is exerted by the outer nut 44 onto the spherical bearing 26 via the outer races 34, 36.
[0040]
[0041] This is illustrated in the top graph in