Planet gear bearing in a planetary gearset
US-2015377343-A1 · Dec 31, 2015 · US
US9816556B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9816556-B2 |
| Application number | US-201314060160-A |
| Country | US |
| Kind code | B2 |
| Filing date | Oct 22, 2013 |
| Priority date | Oct 22, 2012 |
| Publication date | Nov 14, 2017 |
| Grant date | Nov 14, 2017 |
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Rolling bearing ( 1 ) comprising an inner ring ( 3 ), an outer ring ( 2 ), at least one row of rolling elements which are arranged between raceways formed on the rings ( 2, 3 ) and a ring gear ( 6 ) that has a circumference of less than 360° and is fixed to one of the rings ( 2 ). The ring gear ( 6 ) is formed of a single gear segment ( 7 ) which has a circumference substantially equal to the circumference of the ring gear ( 6 ) and is provided on its inner or outer peripheral surface with a plurality of meshing means ( 7 b ) and fixed only to one of either the inner or outer rings ( 3 ) of the rolling bearing ( 1 ).
Opening claim text (preview).
The invention claimed is: 1. A rolling bearing comprising: a first ring having a first raceway, the first ring having a first axial first ring end and a second axial first ring end, a second ring having a second raceway, the second ring having a first axial second ring end and a second axial second ring end, at least one row of rolling elements disposed between the first raceway and the second raceway, and a ring gear having a circumference less than three-hundred sixty degrees (360°), the ring gear being fixed to the first ring and having a ring gear axial length equal to a first ring axial length, the ring gear being completely overlapped by the first ring such that, when viewed in axial cross-section, no portion of the ring gear extends axially past either the first axial first ring end or the second axial first ring end in a direction away from the at least one row of rolling elements, wherein the ring gear is formed by a single gear segment having a circumference substantially equal to the circumference of the ring gear and including a plurality of radial teeth disposed on a peripheral surface thereof and fixed to the first ring, the plurality of teeth each having an axial tooth end which is axially aligned with the first axial first ring end of the first ring, the first axial first ring end and the axial tooth end of each of the plurality of radial teeth being axially spaced from both the first axial second ring end and the second axial second ring end, wherein the gear segment further comprises an axial portion extending axially from a radial surface of the gear segment, wherein the axial portion comprises a first plurality of radial drillings that are each configured to cooperate with a corresponding one of a second plurality of radial drillings in the first ring so that the ring gear can be fixed to the first ring. 2. The rolling bearing according to claim 1 , wherein the ring gear is fixed to an inner surface of the first ring, the gear segment being provided on its inner peripheral surface with the plurality of radial teeth. 3. The rolling bearing according to claim 2 , wherein the circumference of the ring gear is less than or equal to 90°. 4. The rolling bearing according to claim 3 , wherein the circumference of the ring gear is equal to 60°. 5. A wind turbine comprising: a nacelle, mounted on a mast and enclosing a generator intended to produce electrical energy, a rotor provided with a hub supporting at least two blades, and a rolling bearing mounted between the hub and a blade, the rolling bearing providing; a first ring having a first raceway, the first ring having a first axial first ring end and a second axial first ring end, a second ring having a second raceway, the second ring having a first axial second ring end and a second axial second ring end, at least one row of rolling elements disposed between the first raceway and the second raceway, and a ring gear having a circumference less than three-hundred sixty degrees (360°), the ring gear being fixed to the first ring and having a first ring gear axial length equal to a first ring axial length, the ring gear being completely overlapped by the first ring such that, when viewed in axial cross-section, no portion of the ring gear extends axially past either the first axial first ring end or the second axial first ring end in a direction away from the at least one row of rolling elements, wherein the ring gear is formed by a single gear segment having a circumference substantially equal to the circumference of the ring gear and including a plurality of radial teeth disposed on a peripheral surface thereof and fixed to the first ring, the plurality of teeth each having an axial tooth end which is axially aligned with the first axial first ring end of the first ring, the first axial first ring end and the axial tooth end of each of the plurality of radial teeth being axially spaced from both the first axial second ring end and the second axial second ring end, wherein the gear segment further comprises an axial portion extending axially from a radial surface of the gear segment, wherein the axial portion comprises a first plurality of radial drillings that are each configured to cooperate with a corresponding one of a second plurality of radial drillings in the first ring so that the ring gear can be fixed to the first ring.
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