Joint member for wind power generation apparatus, and wind power generation apparatus
US-2017009748-A1 · Jan 12, 2017 · US
US9995280B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9995280-B2 |
| Application number | US-201414913481-A |
| Country | US |
| Kind code | B2 |
| Filing date | Aug 28, 2014 |
| Priority date | Aug 29, 2013 |
| Publication date | Jun 12, 2018 |
| Grant date | Jun 12, 2018 |
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A joint structure includes a clutch unit interposed between a shaft joint and a shaft body which is one of an output shaft of a speed increaser and an input shaft of a power generator. The clutch unit includes: a shaft coupling portion rotating integrally with the shaft body; a joint coupling portion rotating integrally with the shaft joint; and a one-way clutch provided between the shaft coupling portion and the joint coupling portion. The one-way clutch makes a connection integrally rotatably between the shaft coupling portion and the joint coupling portion in a state in which a rotation speed of the output shaft is higher than that of the input shaft, and releases the connection between the shaft coupling portion and the joint coupling portion in a state in which the rotation speed of the output shaft is lower than that of the input shaft.
Opening claim text (preview).
The invention claimed is: 1. A wind power generation device comprising: a main shaft which rotates by wind power; a speed increaser which increases a speed of a rotation of the main shaft, and which outputs the rotation from an output shaft; a power generator which comprises an input shaft which rotates with the rotation of the output shaft as an input, and which generates power by a rotation of a rotor which rotates integrally with a rotation of the input shaft; and a joint structure including: a clutch unit interposed between: a shaft joint which is provided between the output shaft and the input shaft and which allows the torque to be transmitted between the output shaft and the input shaft; and a shaft body which is one of the output shaft and the input shaft, wherein the clutch unit comprises: a shaft coupling portion which rotates integrally with the shaft body; a joint coupling portion which rotates integrally with the shaft joint; and a one-way clutch provided between the shaft coupling portion and the joint coupling portion, wherein the one-way clutch makes a connection integrally rotatably between the shaft coupling portion and the joint coupling portion in a state in which a rotation speed of the output shaft is higher than a rotation speed of the input shaft, and releases the connection between the shaft coupling portion and the joint coupling portion in a state in which the rotation speed of the output shaft is lower than the rotation speed of the input shaft, wherein the shaft coupling portion is formed of a member separate from the shaft body and spline-connected to the shaft body, wherein the joint coupling portion is formed of a member separate from the shaft joint and to the shaft joint, wherein an outer raceway ring of the one-way clutch is integrated with the joint coupling portion and an inner raceway ring of the one-way clutch is fitted to and integrally rotatable with the shaft coupling portion, wherein the inner raceway ring is radially aligned with a cage and rollers of the one-way clutch, wherein the joint structure further comprises a rolling bearing as a whole interposed between the shaft coupling portion and the joint coupling portion, wherein the shaft coupling portion is formed of a shaft-shaped member, and the joint coupling portion is formed of an elongated tubular member situated radially outside the shaft-shaped member, wherein the generator and the speed increaser are on opposite sides of the one-way clutch in an axial direction of the input shaft and the output shaft, and wherein the one-way clutch is interposed between the shaft coupling portion and the joint coupling portion, and comprises an engagement element which is capable of making an engagement with the shaft coupling portion and the joint coupling portion in a state in which the rotation speed of the output shaft is higher than the rotation speed of the input shaft and which releases the engagement in a state in which the rotation speed of the output shaft is lower than the rotation speed of the input shaft. 2. The joint structure according to claim 1 , wherein the shaft coupling portion comprises a coupling shaft portion which is coupled to the shaft body, and wherein a hole extending in an axial direction is formed on an end portion of one of the coupling shaft portion and the shaft body, and an insertion shaft portion inserted in the hole and incapable of relatively rotating but capable of moving in the axial direction with respect to the hole is formed on an end portion of the other of the coupling shaft portion and the shaft body. 3. The joint structure according to claim 2 , wherein the hole is a spline hole, and the insertion shaft portion is a spline shaft.
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