The present invention relates to a bearing device for a wind turbine, wherein the bearing arrangement has two bearing partners, which are arranged rotatably relative to each other about a common axis. A gliding pad acting in an axial direction is provided between the bearing partners. For wind turbines, such bearing arrangements are arranged between the tower of the facility and the nacelle, and are used inter alia to absorb and transfer thrust, centrifugal and yawing forces from the machine frame of the nacelle to the tower. The wind tracking of the nacelle is here enabled by means of the bearing arrangement, the so-called azimuth bearing and the azimuth drive. Here, the nacelle is rotated in the horizontal plane about a substantially vertical rotation axis in such a manner that the wind perpendicularly flows against a rotation plane of the rotor and consequently the energy output is maximized.
Such a bearing arrangement is known from EP 124702181. Here, a slide bearing is mentioned, wherein an embodiment presents the features specified in the preamble of the independent claim. An annular rib arranged on a bearing partner engages into an annular groove provided on another bearing partner, which is provided with circumferential surfaces having gliding pads. The gliding pads are divided into segments and connected fixedly, but detachably to the rib. This allows the inspection of the gliding pads and, if necessary, their replacement in operation. The outer ring is divided into segments which are fixed on the supporting framework by means of screws. This may be evaluated as disadvantageous, because the number of linings arranged in a circle is very high. This requires a high number of pieces, i.e. higher costs due to increased wear and thus an increased necessity for replacement of the linings. Furthermore, the replacement of the linings is made more difficult by their fixing by means of screws.
It is an object of the invention to provide a bearing arrangement for a wind turbine, which inter alia avoids the disadvantages of the prior art. In particular, a maintenance-friendly and force flow-optimized arrangement of the gliding pads is to be enabled. The replaceability of the gliding pads is to be improved in a simple and cost-effective manner. It exists also the option that the bearing arrangement can simultaneously serve as an active brake.
The object is achieved according to the invention with the features of the independent claim 1 by the fact that the individual gliding pads are arranged in pockets between the two bearing partners, wherein the pockets are provided in the material of the machine frame.
The axial gliding pads are disc-shaped, so that they can be sawn from plate material, whereby expensive milling or turning operations are not required.
At least one stop is provided on the pocket in such a manner that the gliding pads is mountable, and thus a form fit connection for power transmission, which is effective in a circumferential direction, is provided between the slide lining and the bearing partner. This results in the advantage that less linings are provided, which are disposed in the pockets.
An advantageous characteristic of the invention is that the construction is designed so that the necessary machine processing can be effected one-sided on the bottom side of the machine frame. The chipping volume is small and no particular requirements on form and position tolerances as well as the surface quality are raised.
The pocket is provided as a recess directly in one of the bearing partners, recommendable directly on the machine frame. The pocket extends to a radial edge of the machine frame, thus the replaceability of the gliding pads becomes simplified and more economical.
The pocket is designed in such a manner that the gliding pad is mountable in a radial direction. By the fact that the gliding pads are divided into segments, they can be replaced individually. The pocket includes a first radially effective arrester, which limits the moving possibility of the slide lining in the assembled state. This prevents that the gliding pad may radially slide out of the pocket during the operation. A second radially effective arrester, which is formed as a stopper, fixes the radial position of the assembled slide lining.
The axial gliding pads are loaded by springs. Due to the flexibility of the disc spring construction, the system is relatively insensitive to unevenness of the bearing ring. Furthermore, the system offers the possibility to be able to set the inhibition in a wide range by changing the axial and radial pretension. The setting of the radial pretension is carried out via the vertical movement of the conical gliding pad. For this purpose, adjusting screws, through which the radial pad can be moved along the wedge, are provided not only in the machine frame but also in the locking plate.
Lifting means are provided for replacing the gliding pads. The lower gliding pads are released from the spring tension so that the gliding pads are located in the pockets in an unloaded state. The two bearing partners are lifted away from each other by hydraulic posts, which are temporarily installed and operated by means of a manually operating hydraulic pump, and the gliding pads can be replaced.
One bearing partner encompasses the other bearing partner in the axial direction, wherein a further gliding pad is provided between the bearing partners. In this case, a bearing partner, which is designed as a machine frame, is arranged rotatably relative to another bearing partner, which is designed as a bearing ring, over a common axis. An external tooth system is provided on the bearing ring. It should be noted that the bearing can be guided not only internally but also externally. Accordingly, the toothing provided on the bearing ring is provided internally or externally, however, internal toothings are usually associated with higher production costs.
The lubricant supply is ensured by a lubricating unit in the machine frame. After a certain period of use of the bearing arrangement, it can be relubricated from the outside in order to compensate for a possible loss of lubricant. A simple felt pad with a lubricant supply ensures the lubrication of the linings.
A further advantage of the invention is that at least one actively actuatable brake device is provided in a bearing partner. For this purpose, hydraulic cylinders can be installed into the corresponding bores of the locking plates instead of disc spring units.
Further details of the invention will become apparent from the drawings on the basis of the description.
In the drawings,
In a pocket 31 on the machine frame 10 a lubricating device 33 is provided for lubricating the axial bearing surface of the bearing ring 12 facing the machine frame 10 and the linings 17 of the machine frame 10. It is conceivable to arrange several lubricating devices distributed over the circumference. A simple felt pad with a lubricant supply ensures the lubrication of radial 18 and axial linings 17, 19.
Based on the section shown in
The lower sliding device 16, pre-tensionable in the locking plate 11, comprises a cylindrical housing 24, which is closed with a plug 25 in a form-fitting manner. An adjusting screw 28 with a lock nut 26, which acts on the disc springs 27, is axially screwed in this plug 25. The disc springs 27 generate a pretension force, which acts on the gliding pad 19. A bore, which is connectable to a non-illustrated lubricant supply, can lead through the sliding device 16.
To replace the gliding pads 17 of the machine frame 10, the pretension devices 16 are unscrewed so that the lower gliding pads 19 are released from the pretension. Thereafter, the hydraulic posts 30, which can be temporarily installed and can be operated by a hydraulic pump, are activated. In this way, the machine frame 10 is lifted away from the bearing ring 12 so that the gliding pads 17 are located on the bearing ring 12 in the pockets 20 or on the bearing ring 12 in an unloaded state. Then, the blocking means 22 is opened and the gliding pads 19 can be removed in the radial direction 8 out of the pockets 20 and replaced. After the replacement, the blocking means 22 is mounted again and the machine frame 10 is lowered.
To implement an active brake, instead of the disc spring units 27, actuatable operating means such as hydraulic cylinders 30 can be installed into the corresponding bores.
The radial gliding pads 18 rest against the machine frame 10 and are designed in a wedge form in this embodiment. The setting of the radial pretension is affected through the axial movement of the wedge-shaped gliding pad 18. For this purpose, adjusting screws 23 are provided in the machine frame 10, via which the radial pads 18 can be moved axially. Within the scope of the invention, alternatively, other radial bearings can also be provided, for example, this can also be designed in a bush form.
The feature combinations disclosed in the described embodiments should not limit the invention, and instead, the features of different embodiments can also be combined with each other.
Number | Date | Country | Kind |
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10 2009 049 769.2 | Oct 2009 | DE | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/EP2010/065578 | 10/17/2010 | WO | 00 | 5/17/2012 |