The invention relates to a vacuum pump having a cup-shaped housing, a rotor eccentrically mounted for rotation in the housing, at least one blade mounted in or on the rotor, and a housing cover closing the housing, wherein the rotor has a rotor shaft, which passes through the cup-shaped housing and by which the rotor is driven.
Vacuum pumps having such a configuration are known and typically include a housing made of metal, in which a rotor is rotatably supported via its rotor shaft and in which the work chambers are formed. The pump compartment is sealed to the atmosphere by pressure oil lubrication. The rotor shaft is caused to rotate for example by the engine of a motor vehicle, in particular by the camshaft thereof. At low rotational speed of the shaft, the bearing is insufficiently supplied with oil by the intermittent lubrication at negative pressure in the pump compartment. As a result of the pressure difference, oil flows into the pump compartment and the rotation speed of the shaft is too low to establish sufficient lubrication of the bearing. The mixed friction causes an increased torque.
The invention is therefore based on the object to provide a vacuum pump in which the torque is decreased in this state, i.e. at low rotation speeds.
This object is solved with a vacuum pump of the aforementioned type in that the rotor shaft is sealed by a seal in the housing.
In view of the in particular radial seal, the bearing gap is sealed to the outside from the atmosphere so that the bearing is sufficiently supplied with oil and in the evacuated state reduces the torque especially in the case of idling rotation speed of the engine. The solution according to the invention can be used in vacuum pumps in particular with an intermittent lubrication.
For optimal arrangement of the seal and for providing a sufficient sealing surface, the housing has a housing attachment. for receiving the rotor shaft.
According to an exemplary embodiment, the drive opening in the housing attachment to receive the rotor shaft forms the sealing surface for the seal. The seal is seated hereby on the rotor shaft. In particular, the rotor shaft has a circumferential groove for receiving the seal.
According to preferred exemplary embodiments, the seal is a radial seal, in particular an O-ring, a radial molded seal ring, a shaft seal ring, or a labyrinth seal.
In the case of a labyrinth seal, the drive opening is configured in the region of its free end as a stepped bore and is tapered.
Further advantages, features and details of the invention are set forth from the sub-claims as well as in the following description in which particularly preferred exemplary embodiments are described in detail with reference to the drawing. The features shown in the drawing and mentioned in the description and the claims can be relevant individually or in any combination.
In the drawing, it is shown in:
In
The rotor shaft 22 is provided with a seal 34, so that neither lubricant can leak out nor air and/or dirt can enter the interior space 16. In the exemplary embodiment of
Number | Date | Country | Kind |
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202009010890.2 | Aug 2009 | DE | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/EP2010/060132 | 7/14/2010 | WO | 00 | 2/10/2012 |