IP Library Granted Patent US 9,017,051
Granted Patent B2
US 9,017,051 · App. 13/900,843 · Granted Apr 28, 2015

Rotary vacuum pump with a discharge compensating channel

Inventor: Eric Figoni (Erome, FR)
Assignee: Oerlikon Leybold Vacuum GmbH
F04C29/028F04C18/3442F04C25/02F04C27/02F04C28/06F04C28/28F04C29/128F04C2220/10
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Quick Facts
Patent No.
US 9,017,051
App. No.
13/900,843
Granted
Apr 28, 2015
Kind
B2
Abstract

A rotary vacuum pump includes a suction chamber ( 12 ) in a housing ( 10 ). A rotor ( 14 ) is eccentrically mounted in the suction chamber ( 12 ). Sliding vanes ( 18 ) are connected to the rotor ( 14 ). Further, a discharge channel ( 30 ) is connected to the suction chamber ( 12 ) and to an oil chamber ( 32 ). A valve ( 38 ) is disposed between the discharge channel ( 30 ) and the oil chamber ( 32 ) in order to prevent the medium from flowing back from the oil chamber ( 32 ) into the suction chamber ( 12 ). At least one compensating channel ( 50 ) is connected to the discharge channel ( 30 ) and to the oil chamber ( 32 ).

Claims (24)

1. A rotary vacuum pump comprising:

a housing including a suction chamber,

a rotor eccentrically mounted in the suction chamber,

sliding vanes connected to the rotor for displacement therein,

a discharge channel connected to the suction chamber and to an oil chamber,

a valve arranged between the oil chamber and the discharge channel to prevent a backflow of medium from the oil chamber into the suction chamber,

at least one compensating channel connected to the discharge channel and a zone at atmospheric pressure, wherein the at least one compensating channel is formed as a partially covered groove, and

a structure which covers a portion of the at least one compensating channel such that the at least one compensating channel has fluid contact with oil in the oil chamber.

2. The rotary vacuum pump according to claim 1 , wherein the groove is defined in a flange of the housing.

3. The rotary vacuum pump according to claim 1 , wherein the groove of the at least one compensating channel is partially covered by a portion of the valve.

4. The rotary vacuum pump according to claim 3 , wherein the valve includes an elastically deformable valve tongue which partially covers said groove forming the at least one compensating channel.

5. The rotary vacuum pump according to claim 1 , wherein the at least one compensating channel is arranged in such a manner that, after completion of the discharge of medium from the suction chamber, the at least one compensating channel supplies oil for the subsequent compression of medium in the suction chamber.

6. The rotary vacuum pump according to claim 1 , wherein the at least one compensating channel includes a plurality of grooves connected to each other adjacent a channel inlet opening connecting to the zone at atmospheric pressure such that the compensating channel is in fluid contact with the oil in the oil chamber via air in the zone at atmospheric pressure.

7. The rotary vacuum pump according to claim 1 , wherein the valve is arranged in an oil bath and is disposed to close the discharge channel.

8. The rotary vacuum pump according to claim 1 , wherein an upper end of the at least one compensating channel is connected to an air zone of the oil chamber and a lower end of the at least one compensating channel is connected with the discharge channel.

9. The rotary vacuum pump according to claim 1 , wherein a lower end of the at least one compensating channel is connected to the discharge channel at a discharge end of the discharge channel adjacent the valve and below a level of oil in the oil chamber such that the compensating channel has fluid contact with the oil in the oil chamber.

10. A rotary vacuum pump comprising:

a housing including a suction chamber,

a rotor eccentrically mounted in the suction chamber,

sliding vanes connected to the rotor for displacement therein,

a discharge channel connected to the suction chamber and to an oil chamber,

a valve arranged between the oil chamber and the discharge channel to prevent a backflow of medium from the oil chamber into the suction chamber,

at least one compensating channel having an upper end connected to an air zone of the oil chamber and a lower end connected with the discharge channel, wherein the at least one compensating channel is formed as a partially covered groove, and

a structure which covers a portion of the at least one compensating channel between the upper and lower end such that the at least one compensating channel has fluid contact with oil in the oil chamber.

Assignments (1)
CHANGE OF NAME Recorded Nov 21, 2016
From: OERLIKON LEYBOLD VACUUM GMBH
To: LEYBOLD GMBH
Reel/Frame 040653/0016 →
Priority Claims (1)
DE 10 2005 031 718 · Jul 7, 2005 · national
Continuity (2)
Division 11988408
Related Publication 20130251578A1 · Sep 26, 2013