IP Library Granted Patent US 11,149,601
Granted Patent B2
US 11,149,601 · App. 16/304,787 · Granted Oct 19, 2021

Oil separator having first and second gas inlets and gas outlets

Inventors: Sebastian Brinker (Neu-Ulm, DE); Christoph Erdmann (Ulm, DE); Francesco Zitarosa (Illertissen, DE)
Assignee: 3NINE AB
F01M13/04B01D45/14B04B5/005B04B5/12B04B9/02B04B11/02B04B2005/125F01M2013/0422
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Quick Facts
Patent No.
US 11,149,601
App. No.
16/304,787
Granted
Oct 19, 2021
Kind
B2
Abstract

An oil separator for separating oil droplets and/or oil mist from gases, in particular from blow-by gases of an internal combustion engine is described.

Claims (30)

1. An oil separator for separating oil droplets and/or oil mist from gases to be cleaned, comprising:

a housing,

a rotor, which has an oil separating element, arranged in the housing and spaced from the housing, and a shaft for rotatably mounting the oil separating element, a first gas inlet for supplying gases to be cleaned to the oil separating element along the shaft and

a first gas outlet in the wall of the housing which surrounds the rotor,

a second gas inlet for supplying gases to be cleaned is arranged in the wall of the housing which surrounds the rotor, and

a second gas outlet in the wall of the housing which surrounds the rotor.

2. The oil separator according to claim 1 , wherein the first gas inlet and the second gas inlet are connected to a common gas supply line outside or inside the housing.

3. The oil separator according to claim 1 , wherein the second gas inlet is configured in such a way that through-flowing gas flows into the housing substantially tangentially along the wall of the housing.

4. The oil separator according to claim 1 , wherein the second gas outlet is closed by a second valve, which is pre-loaded for a specified opening characteristic or is actively controllable, via a motor control or an actuator, selected from the group of a servomotor, an actuating element or a pressure sensor.

5. The oil separator according to claim 1 , wherein the second inlet and the second outlet are arranged at opposite sides of the oil separating element.

6. The oil separator according to claim 1 , wherein the second inlet and the second outlet are arranged adjacent or immediately adjacent to one another in the direction of rotation of the rotor, and/or the second inlet and the second outlet are arranged adjacent or immediately adjacent to one another perpendicularly to the direction of rotation of the rotor.

7. The oil separator according to claim 1 , wherein the second inlet and the second outlet are arranged at the same height or offset from one another as viewed parallel to the axis of the shaft.

8. The oil separator according to claim 1 , further comprising a drive element for driving the oil separating element of the rotor via the shaft.

9. The oil separator according to claim 8 , wherein the drive element is a hydraulically driven drive element, selected from the group of a Heron turbine or a Pelton turbine.

10. The oil separator according to claim 8 , wherein the drive element is an electrically driven drive element.

11. An oil separator for separating oil droplets and/or oil mist from gases to be cleaned, comprising:

a housing,

a rotor, which has an oil separating element, arranged in the housing and spaced from the housing, and a shaft for rotatably mounting the oil separating element, a first gas inlet for supplying gases to be cleaned to the oil separating element along the shaft and

a first gas outlet in the wall of the housing which surrounds the rotor, and

a second gas inlet for supplying gases to be cleaned is arranged in the wall of the housing which surrounds the rotor,

wherein the second gas inlet is closed by a first valve which is pre-loaded for a specified opening characteristic or is actively controllable, via a motor control or an actuator, selected from the group of a servomotor, an actuating element or a pressure sensor.

12. The oil separator according to claim 11 , wherein the first valve opens the second gas inlet when a specified volume flow through the first gas inlet is exceeded and/or when a specified pressure difference between the gas on the pressure side of the first valve and the suction side of the first valve in the interior of the housing is exceeded.

13. An oil separator for separating oil droplets and/or oil mist from gases to be cleaned, comprising:

a housing,

a rotor, which has an oil separating element, arranged in the housing and spaced from the housing, and a shaft for rotatably mounting the oil separating element, a first gas inlet for supplying gases to be cleaned to the oil separating element along the shaft and

a first gas outlet in the wall of the housing which surrounds the rotor, and

a second gas inlet for supplying gases to be cleaned is arranged in the wall of the housing which surrounds the rotor,

wherein a first valve and/or a second valve each have a valve opening, a valve seat and a valve closure, wherein

either the valve closure is formed as a movable spring tongue which covers the valve opening and, on the side facing the valve opening, is coated with an elastomer, with a closed-cell elastomer, at least in sections,

or the valve is formed as a mushroom valve having a valve screen made of an elastomer material as said a valve closure.

Assignments (3)
CHANGE OF NAME Recorded Jan 11, 2023
From: 3 NINE AB
To: GRIMALDI DEVELOPMENT AB
Reel/Frame 062349/0067 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 8, 2020
From: BRINKER, SEBASTIAN; ERDMANN, CHRISTOPH; ZITAROSA, FRANCESCO
To: REINZ-DICHTUNGS-GMBH; 3NINE AB
Reel/Frame 053716/0658 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 8, 2020
From: REINZ-DICHTUNGS-GMBH
To: 3NINE AB
Reel/Frame 053716/0701 →
Priority Claims (1)
DE 20 2016 102 827.2 · May 27, 2016 · national
Continuity (1)
Related Publication 20200300135A1 · Sep 24, 2020
Cited By (1)
US 12,338,755