IP Library › Granted Patent US 10,018,279
Granted Patent B2
US 10,018,279 · App. 15/417,573 · Granted Jul 10, 2018

Fluid control device

Inventors: Vincent Raimbault (Cosmes, FR); Pascal Noiseau (Saint Ouen des Toits, FR); Christophe Voegele (Sace, FR); Maxime Sarrazin (Entrammes, FR); Jérôme Migaud (Vitré, FR)
Assignee: MANN+HUMMEL GmbH
F16K11/087F02B37/16F16K27/067F16K5/0689F16K11/0876
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Quick Facts
Patent No.
US 10,018,279
App. No.
15/417,573
Granted
Jul 10, 2018
Kind
B2
Abstract

A fluid control device ( 100 ) having a housing ( 10 ) with at least one first port ( 16 ) and at least one second port ( 18, 20 ), wherein a valve body ( 30 ) is enclosed in the housing ( 10 ), the valve body ( 30 ) providing a fluid path ( 60 ) having a first path portion ( 62 ) proximal to the first port ( 16 ) and an opposing second path portion ( 64 ) in a distance from the first port ( 16 ) and proximal to the at least one second port ( 18, 20 ), the fluid path ( 60 ) being switchable between at least a first position ( 80 ) and at least a second position ( 82 ) in relation to the at least one second port ( 18, 20 ) by rotating the valve body ( 30 ) around the first main axis ( 22 ) of the at least one first port ( 16 ).

Claims (32)

1. A fluid control device ( 100 ) comprising:

a housing ( 10 ) with at least one first port ( 16 ) having

a first main axis ( 22 ); and

at least one second port ( 18 , 20 ) having a second main axis ( 24 , 26 ),

(i) wherein a valve body ( 30 ) is enclosed in the housing ( 10 ), the valve body ( 30 ) being arranged between the at least one first port ( 16 ) and the at least second port ( 18 , 20 ),

(ii) the valve body ( 30 ) providing a fluid path ( 60 ) having a first path portion ( 62 ) proximal to the first port ( 16 ) and an opposing second path portion ( 64 ) in a distance from the first port ( 16 ) and proximal to the at least one second port ( 18 , 20 ), the fluid path ( 60 ) being switchable between at least a first position ( 80 ) and at least a second position ( 82 ) by rotating the valve body ( 30 ) around the first main axis ( 22 ) of the at least one first port ( 16 ),

(iii) wherein a first sealing means ( 40 ) is provided at the first path portion ( 62 ) and a second sealing means ( 50 ) is provided at the second path portion ( 64 ),

(iv) the first sealing means ( 40 ) having a first first-sealing-means interface portion ( 42 ) for cooperating with the valve body ( 30 ) and a second first-sealing-means interface portion ( 44 ) for cooperating with the housing ( 10 ), and the second sealing means ( 50 ) having a second second-sealing-means interface portion ( 54 ) for cooperating with the valve body ( 30 ) and a first second-sealing-means interface portion ( 52 ) for cooperating with the housing ( 10 ),

(v) wherein the valve body ( 30 ) is provided with a first valve-body interface portion ( 32 ) for cooperating with the first first-sealing-means interface portion ( 42 ), one of which being configured as a spherical interface and one of which being configured as a conical or a spherical interface,

(vi) wherein the valve body ( 30 ) is provided with a second valve-body interface portion ( 34 ) for cooperating with the second second-sealing-means interface portion ( 54 ), one of which being configured as a spherical interface and one of which being configured as a conical or a spherical interface,

(vii) and wherein the housing ( 10 ) is provided with a first housing interface portion ( 12 ) for cooperating with the second first-sealing-means interface portion ( 44 ) and a second housing interface portion ( 14 ) for cooperating with the first second-sealing-means interface portion ( 52 ), one of the second housing interface portion ( 14 ) and the first second-sealing-means interface portion ( 52 ) being configured as a spherical interface and the other one being configured as a conical or a spherical interface.

2. The fluid control device according to claim 1 , wherein

the first valve-body interface portion ( 32 ) is configured as a spherical interface, and

wherein the first first-sealing-means interface portion ( 42 ) is configured as a conically.

3. The fluid control device according to claim 1 , wherein

the second valve-body interface portion ( 34 ) is configured as a spherical interface, and

wherein the second second-sealing-means interface portion ( 54 ) is configured as a conical interface.

4. The fluid control device according to claim 1 , wherein

the second housing-interface portion ( 14 ) is configured as a spherical interface, and

wherein the first second-sealing-means interface portion ( 52 ) is configured as a conical interface.

5. The fluid control device according to claim 1 , wherein

the first main axis ( 22 ) and the at least one second main axis ( 24 , 26 ) are aligned off-axis to one another.

6. The fluid control device according to claim 1 , wherein

the valve body ( 30 ) has at least one outer surface section having a spherical shape.

7. The fluid control device according to claim 1 , wherein

at least a section of an inner surface ( 28 ) of the housing ( 10 ) has a spherical shape corresponding to the outer surface section of the valve body ( 30 ).

8. The fluid control device according to claim 1 , wherein

the housing ( 10 ) comprises at least a first half shell ( 72 ) and a second half shell ( 74 ).

9. The fluid control device according to claim 1 , wherein

the valve body ( 30 ) is rotatable by action of a driving mechanism located outside the housing ( 10 ).

10. The fluid control device according to claim 1 , wherein

the housing ( 10 ) and/or the valve body ( 30 ) are made of plastics materials.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 28, 2017
From: RAIMBAULT, VINCENT; NOISEAU, PASCAL; MIGAUD, JEROME; VOEGELE, CHRISTOPHE; SARRAZIN, MAXIME
To: MANN+HUMMEL GMBH
Reel/Frame 044232/0016 →
Priority Claims (1)
EP 16290021 · Jan 28, 2016 · regional
Continuity (1)
Related Publication 20170219105A1 · Aug 3, 2017
Cited By (1)
US 12,667,870