Self-orienting suction with baffles for fluid transportation
US-2024417052-A1 · Dec 19, 2024 · US
US11090621B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11090621-B2 |
| Application number | US-201615746677-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jul 21, 2016 |
| Priority date | Jul 22, 2015 |
| Publication date | Aug 17, 2021 |
| Grant date | Aug 17, 2021 |
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Disclosed are systems and methods for a mixing device having a mixing chamber bounded by an inner surface of a wall, the wall having a cylindrical outer face and at least one feed duct which ends on one side with an opening in the cylindrical outer surface of the wall and on the other side with an opening in the inner surface of the wall. The mixing device also includes a magazine having a cylindrical inner surface, the cylinder axis of which is coaxial with a cylinder axis of the cylindrical outer surface of the wall, and a multiplicity of ducts. The magazine and wall are movable with respect to one another such that the openings of the multiplicity of ducts in the inner surface of the magazine are each connectable in a medium-conducting manner to the opening of the at least one feed duct in the outer surface of the wall.
Opening claim text (preview).
The invention claimed is: 1. A mixing device comprising: a mixing chamber bounded by an inner surface of a wall, wherein the wall also includes a cylindrical outer surface, wherein the wall defines at least one feed duct that ends on one side with an opening in the cylindrical outer surface of the wall and on another side with an opening in the inner surface of the wall, wherein the mixing device furthermore includes a magazine that includes a cylindrical inner surface, the cylindrical inner surface defining a cylinder axis which is coaxial with a cylinder axis of the cylindrical outer surface of the wall, wherein the magazine includes a plurality of ducts, wherein each duct of the plurality of ducts extends from a port to an opening in the cylindrical inner surface of the magazine, respectively, wherein the magazine and the wall are movable with respect to one another such that the opening of each duct of the plurality of ducts in the inner surface of the magazine is capable of being connected in a medium-conducting manner to the opening of the at least one feed duct in the outer surface of the wall, wherein the mixing device also includes a mixer that is configured to be moved in the mixing chamber along the cylinder axis of the outer surface of the wall in order to mix media, wherein at least two openings of the plurality of ducts of the magazine are arranged in exactly two planes, or at least three openings of the plurality of ducts of the magazine are arranged in exactly three planes, in the inner surface of the magazine, said planes being perpendicular to the cylinder axis of the cylindrical outer surface of the wall. 2. The mixing device according to claim 1 , wherein the opening of the at least one feed duct in the inner surface of the wall adjoins an end surface of the mixing chamber, said end surface being surrounded by the inner surface of the wall and being fixed with respect to the wall. 3. The mixing device according to claim 1 , wherein the magazine includes an annular magazine, and wherein the annular magazine and the wall are at least one of rotatable with respect to one another about the cylinder axis of the outer surface of the wall or are displaceable with respect to one another in a direction of the cylinder axis of the outer surface of the wall. 4. The mixing device according to claim 1 , wherein the magazine contains at least 4 ducts. 5. The mixing device according to claim 1 , wherein at least two openings of the plurality of ducts of the magazine are arranged in a common plane in the inner surface of the magazine, said plane being perpendicular to the cylinder axis of the cylindrical outer surface of the wall. 6. The mixing device according to claim 1 , having an outlet that is arranged in an end surface of the mixing chamber, said end surface being fixed with respect to the wall and being perpendicular to the cylinder axis of the outer surface, and through which outlet media are able to be discharged from the mixing chamber. 7. The mixing device according to claim 1 , wherein the mixer has a disk that is perpendicular to the cylinder axis of the outer surface, the disk including a mixing structure, through which media can flow from one side of the disk to the other side. 8. The mixing device according to claim 1 , including a piston that bounds the mixing chamber on one side in a direction of the cylinder axis of the outer wall, said side being located opposite an end surface of the mixing chamber, said end surface being fixed with respect to the outer wall, and which the piston is movable in the direction of the cylinder axis of the outer wall. 9. The mixing device according to claim 8 , wherein the piston includes a vent valve, through which, in an open state, gas is capable of escaping from the mixing chamber and which is closable with respect to a throughflow of a gas and a medium. 10. The mixing device according to claim 9 , wherein the mixer includes a disk that is perpendicular to the cylinder axis of the outer surface, said disk including at least one mixing structure, through which media can flow from one side of the disk to the other side, wherein the piston has at least one shaped element, said shaped element being arranged on a side of the piston that faces the mixer, wherein the piston has as many shaped elements as mixing structures, and wherein the at least one shaped element is arranged such that it completely fills the at least one mixing structure when the piston bears against the disk of the mixer. 11. The mixing device according to claim 10 , wherein the at least one mixing structure is a duct that narrows in the direction from the piston to the end side or ducts with parallel walls, the axes of which are parallel to the cylinder axis of the outer surface of the wall. 12. The mixing device according to claim 1 , wherein the at least one duct of the magazine includes a valve through which a valve media is capable of being conducted into the at least one duct of the magazine and with which an inflow of the media into the at least one duct is capable of being regulated. 13. The mixing device according to claim 1 , wherein the mixing device includes two or three feed ducts. 14. The mixing device according to claim 1 , wherein the wall includes a sealing cylinder that surrounds the mixing chamber, wherein an outer surface of the sealing cylinder forms at least a part of the cylindrical outer surface of the wall, and wherein the at least one feed duct passes through a cylinder wall of the sealing cylinder. 15. The mixing device according to claim 1 , wherein the media is at least one of a liquid, a paste, a powder, or a gas. 16. A method for mixing media, wherein the method comprises: receiving media, for mixing, in a mixing device including a mixing chamber, the mixing chamber bounded by an inner surface of a wall that also includes a cylindrical outer surface, wherein the wall defines at least one feed duct that ends on one side with an opening in the cylindrical outer surface of the wall and on the other side with an opening in the inner surface of the wall, wherein the mixing device furthermore includes a magazine that includes a cylindrical inner surface, the cylindrical inner surface defining a cylinder axis which is coaxial with a cylinder axis of the cylindrical outer surface of the wall, wherein the magazine includes a plurality of ducts, wherein each duct of the plurality of ducts extends from a port to an opening in the cylindrical inner surface of the magazine, wherein the magazine and the wall are movable with respect to one another such that the opening of each duct of the plurality of ducts in the inner surface of the magazine is capable of being connected in a medium-conducting manner to the opening of the at least one feed duct in the outer surface of the wall, wherein the mixing device also includes a mixer; and for mixing media, the mixer in the mixing chamber is moved along the cylinder axis of the outer surface of the wall, wherein at least two openings of the plurality of ducts of the magazine are arranged in exactly two planes, or at least three openings of the plurality of ducts of the magazine are arranged in exactly three planes, in the inner surface of the magazine, said planes being perpendicular to the cylinder axis of the cylindrical outer surface of the wall. 17. The method for mixing media according to claim 16 , comprising moving the magazine and the wall with respect to one another such that the openings of at least two ducts in the inner surface of the magazine, bet
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