IP Library › Granted Patent US 12,454,738
Granted Patent B2
US 12,454,738 · App. 17/611,442 · Granted Oct 28, 2025

Degassing launder

Inventors: Sylvain Tremblay (Quebec, CA); Michael Klepacki (Newtown, CT); Ryan Moran (Bloomingburg, NY); Michael Balthazor (Homer, NY)
Assignee: PYROTEK, INC.
C22B9/02C22B21/06
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Quick Facts
Patent No.
US 12,454,738
App. No.
17/611,442
Granted
Oct 28, 2025
Kind
B2
Abstract

A degassing launder having a plurality of partition plates configured to block a flow of molten aluminum and including a plurality of domes. Two adjacent partition plates and two side walls of the launder form a degassing chamber. A lower portion of the partition plates is provided with a passage through which the molten aluminum flows into a next degassing chamber. The domes are arranged on the bottom of the launder.

Claims (14)

1. A degassing launder comprising a launder including a plurality of partition plates configured to partially block a flow of molten metal in the launder, two adjacent partition plates and a floor and two side walls of the launder forming a degassing chamber, a lower portion of each partition plate being provided with at least one passage through which the molten aluminum flows, wherein the floor of the degassing chamber is provided with a dome shape projection positioned below a rotor, and wherein said rotor has a circumference and wherein a circumference of the dome is greater than the circumference of the rotor.

2. The degassing launder of claim 1 , wherein the partition plates are arranged to be perpendicular to a direction of the flow of the molten aluminum and parallel to each other.

3. The degassing launder of claim 1 , wherein the passage is a notch arranged on a bottom edge of the partition plate.

4. The degassing launder of claim 1 , wherein the passage has a triangular, square, circular or semi-circular shape.

5. The degassing launder of claim 1 , wherein said dome shaped projection is at least substantially a semi-sphere.

6. The degassing launder of claim 1 , further comprising a settling chamber at an exit side of the launder, said settling chamber being comprised of two adjacent partition plates, a floor and two side walls of the launder, a lower portion of each partition plate including at least one passage, and wherein the floor does not include a projection.

7. The degassing launder of claim 1 , further comprising a lid, said lid including a lifting mechanism capable of rotating the lid 90° and/or 180°.

8. The degassing launder of claim 7 , wherein said lid is less than or equal to 3″ from molten aluminum surface when the launder is at an operational fill level.

9. The degassing launder of claim 1 , wherein said dome shaped projection is not a semi-sphere.

10. The degassing launder of claim 1 , wherein said rotor introduces a flux.

11. A degassing launder comprising a launder including a plurality of partition plates configured to partially block a flow of molten metal in the launder, two adjacent partition plates and a floor and two side walls of the launder forming a degassing chamber, a lower portion of each partition plate being provided with at least one passage through which the molten aluminum flows, wherein the floor of the degassing chamber is provided with a semi-sphere dome shape projection positioned below a rotor, the degassing launder further comprising a rib shaped projection on the floor of said degassing chamber.

12. The degassing launder of claim 11 , wherein the rib shaped projection intersects said dome shaped projection.

13. The degassing launder of claim 11 , wherein said rotor has a circumference and wherein a circumference of the dome is greater than the circumference of the rotor.

14. The degassing launder of claim 13 , wherein the circumference of the dome is at least 15% greater than the circumference of the rotor.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 25, 2025
From: KLEPACKI, MICHAEL; MORAN, RYAN; BALTHAZOR, MICHAEL
To: PYROTEK, INC.
Reel/Frame 071514/0738 →
Continuity (2)
Provisional Application 62847415 · May 14, 2019
Related Publication 20230212711A1 · Jul 6, 2023
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