Method for melting solid metal
A scrap melting system and method includes a vessel that is configured to retain molten metal and a raised surface about the level of molten metal in the vessel. Solid metal is placed on the raised surface and molten metal from the vessel is moved upward from the vessel and across the raised surface to melt at least some of the solid metal. The molten metal is preferably raised from the vessel to the raised surface by a molten metal pumping device or system. The molten metal moves from the raised surface and into a vessel or launder.
1. A method for melting solid aluminum utilizing a system that comprises:
(a) a vessel having a first chamber, a second chamber, and a raised surface;
(b) a molten metal pump in the vessel;
(c) a first dividing wall between the first chamber and second chamber, the first dividing wall having a first height, and an opening that is beneath the height; and
(d) a second dividing wall between the second chamber and the raised surface, the second dividing wall having a second height that is less than the first height;
wherein the method comprises the following steps:
(e) placing solid aluminum on the raised surface; and
(f) operating the pump to move molten metal through the opening in the first dividing wall, so that the molten metal exceeds the second height and flows across the raised surface until at least some of the solid aluminum is melted into melted aluminum.
2. The method of claim 1 , wherein the system further comprises a grate on the raised surface, and the method further comprises the step of a melt comprising at least most of the molten metal and melted aluminum passing through the grate.
3. The method of claim 1 that further includes the step of moving the molten metal from the raised surface and into a launder.
4. The method of claim 1 that further includes the step of moving the molten metal from the raised surface and into a third chamber.
5. The method of claim 1 that further includes the step of stopping the flow of molten metal across the raised surface after at least some of the solid aluminum on the raised surface is melted.
6. The method of claim 1 that further includes the step of removing unmelted pieces of metal from the raised surface.
7. The method of claim 5 that further includes the step of removing unmelted pieces of metal from the raised surface after stopping the flow of molten metal across the raised surface.
8. The method of claim 4 that further includes the step of pumping the molten metal in the third chamber.
9. The method of claim 4 that further includes the step of degassing the molten metal in the third chamber.
10. The method of claim 1 that further includes the step of moving the molten metal from the raised surface and into a third chamber.
11. The method of claim 1 that further includes the step of stopping the flow of molten metal across the raised surface after at least some of the solid aluminum on the surface is melted.
12. The method of claim 1 that further includes the step of removing unmelted pieces of metal from the raised surface.
13. The method of claim 1 , wherein the pumping is not continuous.
14. The method of claim 1 , wherein the pumping is performed by a transfer pump.
15. The method of claim 1 , wherein the pumping is performed by a circulation pump.
16. The method of claim 1 , wherein the pumping is performed by a gas-release pump.
17. The method of claim 1 , wherein the dividing wall has an opening to permit molten metal to be pumped from the first chamber through the opening and into the second chamber.
18. The method of claim 17 , wherein the pump has a pump base and a discharge, and the dividing wall has an opening to permit molten metal to be pumped from the first chamber through the opening and into the second chamber, the discharge being aligned with the opening so that at least some of the molten metal exiting the discharge passes through the opening.
19. The method of claim 1 , wherein the pumping is performed at a speed, and the speed is variable.
20. The method of claim 1 , wherein the pumping is performed at a speed, and the speed is constant.