Ice maker for a refrigeration appliance
US-2018328642-A1 · Nov 15, 2018 · US
US9528737B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9528737-B2 |
| Application number | US-201314068527-A |
| Country | US |
| Kind code | B2 |
| Filing date | Oct 31, 2013 |
| Priority date | Oct 31, 2013 |
| Publication date | Dec 27, 2016 |
| Grant date | Dec 27, 2016 |
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An ice making and harvesting apparatus includes a mold, and bottom and top plates. The mold includes a plurality of cells. Each cell includes side walls and defines bottom and top openings. The bottom plate is configured to move relative to a bottom surface of the mold. An upper surface of the bottom plate includes a first sealing component. A bottom side of the mold includes a second sealing component. The second sealing component is configured to form a seal with the first sealing component of the bottom plate. The bottom plate includes an inlet and a plurality of channels. Each channel is configured to supply water from the bottom plate to a corresponding cell of the mold. The top plate includes a plurality of pushing rods, each rod configured to move relative to the top opening of a corresponding cell.
Opening claim text (preview).
We claim: 1. An ice making apparatus comprising: a mold comprising a bottom surface, a top surface, and a plurality of cells, wherein each cell comprises side walls and each cell defines a bottom opening and a top opening; a bottom plate, the bottom plate configured to move relative to the bottom surface of the mold, the bottom plate further comprising an upper surface, the upper surface of the bottom plate configured to face the bottom surface of the mold, the upper surface of the bottom plate comprising a first sealing component, the bottom plate further comprising an inlet and a plurality of channels, each channel configured to supply water from the bottom plate to a corresponding cell of the plurality of cells of the mold; a top plate, the top plate comprising a plurality of pushing rods, each pushing rod configured to move relative to the top opening of a corresponding cell to push a corresponding ice cube formed in said corresponding cell; and a plurality of passageways, wherein each passageway is disposed within a corresponding side wall of said side walls, each passage way configured to receive a circulating cooling agent. wherein the bottom surface of the mold comprises a second sealing component, the second sealing component configured to form a seal with the first sealing component of the bottom plate. 2. The ice making apparatus of claim 1 , wherein the circulating cooling agent is received in the mold at a sufficiently low first temperature to remove heat from water in contact each of the side walls to freeze the water at each of the side walls. 3. The ice making apparatus of claim 2 , further comprising a cooling apparatus, the cooling apparatus configured to supply the cooling agent to the mold. 4. The ice making apparatus of claim 3 , wherein the bottom plate has an inlet, the inlet configured to receive water from a water supply source and convey the water to the plurality of channels. 5. The ice making apparatus of claim 4 , wherein the apparatus is in a first stage when the bottom plate is a first predetermined distance from the bottom surface of the mold, and the top plate is a second predetermined distance from the top surface of the mold. 6. The ice making apparatus of claim 5 , wherein the apparatus is in a second stage when the bottom plate abuts the bottom surface of the mold, and the second sealing component of the mold forms a seal with the first sealing component of the bottom plate. 7. The ice making apparatus of claim 6 , wherein the apparatus is in a third stage when the plurality of cells are filled to a predetermined level with water. 8. The ice making apparatus of claim 7 , wherein the apparatus is in a fourth stage when the circulating cooling agent has sufficiently cooled water to form a layer of ice at each side wall of each cell to form an ice cube. 9. The ice making apparatus of claim 8 , wherein the apparatus is in a fifth stage when water that was remaining in each cell has been removed from each cell. 10. The ice making apparatus of claim 9 , wherein the apparatus is in a sixth stage when the bottom plate has been moved away from the mold. 11. The ice making apparatus of claim 10 , wherein the apparatus is in a seventh stage when the top plate is moved in relation to the mold and each pushing rod pushes against the ice cube in a corresponding cell. 12. The ice making apparatus of claim 11 , wherein the apparatus is in an eighth stage when at least one ice cube has been pushed out of cell by a corresponding pushing rod. 13. The ice making apparatus of claim 12 , wherein the apparatus further comprises a guide surface the guide surface configured to direct ice cubes pushed out of the mold to a hopper. 14. The ice making apparatus of claim 3 , further comprising a cooling apparatus, wherein the circulating cooling agent exits the mold at a second temperature, the second temperature being greater than the first temperature, the cooling apparatus configured to receive the circulating cooling agent that exits the mold, the cooling apparatus configured to cool the circulating cooling agent from the second temperature to the first temperature and convey the circulating cooling agent at the first temperature to the mold. 15. The ice making apparatus of claim 1 , wherein the side walls comprise a coating. 16. The ice making apparatus of claim 1 , further comprising a water treatment system, the water treatment system configured to filter water and reduce the amount of solids in the water to less than 10 mg/l, and deaerate to reduce the amount of gases in the water to less than 1 mg/l, the water treatment system configured to then convey treated water to the inlet of the bottom plate. 17. An ice making apparatus comprising: a mold comprising a bottom surface, a top surface, and a plurality of cells, wherein each cell comprises side walls and each cell defines a bottom opening and a top opening, the mold further comprising a plurality of passageways within the side walls, each passageway configured to receive a circulating cooling agent to remove heat from water in contact with the side walls to freeze water at the side walls; a bottom plate, the bottom plate configured to move relative to the bottom surface of the mold, the bottom plate further comprising an upper surface, the upper surface of the bottom plate configured to face the bottom surface of the mold, the upper surface of the bottom plate comprising a first sealing component, the bottom plate further comprising a primary inlet, a plurality of channels, and a plurality of inserts, each insert having a corresponding height and a side outlet, each insert configured to receive water from a corresponding channel and convey the water through the side outlet to a volume between the insert and the side walls of a corresponding cell; and a top plate, the top plate comprising a plurality of pushing rods, each pushing rod configured to move relative to the top opening of a corresponding cell and push an ice cube out of the corresponding cell; wherein the bottom surface of the mold comprises a second sealing component, the second sealing component configured to form a seal with the first sealing component of the bottom plate. 18. The ice making apparatus of claim 17 , wherein the side walls and the inserts comprise a coating. 19. A method for making ice comprising: moving a bottom plate in relation to a bottom surface of a mold so that when the bottom plate abuts the bottom surface of the mold, and a first sealing component of the bottom plate forms a seal with a second sealing component of the mold; filling a plurality of cells of the mold with water to a predetermined level; cooling the water to form a layer of ice at each side wall of each cell and form an ice cube, wherein the cooling comprises circulating a cooling agent through a plurality of passages, wherein each passageway is disposed within a respective side wall of said side walls, each passageway configured to receive the cooling agent to cool the respective side wall; removing water remaining in each cell that has not frozen; moving the bottom plate away from the mold; and moving a top plate comprising a plurality of pushing rods in relation to the mold so that each pushing rod pushes against the ice cube in a corresponding cell so that the ice cube exits out a bottom opening of the cell. 20. The method of claim 19 further comprising collecting ice cubes in a hopper that exit from the bottom opening of each cell. 21. The method of claim 20 wherein th
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