Claims
- 1. An induction insert for a heat retentive insulated server, the induction insert comprising:
a heat storage member that can be heated by induction heating and a housing for said heat storage member, wherein the induction insert can be removably inserted into the heat retentive insulated server.
- 2. The induction insert of claim 1, wherein said housing is adapted to direct heat upward from said heat storage member.
- 3. The induction insert of claim 1, wherein said heat storage member comprises a top surface and a bottom surface, said bottom surface being disposed in said housing and wherein at least a portion of said top surface is exposed to the atmosphere.
- 4. The induction insert of claim 3, wherein said exposed top surface has a coating that exhibits at least one of the properties selected from the group consisting of: scratch resistance, heat resistance and chemical resistance.
- 5. The induction insert of claim 3, wherein said exposed top surface has a coating selected from the group consisting of: epoxy, zinc, nickel, chrome and stainless steel.
- 6. The induction insert of claim 4, wherein said heat retentive server comprises an insulated tray and an insulated cover, said insulated tray being adapted to removably receive said induction insert.
- 7. The induction insert of claim 6, wherein said insulated cover is removably secured to said insulated tray to provide an insulated volume for said induction insert.
- 8. The induction insert of claim 4, wherein said heat storage member is circular.
- 9. The induction insert of claim 4, wherein said heat storage member is centrally positioned in said induction insert.
- 10. The induction insert of claim 4, wherein said heat storage member is steel.
- 11. The induction insert of claim 4, wherein said heat storage member is aluminum having magnetic stainless steel clad on both sides thereof.
- 12. The induction insert of claim 4 further comprising a thermal break between said housing and said heat storage member.
- 13. The induction insert of claim 4, wherein said housing comprises a bottom shell and a top ring secured to each other, said bottom shell covering said bottom surface of said heat storage member and said top ring covering an outer periphery of said top surface of said heat storage member.
- 14. The induction insert of claim 13, wherein said housing further comprises a seal between said bottom shell and said top ring.
- 15. The induction insert of claim 14, wherein said housing further comprises an annular cavity between said bottom shell and said top ring, and wherein said seal is an o-ring disposed in said annular cavity.
- 16. The induction insert of claim 4, further comprising a pressure relief plug in fluid communication with said heat storage member.
- 17. A heat retentive server system comprising:
an induction insert having a heat storage member that can be heated by induction heating; an insulated tray adapted to removably receive said induction insert; and an insulated cover.
- 18. The heat retentive server system of claim 17, wherein said induction insert further comprises a housing for said heat storage member, and wherein said housing is adapted to direct heat upward from said heat storage member.
- 19. The heat retentive server system of claim 17, wherein said induction insert further comprises a housing for said heat storage member and wherein said heat storage member comprises a top surface and a bottom surface, said bottom surface being covered by said housing and at least a portion of said top surface being exposed to the atmosphere.
- 20. The heat retentive server system of claim 19, wherein said exposed top surface has a coating that exhibits at least one of the properties selected from the group consisting of: scratch resistance, heat resistance and chemical resistance.
- 21. The heat retentive server system of claim 19, wherein said exposed top surface has a coating selected from the group consisting of: epoxy, zinc, nickel, chrome and stainless steel.
- 22. The heat retentive server system of claim 20, wherein said insulated cover is removably secured to said insulated tray to provide an insulated volume for said induction insert.
- 23. The heat retentive server system of claim 20, wherein said heat storage member is circular.
- 24. The heat retentive server system of claim 20, wherein said heat storage member is centrally positioned in said induction insert.
- 25. The heat retentive server system of claim 20, wherein said heat storage member is steel.
- 26. The heat retentive server system of claim 20, wherein said heat storage member is aluminum having magnetic stainless steel clad on both sides thereof.
- 27. The heat retentive server system of claim 20 further comprising a thermal break between said housing and said heat storage member.
- 28. The heat retentive server system of claim 20, wherein said housing comprises a bottom shell and a top ring secured to each other, said bottom shell covering said bottom surface of said heat storage member and said top ring covering an outer periphery of said top surface of said heat storage member.
- 29. The heat retentive server system of claim 28, wherein said housing further comprises a seal between said bottom shell and said top ring.
- 30. The heat retentive server system of claim 29, wherein said housing further comprises an annular cavity between said bottom shell and said top ring, and wherein said seal is an o-ring disposed in said annular cavity.
- 31. The heat retentive server system of claim 17, wherein said insulated tray has a cavity for receiving said induction insert, and wherein said cavity is formed by an annular wall.
- 32. The heat retentive server system of claim 31, wherein said annular wall has a height that is higher than said heat storage member.
- 33. The heat retentive server system of claim 20, wherein said induction insert further comprises a pressure relief plug in fluid communication with said heat storage member.
- 34. A method of serving food product to a plurality of consumers, the method comprising:
subjecting an induction insert having a heat storage member which is susceptible to electrical induction heating, to an electromagnetic field sufficient to inductively heat said heat storage member, said heat storage member having a top surface with a coating on at least a portion thereof; inserting said heated induction insert into an insulated tray such that said coated top surface of said heat storage member is exposed to the atmosphere; placing a quantity of food product which is disposed on a plate, on said induction insert and said insulated tray; covering said tray, said induction insert, said heated plate and said food product with an insulated cover which defines an insulated volume between said insulated cover and said insulated tray so that atmosphere does not come into contact with said induction insert, said plate and said food product; and serving said food product to at least one of a plurality of consumers.
RELATED APPLICATION
[0001] This application is related to and claims priority in, co-pending U.S. Provisional Application Ser. No. 60/334,237, filed Nov. 29, 2001, the disclosure of which is incorporated herein by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60334237 |
Nov 2001 |
US |