IP Library Granted Patent US 7,237,600
Granted Patent B2
US 7,237,600 · App. 11/043,765 · Granted Jul 3, 2007

Support surface for heating or cooling food articles and method of making the same

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Quick Facts
Patent No.
US 7,237,600
App. No.
11/043,765
Granted
Jul 3, 2007
Kind
B2
Abstract

A heat transfer support surface for heating or cooling food articles placed adjacent the support surface by circulating a heat transfer fluid in the internal passages of the support surface is disclosed. Circulated fluid is heated or cooled by a source. Support surface contains multiple heat transfer elements arranged substantially in parallel and interconnected on both ends. Flow control tubes control the fluid flow and reduce the amount of fluid required. The method of making the support surface is also disclosed.

Claims (45)

1. A support surface for transferring heat between a source and food articles placed adjacent to said support surface, said support comprising:

a) a plurality of longitudinally extending heat transfer support elements arranged substantially in parallel to form a substantially flat surface, each of said support elements having at least one longitudinal passageway therethrough extending from a first end to a second end thereof for transporting a heat transfer fluid,

b) a first and second header for interconnecting the first end and second ends respectively, of said support elements in a fluid relationship,

c) first and second end tube nipples for interconnecting said first and second header and said first and second ends of said support elements respectively in a fluid relationship, and

d) a plurality of longitudinally extending flow control tubes of reduced diameter, operatively positioned by positioning means, in selective passageways of said support elements forming a reduced fluid passageway between said flow control tubes and said support elements that balances the fluid flow between said support elements and reduces the amount of heat transfer fluid therein.

2. A support surface as set forth in claim 1 , wherein a flow control tube is inside each passageway of said support elements.

3. A support surface as set forth in claim 1 , wherein selective said flow control tubes vary in length.

4. A support surface as set forth in claim 1 , wherein selective said flow control tubes vary in diameter.

5. A support surface as set forth in claim 1 , wherein selective said flow control tubes vary in diameter and length.

6. A support surface as set forth in claim 1 , wherein said support surface further comprises a reduced fluid velocity filtering area being positioned near the inlet of the heat transfer support elements for filtering out solids.

7. A support surface as set forth in claim 1 , wherein said support surface further comprises a filtering device being positioned near the inlet of the heat transfer support elements for filtering out solids.

8. A support surface as set forth in claim 1 , wherein said flow control tubes are positioned by forming their ends.

9. A support surface as set forth in claim 1 , wherein said flow control tubes are sealed on the ends to keep fluid out of the inside of the flow control tubes.

10. A support surface for transferring heat between a source and food articles placed adjacent to said support surface, said support comprising:

a) a plurality of longitudinally extending heat transfer support elements arranged substantially in parallel to form a substantially flat surface, each of said support elements having at least one longitudinal passageway there through extending from a first end to a second end thereof for transporting a heat transfer fluid,

b) a first and second header for interconnecting the first end and second ends respectively, of said support elements in a fluid relationship,

c) first and second end tube nipples for interconnecting said first and second header and said first and second ends of said support elements respectively in a fluid relationship, and

d) a plurality of individual flow control tubes inserted in selective passageways of said support elements that controls the fluid flow and reduces the amount of heat transfer fluid therein, wherein said flow control tubes are positioned offset from the center of the internal passages in the heat transfer elements.

11. A support surface for transferring heat between a source and food articles placed adjacent to said support surface, said support comprising:

a) a plurality of longitudinally extending heat transfer support elements arranged substantially in parallel to form a substantially flat surface, each of said support elements having at least one longitudinal passageway there through extending from a first end to a second end thereof for transporting a heat transfer fluid,

b) a continuous tubular element in each of said passageways of each of said support elements in heat transfer relationship therewith, said tubular elements having a portion thereof extending beyond said first end and second end of said passageways,

c) a first and second header for interconnecting the first and second ends respectively, of extending portion of said tubular element in fluid relationship, and

d) a plurality of longitudinally extending flow control tubes of reduced diameter, operatively positioned by positioning means, in selective passageways of said tubular elements forming a reduced fluid passageway between said flow control tubes and said tubular elements that balances the fluid flow between said support elements and reduces the amount of heat transfer fluid therein.

12. A support surface as set forth in claim 11 , wherein said support surface further comprises a flow control tube being inside each said tubular element of said support elements.

13. A support surface as set forth in claim 11 , wherein selective said flow control tubes vary in length.

14. A support surface as set forth in claim 11 , wherein selective said flow control tubes vary in diameter.

15. A support surface as set forth in claim 11 , wherein selective said flow control tubes vary in diameter and length.

16. A support surface as set forth in claim 11 , wherein said support surface further comprises a reduced fluid velocity filtering area being positioned near the inlet of the heat transfer elements for filtering out solids.

17. A support surface as set forth in claim 11 , wherein said support surface further comprises a filtering device being positioned near the inlet of the heat transfer support elements for filtering out solids.

18. A support surface as set forth in claim 11 , wherein said flow control tubes are positioned by forming their ends.

19. A support surface as set forth in claim 11 , wherein said flow control tubes are sealed on the ends to keep fluid out of the inside of the flow control tubes.

20. A support surface for transferring heat between a source and food articles placed adjacent to said support surface, said support comprising:

a) a plurality of longitudinally extending heat transfer support elements arranged substantially in parallel to form a substantially flat surface, each of said support elements having at least one longitudinal passageway there through extending from a first end to a second end thereof for transporting a heat transfer fluid,

b) a continuous tubular element in each of said passageways of each of said support elements in heat transfer relationship therewith, said tubular elements having a portion thereof extending beyond said first end and second end of said passageways,

c) first and second end tube nipples for interconnecting said first and second header and said first and second ends of said support elements respectively in a fluid relationship, and

d) a plurality of individual flow control tubes inserted in selective passageways of said support elements that controls the fluid flow and reduces the amount of heat transfer fluid therein, wherein said flow control tubes are positioned offset from the center of the internal passages in the heat transfer elements.

21. The method of making a support surface for preparing food articles placed adjacent said surface comprising the steps of:

forming a plurality of longitudinally extending support elements, each having at least one longitudinal passageway extending there through from a first to a second end thereof;

positioning a tubular element in each said passageways in heat transfer relationship therewith, by expanding the support element or shrinking the tubular element;

positioning support elements in a side-by-side relationship to form a substantially flat surface;

attaching a header in fluid relationship to said tubular elements to transfer there between fluid from a source;

balancing the flow of said fluid from said header to said tubular elements by including flow control tubes of reduced diameter inside the tubular elements; providing a reduced fluid passageway between tubular elements and flow control tubes of reduced diameter;

increasing the fluid flow velocity in the tubular elements by including flow control tubes inside the tubular elements; altering the fluid flow toward the tubular elements fluid contact surfaces by including flow control tubes inside the tubular elements;

positioning of the flow control tubes inside the tubular elements by forming the ends of the flow control tubes; and

sealing the ends of the flow control tubes to keep fluid out of the inside of the flow control tubes.

Continuity (1)
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