IP Library Granted Patent US 7,798,138
Granted Patent B2
US 7,798,138 · App. 12/167,330 · Granted Sep 21, 2010

Convection oven indirectly heated by a fuel burner

Assignee: Babington Enterprises
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Quick Facts
Patent No.
US 7,798,138
App. No.
12/167,330
Granted
Sep 21, 2010
Kind
B2
Abstract

A convection oven is disclosed. The convection oven includes an indirect heating chamber and a housing forming both an oven chamber and a circulation path between the oven chamber and the indirect heating chamber. An air circulator is adapted to circulate air through the circulation path. A fuel burner is adapted to generate heat, and heat from the fuel burner is transferred to the indirect heating chamber through a heat exchange interface.

Claims (29)

1. A convection oven comprising:

an indirect heating chamber formed by at least one indirect heating channel fluidically coupled between an input port and an exit port;

a housing forming an oven chamber, wherein the indirect heating chamber is disposed adjacent a bottom wall of the oven chamber, and the oven chamber and the indirect heating chamber are fluidically coupled to form part of a closed circulation path;

an air circulator adapted to circulate air through the circulation path; and

a direct heating chamber adjoining the indirect heating chamber at a heat exchange interface, the direct heating chamber including at least one direct heating channel adapted to direct heat across a substantial portion of the heat exchange interface, wherein the at least one direct heating channel winds along a first circuitous path across the heat exchange interface;

a fuel burner adapted to generate heat, wherein heat from the fuel burner is transferred to the indirect heating chamber through the heat exchange interface, wherein the at least one indirect heating channel winds along a second circuitous path across the heat exchange interface.

2. The oven of claim 1 , wherein the housing includes at least one access door.

3. The oven of claim 1 , wherein the housing includes a plurality of air intake ports in a first wall of the oven chamber and a plurality of heat discharge ports in a second wall of the oven chamber, the air intake ports and heat discharge ports forming part of the circulation path.

4. The oven of claim 3 , wherein the first wall is a top wall of the oven chamber.

5. The oven of claim 3 , wherein the second wall is a side wall of the oven chamber.

6. The oven of claim 1 , wherein the direct heating chamber comprises insulation disposed opposite the heat exchange interface, the at least one direct heating channel being disposed between the heat exchange interface and the insulation.

7. The oven of claim 1 , wherein the direct heating chamber comprises an exhaust port.

8. The oven of claim 1 , wherein the air circulator comprises a blower.

9. The oven of claim 1 , wherein the air circulator is adapted to direct air emerging from the at least one indirect heating channel into the oven chamber.

10. The oven of claim 1 , wherein the fuel burner comprises a liquid fuel burner.

11. A convection oven comprising:

a housing forming an oven chamber, the housing including at least one access door, a plurality of air intake ports in a first wall of the oven chamber, and a plurality of heat discharge ports in a second wall of the oven chamber;

an air circulator;

an indirect heating chamber affixed to a bottom wall of the oven chamber, the indirect heating chamber being formed by at least one indirect heating channel fluidically coupled to an input port and an exit port;

a closed circulation path fluidically coupling the air circulator, the indirect heating chamber, and the oven chamber, the air circulator being adapted to circulate air along the circulation path;

a direct heating chamber sharing a heat exchange interface with the indirect heating chamber, the direct heating chamber including at least one direct heating channel adapted to direct hot exhaust gases across a substantial portion of the heat exchange interface, wherein each of the at least one direct heating channel and the at least one indirect heating channel winds along a circuitous path across the heat exchange interface; and

a liquid fuel burner having a combustion chamber fluidically coupled to the direct heating chamber.

12. The oven of claim 11 , wherein the first wall is a top wall of the oven chamber.

13. The oven of claim 11 , wherein the second wall is a side wall of the oven chamber.

14. The oven of claim 11 , wherein the air circulator comprises a blower.

15. The oven of claim 11 , wherein the air circulator is adapted to draw air out of the oven chamber via the air intake ports, and direct the air through the indirect heating chamber back into the oven chamber via the heat discharge ports.

16. The oven of claim 11 , wherein the circulation path is adapted to direct air emerging from the at least one indirect heating channel through the heat discharge ports.

17. The oven of claim 11 , wherein the direct heating chamber comprises insulation disposed opposite the heat exchange interface, the at least one direct heating channel being disposed between the heat exchange interface and the insulation.

18. The oven of claim 11 , wherein the direct heating chamber comprises an exhaust port.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 1, 2025
From: BABINGTON TECHNOLOGY, LLC
To: BABINGTON TECHNOLOGY, INCORPORATED
Reel/Frame 071913/0908 →
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNEE'S NAME AND EXPUNGED SECOND INVENTOR NAMES PREVIOUSLY RECORDED AT REEL: 43433 FRAME: 877. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT . Recorded Aug 1, 2025
From: BABINGTON, ROBERT S.
To: BABINGTON TECHNOLOGY, LLC
Reel/Frame 072262/0401 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 29, 2017
From: BABINGTON, ROBERT S; BABINGTON, ANDREW D
To: BABINGTON TECHNOLOGY, INC.
Reel/Frame 043433/0877 →
Continuity (1)
Related Publication 20100000509A1 · Jan 7, 2010