Claims
- 1. An industrial heat treating furnace comprising: an outer housing having a refractory lining, an imperforate heat exchange shell within said housing, said shell being spaced inwardly from said housing lining, and a means for heating said shell uniformly, said means including a circular plenum section having a centrally disposed inlet and a peripheral inner surface, a circulating fan at said inlet, said fan having a periphery spaced inwardly from said peripheral inner surface, burner means for producing hot combustion gases, means for introducing said hot combustion gases into said space between said fan periphery and said peripheral inner surface, a plurality of hot combustion gas distributor tubes arranged symmetrically side-by-side around said shell in a spaced relationship with respect to each other and to said lining and to said shell, said tubes having a plurality of jet stream apertures, said tubes each having an end opening into said plenum in said space between said fan periphery and said inner peripheral surface of said plenum.
- 2. An industrial heat treating furnace according to claim 1 wherein the axes of the jet stream apertures are disposed normal to the confronting surface portion of said shell.
- 3. An industrial heat treating furnace according to claim 1 wherein the outer surface of the shell and the inner surface of the refractory lining are both cylindrical in form and the axes of said gas streams are radially disposed.
- 4. An industrial heat treating furnace according to claim 1 wherein the distance between the distributor tubes and the inner shell is less than the distance between the distributor tubes and the refractory lining but greater than the distance between adjoining tubes.
- 5. An industrial heat treating furnace according to claim 1 wherein the total open area of all of the space between the tubes is greater than the total open area of all of the hot gas stream apertures.
- 6. An industrial heat treating furnace comprising: a outer housing having a refractory lining, an imperforate heat exchange shell within said housing, said shell being spaced inwardly from the inner surface of said housing lining, a plurality of apertured hot gas distributor tubes for directing a multiplicity of hot gas streams towards said shell, said tubes being arranged symmetrically, side by side around said shell in a spaced relationship with respect to each other and to said lining and to said shell, and means for supplying hot combustion gases under pressure to said tubes, said furnace is a batch type furnace having two opposite ends with a hinged access door at one end and has a means for generating and circulating hot combustion gases at the other end.
- 7. An industrial heat treating furnace according to claim 6 wherein said means includes a radial flow fan contained in a cylindrical plenum and said hot combustion gases flow into said plenum through an annular slot on the discharge side of said fan adjacent to the plenum periphery.
- 8. An industrial heat treating furnace of the batch type comprising: an outer housing having two opposite ends with a hinged access door at one end, a means for generating and circulating hot combustion gases at the other end, a refractory lining on the inside of said housing, an imperforate heat exchange shell within said housing, said shell being spaced inwardly from the inner surface of said housing lining, a means for directing a multiplicity of hot combustion gas streams towards said shell, said directing means having a plurality of hot combustion gas distributor tubes arranged symmetrically, side by side around said shell in a spaced relationship with respect to each other and to said lining and to said shell, said tubes having a plurality of jet stream apertures, said generating and circulating means includes a means for supplying hot combustion gases to said tubes, said supplying means has a radial flow fan contained in a cylindrical plenum, said hot combustion gases flow into said plenum through an annular slot on the discharge side of said fan adjacent to the plenum periphery, said distributor tubes are mounted in an annular plate which forms a side wall of said plenum and said tubes have open ends communicating with the interior of said plenum adjacent to its periphery.
- 9. An industrial heat treating furnace comprising: an outer housing having a refractory lining, an imperforate heat exchange shell within said housing, said shell being spaced inwardly from the inner surface of said housing lining, a means for directing a multiplicity of hot combustion gas streams towards said shell, said means having a plurality of hot combustion gas distributor tubes arranged symmetrically, side by side around said shell in a spaced relationship with respect to each other and to said lining and to said shell, said tubes having a plurality of jet stream apertures with the axes of said apertures being disposed normal to the confronting surface portion of said shell, and means for supplying hot combustion gases under pressure to said tubes, said means for supplying hot combustion gases includes a fan, a plenum chamber, a burner means for producing said gases and exhausting them into said plenum chamber on the discharge side of a fan such that said gases flow under pressure into said distributor tubes where they emerge as jet streams from said apertures, then split and reverse flow direction exiting the area between said tubes and shell laterally through the spaces between the tubes, then axially along the outside of the array of tubes in the area between said array and said refractory lining and finally back into said fan.
- 10. An industrial heat treating furnace comprising: an outer housing having a refractory lining, an imperforate heat exchange shell within said housing, said shell being spaced inwardly from the inner surface of said housing lining, a plurality of apertured hot gas distributor tubes for directing a multiplicity of hot gas streams towards said shell, said tubes being arranged symmetrically, side by side around said shell in a spaced relationship with respect to each other and to said lining and to said shell, and means for supplying hot combustion gases under pressure to said tubes, said furnace is separated by a baffle plate into a section containing said shell and a section containing said means for supplying hot combustion gases, and said baffle plate restricts the flow of fluid from the former to the latter to an open space defined by the baffle periphery and the surrounding refractory lining.
- 11. An industrial heat treating furnace according to claim 10 wherein the total open area of said peripheral space is greater than the total area of all of the hot gas stream apertures.
- 12. An industrial heat treating furnace comprising: an outer housing having a refractory lining forming a first furnace section containing an imperforate heat exchange shell spaced inwardly from said lining, a second furnace section containing a circulating fan housed in a plenum chamber attached to said first furnace section, a plurality of apertured distributor tubes disposed in a side-by-side array in said first section around the outside of said shell for directing a multiplicity of hot combustion gas jet streams against said shell, said tubes being in fluid communication with said plenum on the discharge side of said fan, said tubes being spaced from said shell, from said lining and from each other, means for supplying hot combustion gases to said plenum chamber on the discharge side of said fan, and a baffle plate separating said sections from each other, said baffle plate restricting fluid flow from said first section to said second section to a space surrounding its periphery.
- 13. An industrial heat treating furnace according to claim 12 wherein said fan is a radial flow fan, said plenum is circular and said hot combustion gases flow from said means into said plenum through a concentric annular slot on the discharge side of said fan.
- 14. An industrial heat treating furnace according to claim 12 wherein the distance between the distributor tubes and the outer surface of said shell is less than the distance between said refractory lining and said tubes but greater than the distance between said adjoining tubes.
- 15. An industrial heat treating furnace according to claim 12 wherein the total open area of all of the space between the tubes is greater than the total open area of all of the hot gas stream apertures.
- 16. An industrial heat treating furnace according to claim 12 wherein the axes of the jet stream apertures are disposed normal to the confronting surface portion of said shell.
- 17. An industrial heat treating furnace according to claim 12 wherein the outer surface of the shell and the inner surface of the refractory lining are both cylindrical in form and the axes of said gas streams are radially disposed.
- 18. An industrial heat treating furnace according to claim 17 wherein said hot combustion gases are first exhausted into said plenum chamber on the discharge side of said fan, then flow under pressure into said distributor tubes where they emerge as jet streams from said apertures, then split and reverse flow direction exiting the area between said tubes and shell laterally through the spaces between said tubes, then axially along the outside of the array of tubes in the area between said array and said refractory lining and finally back into said fan.
Parent Case Info
This is a continuation of application Ser. No. 865,839, filed May 21, 1986.
US Referenced Citations (25)
Continuations (1)
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Number |
Date |
Country |
Parent |
865839 |
May 1986 |
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