Claims
- 1. A slot furnace for heating steel to forging temperatures, comprising: a housing; a chamber in said housing for receiving forging stock; a refractory lining in said housing the inner surface of which generally defines said chamber; a refractory hearth; a slot at the front of the housing adjacent said hearth and having communication through said lining to said chamber through which forging stock is inserted and withdrawn; an electrical heating element at each side of said chamber inwardly adjacent the respective side walls of said lining and outwardly adjacent the sides of said hearth and extending in a direction generally perpendicular to the plane of said slot; a refractory ceiling defining the top of said chamber protruding inwardly thereof from either side wall to a line paralleling said electrical heating elements and disposed therebetween and spaced above said slot; means for connecting said heating elements to an electrical power source; a temperature sensor disposed adjacent said hearth; and means connected to said sensor between said elements and said power source for controlling the electrical power applied to said elements in response to said sensor.
- 2. A furnace in accordance with claim 1 wherein said housing is metal and is grounded and wherein all surfaces of the input side of said slot are covered with metal frame which also is grounded.
- 3. A furnace in accordance with claim 1 wherein each of said heating elements is located between the inner surface of a side wall of said lining and a vertical plane containing the nearest side edge of said hearth, whereby said heating elements are disposed outwardly laterally of each side edge of the hearth.
- 4. A furnace in accordance with claim 3 further including a plurality of upstanding guard members on each side of said hearth, each of said guard members having an upper projecting portion extending part way to and in the direction of the center of said hearth, the distance separating the inner edges of opposing guard members being substantially coextensive with the width of said slot and the distance between the hearth and the underside of the upper projecting portion being substantially coextensive with the height of said slot.
- 5. A furnace in accordance with claim 1 wherein said ceiling defining the top of said chamber is contoured from side to side in the undulated form of a symmetrical portion of a sine wave that includes the lowermost portion of the wave as its center, this lowermost portion being positioned in said chamber above said slot and midway between the side edges of said slot.
- 6. A furnace in accordance with claim 1 wherein said temperature sensor is disposed in said hearth at substantially the center thereof.
- 7. A furnace in accordance with claim 1 wherein said means for controlling the electrical power applied to said elements includes a solid state electronic control system.
- 8. A furnace in accordance with claim 7 wherein said sensor is a thermocouple that generates an electrical signal in response to the temperature of said hearth and wherein said solid state electronic control system includes an SCR phase shifting circuit that functions in response to the signal from said thermocouple.
- 9. A furnace in accordance with claim 1 further including a ground detection relay circuit to shut off power upon development of a ground fault in said furnace.
- 10. A furnace in accordance with claim 1 wherein said refractory lining includes high-alumina ceramic fiber in the form of boards, blankets, and loose fill and wherein the inner surface of said lining is capable of withstanding temperatures up to at least 3000.degree. F.
- 11. A furnace in accordance with claim 1 wherein said heating elements are silicon carbide rods.
- 12. A furnace in accordance with claim 4 wherein said upstanding guard members are made of a hard, highly conductive material.
- 13. A furnace in accordance with claim 12 wherein the guard members comprise alumina.
- 14. A furnace in accordance with claim 12 wherein the guard members comprise silicon carbide.
- 15. A slot furnace for heating steel to forging temperatures, comprising:
- a housing; a chamber in said housing for receiving forging stock, a refractory lining in said housing the inner surface of which generally defines said chamber; a refractory hearth; a slot at the front of the housing adjacent said hearth and having communication through said lining to said chamber through which forging stock is inserted and withdrawn; an electrical heating element at each side of said chamber inwardly adjacent the respective side walls of said lining; a refractory ceiling defining the top of said chamber and protruding inwardly thereof between said electrical heating elements and above said slot; means for connecting said heating elements to an electrical power source; a temperature sensor disposed adjacent said hearth; and means connected to said sensor for controlling the electrical power applied to said elements in response to said sensor.
- 16. A furnace in accordance with claim 15 wherein said electrical heating elements are generally parallel to the direction of stock insertion through said slot.
- 17. A furnace in accordance with claim 16 wherein said ceiling protrudes inwardly to a line paralleling said electrical heating elements and above said slot.
- 18. A furnace in accordance with claim 17 further comprising guard members intermediate said hearth and said heating units.
- 19. A furnace in accordance with claim 15 wherein each of said heating elements is disposed outwardly adjacent the sides of said hearth.
- 20. A furnace in accordance with claim 15 wherein said refractory lining comprises an alumina ceramic fiber composition the inner surface of which is capable of withstanding temperatures up to at least 3000.degree. F.
- 21. A furnace in accordance with claim 15 further comprising means grounding at least the input side of said slot.
- 22. A slot furnace for heating steel to forging temperatures, comprising: a housing; a chamber in said housing for receiving forging stock, a refractory lining in said housing the inner surface of which generally defines said chamber; a refractory hearth; a slot at the front of the housing adjacent said hearth and having communication through said lining to said chamber through which forging stock is inserted and withdrawn; an electrical heating element at each side of said chamber inwardly adjacent the respective side walls of said lining; a refractory ceiling defining the top of said chamber having a portion protruding inwardly thereof between said electrical heating elements and above said slot, said portion having a generally rectangular cross section; means for connecting said heating elements to an electrical power source; a temperature sensor disposed adjacent said hearth; and means connected to said sensor for controlling the electrical power applied to said elements in response to said sensor.
- 23. A furnace in accordance with claim 22 wherein said heating elements extend in a direction generally parallel to the direction of stock insertion, and said protruding portion comprises a beam of generally rectangular cross section immediately underlying said ceiling and extending above said slot from the refractory lining of the wall that includes said slot to the refractory lining of the opposite wall.
- 24. A furnace in accordance with claim 23 wherein the beam comprises a plurality of slabs of alumina ceramic fiber composition, the slab width being disposed vertically and with adjacent slabs being interconnected by plugs formed of moldable ceramic fiber that have been cured after molding, and wherein the side edges of the lower horizontal surface of the beam are beveled.
- 25. A furnace in accordance with claim 24 wherein the slabs are rectangular in cross section and are stiff and flat.
- 26. A furnace in accordance with claim 25 further comprising alumina ceramic fiber composition in the form of soft blankets interleaving the rectangular slabs, said plugs securing the blankets and slabs.
- 27. A furnace in accordance with claim 22 in which the front and rear walls of refractory lining each comprise a stack of horizontal slabs of an alumina ceramic fiber composition with some adjacent slabs being interconnected by plugs formed of moldable ceramic fiber that have been cured after molding.
- 28. A furnace in accordance with claim 27 wherein the slabs are rectangular in cross section and are stiff and flat, and wherein at least some of the slabs are interleaved with an alumina ceramic fiber composition in the form of soft blankets.
- 29. A furnace in accordance with claim 22 wherein said electrical heating elements are disposed outwardly adjacent the sides of said hearth.
- 30. A furnace in accordance with claim 29 further comprising a guard member disposed on each side of said hearth extending generally upwardly intermediate said hearth and said electrical heating elements.
- 31. A furnace in accordance with claim 30 wherein each of said guard members has an upper projecting portion extending part way to and in the direction of the center of said hearth, the distance separating the inner edges of opposing guard members being substantially coextensive with the width of said slot and the distance between the hearth and the underside of the upper projecting portion being substantially coextensive with the height of said slot.
- 32. A furnace in accordance with claim 30 wherein said guard members are made of a hard, highly conductive material.
- 33. A furnace in accordance with claim 32 wherein the guard members comprise alumina.
- 34. A furnace in accordance with claim 32 wherein the guard members comprise silicon carbide.
- 35. A furnace in accordance with claim 22 wherein said temperature sensor is disposed in said hearth at substantially the center thereof.
- 36. A furnace in accordance with claim 22 wherein said means for controlling the electrical power applied to said heating elements includes a solid state electronic control system.
- 37. A furnace in accordance with claim 36 wherein said sensor is a thermocouple that generates an electrical signal in response to the temperature of said hearth and wherein said solid state electronic control system includes an SCR phase shifting circuit that functions in response to the signal from said thermocouple.
- 38. A furnace in accordance with claim 22 further comprising a ground detection relay circuit to shut off power upon development of a ground fault in said furnace.
- 39. A furnace in accordance with claim 22 wherein said heating elements are silicon carbide rods.
Parent Case Info
This is a continuation-in-part of application Ser. No. 760,846, filed Jan. 21, 1977, now abandoned.
US Referenced Citations (17)
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
760846 |
Jan 1977 |
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