Claims
- 1. An insulated wall panel for cooperating with other wall structure as extends peripherally about portions of a treatment chamber of a high temperature furnace to assist in minimizing the loss of heat energy from the treatment chamber and to absorb, store and re-radiate impingent heat energy from the periphery of the treatment chamber back toward central regions of the treatment chamber, comprising:
- a) frame means for defining a rigid support structure that is positionable to extend along selected portions of the periphery of a treatment chamber of a high temperature furnace;
- b) insulation means for being connected to the frame means, and for defining an inner surface that faces toward the treatment chamber and an outer surface that faces toward the frame means when the frame means is positioned to extend along a portion of the periphery of the treatment chamber, wherein the insulation means includes a sandwiched array of two types of insulating members, namely:
- 1) a plurality of rigid, elongate cast refractory members that are arranged in a side by side array, with each of the cast refractory members having: A) outer portion means for defining at least a part of said outer surface; B) inner portion means for extending in closely spaced relationship with the inner portion means of adjacent elongate cast refractory members to provide a continuum of cast refractory material for defining said inner surface and for providing the wall panel with a capability, when exposed directly to the environment of the treatment chamber, for absorbing and storing impingent heat energy from the treatment chamber, and for re-radiating heat energy back into the treatment chamber; and C) central web portion means for structurally connecting the inner portion means of each cast refractory member with the outer portion means thereof;
- 2) a plurality of compressible fiber-type refractory insulation members, with at least a separate one of the fiber-type insulation members being compressively sandwiched between the central web portion means of adjacent pairs of the cast refractory members for substantially filling space as exists between the central web portion means of adjacent pairs of the cast refractory members;
- c) wherein the elongate cast refractory members, when viewed in cross sections taken transversely with respect to the lengths of the cast refractory members, show said inner portion means 1) to be relatively wide in comparison to the widths of the central web portion means so that the closely spaced relationship that exists between the inner portion means of adjacent pairs of the cast refractory members functions to confine the fiber-type insulation members so that fibers therefrom are restrained from escaping from between adjacent pairs of the inner portion means into the treatment chamber, and 2) to shield the fiber-type insulation members from direct exposure to the best environment of the treatment chamber; and,
- d) connection means is provided for connecting the insulation means to the frame means.
- 2. The insulated wall panel of claim 1 wherein the elongate cast refractory members are formed to have a substantially constant, substantially identical cross section along their lengths, and the elongate cast refractory members are arranged to extend substantially parallel to each other in defining said side by side array.
- 3. The insulated wall panel of claim 2 wherein the connection means connects the cast refractory members to the frame means in a manner that causes substantially all portions of the inner surface of the wall panel to extend within a common plane.
- 4. The insulated wall panel of claim 3 wherein:
- a) the connection means includes a plurality of steel plates;
- b) each of the steel plates 1) is rigidly connected to a separate associated one of the cast refractory members, and 2) extends closely along the outer surface portion that is defined by its associated cast refractory member; and,
- c) each of the steel plates is rigidly connected to the frame means.
- 5. The insulated wall panel of claim 4 wherein the steel plates and its associated cast refractory member are rigidly connected, at least in part, by anchor means that is connected to the steel plate and that is at least partially embedded within the cast refractory material that forms the associated cast refractory member.
- 6. The insulated wall panel of claim 5 wherein the anchor means extends within the cast refractory material of the associated cast refractory member in a manner that serves to strengthen and reinforce the associated cast refractory member within the vicinity of the location where the anchor means extends within the cast refractory material.
- 7. The insulated wall panel of claim 4 wherein the steel plates and the frame means are rigidly connected, at least in part, by welds that rigidly connect portions of at least one of the steel plates to the frame means.
- 8. The insulated wall panel of claim 4 wherein the steel plates and the frame means are rigidly connected, at least in part, by elongate threaded means that is connected to the one steel plate and is adapted to be connected to the frame means.
- 9. The insulated wall panel of claim 4 wherein at least one of the steel plates and its associated cast refractory member are rigidly connected, at least in part, by elongate threaded fastener means that is connected to the one steel plate and that extends through a part of the associated cast refractory member other than through the inner portion means of the associated cast refractory member.
- 10. The insulated wall panel of claim 4 wherein at least one of the steel plates has a width that is substantially equal to the width of the inner surface portion that is defined by its associated cast refractory member.
- 11. The insulated wall panel of claim 4 wherein an adjacent pair of the cast refractory members includes first and second cast refractory members wherein each defines a portion of the inner surface that has a width that is substantially equal to the width of its associated steel plate, and wherein the associated steel plates extend in closely spaced relationship so as to cooperate with other portions of the firsthand second cast refractory members to confine the compressively sandwiched fiber-type refractory members so that fibers therefrom are restrained from escaping between the associated steel plates.
- 12. The insulated wall panel of claim 4 wherein an adjacent pair of the cast refractory members each has an associated steel plate that is of a width that substantially equals the width of its associated outer portion means, and flat steel means is provided for extending within a common plane that is occupied by the associated steel plates to substantially fill space as exists between the associated steel plates, whereby the associated steel plates and the flat steel means that extends between the associated steel plates cooperate to confine the compressively sandwiched fiber-type refractory members so that fibers therefrom are restrained from escaping between the associated steel plates.
- 13. The insulated wall panel of claim 3 wherein the side by side array of cast refractory members has adjacent pairs of the cast refractory members with their inner portion means so closely positioned that fibers from the fiber-type insulation members are effectively prevented from passing between the closely spaced inner portion means and into the treatment chamber.
- 14. The insulated wall panel of claim 3 wherein refractory mortar means is installed between the inner portion means of at least one adjacent pair of the cast refractory members to assist in preventing fibers from the fiber-type insulation from passing between inner portion means of the adjacent pair and into the treatment chamber.
- 15. The insulated wall panel of claim 3 wherein each of the cast refractory members has a part of its central web portion means defined by opposed surfaces that extend substantially parallel to each other.
- 16. The insulated wall panel of claim 15 wherein said part of the central web portion means is located near the outer portion means of its associated cast refractory member.
- 17. The insulated wall panel of claim 15 wherein said part of the central web portion means is located near the inner portion means of its associated cast refractory member.
- 18. The insulated wall panel of claim 3 wherein each of the cast refractory members has a part of its central web portion means defined by opposed surfaces that are oppositely inclined with respect to an imaginary center plane that substantially equidistantly bisects the angle that is defined between the opposed surfaces.
- 19. The insulated wall panel of claim 18 wherein said part of the central web portion means is located near the outer portion means of its associated cast refractory member.
- 20. The insulated wall panel of claim 19 wherein said part of the central web portion means is located near the inner portion means of its associated cast refractory member.
- 21. The insulated wall panel of claim 1 wherein at least one of the elongate cast refractory members is of substantially uniform cross section along its length, and the central web portion means of said one of the elongate cast refractory members has at least a part of its cross section that diminishes in width as it extends away from its inner portion means toward its outer portion means to progressively diminish the width of the conductive heat path that is provided by the central web portion means for conductively transferring heat energy from the inner surface to the outer surface of the wall panel.
- 22. The insulated wall panel of claim 1 wherein at least one of the elongate cast refractory members is of substantially uniform cross section along its length, and the central web portion means of said at least one of the elongate refractory members has a cross section that diminishes to a minimal width measurement at a selected point along the length of the cross section, with the minimal width measurement being selected to provide the narrowest width that is deemed necessary to provide good refractory member integrity, strength and service life, whereby the width of the conductive heat path that is provided by the central web portion means for conductively transferring heat energy from the inner surface to the outer surface of the wall panel is held to a minimum at the selected point.
- 23. The insulated wall panel of claim 22 wherein the inner portion means of said one of the elongate cast refractory members is bordered on opposite sides by a pair of opposed, substantially parallel surfaces that extend substantially perpendicular to the inner surface of the wall panel.
- 24. The insulated wall panel of claim 22 wherein the outer portion means of said one of the elongate cast refractory members is bordered on opposite sides by a pair of opposed, substantially parallel surfaces that extend substantially perpendicular to the inner surface of the wall panel.
- 25. The insulated wall panel of claim 22 wherein said one of the elongate cast refractory members has steel reinforcing means embedded within at least its outer portion means for strengthening at least a part of said one of the elongate cast refractory members.
- 26. The insulated wall panel of claim 25 wherein said steel reinforcing means extends into the central web portion means of said one of the elongate cast refractory members for strengthening at least a part of the central web portion means.
- 27. The insulated wall panel of claim 1 wherein at least one of the elongate cast refractory members is of substantially uniform cross section along its length, and the smallest width of the uniform cross section is located at an outermost part of the outer portion means where said outer surface portion is defined, whereby the width of the conductive heat path that is defined by said uniform cross section for conductively transferring heat energy from the inner surface to the outer surface of the wall panel is minimized at the location of said outer surface portion.
- 28. The insulated wall panel of claim 1 wherein two adjacent ones of the cast refractory members are characterized by a) a first cast refractory member that has a part of its central web portion means that defines a surface that faces generally toward the treatment chamber, and b) a second cast refractory member that has a part of its inner portion means that overlies said surface that faces generally toward the treatment chamber.
- 29. A method of forming an insulated wall panel product for cooperating with other wall structure as extends peripherally about portions of a treatment chamber of a high temperature furnace to assist in minimizing the loss of heat energy from the treatment chamber and to absorb, store and reradiate impingent heat energy from the periphery of the treatment chamber back toward central regions of the treatment chamber, comprising the steps of:
- a) providing frame means for defining a rigid support structure that is positionable to extend along selected portions of the periphery of a treatment chamber of a high temperature furnace;
- b) providing insulation means for being connected to the frame means, and for defining an inner surface that faces toward the treatment chamber and an outer surface that faces toward the frame means when the frame means is positioned to extend along a portion of the periphery of the treatment chamber, wherein the insulation means includes a sandwiched array of two types of insulation members, namely:
- 1) a plurality of rigid, elongate cast refractory members of predetermined lengths, with each of the cast refractory members having: A) outer portion means for defining at least a part of said outer surface of the wall panel; B) inner portion means for extending in closely spaced relationship with the inner portion means of adjacent elongated cast refractory members to provide a continuum of cast refractory material for defining said inner surface; C) central web portion means of predetermined width for structurally connecting the inner portion means of each cast refractory member with the outer portion means thereof; and, D) wherein the elongate cast refractory members, when viewed in cross sections taken transversely with respect to the lengths of the cast refractory members, show said inner portion means to be relatively wide in comparison to the widths of the central web portion means, and,
- 2) a plurality of compressible fiber-type refractory insulation members; and,
- c) connecting the elongate cast refractory members to the frame means:
- 1) with the elongate cast refractory members being arranged so as to extend side by said so that the inner portion means of adjacent elongate cast refractory members provide a continuum of cast refractory material for defining said inner surface;
- 2) with at least a separate one of the fiber-type insulation members being compressively sandwiched between the central web portion means of adjacent pairs of the cast refractory members for substantially filling space as exists between the central web portion means of adjacent parts of the cast refractory members;
- 3) with inner portion means of adjacent pairs of the elongate cast refractory members extending into sufficiently closely spaced relationship to form a substantially contiguous inner surface of the wall panel: A) that provides the wall panel with a capability, when the inner surface of the wall panel is exposed directly to the heat environment of the treatment chamber, for absorbing and storing impingent heat energy from the treatment chamber, and for re-radiating heat energy back into the treatment chamber; B) that confined the fiber-type insulation members so that fibers therefrom are restrained from escaping from between adjacent pairs of the inner portion means into the treatment chamber; and C) that shields the fiber-type insulation members from direct exposure to the heat environment of the treatment chamber.
- 30. An insulated wall panel product having fiber-type insulation members compressively sandwiched between adjacent elongate cast refractory members fully filling space therebetween and with said refractory members forming a continuous surface on one side of said wall panel product to shield said compressively sandwiched insulation members from direct exposure to a high heat environment on said one side of said wall panel product formed in accordance with the method of claim 29.
- 31. The method of claim 29 additionally including the steps of:
- a) providing an elongate steel plate that has a width that is at least the same as is the width of the wall panel outer surface that is defined by the outer portion means of one of the elongate cast refractory members;
- b) connecting said steel plate to said one of the cast refractory members so as to extend along said outer surface portion of said particular cast refractory member; and,
- c) mounting said one cast refractory member on said frame means with said steel plate in engagement with portions of said frame means.
- 32. An insulated wall panel product having fiber-type insulation members compressively sandwiched between adjacent elongate cast refractory members fully filling space therebetween and with said refractory members forming a continuous surface on one side of said wall panel product to shield said compressively sandwiched insulation members from direct exposure to a high heat environment on said one side of said wall panel product formed in accordance with the method of
- 33. The method of claim 31 wherein the step of mounting said particular cast refractory member on said frame includes the step of connecting said steel plate to said frame means in locations where said steel plate engages portions of said frame means.
- 34. An insulated wall panel product having fiber-type insulation members compressively sandwiched between adjacent elongate cast refractory members fully filling space therebetween and with said refractory members forming a continuous surface on one side of said wall panel product to shield said compressively sandwiched insulation members from direct exposure to a high heat environment on said one side of said wall panel product formed in accordance with the method of claim 33.
- 35. The method of claim 31 wherein the step of connecting said steel plate to said particular cast refractory member includes the steps of:
- a) providing a suitably configured mold for mold-forming said particular cast refractory member;
- b) providing anchor means that is connected to said steel plate;
- c) positioning said steel plate and said anchor means prior to mold-forming of said particular cast refractory member 1) so that the steel plate cooperates with the mold to defines an outer surface portion of said particular cast refractory means, and 2) so that the anchor means extends at least into the portion of the mold that will form said outer portion means of said particular cast refractory member; and,
- d) introducing a hardenable cast refractory material into the mold while the cast refractory material takes the form of a hardenable liquid, so as to cause the hardenable liquid to flow about said anchor means to cause said anchor means to be embedded in at least said outer portion means of said particular cast refractory member when the hardenable liquid hardens to form said particular cast refractory member.
- 36. An insulated wall panel product having fiber-type insulation members compressively sandwiched between adjacent elongate cast refractory members fully filling space therebetween and with said refractory members forming a continuous surface on one side of said wall panel product to shield said compressively sandwiched insulation members from direct exposure to a high heat environment on said one side of said wall panel product formed in accordance with the method of claim 35.
- 37. The method of claim 29 additionally including the steps of:
- a) providing a plurality of elongate steel plates so that each steel plate can be associated with a separate one of the elongate cast refractory members, with each of the steel plates having a width that is at least the same as is the width of the wall panel outer surface portion of its associated cast refractory member;
- b) connecting each of the steel plates to its associated cast refractory member so as to extend along the outer surface portion of its associated cast refractory member; and,
- c) mounting the associated cast refractory members on said frame means with their associated steel plates extending into engagement with portions of said frame means.
- 38. An insulated wall panel product having fiber-type insulation members compressively sandwiched between adjacent elongate cast refractory members fully filling space therebetween and with said refractory members forming a continuous surface on one side of said wall panel product to shield said compressively sandwiched insulation members from direct exposure to a high heat environment on said one side of said wall panel product formed in accordance with the method of claim 37.
- 39. The method of claim 37 wherein the step of connecting each of the steel plates to its associated cast refractory member includes the steps of:
- a) providing anchor means, portions of which have been embedded within at least the outer portion means of the associated cast refractory member when the cast refractory member was formed; and
- b) securely connecting the anchor means to the associated steel plate.
- 40. An insulated wall panel product having fiber-type insulation members compressively sandwiched between adjacent elongate cast refractory members fully filling space therebetween and with said refractory members forming a continuous surface on one side of said wall panel product to shield said compressively sandwiched insulation members from direct exposure to a high heat environment on said one side of said wall panel product formed in accordance with the method of claim 39.
- 41. The method of claim 39 wherein the step of providing anchor means includes the step of providing reinforcement means connected to the anchor means for extending within a predetermined region of the associated cast refractory member when the cast refractory member was formed, whereby the presence of the reinforcement means will serve to strengthen portions of the associated cast refractory member located within the vicinity of said predetermined region.
- 42. An insulated wall panel product having fiber-type insulation members compressively sandwiched between adjacent elongate cast refractory members fully filling space therebetween and with said refractory members forming a continuous surface on one side of said wall panel product to shield said compressively sandwiched insulation members from direct exposure to a high heat environment on said one side of said wall panel product formed in accordance with the method of claim 41.
- 43. The method of claim 41 wherein the step of providing a plurality of elongate steel plates includes the step of providing each steel plate with a width that substantially equals the portion of inner surface width that the inner portion means of its associated cast refractory member defines once the cast refractory members have been positioned in said side by side array.
- 44. An insulated wall panel product having fiber-type insulation members compressively sandwiched between adjacent elongate cast refractory members fully filling space therebetween and with said refractory members forming a continuous surface on one side of said wall panel product to shield said compressively sandwiched insulation members from direct exposure to a high heat environment on said one side of said wall panel product formed in accordance with the method of claim 43.
- 45. A method of forming a heat-insulating product for lining a panel frame that is to be positioned about the periphery of a high temperature treatment chamber, comprising the steps of:
- a) providing a plurality of rigid elongate cast refractory members of predetermined lengths, with each of the cast refractory members having: 1) outer portion means for defining at least a part of said outer surface of the wall panel; 2) inner portion means for extending in closely spaced relationship with the inner portion means of adjacent elongate cast refractory members to provide a continuum of cast refractory material for defining an inner surface; 3) central web portion means of predetermined width for structurally connecting the inner portion means of each cast refractory member with the outer portion means thereof; and, 4) wherein the elongate cast refractory members, when viewed in cross sections taken transversely with respect to the lengths of the cast refractory members, show said inner portion means to be relatively wide in comparison to the widths of the central web portion means; and,
- b) mounting the plurality of elongate cast refractory members on a frame as by establishing secure connections between at least the outer portion means of the cast refractory members and the frame so that resulting elongate assemblies of the cast refractory members and the frame extend in spaced, substantially parallel, side by side array with pocket-like spaces being defined between adjacent ones of the cast refractory members;
- c) installing elongate compressible fiber-type refractory insulating members so that, when the formation of the heat-insulating product is complete, at least a separate one of the fiber-type insulating members is compressively sandwiched within each of the pocket-like spaces between adjacent ones of the cast refractory members' and,
- d) with the steps of mounting the cast refractory members and of installing the fiber-type refractory insulating members being carried out such that, when the formation of the heat-insulating product is complete, the inner portion means of adjacent pairs of the elongate cast refractory members extends into sufficiently closely spaced relationship to form a substantially contiguous inner surface of the wall panel: 1) that provides the wall panel with a capability, when the inner surface of the wall panel is exposed directly to the heat environment of the treatment chamber, for absorbing and storing impingent heat energy from the treatment chamber, and for re-radiating such heat energy back into the treatment chamber; 2) that confines the fiber-type insulation members so that fibers therefrom are restrained from escaping from between adjacent pairs of the inner portion means into the treatment chamber; and 3) that shields the fiber-type insulation members from direct exposure to the heat environment of the treatment chamber.
- 46. An insulated wall panel product having fiber-type insulation members compressively sandwiched between adjacent elongate cast refractory members fully filling space therebetween and with said refractory members forming a continuous surface on one side of said wall panel product to shield said compressively sandwiched insulation members from direct exposure to a high heat environment on said one side of said wall panel product formed in accordance with the method of claim 45.
- 47. The method of claim 45 wherein:
- a) the step of providing a plurality of elongate cast refractory members includes the steps of:
- 1) providing a plurality of elongate steel plates for respective association with a separate one of the elongate cast refractory members, with each of the steel plates having a width that is at least the same as the width of the outer surface portion of its associated cast refractory member;
- 2) connecting each of the steel plates to its associated cast refractory member so as to extend along the outer surface portion of its associated cast refractory member; and,
- b) the step of mounting the elongate cast refractory members on the frame includes the step of rigidly connecting the steel plates to portions of the frame.
- 48. An insulated wall panel product having fiber-type insulation members compressively sandwiched between adjacent elongate cast refractory members fully filling space therebetween and with said refractory members forming a continuous surface on one side of said wall panel product to shield said compressively sandwiched insulation members from direct exposure to a high heat environment on said one side of said wall panel product formed in accordance with the method of claim 47.
- 49. The method of claim 47 wherein the step of connecting each of the steel plates to its associated cast refractory member includes the steps of:
- a) providing anchor means, portions of which have been embedded within at least the outer portion means of the associated cast refractory member when the cast refractory member was formed; and,
- b) securely connecting the anchor means to the associated steel plate.
- 50. An insulated wall panel product having fiber-type insulation members compressively sandwiched between adjacent elongate cast refractory members fully filling space therebetween and with said refractory members forming a continuous surface on one side of said wall panel product to shield said compressively sandwiched insulation members from direct exposure to a high heat environment on said one side of said wall panel product formed in accordance with the method of claim 49.
- 51. The method of claim 49 wherein the step of providing anchor means includes the step of providing reinforcement means connected to the anchor means for extending within a predetermined region of the associated cast refractory member when the cast refractory member was formed, whereby the presence of the reinforcement means will serve to strengthen portions of the associated cast refractory member located within the vicinity of said predetermined region.
- 52. An insulated wall panel product having fiber-type insulation members compressively sandwiched between adjacent elongate cast refractory members fully filling space therebetween and with said refractory members forming a continuous surface on one side of said wall panel product to shield said compressively sandwiched insulation members from direct exposure to a high heat environment on said one side of said wall panel product formed in accordance with the method of claim 51.
- 53. The method of claim 51 wherein the step of providing a plurality of elongate steel plates includes the step of providing each steel plate with a width that substantially equals the portion of inner surface width that the inner portion means of its associated cast refractory member defines once the cast refractory members have been positioned in said side by side array.
- 54. An insulated wall panel product having fiber-type insulation members compressively sandwiched between adjacent elongate cast refractory members fully filling space therebetween and with said refractory members forming a continuous surface on one side of said wall panel product to shield said compressively sandwiched insulation members from direct exposure to a high heat environment on said one side of said wall panel product formed in accordance with the method of claim 53.
- 55. The method of claim 45 wherein the step of mounting the cast refractory members is carried out such that adjacent pairs of the cast refractory members are mounted with their inner portion means positioned so closely together that fibers from the fiber-type insulation members are effectively prevented from passing between the closely spaced inner portion means and into the treatment chamber.
- 56. An insulated wall panel product having fiber-type insulation members compressively sandwiched between adjacent elongate cast refractory members fully filling space therebetween and with said refractory members forming a continuous surface on one side of said wall panel product to shield said compressively sandwiched insulation members from direct exposure to a high heat environment on said one side of said wall panel product formed in accordance with the method of claim 55.
- 57. The method of claim 45 wherein the step of mounting the cast refractory members includes the step of installing refractory mortar between the inner portion means of at least one adjacent pair of the cast refractory members to assist in preventing fibers from the fiber-type insulation from passing between inner portion means of the adjacent pair and into the treatment chamber.
- 58. An insulated wall panel product having fiber-type insulation members compressively sandwiched between adjacent elongate cast refractory members fully filling space therebetween and with said refractory members forming a continuous surface on one side of said wall panel product to shield said compressively sandwiched insulation members from direct exposure to a high heat environment on said one side of said wall panel product formed in accordance with the method of claim 57.
- 59. The method of claim 45 wherein the step of providing cast refractory members includes the step of forming the cast refractory members wherein the cross section of each of the cast refractory members diminishes to a minimal width measurement at a selected point along the length of the cross section, with the minimal width measurement being selected to provide the narrowest width that is deemed necessary to provide good refractory member integrity, strength and service life, whereby the width of the conductive heat path that is provided by the central web portion means for conductively transferring heat energy from the inner surface to the outer surface of the wall panel is held to a minimum at the selected point.
- 60. An insulated wall panel product having fiber-type insulation members compressively sandwiched between adjacent elongate cast refractory members fully filling space therebetween and with said refractory members forming a continuous surface on one side of said wall panel product to shield said compressively sandwiched insulation members from direct exposure to a high heat environment on said one side of said wall panel product formed in accordance with the method of claim 59.
CROSS-REFERENCE TO RELATED AND RELEVANT PATENTS AND APPLICATIONS
The present application is a continuation-in-part of application Ser. No. 07/785,775 filed Oct. 31, 1991 (issued Aug. 9, 1994 as U.S. Pat. No. 5,335,897), referred to hereinafter as the "Parent Case." The Parent Case was filed as a continuation-in-part of application Ser. No. 07/693,346 filed Apr. 30, 1991 (issued May 3, 1994 as U.S. Pat. No. 5,308,046) referred to hereinafter as "The Grandparent Case." The Grandparent Case was filed as a continuation-in-part of application Ser. No. 07/609,643 filed Nov. 6, 1990 (issued Sep. 17, 1991 as U.S. Pat. No. 5,048,802) which case, in turn, was filed as a continuation-in-part of application Ser. No. 07/373,672 filed Jun. 28, 1989 (abandoned), which case, in turn, was filed as a continuation of application Ser. No. 07/213,699 filed Jun. 30, 1988 (abandoned), which, in turn, was filed as a continuation-in-part of application Ser. No. 06/907,473 filed Sep. 15, 1986 (issued Jul. 5, 1988 as U.S. Pat. No. 4,755,236), which case, in turn, was filed as a division of application Ser. No. 06/732,400 filed May 9, 1985 (issued Sep. 16,1986 as U.S. Pat. No. 4,611,791), which case, in turn, was filed as a continuation-in-part of application Ser. No. 06/456,823 filed Jan. 10, 1983 (issued May 14, 1985 as U.S. Pat. No. 4,516,758). With the exception of the "Parent Case" and the "Grand-parent Case," all of the patents and applications that are identified above will be referred to collectively hereinafter as the "Great Grandparent Cases." The disclosures of all of the Parent, Grandparent and Great Grandparent Cases are incorporated herein by reference.
Reference also is made to the following additional applications (and to patents that have issued therefrom) that are descendants of the earliest-filed of the above-listed Great Grandparent Cases. These include application Ser. No. 06/659,856 filed Oct. 11, 1984 (issued Mar. 31, 1987 as U.S. Pat. No. 4,653,171), which, in turn, was filed as a division of application Ser. No. 06/477,219 filed Mar. 21, 1983 (issued Mar. 3, 1987 as U.S. Pat. No. 4,647,022), the latter of which was filed as a continuation-in-part of said earliest-filed of the Great Grandparent Cases, namely application Ser. No. 06/456,823 filed Jan. 10, 1983 (issued May 14, 1985 as U.S. Pat. No. 4,516,758). U.S. Pat. No. 4,653,171 and 4,647,022 (and the applications from which they issued) relate to features of furnace door construction and reconstruction, and will be referred to hereinafter as the "Door Patents," the disclosures of all of which are incorporated herein by reference.
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