US569279A - Glass-annealing furnace - Google Patents

Glass-annealing furnace Download PDF

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US569279A
US569279A US569279DA US569279A US 569279 A US569279 A US 569279A US 569279D A US569279D A US 569279DA US 569279 A US569279 A US 569279A
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glass
annealing
furnace
annular
flue
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F27FURNACES; KILNS; OVENS; RETORTS
    • F27BFURNACES, KILNS, OVENS OR RETORTS IN GENERAL; OPEN SINTERING OR LIKE APPARATUS
    • F27B9/00Furnaces through which the charge is moved mechanically, e.g. of tunnel type; Similar furnaces in which the charge moves by gravity
    • F27B9/06Furnaces through which the charge is moved mechanically, e.g. of tunnel type; Similar furnaces in which the charge moves by gravity heated without contact between combustion gases and charge; electrically heated
    • F27B9/10Furnaces through which the charge is moved mechanically, e.g. of tunnel type; Similar furnaces in which the charge moves by gravity heated without contact between combustion gases and charge; electrically heated heated by hot air or gas

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  • My invention relates to the annealing of hollow ware plate and sheet glass; and its principal feature is an annular-shaped metallic-roofed flue located beneath the glassannealing beds, from which flue the heat furnished by fuel combustion radiates upward to the annealing-beds above it, and to this fine every other part of my furnace is subservient; as, for example, the suspension of the annular-shaped annealing-bed carriage, which I support on brackets projecting out from the wall of the inner drum-shaped central part of my furnace because the flue-roof is not suitable to sustain the annealing-carriage, and to allow its upper surface to be easily kept clean of broken glass, and that the wheels and rail-track on which the carriage moves may be unencumbered with broken glass that falls from the annealing-beds.
  • Figure l is a horizontal sectional view of a circular furnace, the section being just above the annealing-beds.
  • Fig. 2 is its perpendicular transverse section;
  • Fig. 3 aperpendicular section of its fuel-combustion chamber and of its connection with its flue;
  • Fig. 4 a detached transverse sectional elevation of a portion of the glass-carriage supported by its barbed rim and of one of the brackets and of one of the wheels on which the rim is mounted and rotates;
  • Fig. 5 an enlarged view of two of the bars of the annealing-beds made in one piece of cast-iron.
  • Fig. 6 is a detail view of pipe bed-bars faced with copper, and
  • Fig. 7 a section of one of pintle-pieces for the attachment of the hanging mantle-walls to the roof of the furnace.
  • a is the circular encompassing wall of the furnace, and at its inner wall, with the annular-shaped annealing-chamber 1) between these two walls, and c is the fuelflue beneath the annular annealing-chamber roofed by the metallic plates 6.
  • the mechanism for rotating my annular glass-annealin g carriage which consists of the brackets 61, wheels d, and the annular bar-bed rim-rail d, which supports the carriage above and clear of the floor of the furnace, which floor is the roof of the heating-flue.
  • the bars of the annealing-beds may be quite variable in their form, but are the same as those contained in the patents issued to Christopher M. Shortle and myself, dated N ovember 21, 1892, No. 508,934, and July 23, 1895, No. 543,207, and are illustrated at a as beds made of circular interspaced bars, and at a segmental bars, and at a radiating bars.
  • Fig. 2 one set of the radiating bars has a hollow tray f on them to contain and anneal hollow ware, and at the left hand of Fig. 2 are two bar-beds, one over the other, fast to the rim (1, for sheet or plate glass to be annealed on--not that every one of these forms of bar-beds are used in every furnace, but any one may be selected for any one furnace.
  • the bars of the beds have copper facings, or facings, as of aluminium or composition, which in hardness are approximately near to copper, thus making surfaces suitable for glass to rest on.
  • a cut-off wall 7 makes one side of the fuelcombustion chamber a, the upper part of this wall extending up to the roof-plate e of the flue above it, and forces the current in the flue in the direction of the arrow d.
  • the rim d and the annealing-beds can rotate in either direction, to suit the nature of the glass manufactured; as, for example, chipped glass and ornamental glass, which may require a partial or wholly reversed rotation.
  • the fuel-combustion chamber is arched
  • annular annealing-furnace having an annular annealing-chamber, and an annular annealing-carriage; the annular-shaped flue, in which the products of fuel combustion are conveyed about thecircuit of the furnace, located beneath the annealing-chamber, and whose roof makes the floor of the annealing-chamber; the flue being separated therefrom byits metallic roof, through which roof'it-s heat radiates up to and anneals-the glass, while the glass is conveyed about the annealing-chamber, asset forth.

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Re-Forming, After-Treatment, Cutting And Transporting Of Glass Products (AREA)

Description

(No Model.)
J. GEORGE. GLASS ANNEALING FURNACE.
No. 569,279. Patented Oct. 13, 1896;
ms cams PETERS co. vuoro-uwa. wnsnms-rou. ay 0.
UNITED STATES PATENT OFFICE.
.TAPHUS GEORGE, OF ITHACA, NEW YORK.
GLASS-ANNEALING FURNACE.
SPECIFICATION forming part of Letters Patent No. 569,279, dated October 13, 1896.
Application filed June 6, 1895. Serial No. 551,878. (No model.)
To aZZ whom it may concern.-
Be it known that I, J APHUS GEORGE, a citizen of the United States of America, and a resident of Ithaca, Tompkins county, New York, have invented an Improved Glass-Annealing Furnace, of which the following is a specification, reference being had to the accompanying drawings.
My invention relates to the annealing of hollow ware plate and sheet glass; and its principal feature is an annular-shaped metallic-roofed flue located beneath the glassannealing beds, from which flue the heat furnished by fuel combustion radiates upward to the annealing-beds above it, and to this fine every other part of my furnace is subservient; as, for example, the suspension of the annular-shaped annealing-bed carriage, which I support on brackets projecting out from the wall of the inner drum-shaped central part of my furnace because the flue-roof is not suitable to sustain the annealing-carriage, and to allow its upper surface to be easily kept clean of broken glass, and that the wheels and rail-track on which the carriage moves may be unencumbered with broken glass that falls from the annealing-beds. These and like matters will be apparent as I describe and claim my invention.
Figure l is a horizontal sectional view of a circular furnace, the section being just above the annealing-beds. Fig. 2 is its perpendicular transverse section; Fig. 3, aperpendicular section of its fuel-combustion chamber and of its connection with its flue; Fig. 4, a detached transverse sectional elevation of a portion of the glass-carriage supported by its barbed rim and of one of the brackets and of one of the wheels on which the rim is mounted and rotates; Fig. 5, an enlarged view of two of the bars of the annealing-beds made in one piece of cast-iron. Fig. 6 is a detail view of pipe bed-bars faced with copper, and Fig. 7 a section of one of pintle-pieces for the attachment of the hanging mantle-walls to the roof of the furnace.
In the figures, a is the circular encompassing wall of the furnace, and at its inner wall, with the annular-shaped annealing-chamber 1) between these two walls, and c is the fuelflue beneath the annular annealing-chamber roofed by the metallic plates 6. To the inner wall a is attached the mechanism for rotating my annular glass-annealin g carriage, which consists of the brackets 61, wheels d, and the annular bar-bed rim-rail d, which supports the carriage above and clear of the floor of the furnace, which floor is the roof of the heating-flue.
The bars of the annealing-beds may be quite variable in their form, but are the same as those contained in the patents issued to Christopher M. Shortle and myself, dated N ovember 21, 1892, No. 508,934, and July 23, 1895, No. 543,207, and are illustrated at a as beds made of circular interspaced bars, and at a segmental bars, and at a radiating bars.
In Fig. 2 one set of the radiating bars has a hollow tray f on them to contain and anneal hollow ware, and at the left hand of Fig. 2 are two bar-beds, one over the other, fast to the rim (1, for sheet or plate glass to be annealed on--not that every one of these forms of bar-beds are used in every furnace, but any one may be selected for any one furnace. Preferably the bars of the beds have copper facings, or facings, as of aluminium or composition, which in hardness are approximately near to copper, thus making surfaces suitable for glass to rest on. To the rim (1, between the bed-spaces, are attached upward-projecting division-walls g, and, corresponding with them, mantle-walls g are suspended from the roof of the furnace by pintle-pieces h, which, as illustrated in Fig. 7, have mortises, tenons, and pieces h, which hold the walls to the furnace-roof, these parts being made of any one of the well-known artificial-stone compositions used in glass-furnaces, and hanging mantle-walls being for the regulation of heat.
A cut-off wall 7 makes one side of the fuelcombustion chamber a, the upper part of this wall extending up to the roof-plate e of the flue above it, and forces the current in the flue in the direction of the arrow d. The rim d and the annealing-beds can rotate in either direction, to suit the nature of the glass manufactured; as, for example, chipped glass and ornamental glass, which may require a partial or wholly reversed rotation.
The fuel-combustion chamber is arched,
and has apertures c, which open into the flue c, as indicated in Fig. 3, which flue gradually lessens in height to its exit end or chimney 2'. The usual entrance for the glass is at m and its exit out of the furnace at m; but in certain forms of glass it may be desirable to reverse 1 the entrance and the exit. As shown, I use the usual crank (Z shaft, and cogs on the under side of the rim (Z to rotate the carriage.
Everything else is believed to be apparent.
What I claim is 1. In an annular annealing-furnace, having an annular annealing-chamber, and an annular annealing-carriage; the annular-shaped flue, in which the products of fuel combustion are conveyed about thecircuit of the furnace, located beneath the annealing-chamber, and whose roof makes the floor of the annealing-chamber; the flue being separated therefrom byits metallic roof, through which roof'it-s heat radiates up to and anneals-the glass, while the glass is conveyed about the annealing-chamber, asset forth.
2. The described annular flue, beneath the described annular annealing-chamber, roofed wall of the furnace; and on which brackets the carriage, by its rim, rotates, the wheels being journaled, on the brackets, as set forth.
3. In the described glass-annealin g furnace provided with a rotating glass-annealing carriage; the combination of the hanging walls 9 the mortised pintle-pieces h, inserted into the roof of the furnace, for the attachment of the hanging walls g, and the pins h", by which several parts the mantle-walls g are held to the roof, as set forth.
4. In the described annealing-furnace, provided with an annular annealing-chamber, and with an annular annealing-carriage; the angular-shaped rim d; its horizontal portion furnishing on the under side the rail-track surface, for the wheels (1; and its perpendicular portion the surface to which the brackets are attached; in combination with the wheels cl on the brackets d, on which the carriage rotates, as set forth.
5. In the described glass-annealing furnace, provided with an annular glass-annealing chamber, beneath whose floor is located. the annular flue c, the arched fuel-chamber 0 provided with the heat-equalizing apertures c; in combination with the heat-equalizing plate 0', as set forth.
J APHUS GEORGE. lVitnesses:
SAMUEL J. PARKER, J. GIRARD Fox.
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