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US166757A - Improvement in furnaces for melting metals - Google Patents

Improvement in furnaces for melting metals Download PDF

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US166757A
US166757A US166757DA US166757A US 166757 A US166757 A US 166757A US 166757D A US166757D A US 166757DA US 166757 A US166757 A US 166757A
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chambers
charges
furnaces
gas
improvement
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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
    • F27B7/00Rotary-drum furnaces, i.e. horizontal or slightly inclined
    • F27B7/20Details, accessories or equipment specially adapted for rotary-drum furnaces
    • F27B7/2016Arrangements of preheating devices for the charge
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F27FURNACES; KILNS; OVENS; RETORTS
    • F27DDETAILS OR ACCESSORIES OF FURNACES, KILNS, OVENS OR RETORTS, IN SO FAR AS THEY ARE OF KINDS OCCURRING IN MORE THAN ONE KIND OF FURNACE
    • F27D13/00Apparatus for preheating charges; Arrangements for preheating charges

Definitions

  • This furnace is to effect the melting of the metal-as iron or steel, for instance-by means of the combustion of air and gas led into it in separate columns or currents, and heated in their passage through two of the charges, and serving afterward to heat the other two charges, preparatory to their reception of separate columns or currents of air and gas to be united and burned at the bases or lower parts of such last-mentioned charges.
  • regenerators In this furnace the charges of metal are used to heat the air and gas in the place of separate expensive chambers containing stacks or piles of bricks, and generally termed regenerators, from which it will be seen that great advantages, both in construction, cost, and expense of working, are attained by my invention.
  • auxiliary chambers B B C C', there being a pair of them over the chamber A at and near each end of it, and to open directly into it, and over its hearth.
  • Each auxiliary chamber is to be closed at top, except in having a hopper or induct,.c, for supplying it with the metal, which hopper or induct may be provided with proper means of closing it, in order to prevent escape of air or gas through and from the hopper or induct.
  • a horizontal pipe, D provided with four branch pipes, E F G H, leading out of it and into the four oharge-chambers- B B G C', in manner as shown in Fig. 6.
  • An educt or chimney, I extends from the pipe D at its middle.
  • E F G H branch pipes
  • K L valves or dampers
  • the stems c f of such valves may be connected by mechanism for moving or turning them, so as to turn both valves simultaneously, as occasion may require.
  • One side of the main chamber A I usually provide with three or other suitable number of openings, g g g, to be furnishedwith doors, such openings being to enable the working of the metal on the hearth to be seen at any time, and also to facilitate the repairing of the main chamber of the furnace, which, with the charge-chambers, is to be properly lined or protected with fire-brick, ganister, or other suitable refractory material.
  • a tap-hole and spout (shown at M N) serve to enable the molten metal to be drawn from the hearth as occasion may require.
  • the heated volatile products of combustion will next be driven or pass through the main chamber A, and thence up through the two opposite charges or their charge-chambers, and after having imparted heat thereto, will escape therefrom through the branch pipes of said chambers, and into the pipe D, and thence into the chimney or educt.
  • This operation having been allowed to go on for a sufficient time, the two dampers are next to be reversed or turned into positions at right angles to those previous ones, whereby the air and gas will'be forced into and down through the charges of the two chambers just previously heated by the spent gases.
  • each pair of next adjacent chambers with its metallic charges is used successively to intercept the heat from the spent gases, and transmit it to the columns of air and gas when next blown or forced through such charges.
  • the compound furnace substantially as de-l WILLIAM E. U. EUSTIS.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Vertical, Hearth, Or Arc Furnaces (AREA)

Description

w. E. C. EUSTIS.
Furnace for Melting Metals.
UNITED STATES PATENT QFFIon WILLIAM E. C. EUSTIS, 0F MILTON, MASSACHUSETTS.
IMPROVEMENT IN FURNACES FOR MELTING METALS.
Specification forming part of Letters Patent No. 166,757, dated August 17, 1875 application filed July 3, 1875.
CASE B.
To all whom it 'may concern Be it known that I, WILLIAM E. G. EUsTIs, of Milton, of the county of Norfolk and State of Massachusetts, have invented a new and useful Furnace for Melting Metal; and do hereby declare the same to be fully described in the following specification, and represented in the accompanying drawings, of which- Figure l is a lop view, Fig. 2 a front elevation, Fig. 3 a longitudinal section, and Figs. 4 and 5 transverse sections, of such furnace. Fig. 6 is a horizontal section, taken through the pipes for supplying air and gas to the auxiliary or charge chambers.
This furnace is to effect the melting of the metal-as iron or steel, for instance-by means of the combustion of air and gas led into it in separate columns or currents, and heated in their passage through two of the charges, and serving afterward to heat the other two charges, preparatory to their reception of separate columns or currents of air and gas to be united and burned at the bases or lower parts of such last-mentioned charges.
In this furnace the charges of metal are used to heat the air and gas in the place of separate expensive chambers containing stacks or piles of bricks, and generally termed regenerators, from which it will be seen that great advantages, both in construction, cost, and expense of working, are attained by my invention.
In carrying it out I employ, in connection with a long chamber, A, whose hearth is shown at a, and crown or double arch at b b, four hollow columns or auxiliary chambers, B B C C', there being a pair of them over the chamber A at and near each end of it, and to open directly into it, and over its hearth. Each auxiliary chamber is to be closed at top, except in having a hopper or induct,.c, for supplying it with the metal, which hopper or induct may be provided with proper means of closing it, in order to prevent escape of air or gas through and from the hopper or induct. Between the two pairs of charge-chambers, and at their tops, there is arranged a horizontal pipe, D, provided with four branch pipes, E F G H, leading out of it and into the four oharge-chambers- B B G C', in manner as shown in Fig. 6. An educt or chimney, I, extends from the pipe D at its middle. Furthermore, at the junctions of the pipes D and its branches E F G H are two valves or dampers, K L, which are arranged diagonally across such junctions, in manner as represented.v The stems c f of such valves may be connected by mechanism for moving or turning them, so as to turn both valves simultaneously, as occasion may require. One side of the main chamber A I usually provide with three or other suitable number of openings, g g g, to be furnishedwith doors, such openings being to enable the working of the metal on the hearth to be seen at any time, and also to facilitate the repairing of the main chamber of the furnace, which, with the charge-chambers, is to be properly lined or protected with fire-brick, ganister, or other suitable refractory material. A tap-hole and spout (shown at M N) serve to enable the molten metal to be drawn from the hearth as occasion may require.
In using the furnace, after its four chargechambers may have been duly supplied with 1k pig or other metal to be melted down, air is to be blown or forced into the pipe D at onel end thereof, and combustible gas into suchi pipe at its opposite end, in which case the column of air will pass into and down through the charge of one chamber, and the column of gas will also pass down through the charge of the next adjacent chamber, the two currents uniting and being burned at the lower parts of the two charges. The heated volatile products of combustion will next be driven or pass through the main chamber A, and thence up through the two opposite charges or their charge-chambers, and after having imparted heat thereto, will escape therefrom through the branch pipes of said chambers, and into the pipe D, and thence into the chimney or educt. This operation having been allowed to go on for a sufficient time, the two dampers are next to be reversed or turned into positions at right angles to those previous ones, whereby the air and gas will'be forced into and down through the charges of the two chambers just previously heated by the spent gases. In passing through such changes, the separate currents of air and gas will absorb heat from them, and meeting together at the base of the partition between the two chambers will ignite, and aid in melting` the metal, the spent gases resulting from their combustion being driven up through the other two charges so as to heat them. Thus each pair of next adjacent chambers with its metallic charges is used successively to intercept the heat from the spent gases, and transmit it to the columns of air and gas when next blown or forced through such charges.
I claim as my invention as follows, viz:
The compound furnace, substantially as de-l WILLIAM E. U. EUSTIS.
Witnesses:
R. H. EDDY, J. R. SNOW.
US166757D Improvement in furnaces for melting metals Expired - Lifetime US166757A (en)

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2544091A (en) * 1948-05-10 1951-03-06 Jordan Res Lab Inc Method of melting
US2563322A (en) * 1946-10-26 1951-08-07 Babcock & Wilcox Co Pebble heater
US2622862A (en) * 1951-03-05 1952-12-23 Jordan James Fernando Melting furnace
US2818247A (en) * 1953-08-14 1957-12-31 Charles B Francis Steel making apparatus

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2563322A (en) * 1946-10-26 1951-08-07 Babcock & Wilcox Co Pebble heater
US2544091A (en) * 1948-05-10 1951-03-06 Jordan Res Lab Inc Method of melting
US2622862A (en) * 1951-03-05 1952-12-23 Jordan James Fernando Melting furnace
US2818247A (en) * 1953-08-14 1957-12-31 Charles B Francis Steel making apparatus

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