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US136413A - Improvement in furnaces for reheating metals - Google Patents

Improvement in furnaces for reheating metals Download PDF

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US136413A
US136413A US136413DA US136413A US 136413 A US136413 A US 136413A US 136413D A US136413D A US 136413DA US 136413 A US136413 A US 136413A
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furnace
chamber
furnaces
fire
ingots
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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
    • F27B13/00Furnaces with both stationary charge and progression of heating, e.g. of ring type or of the type in which a segmental kiln moves over a stationary charge
    • F27B13/02Furnaces with both stationary charge and progression of heating, e.g. of ring type or of the type in which a segmental kiln moves over a stationary charge of multiple-chamber type with permanent partitions; Combinations of furnaces

Definitions

  • Figuresl and 2 are side elevations of the furnace.
  • Figs. 3 and 4 are end elevations.
  • Fig. 5 is a plan view.
  • Fig. 6 is a transverse section.
  • Fig. 7 is a top view of the inside.
  • Fig. 8 is a longitudinal vertical section.
  • FIG. 1 represents side views of the furnace.
  • Said furnace consists of four sections, viz., two fire-places or furnaces, A A, and two heating chambers or ovens, B B, (which may be varied in number,) arranged in connection therewith.
  • the first of the fireplaces referred to is situated at the end at A, Fig. 1, a front view of which is shown in Fig. 3.
  • B is the ash-pit; G, the fire-grates; l), the fire-space above the grates.
  • E are air-holes for the admission of air from the outside to the surface of the fire.
  • .G is a wall dividing the fire-place from the heating-chamber B, back of the fire-place.
  • H H, Figs. 2 and 5, is the door through which the furnace A is fed.
  • Said furnace is so constructed as to be of a reverberatory character, having anterior thereto a heating chamber or oven, B, referred to.
  • An auxiliary blast-furnace or fireplace, A Arranged in connection with the above-described furnace and heatingchamber is an auxiliary blast-furnace or fireplace, A, referred to.
  • Said fire-place A is built at one side ofthe stack and outside thereto, as shown in the drawing. Its position in relation to the two heating-chambers is such as to be at the rear end of chamber B and at the front end of chamber B, thus dividing the two chambers,with its flue or bridgewalls J extending therefrom, as shown in- Fig. 8.
  • the auxiliary furnace or fire-place A is constructed in a similar manner as the fireplace A, differing, however, in size, it being smaller, and having used in connection therewith a blast, making it a blast-furnace.
  • the flue referred to consists of two walls, J J, between which the heat and flame of the fireplace A are conducted into the chamber B. Openings a are made in the side of the walls to facilitate the passage of the flames into the chamber, and also to divide it, so as to be diffused through the chamber equally.
  • the flame also passes over the top of the walls, there being a space, 0, left between them and the roof of the chamber for that purpose, as will be seen in Figs. 6 and 8.
  • the ingots of steel are laid in the two chambers B B, which have a holding capacity of an entire cast of ingots.
  • L are the doors whereby access is had to the chambers for introducing them.
  • the ingots b in the first chamber B are heated by the fire from the furnace or fireplace A.
  • the flames pass there from over the top of the wall G, and are deflected down upon the ingots, as indicated by .the arrows in Fig. 8, thereby heating them; then the flames pass through the chamber back into the second chamber B, whichalso contains a charge of ingots, indicated by the dotted line b.
  • the chamber B in part, is heated by the flames and heat from the first chamber, the intensity of which is augmented by that from the auxiliary furnace or fire place A, with which it mingles on passing over the top of the flue J into the chamber B.
  • This mingling of the caloric from the large furnace A and that of the small re-enforcing furnace A readily heats the chamber and the ingots therein to the required degree for the-hammer on other manipulation.
  • a blast in order to increase its intensity flnfgi force the flame into the chamber, as afore sal p,
  • This system of furnaces may be so arranged as to increase their capacty in size and numher, having the same correlation to each other, as hereinbefore described, and may be applied to other uses analogous to that previously set forth.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Tunnel Furnaces (AREA)
  • Heat Treatments In General, Especially Conveying And Cooling (AREA)

Description

v 2 Sheets--Sheet 2. H. GHISHOLM.
Furnaces for R-eheating Metals, 8w. N0. 136,413. I Patented March 4,1873.v
Fig'.
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UNITED STATES PATENT OFFICE.
HENRY OHISHOLM, OF CLEVELAND, OHIO.
JMPRQVEMENT 1M FURNACES FOR REHEATING METALS, 84c.
Specification forming part of Letters Patent No. 136,413, dated March 4, 1873.
it all whom it may concern:
Be it known that I, HENRY OHIsHoLM, of Cleveland, in the county of Ouyahoga and State of Ohio, have invented a certain new and useful Improvement in Reheatin g Furnaces; and I do hereby declare that the following is a full, clear, and complete description thereof, reference being had to the accompanying drawing making part of the same.
Figuresl and 2 are side elevations of the furnace. Figs. 3 and 4 are end elevations. Fig. 5 is a plan view. Fig. 6 is a transverse section. Fig. 7 is a top view of the inside. Fig. 8 is a longitudinal vertical section.
Like letters of reference refer to like parts in the several views.
In the process of manufacturing Bessemer steel it is poured into molds from the converter, making what are known as ingots. These steel ingots are reheated in a furnace for further manipulation. The nature of this invention relates to a furnace for heating said steel ingots, &c., and the object of the same is to heat the whole cast of ingots at once in one furnace, instead of employing two or more furnaces for that purpose, as heretofore practiced, whereby much time, labor, and expense in the construction and heating the furnace are saved.
The construction and mode of operation of the aforesaid furnace are as follows:
The drawing, Figs. 1 and 2, represents side views of the furnace. Said furnace consists of four sections, viz., two fire-places or furnaces, A A, and two heating chambers or ovens, B B, (which may be varied in number,) arranged in connection therewith. The first of the fireplaces referred to is situated at the end at A, Fig. 1, a front view of which is shown in Fig. 3. Of said fire-place or furnace, B is the ash-pit; G, the fire-grates; l), the fire-space above the grates. E are air-holes for the admission of air from the outside to the surface of the fire. .G is a wall dividing the fire-place from the heating-chamber B, back of the fire-place. H, Figs. 2 and 5, is the door through which the furnace A is fed. Said furnace is so constructed as to be of a reverberatory character, having anterior thereto a heating chamber or oven, B, referred to. Arranged in connection with the above-described furnace and heatingchamber is an auxiliary blast-furnace or fireplace, A, referred to. Said fire-place A is built at one side ofthe stack and outside thereto, as shown in the drawing. Its position in relation to the two heating-chambers is such as to be at the rear end of chamber B and at the front end of chamber B, thus dividing the two chambers,with its flue or bridgewalls J extending therefrom, as shown in- Fig. 8. The auxiliary furnace or fire-place A is constructed in a similar manner as the fireplace A, differing, however, in size, it being smaller, and having used in connection therewith a blast, making it a blast-furnace. The flue referred to consists of two walls, J J, between which the heat and flame of the fireplace A are conducted into the chamber B. Openings a are made in the side of the walls to facilitate the passage of the flames into the chamber, and also to divide it, so as to be diffused through the chamber equally. The flame also passes over the top of the walls, there being a space, 0, left between them and the roof of the chamber for that purpose, as will be seen in Figs. 6 and 8. In the roof, immediately over the flue J, are air-holes K, Fig. 5, for the admission of air to the flames from the furnace to further the combustion of the smoke and inflammable gases generated.
Having described the construction of the furnace, the practical operation of the same is as follows: The ingots of steel are laid in the two chambers B B, which have a holding capacity of an entire cast of ingots. L are the doors whereby access is had to the chambers for introducing them. The ingots b in the first chamber B are heated by the fire from the furnace or fireplace A. The flames pass there from over the top of the wall G, and are deflected down upon the ingots, as indicated by .the arrows in Fig. 8, thereby heating them; then the flames pass through the chamber back into the second chamber B, whichalso contains a charge of ingots, indicated by the dotted line b. The chamber B, in part, is heated by the flames and heat from the first chamber, the intensity of which is augmented by that from the auxiliary furnace or fire place A, with which it mingles on passing over the top of the flue J into the chamber B. This mingling of the caloric from the large furnace A and that of the small re-enforcing furnace A readily heats the chamber and the ingots therein to the required degree for the-hammer on other manipulation.
By this arrangement of the two furnaces or fire-places and heating-chambers, I am enabled to heat the entire cast of ingots in much less time and with much less expense than it can be done with two separate furnaces, consisting of one fire-place and one heating chamber, as is usually practiced, the auxiliary fire-place or furnace being so situated that the heat and flames therefrom mingle with that from the primary fire-place, thus intensifying its heat and consuming all the inflammable gases and matter that may pass over with the flames; hence the second chamber is heated, in part, by the waste heat from the primary furnace, re-enforced by that from the secondary one, A, as aforesaid.
In connection with the auxiliary furnace is used a blast, in order to increase its intensity flnfgi force the flame into the chamber, as afore sal p, This system of furnaces may be so arranged as to increase their capacty in size and numher, having the same correlation to each other, as hereinbefore described, and may be applied to other uses analogous to that previously set forth.
0 laim.
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20180124717A1 (en) * 2015-05-15 2018-05-03 Nec Corporation Base station, wireless communication system, and communication method

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20180124717A1 (en) * 2015-05-15 2018-05-03 Nec Corporation Base station, wireless communication system, and communication method

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