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US949475A - Iron-refining furnace. - Google Patents

Iron-refining furnace. Download PDF

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Publication number
US949475A
US949475A US31805406A US1906318054A US949475A US 949475 A US949475 A US 949475A US 31805406 A US31805406 A US 31805406A US 1906318054 A US1906318054 A US 1906318054A US 949475 A US949475 A US 949475A
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United States
Prior art keywords
furnace
receptacle
iron
metal
molten metal
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
US31805406A
Inventor
Frederick W Hawkins
George F Key
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
GLOBE STEEL FILTRATION PROCESS Co
Original Assignee
GLOBE STEEL FILTRATION PROCESS Co
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by GLOBE STEEL FILTRATION PROCESS Co filed Critical GLOBE STEEL FILTRATION PROCESS Co
Priority to US31805406A priority Critical patent/US949475A/en
Application granted granted Critical
Publication of US949475A publication Critical patent/US949475A/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B22CASTING; POWDER METALLURGY
    • B22FWORKING METALLIC POWDER; MANUFACTURE OF ARTICLES FROM METALLIC POWDER; MAKING METALLIC POWDER; APPARATUS OR DEVICES SPECIALLY ADAPTED FOR METALLIC POWDER
    • B22F9/00Making metallic powder or suspensions thereof
    • B22F9/02Making metallic powder or suspensions thereof using physical processes
    • B22F9/06Making metallic powder or suspensions thereof using physical processes starting from liquid material
    • B22F9/08Making metallic powder or suspensions thereof using physical processes starting from liquid material by casting, e.g. through sieves or in water, by atomising or spraying
    • B22F9/082Making metallic powder or suspensions thereof using physical processes starting from liquid material by casting, e.g. through sieves or in water, by atomising or spraying atomising using a fluid

Definitions

  • the invention relates to an apparatus for refining iron, and the invention consists in the construction as hereinafter set forth.
  • Figure 1 is a longitudinal section through the apparatus;
  • Fig. 2 is a plan view of a portion thereof; and
  • Fig. 3 is a section at right angles to Fig. 1.
  • A is a preparatory furnace consisting of a normally horizontally arranged casing, which is lined with suitable refractory nonbasic material. At the front end of this casing is arranged a steam twyer B, and below this is a series of air twyers C, all of which twyers are arranged to direct their jets (separately or otherwise) longitudinally of the furnace.
  • the casing A is pivotally secured by trunnions B to standards E, which latter are preferably mounted upon a turntable F upon a suitable pedestal G. This mounting permits of swinging the furnace A in a horizontal plane and also of tilting the same so as to permit of emptying the contents from the furnace chamber.
  • H is a stationary fiue with which the open end of the casing A is adapted to register. This flue has an upturned end which forms an outlet for the gases of combustion within the furnace A.
  • I is a second furnace arranged upon a lower plane, and associated in such relation to the furnace A that the contents of the latter may be discharged into the former by the rotation of the turntable and the swinging of the casing upon its pivots.
  • the furnace I is provided upon opposite sides with gas inlet channels, preferably connected with regenerating chambers J of any suitable construction.
  • E is a steam twyer entering one end of the furnace I
  • L is an air twyer arranged 7 below the steam twyer E.
  • Both furnaces A and I are provided at their forward ends with wells or receptacles N and M for receiving the molten metal to Specification of Letters Patent.
  • the receptacle N is adapted to receive the crude molten metal, which is discharged through a narrow slit in the bottom of the receptacle into the chamber of the furnace A and directly in the path of the jets issuing from the twyers B and C.
  • the receptacle M is so located as to receive the metal poured from the furnace A when the latter is tilted, and this receptacle is also provided with a restricted discharge opening through which the metal falls into the furnace I directly into the path of the jets from the twyers E and L.
  • the furnace A in operation the furnace A is first arranged in its horizontal position, where the open end thereof will be in registration with the es cape flue H.
  • the crude molten metal is then fed into the receptacle N and at the same time air or steam, or both, are injected into the furnace chamber through the twyers B and C.
  • the efiect will be to atomize the molten metal which passes through the slit in the receptacle N to scatter the minute particles over the bottom of the furnace throughout its length.
  • the metal will thus collect upon the bottom of the furnace, which at its opposite ends is upturned to form a shallow pan.
  • Air is also admitted through side twyers P, so as to blow over the surface of the metaland assist in oxidation; thus the metal while in the furnace A will be subjected to an oxidizing treatment which will eliminate the greater portion of the silicon, manganese, carbon and other oxidizable impurities.
  • the treatment in the furnace A is completed, said furnace is turned upon the table F to extend transversely to its normal position, the furnace is then tilted upon its trunnions, which will permit the metal within the chamber to be discharged through the open end and received by the receptacle M.
  • the partially purified molten metal again falls into the path of the air and steam issuing from the twyers E and L, with the result that it is a second time atomized.
  • the bottom of the furnace I is covered with a layer of comminuted basic material, which latter is raised to a high temperature by the combustion of the gases entering from the regenerating chamber.
  • the metal after a second atomizing process will be scattered over this basic bed, and the separated particles will percolate through the basic mass, finally collecting below the same.
  • auxiliary r ceptacle M Contiguous to the receptacle M is an auxiliary r ceptacle M having an outlet m the auxiliary receptacle adapted, if desired, to contain comminuted basic material to be infused in the molten metal.
  • the oxidizable impurities such as sili con and manganese
  • other impurities such as phosphorus and sulfur
  • a furnace having a stationary flue with which said furnace is normally registered, a mounting for said furnace permitting of moving the same out of registration with the stationary flue and tilting it to discharge the molten metaltherefrom, a second furnace in a plane beneath said first mentioned furnace and a receptacle for receiving the molten metal from the first furnace provided with a discharge through which the metal is fed to the second furnace.
  • the combination with a plurality of furnaces each provided with means for atomizing the molten metal therein, of a furnace located on a higher plane, also provided with means for atomizing the metal, and means whereby the last-mentioned furnace may be conveyed to discharge its contents alternatively to the lower furnaces.
  • An apparatus for refining metal comprising a horizontal furnace, a receptacle for feeding the molten metal to said furnace having arestricted discharge opening, a receptacle for receiving the discharge from said horizontal furnace provided with a restricted discharge opening, a second furnace into which the molten metal is discharged from said receptacle, and means for atomizing the molten metal as it enters each furnace.

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  • Vertical, Hearth, Or Arc Furnaces (AREA)

Description

F. W. HAWKINS & G: P. KEY.
IRON REFINING FURNACE.
APPLIGATION FILED MAY 21, 1906.
Patented Feb. 15, 1910.
/H VEH T055 FHEDEF/Ckf w- E0f?6- 5 M w. W W
ANDREW a GRAHAM 00., PHDTO-LITHOGRAPNERS. WASHINGTON, n. a
F. W. HAWKINS & G. F. KEY. IRON EEFINING FURNACE.
APPLICATION FILED MAY 21, 1906. 1 949,475. Patented Feb. 15, 1910.
HEETS-SHEBT 3.
llYl/EHTO/75 FEEDER/CH W' HAIVIf/HS- WITNESSES GEORGE F KEY IINITE %TAT% FATN OFFIQ.
FREDERICK W. HAWKINS AND GEORGE .15. KEY, 03? DETROIT, MICHIGAN, ASSIGNORS TO THE GLOBE STEEL FILTRATION PROCESS COIVIPANY, OF DETROIT, MICHIGAN, A CORPORATION OF ARIZONA TERRITORY.
IRON-REFINING FURNACE.
Application filed. May 21, 1908.
T 0 all whom it may concern:
Be it known that we, Fnnonmon WV. HAW- KINS and GEORGE F. KEY, citizens of the United States of America, residing at Detroit, in the county of Wayne and State of Michigan, have invented certain new and useful Improvements in Iron-Refining Fur naces, of which the following is a specification, reference being had therein to the accompanying drawings.
The invention relates to an apparatus for refining iron, and the invention consists in the construction as hereinafter set forth.
In the drawings, Figure 1 is a longitudinal section through the apparatus; Fig. 2 is a plan view of a portion thereof; and Fig. 3 is a section at right angles to Fig. 1.
A is a preparatory furnace consisting of a normally horizontally arranged casing, which is lined with suitable refractory nonbasic material. At the front end of this casing is arranged a steam twyer B, and below this is a series of air twyers C, all of which twyers are arranged to direct their jets (separately or otherwise) longitudinally of the furnace. The casing A is pivotally secured by trunnions B to standards E, which latter are preferably mounted upon a turntable F upon a suitable pedestal G. This mounting permits of swinging the furnace A in a horizontal plane and also of tilting the same so as to permit of emptying the contents from the furnace chamber.
H is a stationary fiue with which the open end of the casing A is adapted to register. This flue has an upturned end which forms an outlet for the gases of combustion within the furnace A. I is a second furnace arranged upon a lower plane, and associated in such relation to the furnace A that the contents of the latter may be discharged into the former by the rotation of the turntable and the swinging of the casing upon its pivots. The furnace I is provided upon opposite sides with gas inlet channels, preferably connected with regenerating chambers J of any suitable construction.
E is a steam twyer entering one end of the furnace I, and L is an air twyer arranged 7 below the steam twyer E.
Both furnaces A and I are provided at their forward ends with wells or receptacles N and M for receiving the molten metal to Specification of Letters Patent.
Patented Feb. 15, 1910.
Serial No. 318,054.
be treated. The receptacle N is adapted to receive the crude molten metal, which is discharged through a narrow slit in the bottom of the receptacle into the chamber of the furnace A and directly in the path of the jets issuing from the twyers B and C. The receptacle M is so located as to receive the metal poured from the furnace A when the latter is tilted, and this receptacle is also provided with a restricted discharge opening through which the metal falls into the furnace I directly into the path of the jets from the twyers E and L.
With the construction as described, in operation the furnace A is first arranged in its horizontal position, where the open end thereof will be in registration with the es cape flue H. The crude molten metal is then fed into the receptacle N and at the same time air or steam, or both, are injected into the furnace chamber through the twyers B and C. The efiect will be to atomize the molten metal which passes through the slit in the receptacle N to scatter the minute particles over the bottom of the furnace throughout its length. The metal will thus collect upon the bottom of the furnace, which at its opposite ends is upturned to form a shallow pan. Air is also admitted through side twyers P, so as to blow over the surface of the metaland assist in oxidation; thus the metal while in the furnace A will be subjected to an oxidizing treatment which will eliminate the greater portion of the silicon, manganese, carbon and other oxidizable impurities. lVhen the treatment in the furnace A is completed, said furnace is turned upon the table F to extend transversely to its normal position, the furnace is then tilted upon its trunnions, which will permit the metal within the chamber to be discharged through the open end and received by the receptacle M. From this receptacle the partially purified molten metal again falls into the path of the air and steam issuing from the twyers E and L, with the result that it is a second time atomized. The bottom of the furnace I is covered with a layer of comminuted basic material, which latter is raised to a high temperature by the combustion of the gases entering from the regenerating chamber. Thus the metal after a second atomizing process will be scattered over this basic bed, and the separated particles will percolate through the basic mass, finally collecting below the same.
Contiguous to the receptacle M is an auxiliary r ceptacle M having an outlet m the auxiliary receptacle adapted, if desired, to contain comminuted basic material to be infused in the molten metal.
It will be understood that by this treatment the oxidizable impurities, such as sili con and manganese, are first removed and other impurities, such as phosphorus and sulfur, may be removed by the percolating process.
Vhat is claimed is,
1. In an apparatus for refining metal, a furnace having a stationary flue with which said furnace is normally registered, a mounting for said furnace permitting of moving the same out of registration with the stationary flue and tilting it to discharge the molten metaltherefrom, a second furnace in a plane beneath said first mentioned furnace and a receptacle for receiving the molten metal from the first furnace provided with a discharge through which the metal is fed to the second furnace.
2. In an apparatus for refining metal, the combination with a plurality of furnaces, each provided with means for atomizing the molten metal therein, of a furnace located on a higher plane, also provided with means for atomizing the metal, and means whereby the last-mentioned furnace may be conveyed to discharge its contents alternatively to the lower furnaces.
3. An apparatus for refining metal comprising a horizontal furnace, a receptacle for feeding the molten metal to said furnace having arestricted discharge opening, a receptacle for receiving the discharge from said horizontal furnace provided with a restricted discharge opening, a second furnace into which the molten metal is discharged from said receptacle, and means for atomizing the molten metal as it enters each furnace.
In testimony whereof we aflix our signatures in presence of two witnesses.
FREDERICK WV. HAVKINS. GEORGE F. KEY. Witnesses HARRY M. LAU, DAVID R. PERRY.
US31805406A 1906-05-21 1906-05-21 Iron-refining furnace. Expired - Lifetime US949475A (en)

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