US441174A - Horace w - Google Patents

Horace w Download PDF

Info

Publication number
US441174A
US441174A US441174DA US441174A US 441174 A US441174 A US 441174A US 441174D A US441174D A US 441174DA US 441174 A US441174 A US 441174A
Authority
US
United States
Prior art keywords
amalgam
ore
metal
furnace
charging
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
Publication date
Application granted granted Critical
Publication of US441174A publication Critical patent/US441174A/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Classifications

    • CCHEMISTRY; METALLURGY
    • C21METALLURGY OF IRON
    • C21BMANUFACTURE OF IRON OR STEEL
    • C21B13/00Making spongy iron or liquid steel, by direct processes
    • C21B13/02Making spongy iron or liquid steel, by direct processes in shaft furnaces
    • C21B13/023Making spongy iron or liquid steel, by direct processes in shaft furnaces wherein iron or steel is obtained in a molten state

Definitions

  • the invention described herein relates to certain improvements in the production of wash or carburized metal and steel or wroughtiron direct from the ore. According to the present practice, this wash or carburized metal is reducedin the blastrfurnace-a very effective apparatus, but expensive in construction and operation.
  • the object of this invention is to provide for the production of this class or kind of metal direct from the ore in an ordinary cupola-furnace.
  • the ground ore and carbonaceous material are then thoroughly mixed together and then placed in agrinding-pan or other suitable mill and subjected to afurther grinding operation.
  • the percentage of carbonaceous material employed depends upon the degree of carburization required in the metal to be produced.
  • suitable fuel to a height of twenty to twentyfour inches (more or less) above the tuyeres and the blast turned until the coke has been raised to a state of incandescence, forming a hot bottom for the subsequent charge.
  • a fresh layer of coke is then thrown in and the pasty amalgam hereinbefore described as it comes from the grinding-pan is loosely shoveled in on the charge.
  • the amalgam one shovelful of -such as coke or charcoal-4s thrown in to about every four shovelfuls (more or less) of amalgam, or sufficient to bear the burden and prevent the amalgam from packing down and clogging the furnace.
  • the amalgam and fuel are charged in alternately, as described, untilthe mass rises to the furnace-door.
  • the metal will commence to come down and the charge gradually sink. From this stage the process is a continuous one, the ore being red need and the molten metal tapped off as often as necessary to prevent it from entering the tuyeres, and fresh amalgam and fuel being shoveled in as the charge sinks down. As soon as the reduction is fairly under way, the cupola will make as fast as two men can attend to the charging.
  • the fuel added not only serves to keep up the requisite heat and prevent the clogging, as before stated, but also aids in the carburization of the metal.
  • a flux as limestone, &c.
  • the percentage of the flux to be added being determined by the amount of silica to be reduced and of sulphur to be overcome 5 or, if preferred, the flux may be charged with other materials into the cupola.
  • the molten metal maybe charged by means of a ladle or by a runner or spout direct into an open-hearth furnace or other converting apparatus and there used, as a highly-carburized molten bath, for the manufacture of steel, thus avoiding the great wearand tear on an expensive furnace incident to the usual method of melting the metal for the bath in Y I nace effects a great saving in time and con sequently inoutput, as one charge is being melted While another is in process of reduction; or the carburized molten metal may be run into a puddling-furnace and there worked in the usual manner, or it may be run into pig-beds, as in the usual blast-furnace p actice.
  • the method herein described which consists in reducing the ore and carbonaceous material to a pasty homogeneous amalgam, and then charging such amalgam and a carbonaceous fuel into a cupola-furnace, substantially as set forth.
  • the method herein described which consists in reducing the ore, carbonaceous material, and a flux to a pasty homogeneous amalgam, and then charging such amalgam and a carbonaceous fuel into the cupola-furnace, substantially as set forth.

Description

UNITED STATES I HORACE WV. LASH AND JAMES JOHNSON, OF PITTSBURG, PENNSYLVANIA,
PATENT OFFICE.
ASSIGNORS TO THE CARBON IRON COMPANY, OF NEW YORK, N. Y.
PROCESS OF MANUFACTURING CARBURIZED METAL.
SPECIFICATION forming part of Letters Patent No. 441,174, dated November 25, 1890. Application filed July 27, 1889. Serial No. 318,937. (No specimens.) 7
To all whom) it may concern.-
Be it known that we, HORACE W. LAsH and JAMES JOHNSON, citizens of the United States,
residing at Pittsburg, in the county of Allegheny and State of Pennsylvania, have invented or discovered a certain new and useful Improvement in the Process of Manufacturing Oarburized Metal, of which improvement the following is a specification.
The invention described herein relates to certain improvements in the production of wash or carburized metal and steel or wroughtiron direct from the ore. According to the present practice, this wash or carburized metal is reducedin the blastrfurnace-a very effective apparatus, but expensive in construction and operation.
The object of this invention is to provide for the production of this class or kind of metal direct from the ore in an ordinary cupola-furnace.
In the practice of our-invention ore and carbonaceous material-such as coke, coal, charcoal, &c.--are ground up separately to a comparatively fine state of division. The ground ore and carbonaceous material are then thoroughly mixed together and then placed in agrinding-pan or other suitable mill and subjected to afurther grinding operation. The percentage of carbonaceous material employed depends upon the degree of carburization required in the metal to be produced.
and varies from thirty to fifty per cent, (30% to more or less, by weight, of the orethat is to say, thirty to fifty pounds (more or less) of carbonaceous material for every hundred pounds of ore. During the grinding of the ore and carbonaceous material together sufficient liquid-such as water or oil-is added in sufficient quantity to form a comparatively thick self-adherent paste or amalgam, and the grinding is continued until the materials are pulverized and thoroughly ground into each other, so as to insure in the subsequent treatment of the amalgam an I equal and simultaneous heating of adjacent particles, thereby preventing the combustion of the carbon before the ore has been suffi cientlyheated to readily part with its oxygen. In reducing this material the cupola or like furnace is charged with lump coke or other? suitable fuel to a height of twenty to twentyfour inches (more or less) above the tuyeres and the blast turned until the coke has been raised to a state of incandescence, forming a hot bottom for the subsequent charge. A fresh layer of coke is then thrown in and the pasty amalgam hereinbefore described as it comes from the grinding-pan is loosely shoveled in on the charge. In charging the amalgam one shovelful of -such as coke or charcoal-4s thrown in to about every four shovelfuls (more or less) of amalgam, or sufficient to bear the burden and prevent the amalgam from packing down and clogging the furnace. The amalgam and fuel are charged in alternately, as described, untilthe mass rises to the furnace-door. In about fifteen minutes after charging, the blast being continued, the metal will commence to come down and the charge gradually sink. From this stage the process is a continuous one, the ore being red need and the molten metal tapped off as often as necessary to prevent it from entering the tuyeres, and fresh amalgam and fuel being shoveled in as the charge sinks down. As soon as the reduction is fairly under way, the cupola will make as fast as two men can attend to the charging. The fuel added not only serves to keep up the requisite heat and prevent the clogging, as before stated, but also aids in the carburization of the metal. If desired, a flux, as limestone, &c., may be added to the material during the preparation of the amalgam, as hereinbefore described, the percentage of the flux to be added being determined by the amount of silica to be reduced and of sulphur to be overcome 5 or, if preferred, the flux may be charged with other materials into the cupola.
The molten metal maybe charged by means of a ladle or by a runner or spout direct into an open-hearth furnace or other converting apparatus and there used, as a highly-carburized molten bath, for the manufacture of steel, thus avoiding the great wearand tear on an expensive furnace incident to the usual method of melting the metal for the bath in Y I nace effects a great saving in time and con sequently inoutput, as one charge is being melted While another is in process of reduction; or the carburized molten metal may be run into a puddling-furnace and there worked in the usual manner, or it may be run into pig-beds, as in the usual blast-furnace p actice. Q 1
WVe claim herein as our invention 1. As animprovement in the art of producing metal direct from ore, the method herein described, which consists in reducing the ore and carbonaceous material to a pasty homogeneous amalgam, and then charging such amalgam and a carbonaceous fuel into a cupola-furnace, substantially as set forth.
2. As an improvement in the art of-producing metal direct from ore, the method herein described, which consists in reducing the ore, carbonaceous material, and a flux to a pasty homogeneous amalgam, and then charging such amalgam and a carbonaceous fuel into the cupola-furnace, substantially as set forth.
3. As an improvement in the art of reducing metal direct from ore, the method herein described, which consists in reducing the ore,
carbonaceous material, and flux to a pasty homogeneous amalgam, charging such amalgam and a carbonaceous fuel into a cupolafurnace, charging the reduced molten metal direct into a converting-furnace, and there treating the metal in the usual manner, substantiallyas set forth.
In testimony whereof We have hereuntoset our hands;
HORACE W. LASH. JAMES J OHNSONV Witnesses:
R. H. WHITTLESEY.
US441174D Horace w Expired - Lifetime US441174A (en)

Publications (1)

Publication Number Publication Date
US441174A true US441174A (en) 1890-11-25

Family

ID=2510069

Family Applications (1)

Application Number Title Priority Date Filing Date
US441174D Expired - Lifetime US441174A (en) Horace w

Country Status (1)

Country Link
US (1) US441174A (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3471283A (en) * 1964-09-15 1969-10-07 Freeman Corp Reduction of iron ore
US4613363A (en) * 1985-12-11 1986-09-23 Wienert Fritz Otto Process of making silicon, iron and ferroalloys

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3471283A (en) * 1964-09-15 1969-10-07 Freeman Corp Reduction of iron ore
US4613363A (en) * 1985-12-11 1986-09-23 Wienert Fritz Otto Process of making silicon, iron and ferroalloys

Similar Documents

Publication Publication Date Title
US1032655A (en) Method of manufacturing steel.
US441174A (en) Horace w
US4116678A (en) Method of producing iron
US1939874A (en) Method for the production of steel
EP0249006A1 (en) Method for manufacturing chromium-bearing pig iron
US2242219A (en) Process for melting and refining ferrous metals
US1941983A (en) Metallurgy of iron
US859572A (en) Method of producing pig-iron and steel.
US2133571A (en) Process for the manufacture of steel from low-grade phosphoruscontaining acid iron ores
US1303799A (en) George arthur jarvis
US1335009A (en) Process and apparatus for manufacturing steel and steel alloys
US2349688A (en) Method of producing low carbon iron or steel
US4147334A (en) Method and apparatus of producing iron
US143600A (en) Improvement in the manufacture of iron from blast-furnace slag
US441166A (en) Process of reducing ore
US482213A (en) Process of reducing unsmelted ores
US93758A (en) Charles william siemens
US1820179A (en) Method of preparing or remelting wrought iron slag
US1102339A (en) Process for treatment of minerals and extracting metal.
US987840A (en) Process for the manufacture of steel.
US1713887A (en) Production of wrought iron
JPS6169944A (en) Manufacture by melting and reducing of ferrochrome
US1732788A (en) Process of reducing ores and the like
US287054A (en) reese
US1666428A (en) Process of preparing pig iron in highly-heated mixers