US27688A - Improvement in the manufacture of iron - Google Patents

Improvement in the manufacture of iron Download PDF

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US27688A
US27688A US27688DA US27688A US 27688 A US27688 A US 27688A US 27688D A US27688D A US 27688DA US 27688 A US27688 A US 27688A
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steam
pipe
iron
furnace
manufacture
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    • 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

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  • Figure 1 represents a perspective view of a paddling-furnace.
  • Fig. 2 represents a longitudinal vertical section through the same; and
  • Fig. 3 represents a transverse vertical section near the steam-pipes in which the steam is superheated,
  • FIG. 1 representsapuddling-furnace supplied with the usual appliances to such furnaces, as shown in said figure.
  • FIG. 2 shows the paddling-hearth, and C the fire-box or furnace, which is supplied with coal from or through the opening D, Fig. 1.
  • E is a bridge-wall at one end or side of the furnace, as shown in Fig. 2, between which and the end wall, F, of the furnace is placed a pipe, G, which is bent at one end, so as to return back over its lower portion, as shown in Fig. 3, and thus form two layers (as it were) of pipe, but formed of one piece or united into one.
  • a bottom wall, H also under the pipe G,which,with the sides and top, form almost a separate chamber.
  • the bridge-wall E does not extent up to the top of the furnace, but leaves a space, a, between it and the top portion opposite, or in which space is placed the upper portion of the pipe G,with its steam-openings c c c, &c., facing the furnace, so that the jets of highly-heated steam escaping therefrom shall pass through and over the heated products of combustion in the furnace into the metal upon or in the hearth B.
  • a pipe, I also extends from the upper portion of the pipe G to apoint over the hearth of the furnace, and this pipe conveys the superheated steam from G and jets it into the iron on the hearth.
  • the walls E H though protecting the lower portion of the pipe G from the intensity of the fire, are still highly heated, as they are in direct contact with the fire, and by conduction they impart a high heat to said lower portion,which dries and superheats the steam passing through or contained in it.
  • J is a steam-pipeleading from a boiler in which steam is generated at any of the ordinary pressures-say eighty pounds-though it is often at one hundred pounds.
  • the steam from this pipe passes into the chamber of the pipe K, and from thence by a small pipe, L, into the lower part of the pipe G, which latter pipe is much larger than the pipe L.
  • the pipe G in which the steam is superheated, may be placed in any part of the fur nace that will admit of its being similarly protected, as shown; and so, also, that the jets will pass over, through,or in contact with the heated products of combustion in the furnace before they reach the hearth where the iron to be treated is placed.
  • the superheated steam mingled with the gaseous products of the coal not only promotes combustion, but also chemically and mechanically combines with the iron, so as to divest it of all the earthy impurities that tend to impair its tenacity.

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Manufacturing & Machinery (AREA)
  • Materials Engineering (AREA)
  • Metallurgy (AREA)
  • Organic Chemistry (AREA)
  • Manufacture And Refinement Of Metals (AREA)

Description

BROWN & McKEE.
Refining Iron.
No. 27,688, Patented Apr. 3, 1860.
v Inventor.
Witnesses:
UnrTEn STATES PATENT @EEIcE,
\V. G. BROVN AND F. MOKEE, OF BIRMINGHAM, PENNSYLVANIA.
IMPROVEMENT IN THE MANUFACTURE OF IRON.
Specification foiniing part of Letters Patent No. 27,683, dated April 3, 1860.
T0 at whom it may concern:
Be 1t known that we, WILLIAM G. BROWN and FREDERICK McKEn, of Birmingham, in the county ofAllegheny and State of Pennsylvania,
have invented a new and useful Improvement in the Application of Superheated Steam to the l\lanufacture oflron; and we do hereby declare the following to be a full, clear, and exact description oftlie same, reference being had to the accompanying drawings, making a part of this specificatiomand which represent an ordinary puddling-furnace, though we propose to apply our invention to the manufacture of iron from the ore, and with or without a blast, and also in converting ore or pig-iron into malleable iron.
Ofthe accompanying drawings, Figure 1 represents a perspective view of a paddling-furnace. Fig. 2 represents a longitudinal vertical section through the same; and Fig. 3 represents a transverse vertical section near the steam-pipes in which the steam is superheated,
and from which it'passes (or rather its constituents) in jets through or in contact with the carbon of the burning mass into the pud dling-hearth.
To enable others skilled in the art to make and use our invention, we will proceed to describe the same with reference to the drawings, first promising, however, that we are aware that attempts have been made to use superheated steam in connection with the manufacture of iron, but with such waste of the steam or destruction of the pipes in which it was superheated as to make its use in no wise economical, if even practical. We do not therefore claim, broadly, the use of superheated steam in the manufacture of iron; but we do claim the manner in which we superheat the steam and jet it into the iron or ore with which it or its constituents are to chemically act or combine and to illustrate the characteristics of our inventiomwe will proceed to describe the same in connection with a puddlingfurnace, though, as before stated, we contemplate the same application to blast or cupola furnaces.
A, Fig. 1, representsapuddling-furnace supplied with the usual appliances to such furnaces, as shown in said figure.
B in Fig. 2 shows the paddling-hearth, and C the fire-box or furnace, which is supplied with coal from or through the opening D, Fig. 1.
E is a bridge-wall at one end or side of the furnace, as shown in Fig. 2, between which and the end wall, F, of the furnace is placed a pipe, G, which is bent at one end, so as to return back over its lower portion, as shown in Fig. 3, and thus form two layers (as it were) of pipe, but formed of one piece or united into one. There is a bottom wall, H, also under the pipe G,which,with the sides and top, form almost a separate chamber. The bridge-wall E, however, does not extent up to the top of the furnace, but leaves a space, a, between it and the top portion opposite, or in which space is placed the upper portion of the pipe G,with its steam-openings c c c, &c., facing the furnace, so that the jets of highly-heated steam escaping therefrom shall pass through and over the heated products of combustion in the furnace into the metal upon or in the hearth B. A pipe, I, also extends from the upper portion of the pipe G to apoint over the hearth of the furnace, and this pipe conveys the superheated steam from G and jets it into the iron on the hearth. The walls E H, though protecting the lower portion of the pipe G from the intensity of the fire, are still highly heated, as they are in direct contact with the fire, and by conduction they impart a high heat to said lower portion,which dries and superheats the steam passing through or contained in it. The upper portion, however, of said pipe G is ex posed directly to the flame or heat of the furnace through the opening a, as well as or in addition to that which it receives by conduction from the walls E H,and when the steam reaches this portion of the pipe it is heated almost red hot, and is possibly, by the high heat to which it is subjected, converted into its constituent elements and its character of steam entirely changed, and in this condition it is thrown or carried through the gaseous products of combustion in the furnace, and thence into the puddling-hcarth; or it may be taken over by the pipe I, as above described, or both.
Ve have proven by experiment that steam cannot be economically superheated in a coil of pipe, for two reasons: First, the steam expandedbythe heat seems to cling to the pipes,
and will not pass into the furnace; and, secondly, the destructive character of the constituents of the steam upon the red-hot pipes. Now,we introduce and superheat our steam as follows: J is a steam-pipeleading from a boiler in which steam is generated at any of the ordinary pressures-say eighty pounds-though it is often at one hundred pounds. The steam from this pipe passes into the chamber of the pipe K, and from thence by a small pipe, L, into the lower part of the pipe G, which latter pipe is much larger than the pipe L. This gives the steam, when heated in G, an opportunity to expand,which also induces it to pass on up and into the upper portion of G, where it receives its greatest heat, and escapes there through the jet-holes 0. By conveying steam from a smaller to a larger pipe to be superheated, we avoid any and all slugg'ishness of Y the high-heated steam, its motion being continuous, and thus we save the red-hot pipes from destruction by the oxygen in the steam.
The pipe G, in which the steam is superheated, may be placed in any part of the fur nace that will admit of its being similarly protected, as shown; and so, also, that the jets will pass over, through,or in contact with the heated products of combustion in the furnace before they reach the hearth where the iron to be treated is placed.
The superheated steam mingled with the gaseous products of the coal not only promotes combustion, but also chemically and mechanically combines with the iron, so as to divest it of all the earthy impurities that tend to impair its tenacity.
Having thus fully described the nature and object of our invention,what we claim therein as new, and desire to secure by Letters Patent,
l. Carrying the steam to the pipe G, in which it is to be superheated, through a pipe, L, smaller in bore than the bore of the pipe G, substantially in the manner and for the purpose set forth.
2. So arranging the pipe G with regard to the furnace as that while it is heated by the XVM. G. BROVN. FREDERICK MOKEE.
Witnesses:
HIRAM WV. TAYLOR, 'FIELDING K. BANKERD.
US27688D Improvement in the manufacture of iron Expired - Lifetime US27688A (en)

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Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4534469A (en) * 1983-11-02 1985-08-13 Elsmo Thad F Tray assembly
DE29606750U1 (en) * 1996-04-13 1996-06-27 GEBRA Food-Nonfood Handels-Gesellschaft mbH, 44867 Bochum Set of elements for serving and enjoying beverages, especially coffee and / or tea
DE29606749U1 (en) * 1996-04-13 1996-07-04 Gebra Food-Nonfood Handelsgesellschaft mbH, 44867 Bochum Serving and handling tray
DE29911491U1 (en) 1999-07-01 1999-11-11 Seulberger, Manfred, 41812 Erkelenz Service tray
US6062418A (en) * 1997-04-09 2000-05-16 Rathjen; Kris M. Combination food plate and beverage-container-holder article
US6149027A (en) * 1997-04-09 2000-11-21 Rathjen; Kris M. Combination food plate and beverage-container-holder article
US20040047635A1 (en) * 2001-02-05 2004-03-11 Finisar Corporation System and method for protecting eye safety during operation of a fiber optic transceiver

Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4534469A (en) * 1983-11-02 1985-08-13 Elsmo Thad F Tray assembly
DE29606750U1 (en) * 1996-04-13 1996-06-27 GEBRA Food-Nonfood Handels-Gesellschaft mbH, 44867 Bochum Set of elements for serving and enjoying beverages, especially coffee and / or tea
DE29606749U1 (en) * 1996-04-13 1996-07-04 Gebra Food-Nonfood Handelsgesellschaft mbH, 44867 Bochum Serving and handling tray
US6062418A (en) * 1997-04-09 2000-05-16 Rathjen; Kris M. Combination food plate and beverage-container-holder article
US6149027A (en) * 1997-04-09 2000-11-21 Rathjen; Kris M. Combination food plate and beverage-container-holder article
DE29911491U1 (en) 1999-07-01 1999-11-11 Seulberger, Manfred, 41812 Erkelenz Service tray
US20040047635A1 (en) * 2001-02-05 2004-03-11 Finisar Corporation System and method for protecting eye safety during operation of a fiber optic transceiver
US20040100687A1 (en) * 2001-02-05 2004-05-27 Finisar Corporation Integrated memory mapped controller circuit for fiber optics transceiver

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