US502167A - Metallurgical furnace - Google Patents
Metallurgical furnace Download PDFInfo
- Publication number
- US502167A US502167A US502167DA US502167A US 502167 A US502167 A US 502167A US 502167D A US502167D A US 502167DA US 502167 A US502167 A US 502167A
- Authority
- US
- United States
- Prior art keywords
- furnace
- working chamber
- chamber
- combustion
- products
- 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
Links
- 238000002485 combustion reaction Methods 0.000 description 20
- 238000010438 heat treatment Methods 0.000 description 9
- 239000007789 gas Substances 0.000 description 8
- 238000007599 discharging Methods 0.000 description 4
- 239000000446 fuel Substances 0.000 description 4
- 206010022000 influenza Diseases 0.000 description 4
- 208000006379 syphilis Diseases 0.000 description 4
- 238000000926 separation method Methods 0.000 description 2
- 240000001973 Ficus microcarpa Species 0.000 description 1
- 241000234435 Lilium Species 0.000 description 1
- 238000002844 melting Methods 0.000 description 1
- 230000008018 melting Effects 0.000 description 1
- 229910052751 metal Inorganic materials 0.000 description 1
- 239000002184 metal Substances 0.000 description 1
- 150000002739 metals Chemical class 0.000 description 1
- 238000003303 reheating Methods 0.000 description 1
- 230000000630 rising effect Effects 0.000 description 1
- 239000000779 smoke Substances 0.000 description 1
Images
Classifications
-
- C—CHEMISTRY; METALLURGY
- C21—METALLURGY OF IRON
- C21D—MODIFYING THE PHYSICAL STRUCTURE OF FERROUS METALS; GENERAL DEVICES FOR HEAT TREATMENT OF FERROUS OR NON-FERROUS METALS OR ALLOYS; MAKING METAL MALLEABLE, e.g. BY DECARBURISATION OR TEMPERING
- C21D1/00—General methods or devices for heat treatment, e.g. annealing, hardening, quenching or tempering
- C21D1/74—Methods of treatment in inert gas, controlled atmosphere, vacuum or pulverulent material
- C21D1/767—Methods of treatment in inert gas, controlled atmosphere, vacuum or pulverulent material with forced gas circulation; Reheating thereof
Definitions
- My invention relates to metallurgical furnaces such as are employed for heating or reheating metals or for the melting or puddling ofthe same, and to converting ovens and the like, the object of my invention-being to so construct such a furnace or oven as to provide for the effective combustion of the gases arlsing from the fuel, and to produce and maintain an intense heat in the working chamber of the furnace.
- This object I attain in the following manner reference being had to the accompanying drawings, in which- Figure 1, is a longitudinal section of my improved metallurgical furnace or oven.
- Fig. 2 is a sectional plan view of the same, on the line 1 2, Fig. 1.
- Fig. 8 is a plan view partly 1n section on the line 3 4
- Fig. l. Fig. 4 is a transverse section on the line 6, Fig. 2;
- Fig. 5 is a transverse section on the line 7 8, Fig. 1.
- A represents the outer wall or casing of the furnace within which is the working chamber B, access to which may be had in any convenient manner, as for instance, through an arched opening or passageway B', at the front of the furnace as shown in Figs. 1 and 2, or through suitable openings at the sides of the furnace, as in an ordinary heating or puddling furnace.
- each of these fire places communicating through a short lateral passage D with the arched passage B and thence with the working chamber B of the furnace.
- a third fire place F At the center of the front portion of the furnace and in a plane below that of the corner fire places D and also below the floor or bottom of the Working chamber B of the furnace is a third fire place F, the products of combustion from which pass beneath the bottom of the furnace chamber B Iirst rearwardly through a iiue F to the rear end of the furnace and then forwardly through flues F2 on each side to a position adjacent to the corner fire places D where they are deliected through Iiues F3 into iiues F4 in the side walls of the furnace and rise through nues F5 on the outer sides of the corner fire places until they reach a point above the level of the fuel in said tire places, whereupon they discharge through dues F into the corner fire places, or rather into the combustion chambers formed in the upper portions of said fire places, the unconsumed products of combustion from the lower central fire place being thus re-ignited and consumed in their passage through the Working chamber of the furnace.
- each of the fire places D D is a chamber G closed except for a gas inlet, referred to hereinafter, and a downwardly inclined communication with the passage B leading into the working chamber of the furnace and within each of these chambers G is located a coiled pipe G which serves to supply air from a branch G2 of the blast pipe H which supplies the forced draft for the fire place D.
- the delivery end of this coiled pipe is bent downward at an angle and extends part way through the opening or passage, G3 whereby the chamber G communicates with. the passage B.
- the furnace has two outlet iues I I at the rear, one near each corner of the chamber B, and also two side outlet dues J .I near the front end of said chamber, but I find it preferable to divide the lower or inlet end of each of these outlet dues by means of a central slab or tile a so as to provide each iue with two contracted mouths meeting at a short distance above the inlet, thus providing for a quick indraft of gases into the iiues and a slower iow of said gases along the Iiues.
- a dome M On the roof of the furnace, at the rear end of the same, is a dome M containing a short chimney K and inclosing a chamber M', a portion of the products of combustion rising through the chimney being discharged into this dome which may also, if desired, receive the products of combustion from the side iiues .I J through short lateral passages J controlled by suitable dampers J
- the side iiues J also have branch fines or passages J 2 communicating with the chambers Gr and provided with dampers J 4, so that when desired, a portion of the gases from the chamber B can be directed into said chambers G and then ejected therefrom by the heated jets from the pipes G', the hot air mixing with the gases in their discharge.
- passages b which receive the discharge ends of air pipes N communicating with the branches G2 of the blast pipes II, the jets thereby formed serving to return to the working chamber of the furnace the products of combustion which enter the chamber M' of the dome, the air being also mixed with these products of combustion so as to regenerate the same and cause their ignition when they again enter said Working chamber.
- a series of internally projecting slabs or blocks K which closely approach at their inner ends, and form a central contracted flue, through which a portion of the products of combustion can rise directly to the contracted discharge stack P mounted on the dome, the remaining portions of the products of combustion escaping through the openings between the slabs into the chamber M of the dome, and being thence returned into the Working chamber of the furnace.
- the side in a metallurgical furnace or oven, of the working chamber, the side [ire places arranged to discharge their products into said working chamber, a central fire place in a lower plane than said side tire places, and iiues extending from said central fire place, first rearward and then forward beneath the bottom of the working chamber, then upward through the side walls of the side fire places to a point above the fuel therein, and then laterally into said side fire places so as to discharge directly into the products of combustion arising from the fuel in said tire places, substantially as specified.
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- Chemical & Material Sciences (AREA)
- Engineering & Computer Science (AREA)
- Physics & Mathematics (AREA)
- Thermal Sciences (AREA)
- Crystallography & Structural Chemistry (AREA)
- Mechanical Engineering (AREA)
- Materials Engineering (AREA)
- Metallurgy (AREA)
- Organic Chemistry (AREA)
- Waste-Gas Treatment And Other Accessory Devices For Furnaces (AREA)
Description
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1=a1;errte1v July 25, 189s.
UNET@ raras FRANCIS G. BATES, OF PHILADELPHIA, PENNSYLVANIA.
M ETALPLU RGICAL FU RNACE.
SPECIFICATION forming part f Letters Patent N0. 502,167, dated. July 25, 1893.
Application iiled March 26, 1891. Serial No. 386,415. (No model.)
To all whom t may concern.-
Be it known that I, FRANCIS G.. BATES, a citizen of the United States, and a resident of Philadelphia, Pennsylvania, have invented certaln Improvements in Metallurgical Furnaces or Ovens, of which the following is a specification.
I My invention relates to metallurgical furnaces such as are employed for heating or reheating metals or for the melting or puddling ofthe same, and to converting ovens and the like, the object of my invention-being to so construct such a furnace or oven as to provide for the effective combustion of the gases arlsing from the fuel, and to produce and maintain an intense heat in the working chamber of the furnace. This object I attain in the following manner reference being had to the accompanying drawings, in which- Figure 1, is a longitudinal section of my improved metallurgical furnace or oven. Fig. 2, is a sectional plan view of the same, on the line 1 2, Fig. 1. Fig. 8, is a plan view partly 1n section on the line 3 4, Fig. l. Fig. 4, is a transverse section on the line 6, Fig. 2; and Fig. 5, is a transverse section on the line 7 8, Fig. 1.
A represents the outer wall or casing of the furnace within which is the working chamber B, access to which may be had in any convenient manner, as for instance, through an arched opening or passageway B', at the front of the furnace as shown in Figs. 1 and 2, or through suitable openings at the sides of the furnace, as in an ordinary heating or puddling furnace.
I At each of the front corners of the furnace 1s a ire place D, preferably inclined toward the center of the furnace, each of these fire places communicating through a short lateral passage D with the arched passage B and thence with the working chamber B of the furnace.
At the center of the front portion of the furnace and in a plane below that of the corner fire places D and also below the floor or bottom of the Working chamber B of the furnace is a third fire place F, the products of combustion from which pass beneath the bottom of the furnace chamber B Iirst rearwardly through a iiue F to the rear end of the furnace and then forwardly through flues F2 on each side to a position adjacent to the corner fire places D where they are deliected through Iiues F3 into iiues F4 in the side walls of the furnace and rise through nues F5 on the outer sides of the corner fire places until they reach a point above the level of the fuel in said tire places, whereupon they discharge through dues F into the corner fire places, or rather into the combustion chambers formed in the upper portions of said fire places, the unconsumed products of combustion from the lower central fire place being thus re-ignited and consumed in their passage through the Working chamber of the furnace.
Above each of the fire places D D is a chamber G closed except for a gas inlet, referred to hereinafter, and a downwardly inclined communication with the passage B leading into the working chamber of the furnace and within each of these chambers G is located a coiled pipe G which serves to supply air from a branch G2 of the blast pipe H which supplies the forced draft for the fire place D. The delivery end of this coiled pipe is bent downward at an angle and extends part way through the opening or passage, G3 whereby the chamber G communicates with. the passage B. -When the blast of air passes through the coil G', therefore, and is discharged from the end of the same a partial vacuum is created in the chamber G, so as to inducea flow of heated gases into the same as hereinafter set forth.
The furnace has two outlet iues I I at the rear, one near each corner of the chamber B, and also two side outlet dues J .I near the front end of said chamber, but I find it preferable to divide the lower or inlet end of each of these outlet dues by means of a central slab or tile a so as to provide each iue with two contracted mouths meeting at a short distance above the inlet, thus providing for a quick indraft of gases into the iiues and a slower iow of said gases along the Iiues. By reason of the separation of the lire places at the front end of the furnace, the separation of the outlet fines at the rear end of the furnace and the use of the side outlet ues communicating with the front portion lof the working chamber, the passage of the products of combustion through, or their disposal in said working chamber can be readily governed,
IOO
for instance, if the dampers in the lues I are open and the dampers J in the fines J are closed, the products of combustion from the furnaces D, on entering the heating chamber will have a tendency to converge, and after meeting in the center of said chamber, will diverge, a portion escaping through one flue I, and a portion through the opposite flue.
If it is desired toimodify the tendency of the products of combustion to converge, this may be done, and said products may be caused to spread more evenly throughout the width of the heating chamber by opening the dampers in the side lilies J, which thus tend to drawa portion of the products of combustion laterally in the front portion of the working chamber.
On the roof of the furnace, at the rear end of the same, is a dome M containing a short chimney K and inclosing a chamber M', a portion of the products of combustion rising through the chimney being discharged into this dome which may also, if desired, receive the products of combustion from the side iiues .I J through short lateral passages J controlled by suitable dampers J The side iiues J also have branch fines or passages J 2 communicating with the chambers Gr and provided with dampers J 4, so that when desired, a portion of the gases from the chamber B can be directed into said chambers G and then ejected therefrom by the heated jets from the pipes G', the hot air mixing with the gases in their discharge.
Extending downwardly at an angle from the front of the dome into the working chamber of the furnace are passages b which receive the discharge ends of air pipes N communicating with the branches G2 of the blast pipes II, the jets thereby formed serving to return to the working chamber of the furnace the products of combustion which enter the chamber M' of the dome, the air being also mixed with these products of combustion so as to regenerate the same and cause their ignition when they again enter said Working chamber.
Mounted on the short chimney K are a series of internally projecting slabs or blocks K which closely approach at their inner ends, and form a central contracted flue, through which a portion of the products of combustion can rise directly to the contracted discharge stack P mounted on the dome, the remaining portions of the products of combustion escaping through the openings between the slabs into the chamber M of the dome, and being thence returned into the Working chamber of the furnace.
I-Iaving thus described my invention, I claim and desire to secure by Letters Patentl. The within described heating furnace or oven having at the front separate tire places discharging into the Working chamber, exit Iiues at the rear of said Working chamber, and side lues communicating at their front ends with said working chamber at points adjacent to the front fire places, and at their rear ends with the outlet flue, substantially as specified.
2. The within described heating furnace or oven, having at the front opposite side fire places, and a central fire place in a lower plane, the side fire places communicating d1- rectly with the working chamber, but the central fire place communicating with said chamber through lues located beneath the floor of the chamber and discharging directly into the products of combustion from the side lire places, substantiallyT as speciiied.
3. The combination in a metallurgical furnace or oven, of the working chamber, the side [ire places arranged to discharge their products into said working chamber, a central fire place in a lower plane than said side tire places, and iiues extending from said central fire place, first rearward and then forward beneath the bottom of the working chamber, then upward through the side walls of the side lire places to a point above the fuel therein, and then laterally into said side lire places so as to discharge directly into the products of combustion arising from the fuel in said tire places, substantially as specified.
4. The combination in a metallurgical furnace or oven, of the Working chamber, fire places at the front end of the same, and outlet flues having bottom inlets communicating with the Working chamber, and provided with slabs or blocks so as to divide and contract the mou ths of said iiues, substantially as specied.
5. The combination in a metallurgical furnace or oven, of a working chamber having side outlets, fire places at the front of the furnace communicating with said working chamber, chambers above said fire places, air heat# ing pipes located in said chambers, and communications between said chambers and the side outlets of the Working chamber, said chambers having contracted outlets through which the air heating pipes discharge so as to induce a flow of gases into and through said chambers, substantially as specified.
6. The combination in a metallurgical furnace or oven, of the Working chamber, tire places at the front end of the same communicating with said chamber, a dome surm0unting said working chamber at the rear end, outlet flues for the products of combustion leading from said Working chamber to the dome, the chimney communicating with said dome, passages leading from the dome into theupper portion of the Working chamber, and an air pipe forming a heating coil in said dome, and discharging into said passage so as to cause the return of a portion of the products of combustion mixed with hot air, into said working chamber, substantially as speciiied.
7. The combination in a metallurgical oven or furnace, of a Working chamber, a front ire place communicating therewith, a dome surmounting the working chamber at the rear end, exit flues for the products of combustion, communicating with the chimney and also IOO IOS
IIO
with the heating chamber within the dome, a passage leading from the dome into the upper portion of the working chamber, and an air jet pipe discharging into said passage, and causing a return ilow of the products of combustion into and through the dome chamber, and thence back into the working chamber, substantially as specified.
8. `'The combination in a metallurgical oven or furnace, of the working chamber, the fire place, the dome Surmounting the working chamber at the rear end of Jthe furnace, the discharge stack on said dome, the short smoke chamber communicating with the exit lues
Publications (1)
| Publication Number | Publication Date |
|---|---|
| US502167A true US502167A (en) | 1893-07-25 |
Family
ID=2571003
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| US502167D Expired - Lifetime US502167A (en) | Metallurgical furnace |
Country Status (1)
| Country | Link |
|---|---|
| US (1) | US502167A (en) |
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0
- US US502167D patent/US502167A/en not_active Expired - Lifetime
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