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US671741A - Drying-oven. - Google Patents

Drying-oven. Download PDF

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Publication number
US671741A
US671741A US72355499A US1899723554A US671741A US 671741 A US671741 A US 671741A US 72355499 A US72355499 A US 72355499A US 1899723554 A US1899723554 A US 1899723554A US 671741 A US671741 A US 671741A
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drying
channel
tubes
gases
chambers
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US72355499A
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Henri Frans Joseph Weijers
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    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01LSEMICONDUCTOR DEVICES NOT COVERED BY CLASS H10
    • H01L21/00Processes or apparatus adapted for the manufacture or treatment of semiconductor or solid state devices or of parts thereof
    • H01L21/67Apparatus specially adapted for handling semiconductor or electric solid state devices during manufacture or treatment thereof; Apparatus specially adapted for handling wafers during manufacture or treatment of semiconductor or electric solid state devices or components ; Apparatus not specifically provided for elsewhere
    • H01L21/67005Apparatus not specifically provided for elsewhere
    • H01L21/67011Apparatus for manufacture or treatment
    • H01L21/67098Apparatus for thermal treatment
    • H01L21/67109Apparatus for thermal treatment mainly by convection

Definitions

  • the present invention relates to a kiln or drying-oven in which a drying-channel arranged between the rows of kiln-chambers is bounded throughout its entire length at the top and bottom by spaces which lead off the hot gases or gases of combustion from the burning-chambers.
  • the space above the drying-room is the collecting-space for the hot gases and is separated from the dryingchannel by an arch or roof.
  • the space below the drying-channel is provided with a number of tubes extending the entire length and breadth of the drying-channel. These tubes rest on standards orare suspended from the top. The object of these tubes is to conduct the smoke from the. burning-chambers, and they are surrounded by the hot air coming out of the chambers where the burning is completed.
  • Figure l is a longitudinal section; Fig. 2, a cross-section Fig. 3, a horizontal section on line y m of Fig. 2.
  • the kiln or drying-oven consists, as in the constructions hitherto existing, of burningchambers (1, arranged in two rows, between which the drying-channel b is situated.
  • the drying-channel b is bounded by a space at at the top, which is used as a collector for the gases of combustion, whereas the space Z beneath the drying-channel contains the tubes d, which serve'for leading 0d the smoke or gases of combustion.
  • the space at above the drying-channel is separated from the dryingchannel by the arch or roof f.
  • This space 12 is connected by downdraft-fines 19 with the tubes (1, arranged underneath the bottom of the drying-channel, so that the gases of combustion collecting in the space it are conducted by channels 19 into the tubes d.
  • the bottom of the drying-channel consists properly only of the rails g, carried by beams and upon which the drying carriages run, so that an actual separation of the drying-channel and spacelis not effected, and the heat radiating from the tubes, entering directly into the drying channel, comes into contact with the bricks or articles to be dried and baked.
  • the end is obtained that the air introduced at the exit ends of the dryingchannel loses heat on its way through the bricks or articles to be dried and baked. It then passes downward, surrounds the tubes containing the gases of combustion, thus being continuously heated, and becomes able to vaporize more water.
  • the tubes 01 in the space Z underneath the bottom of the dryingchannel are, as already mentioned, either supported by standards e or suspended from the beams carrying the rails, as by wires 6.
  • the gases of combustion from the chambers a are led off into the collector at through the channels h.
  • the passage of the gases can be regulated by valves 0, situated in the channel It.
  • the gases are conducted through the channels 19 into the tubes 01 below the bottom of the drying-channel, from whence after passing through the samethey arrive in the flue r and escape through the chimney S.
  • the heat of the gases of combustion is given 0E to the drying-channels throughout the entire length and in such a manner that the most heat is given ofif where the material comes out of the drying-channel, inasmuch as the gases cool in passing from this point through the drying-channel.
  • the course of the gases is as follows: They pass out of the chamber a in the direction of the arrow P through channels h into the collector n, from whence they pass through the channels 19 into the tubes, after passing which they escape into'the flue 'r or chimney
  • the gases issuing from the finished chambers, which have to cool, together with air admitted thereto to cool them, pass through the holes in the roof of the chamber into the tube m in order to pass into the air-collector. through a channel t, and from thence by an opening u into the space Z. below the dryingohannel, which contains the tubes 01, soas to be utilized in the drying-chamber.
  • gases surround the tubes (1, containing the gases of combustion, and are caused to move from below between the material to be tried toward the roof of the drying-chamber in order to be drawn off by artificial means, such as a chimney or exhauster W, communicating with the drying-channel b, as shown in Fig. 1, and which may be controlled by a damper w.
  • the tube m may be controlled by a damper m.
  • drying-channel 1 rows of kiln-chambers a, on either side thereof air-space Z beneath the drying-channel, in communication therewith, gas-fines 01 passing through the air-space Z and suitable ducts as h, 10, r, conveying gaseous products of combustion from the kiln-chambers a to the fines d and from these, to the exit, substantially as described.

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  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Condensed Matter Physics & Semiconductors (AREA)
  • General Physics & Mathematics (AREA)
  • Manufacturing & Machinery (AREA)
  • Computer Hardware Design (AREA)
  • Microelectronics & Electronic Packaging (AREA)
  • Power Engineering (AREA)
  • Drying Of Solid Materials (AREA)

Description

Patented Apr. 9, l90l.
H. F. J. WEIJEBS.
DRYING OVEN.
(Application filed July 12, 1899.)
2 Sheots-Shaot I.
(No Model.)
llllllL Yu: ucmms Pz'rzns.c0. PHOYO-LII'HOU WASHINGTON. 0. :2V
Patented 'Apr. 9, 190i.
No. s7|,74|. y
H. F. J. WEIJERS.
DRYING OVEN. Application filed m 12, 1.899.] (No Model.) 2 Sheats--Sh'est 2.
NiTED STATES PATENT OFFICE.
HENRI FRANS JOSEPH WEIJERS, OF TILBURG, NETHERLANDS.
DRYING-QVEN.
SPECIFICATION formingpart of Letters Patent No. 671,741, dated April 9, 1901.
I Application filed July 12, 1899. Serial No. '723,554.' (No model.)
To all whom, it ntay concern:
Be it known that I, HENRI FRANS JOSEPH WEIJERS, a subject of the Queen of the Netherlands, residing at Tilburg, Netherlands, have invented certain new and useful Improvements in Drying-Ovens, (for which I have applied for patent in Germany, dated June 6, 1899,) of which the followingisaspecification.
The present invention relates to a kiln or drying-oven in which a drying-channel arranged between the rows of kiln-chambers is bounded throughout its entire length at the top and bottom by spaces which lead off the hot gases or gases of combustion from the burning-chambers. The space above the drying-room is the collecting-space for the hot gases and is separated from the dryingchannel by an arch or roof. The space below the drying-channel is provided with a number of tubes extending the entire length and breadth of the drying-channel. These tubes rest on standards orare suspended from the top. The object of these tubes is to conduct the smoke from the. burning-chambers, and they are surrounded by the hot air coming out of the chambers where the burning is completed. By using these tubes a large heating-surface is obtained, inasmuch as the suspended or supported tubes provide a good opportunity for the-air underneath, which is not very warm, to become heated. The heat of the gases of combustion is utilized in the most rational manner for drying the materials, because the circulating heat at the bottom of the channel is given off and has the tendency to rise in the drying-space through the material to be dried.
One example of the subject-matter of this application is represented in the accompany ing drawings, in which Figure l is a longitudinal section; Fig. 2, a cross-section Fig. 3, a horizontal section on line y m of Fig. 2.
The kiln or drying-oven consists, as in the constructions hitherto existing, of burningchambers (1, arranged in two rows, between which the drying-channel b is situated. The drying-channel b is bounded by a space at at the top, which is used as a collector for the gases of combustion, whereas the space Z beneath the drying-channel contains the tubes d, which serve'for leading 0d the smoke or gases of combustion. The space at above the drying-channel is separated from the dryingchannel by the arch or roof f. This space 12 is connected by downdraft-fines 19 with the tubes (1, arranged underneath the bottom of the drying-channel, so that the gases of combustion collecting in the space it are conducted by channels 19 into the tubes d. The bottom of the drying-channel consists properly only of the rails g, carried by beams and upon which the drying carriages run, so that an actual separation of the drying-channel and spacelis not effected, and the heat radiating from the tubes, entering directly into the drying channel, comes into contact with the bricks or articles to be dried and baked. By this means the end is obtained that the air introduced at the exit ends of the dryingchannel loses heat on its way through the bricks or articles to be dried and baked. It then passes downward, surrounds the tubes containing the gases of combustion, thus being continuously heated, and becomes able to vaporize more water. The tubes 01 in the space Z underneath the bottom of the dryingchannel are, as already mentioned, either supported by standards e or suspended from the beams carrying the rails, as by wires 6. The gases of combustion from the chambers a are led off into the collector at through the channels h. The passage of the gases can be regulated by valves 0, situated in the channel It. From the collector n the gases are conducted through the channels 19 into the tubes 01 below the bottom of the drying-channel, from whence after passing through the samethey arrive in the flue r and escape through the chimney S. (Indicated diagrammatically in plan in Fig. 3.) In passing through the tubes the heat of the gases of combustion is given 0E to the drying-channels throughout the entire length and in such a manner that the most heat is given ofif where the material comes out of the drying-channel, inasmuch as the gases cool in passing from this point through the drying-channel.
The course of the gases is as follows: They pass out of the chamber a in the direction of the arrow P through channels h into the collector n, from whence they pass through the channels 19 into the tubes, after passing which they escape into'the flue 'r or chimney The gases issuing from the finished chambers, which have to cool, together with air admitted thereto to cool them, pass through the holes in the roof of the chamber into the tube m in order to pass into the air-collector. through a channel t, and from thence by an opening u into the space Z. below the dryingohannel, which contains the tubes 01, soas to be utilized in the drying-chamber. The
gases surround the tubes (1, containing the gases of combustion, and are caused to move from below between the material to be tried toward the roof of the drying-chamber in order to be drawn off by artificial means, such as a chimney or exhauster W, communicating with the drying-channel b, as shown in Fig. 1, and which may be controlled by a damper w. The tube m may be controlled by a damper m.
What I claim, and desire to secure by Letters Patent of the United States, is
1. The combination of the drying-channel 1), rows of kiln-chambers a, on either side thereof air-space Z beneath the drying-channel, in communication therewith, gas-fines 01 passing through the air-space Z and suitable ducts as h, 10, r, conveying gaseous products of combustion from the kiln-chambers a to the fines d and from these, to the exit, substantially as described.
, 2. The combination of the kiln-chambers a drying-chan-nel 19, between the-rows of kilnchambers gas-chambers '12, above the dryingchannel, separated therefrom by a ceilingf 35 from the kiln-chambers aito the gas-chamber n and from said chamber to the flues d as we plained.
3. The combination of the kiln-chamber a, drying-channel b, air-chamber Zbeneath said drying-channel and in communication therewith and valve-controlled tubes m and suitable passages as t u conveying air from the respective kiln-chambers a, to the air-space Z during the operation of cooling said kilnchambers as explained.
4. The combination of kiln-chambers adrying-channel b air-chamber Z, beneath the drying-channel and in com munication therewith gas-fines d passing through the air-chambers Z and suitable valve-controlled tubes m, and passages t, u for conducting air from the respective kiln-chambers to the air-chamber and drying-channel, during the operation of cooling the kiln-chambers, as explained.
In testimony whereof I have hereunto set my hand in the presence of two witnesses.
HENRI FRANS JOSEPH WEIJERS.
Witnesses:
E. H. L. MUMMENHOF'F, AUGUST LiiHRs.
US72355499A 1899-07-12 1899-07-12 Drying-oven. Expired - Lifetime US671741A (en)

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