US569872A - Jean hartmann - Google Patents

Jean hartmann Download PDF

Info

Publication number
US569872A
US569872A US569872DA US569872A US 569872 A US569872 A US 569872A US 569872D A US569872D A US 569872DA US 569872 A US569872 A US 569872A
Authority
US
United States
Prior art keywords
door
hartmann
jean
tubes
boilers
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 US569872A publication Critical patent/US569872A/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Images

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F23COMBUSTION APPARATUS; COMBUSTION PROCESSES
    • F23MCASINGS, LININGS, WALLS OR DOORS SPECIALLY ADAPTED FOR COMBUSTION CHAMBERS, e.g. FIREBRIDGES; DEVICES FOR DEFLECTING AIR, FLAMES OR COMBUSTION PRODUCTS IN COMBUSTION CHAMBERS; SAFETY ARRANGEMENTS SPECIALLY ADAPTED FOR COMBUSTION APPARATUS; DETAILS OF COMBUSTION CHAMBERS, NOT OTHERWISE PROVIDED FOR
    • F23M7/00Doors

Definitions

  • the subject of this invention is a perforated door which enables the soot or dust deposited by the gases upon the walls of tubes or on partitions in steam boilers or generators (whether heated with gas or coal) or in other tubular or partitioned heating apparatus to be swept out or off without involving any diminution of the intensity of the fire.
  • FIG. 1 is a front view of a door constructed in accordance with this invention.
  • Fig. 2 is a horizonal section thereof, and
  • Fig. 3 is a partial elevation of the door of a steam-boiler the tubes of which are arranged at certain distances apart.
  • This door may consist of one or more hinged leaves and be provided with perforations A, corresponding to the position of the tubes or of the intermediate spaces between the tubes Where the flame surrounds the several tubes.
  • the perforations A are covered or concealed by a series of cover-plates 13, each of which generally covers a number of perforations at once and is retained by a central pin or pivot G and a peg or key D.
  • cover-plates 13 each of which generally covers a number of perforations at once and is retained by a central pin or pivot G and a peg or key D.
  • the aperture in which the said pin or pivot C engages the plate referred to has only one perforation A, and as it turns on its pivot it uncovers the perforations of the door,one by one,and thereby affords a ready passage for the insertion of a brush or other cleaning instrument.
  • the operator may use a single plate B, provided with one perforation, substituting it for each of th'enon-perforated plates B in succession while he cleans each tube or each intermediate space between the 5 5 tubes of the boilers, one by one, in rotation
  • This substitution of plates may also be obviated by providing the doors entirely with the plate B, the hole of which is then covered by a small lid.
  • each hole A may be covered separately by a plate.
  • This method of boiler-tube cleaning oifers the following advantages: Inasmuch as the steam-generating power of a'boiler is in no way interfered with or retarded by the cleaning process, this process may be repeated more frequently than it could be hitherto.
  • the surfaces of the tubes and other heatingsurfaces may therefore always be kept entirely free from the soot or dust of combustion-gases, whereby the useful effect of the boiler will be increased, while a saving is effected in the consumption of fuel.
  • the currents .of cold air which, where the cleaning operation is performed through doors as usually constructed, are allowed to come into contact with the boiler, are here effectively kept away from the same.

Landscapes

  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Electron Beam Exposure (AREA)

Description

(Ho mm.)
J HARTMANN PERFORATED noon FOR STEAM BOILERS.
Patented Oct. 20, 1896.
' MIA/E8858.
MTGHNEYS FFICEQM JEAN HARTHANN, OF MULHOUSE, GERMANY.
PERFORATED DOOR FOR STEAM-BOILERS.
SPECIFICATION forming part of Letters Patent No, 569,872, dated October 20, 1896. Application filed May 23, 1896. Serial No. 592,769. (No model.) Patented in France December 14,1894, No. 24 3,630; in Lnx embnrg December 14, 82,402; in Russia July 27,
To all whom it 11mg concern:
Be it known that I, J EAN HARTMANN, a subject of the Emperor of Germany, residing in Mulhouse, (Alsace,) Germany, have invented a Perforated Door for Steam Boilers or Generators, (for which patents have been obtained in France December 14, 1894, No. 243,630; in Belgium December 15, 1894, No. 113,199; in Luxemburg December let, 1894, No. 2,197; in Germany January 25, 1895, No. 82,402; in Russia July 27, 1895, No. 15,980, and in Great Britain May 23, 1896, No. 14,499,) of which the following is a specification.
The subject of this invention is a perforated door which enables the soot or dust deposited by the gases upon the walls of tubes or on partitions in steam boilers or generators (whether heated with gas or coal) or in other tubular or partitioned heating apparatus to be swept out or off without involving any diminution of the intensity of the fire. I
The invention will be best understood by reference to the accompanying drawings, in which- Figure 1 is a front view of a door constructed in accordance with this invention. Fig. 2 is a horizonal section thereof, and Fig. 3 is a partial elevation of the door of a steam-boiler the tubes of which are arranged at certain distances apart.
This door may consist of one or more hinged leaves and be provided with perforations A, corresponding to the position of the tubes or of the intermediate spaces between the tubes Where the flame surrounds the several tubes. The perforations A are covered or concealed by a series of cover-plates 13, each of which generally covers a number of perforations at once and is retained by a central pin or pivot G and a peg or key D. Besides the aperture in which the said pin or pivot C engages the plate referred to has only one perforation A, and as it turns on its pivot it uncovers the perforations of the door,one by one,and thereby affords a ready passage for the insertion of a brush or other cleaning instrument.
The perforations in the doors are often so close together as not to admit of the employment of a perforated plate, and where this arrangement, which is shown in Figs. 1 and 1894, No. 2.197; in Belgium December 15, 1894,1lo. 113,199; in Germany January 26, 1896,1l0.
1895, No. 15,980, and in England May 23,1896,N0.14,499.
2, is adopted the operator may use a single plate B, provided with one perforation, substituting it for each of th'enon-perforated plates B in succession while he cleans each tube or each intermediate space between the 5 5 tubes of the boilers, one by one, in rotation This substitution of plates may also be obviated by providing the doors entirely with the plate B, the hole of which is then covered by a small lid. In certain cases, moreover, each hole A may be covered separately by a plate.
This method of boiler-tube cleaning oifers the following advantages: Inasmuch as the steam-generating power of a'boiler is in no way interfered with or retarded by the cleaning process, this process may be repeated more frequently than it could be hitherto. The surfaces of the tubes and other heatingsurfaces may therefore always be kept entirely free from the soot or dust of combustion-gases, whereby the useful effect of the boiler will be increased, while a saving is effected in the consumption of fuel. Besides, the currents .of cold air, which, where the cleaning operation is performed through doors as usually constructed, are allowed to come into contact with the boiler, are here effectively kept away from the same. These cold drafts have up to the present proved to be one of the most powerful destructive agen cies that have been at Work in attacking tnbular or partitioned boilers. The present arrangement therefore renders boilers of this class more durable than they have heretofore 8 5 proved to be and enables them to operate satisfactorily for a longer period, whileleakages, cracks, or groovings or other faults necessitating repairs are effectually obviated.
It will be seen that in each of the construco tions shown I employ a door having a series of apertures in combination with. plates or caps movably connected to the door and arranged to cover the apertures in the door, one of said plates, as in the constructions illustrated by Figs. 1 and 2, or all of them, as in the construction shown in Fig. 3, being provided with an aperture adapted to register with those of the door. lVith the construction shown in Fig. 1 it is necessary to remove TOO Io ratus, in combination with plates each of which serves to cover over one or more perforations; substantially'as and for the purpose specified and illustrated in the drawings.
In testimony whereof I have signed my name to this specification in the presence of I 5 two subscribing witnesses.
' JEAN HARTMANN.
Vitnesses:
GEORGE GIFFORD, FREDERIC ZIMMERMANN, Jr.
US569872D Jean hartmann Expired - Lifetime US569872A (en)

Publications (1)

Publication Number Publication Date
US569872A true US569872A (en) 1896-10-20

Family

ID=2638576

Family Applications (1)

Application Number Title Priority Date Filing Date
US569872D Expired - Lifetime US569872A (en) Jean hartmann

Country Status (1)

Country Link
US (1) US569872A (en)

Similar Documents

Publication Publication Date Title
US895922A (en) Self-cleaning boiler.
US785009A (en) Multitubular steam-boiler.
US1780576A (en) Heating boiler
US935141A (en) Boiler-flue cleaner.
US914940A (en) Boiler-flue cleaner.
US335697A (en) hartley
US888086A (en) Steam-boiler furnace.
US863628A (en) Boiler-tube cleaner.
US1115485A (en) Boiler-cleaner.
US848786A (en) Steam-boiler.
US526289A (en) Peter j
US423664A (en) Steam-generator
US1177366A (en) Steam-boiler.
US527631A (en) Boiler
US598997A (en) Steam-boiler furnace
US248772A (en) John g
US838898A (en) Boiler-cleaner.
US187384A (en) Improvement in furnace-doors for steam-boilers
US717566A (en) Steam-blower.
US553227A (en) brook
US489374A (en) Water-tube steam-boiler
US1798362A (en) Incinerator
US920057A (en) Boiler.
US808179A (en) Spark-arrester.
US1008554A (en) Steam-boiler.