US171100A - Improvement in automatic boiler-feeders - Google Patents

Improvement in automatic boiler-feeders Download PDF

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Publication number
US171100A
US171100A US171100DA US171100A US 171100 A US171100 A US 171100A US 171100D A US171100D A US 171100DA US 171100 A US171100 A US 171100A
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Prior art keywords
valve
pipe
feeder
steam
cylinder
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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16TSTEAM TRAPS OR LIKE APPARATUS FOR DRAINING-OFF LIQUIDS FROM ENCLOSURES PREDOMINANTLY CONTAINING GASES OR VAPOURS
    • F16T1/00Steam traps or like apparatus for draining-off liquids from enclosures predominantly containing gases or vapours, e.g. gas lines, steam lines, containers
    • F16T1/20Steam traps or like apparatus for draining-off liquids from enclosures predominantly containing gases or vapours, e.g. gas lines, steam lines, containers with valves controlled by floats
    • F16T1/22Steam traps or like apparatus for draining-off liquids from enclosures predominantly containing gases or vapours, e.g. gas lines, steam lines, containers with valves controlled by floats of closed-hollow-body type
    • F16T1/24Steam traps or like apparatus for draining-off liquids from enclosures predominantly containing gases or vapours, e.g. gas lines, steam lines, containers with valves controlled by floats of closed-hollow-body type using levers
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T137/00Fluid handling
    • Y10T137/2931Diverse fluid containing pressure systems
    • Y10T137/2937Gas pressure discharge of liquids feed traps [e.g., to boiler]
    • Y10T137/2947Gas pressure controlled by amount of liquid in trap
    • Y10T137/2965Float responsive
    • Y10T137/2968Liquid control valve positively actuated
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T137/00Fluid handling
    • Y10T137/7287Liquid level responsive or maintaining systems
    • Y10T137/7358By float controlled valve
    • Y10T137/7368Servo relay operation of control
    • Y10T137/7371Fluid pressure
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T137/00Fluid handling
    • Y10T137/7287Liquid level responsive or maintaining systems
    • Y10T137/7358By float controlled valve
    • Y10T137/7381Quick acting
    • Y10T137/7387Over center mechanism
    • Y10T137/7391Shifting weight

Definitions

  • SILAS COOK OF MAGNOLIA, lOWA, ASSIGNOR TO AUTOMATIC BOILER- FEEDER MANUFACTURING COMPANY, OF ST. LOUIS, MISSOURI.
  • the improvement to which this invention particularly relates is the connection with the feeder and float and mechanism for shifting a valve when the charm beris alternately emptied and filled, a piston-valve shifted by letting steam into chambers formed at one end and the other of the cylinder.
  • Said last-named valve is formed to regulate the admission of steam and water on the general principles of said original patent.
  • Figure 1 is a perspective View of aboiler with feeder attached.
  • Fig. 2 is a vertical longitudinal elevation of the same.
  • Fig. 3 is a vertical transverse section of the same.
  • Fig. 4 is an end elevation thereof, partly in section.
  • Fig. 5 is a partial section of the cylinder.
  • Fig. 6 is a perspective view of the small valve which regulates admission of steam to the cylinder.
  • A is the feeder; B, the boiler; G, the float; D, the weighted wheel; E, the adjustable counter-balance to the float; F, pipe, carrying steam to feeder;
  • G supply-pipe, from overhead tank, or from hydrant, 860.
  • H pipe for exhausting steam from the feeder, to permit water to flow in
  • I pipe conducting water from the feeder to the valve cylinder
  • K pipe conducting water from the latter to the boiler
  • L port to which pipe may be attached to conduct steam to cistern, in case water is to be forced up from well to tank or heater
  • M the stem, which connects from weighted wheel to valve-stem X, the pipe leading from the water-line to the cylinder.
  • the valve N actuated by the movement. of the weighted wheel, is intended to perform no other function than to direct the admission of steam to one or other end of the cylinder 0 through the ports 0 and O, which are alternately induction and eduction ports, as the valve is shifted to open communication with the steam-pipe X and the cylinder at one end, and from the other end with the eduction-port
  • the cylinder is bored and fitted with heads in the usual man ner, the rod P projecting through a stuffingbox in one head, as shown. On this rod are two heads, P P, placed so as to leave a chamber on each side when they are equidistant from their respective cylinder-heads.
  • valves, P and P In the space between the piston-heads 1 place two valves, P and P, the edge of the upper one being cut away like valve N, so as to permit the steam entering from the pipe X into the space between the valve-plates P P to ascend into the space between the upper one and the cylindcr,and enter the port leading into the chamber of valve N, and thence through the ports 0 0 into the chambers in the ends of the cylinder, and also to admit steam to pipe F and feeder B.
  • the valve is cut away at the end, as shown in Fig. 3; and if a pipe to cistern is also used, it must be, in like manner, cut away at the other end.
  • the cylinder 0, and piston-valve consisting of the parts P P P constructed and arranged substantially as set forth.
  • valve-plates 1? P with the induction-pipe X opening between them, and the ports H and F, substantially as set forth.

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Treatment Of Fiber Materials (AREA)

Description

2Sheets-Sheet 1. S. COOK.
AUTOMATIC BOILER FEEDER. No. 171,100. Patented 116 6.14, 1875..
lfilrzessasr 1 0/ 20% 1120612101".
gwz/ W Nv PEIERS, PNOT0-LITNOBRAPNERI WASHINGTON D C 2 Sheets-Sheet 2. S. COOK.
AUTOMATIC BOILER FEEDER.
31 ,171,100, Patented Dec.14, 1875.
UNITED STATES PATENT OFFICE.
SILAS COOK, OF MAGNOLIA, lOWA, ASSIGNOR TO AUTOMATIC BOILER- FEEDER MANUFACTURING COMPANY, OF ST. LOUIS, MISSOURI.
IMPROVEMENT IN AUTOMATIC BOlLER-FEEDERS.
Specification forming part of Letters Patent No. 171,100, dated December 14, 1875; application filed November 16, 1875.
To all whom it may concern:
Be it known that I, SILAS 000K, of Magnolia, in the county of Harrison and State of Iowa, have invented a new and useful Improvement in Automatic Boiler-Feeders, of which the following is a specification:
I took out on the 30th day of November, A. D. 1869, United States Letters Patent N 0. 97,361, to which and the reissues thereof I refer for a full description of the principle of operation of my invention. I also refer to another application for Letters Patent filed herewith for another improvement made by me on the same machine. It will, therefore, be unnecessary to repeat herein fully the explanations therein more completely set forth.
The improvement to which this invention particularly relates is the connection with the feeder and float and mechanism for shifting a valve when the charm beris alternately emptied and filled, a piston-valve shifted by letting steam into chambers formed at one end and the other of the cylinder. Said last-named valve is formed to regulate the admission of steam and water on the general principles of said original patent.
In the annexed drawings, making part of this specification, Figure 1 is a perspective View of aboiler with feeder attached. Fig. 2 is a vertical longitudinal elevation of the same. Fig. 3 is a vertical transverse section of the same. Fig. 4 is an end elevation thereof, partly in section. Fig. 5 is a partial section of the cylinder. Fig. 6 is a perspective view of the small valve which regulates admission of steam to the cylinder.
The same letters in all the figures indicate the same parts.
I have illustrated in this case a feeder only; but if a heater should be added after the principles set forth in the said former Letters Patent, it may be done after the plan therein set forth without modification of anything belonging to this application.
In the annexed drawings, A is the feeder; B, the boiler; G, the float; D, the weighted wheel; E, the adjustable counter-balance to the float; F, pipe, carrying steam to feeder;
G, supply-pipe, from overhead tank, or from hydrant, 860.; H, pipe for exhausting steam from the feeder, to permit water to flow in; I, pipe conducting water from the feeder to the valve cylinder; K, pipe conducting water from the latter to the boiler; L, port to which pipe may be attached to conduct steam to cistern, in case water is to be forced up from well to tank or heater; M, the stem, which connects from weighted wheel to valve-stem X, the pipe leading from the water-line to the cylinder.
All the foregoing parts are constructed and intended to operate as set forth in the application filed herewith, and need not now be described in detail.
In the present case, the valve N, actuated by the movement. of the weighted wheel, is intended to perform no other function than to direct the admission of steam to one or other end of the cylinder 0 through the ports 0 and O, which are alternately induction and eduction ports, as the valve is shifted to open communication with the steam-pipe X and the cylinder at one end, and from the other end with the eduction-port The cylinder is bored and fitted with heads in the usual man ner, the rod P projecting through a stuffingbox in one head, as shown. On this rod are two heads, P P, placed so as to leave a chamber on each side when they are equidistant from their respective cylinder-heads. In the space between the piston-heads 1 place two valves, P and P, the edge of the upper one being cut away like valve N, so as to permit the steam entering from the pipe X into the space between the valve-plates P P to ascend into the space between the upper one and the cylindcr,and enter the port leading into the chamber of valve N, and thence through the ports 0 0 into the chambers in the ends of the cylinder, and also to admit steam to pipe F and feeder B. To give access to the latter pipe, the valve is cut away at the end, as shown in Fig. 3; and if a pipe to cistern is also used, it must be, in like manner, cut away at the other end.
The operation of this feeder is as follows:
The feeder being empty and the float at the bottom, water being introduced into the feeder, the float will rise, turning arm E and lifting the weighted wheel until it falls, and shifts the valve N. When the feeder is full, the valve is in the position shown in Fig. 3, which represents the position of the parts just before the float has reached the bottom and shifted the valve. The pipe F is open, so that steam may flow from X through the valve between plates P P and up through notch and recess into the pipe F and into the feeder, so
7 that the pressure of steam in the boiler and feeder being equalized, the water will flow through pipes l and K, under the lower valveplate P, from the feeder to the boiler, until the water in the latter is raised until the pipe X is sealed, when the flow stops until the evaporation reduces the water again below the end of pipe X.
In case the pipe .L is used to raise water in this position of the valves, the steam canescape from the pipe L to the exhaust-pipe H, as explained in the other cases referred to.
When the water is exhausted from the feed- 1 er, the fall of the weighted wheel shifts the feeder until it is filled, and the valves again shifted, and so the work goes on automatically and indefinitely.
What I claim as my invention herein, and desire to secure by Letters Patent is not broad- 1y for the parts shown, nor on the other hand is it limited to the precise construction set forth, for it is obvious that instead of a. pistonvalve such as shown, having two plates, P and P above one another, they could be placed on the same plane and converted into slide-valves without at all varying the prin-v ciple of operation.
What I do claim is 1. In combination with the piston-valve P cylinder 0, and weighted wheel, actuated by the'rise and fall of the float, an intermediate oscillating valve, N, actuated by the movement of the wheel, and controlling the admission of steam to the piston-valve, substantially as set forth. v
2. The cylinder 0, and piston-valve, consisting of the parts P P P constructed and arranged substantially as set forth.
3. The combination of the valve-plates 1? P with the induction-pipe X opening between them, and the ports H and F, substantially as set forth.
4. The cylinder constructed with ports 0 O and ports leading to pipes F and H, G, I, and K, and X, substantially as set forth.
, In testimony whereof I have signed my name to this specification in the presence of two subscribing witnesses.
SILAS COOK. Witnesses:
ISAAC P. HILL, J. D. HORNBY.
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