US540003A - Blow-off valve for locomotive-boilers - Google Patents

Blow-off valve for locomotive-boilers Download PDF

Info

Publication number
US540003A
US540003A US540003DA US540003A US 540003 A US540003 A US 540003A US 540003D A US540003D A US 540003DA US 540003 A US540003 A US 540003A
Authority
US
United States
Prior art keywords
valve
steam
blow
piston
chamber
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 US540003A publication Critical patent/US540003A/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Images

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
    • F16KVALVES; TAPS; COCKS; ACTUATING-FLOATS; DEVICES FOR VENTING OR AERATING
    • F16K31/00Actuating devices; Operating means; Releasing devices
    • F16K31/12Actuating devices; Operating means; Releasing devices actuated by fluid
    • F16K31/122Actuating devices; Operating means; Releasing devices actuated by fluid the fluid acting on a piston
    • F16K31/1221Actuating devices; Operating means; Releasing devices actuated by fluid the fluid acting on a piston one side of the piston being spring-loaded

Definitions

  • the object of my invention is a construction of blow-off that is simple and not liable to get out of repair, and that can be opened by steam pressure from the boiler to which it is attached. f
  • Figure l' shows my invention applied to a locomotive-boiler.
  • Fig..3 is an enlarged plan with the top head and the piston removed, and
  • Fig. 4 is an enlarged plan of the piston.
  • A is the boiler.
  • B and B are the outer and the inner Walls of the chamber or water-space, C, around the fire-box.
  • My blow-off: ⁇ may be attached to the boiler at any convenient place along its under side, or to the water-space or chamber around the tire-box, or to what is known as the mnd-drum. In the drawings I have shown it attached to the front end of the tire-box.
  • b is the opening from the waterchamber C to the blow-OE valve.
  • the D is a valve-case, having therein the chamber I', and the lateral opening D through the projection D.
  • the projection D aiords means for attaching the device to the tire-box B, or to the boiler.
  • the opening b and the lateral opening D register with each other.
  • valve-case D is a horizontal dis- Fig. 2 isl against the spring-cap L.
  • valve-chamber, l' communicates with the discharge opening, E, through the connecting opening or way e..
  • the rod G passes vertically through the steam cylinder F and the discharge opening E, and into the valve chamber I.
  • the rod G passes through a suitable stufting box, J, to make the top-head, F, of the steam cylinder, F, steam tight.
  • An expansible coil-spring, K encircles the projecting upper end of' the rod G.
  • valve chamber In the upper end of the valve chamber, I', where the valve chamber opens into the discharge opening E through the way e, is an annular valve-seat, d, made to receive the valve I and form a steamand water-tight bearing for the valve.
  • valve P forshutting oft' steam from the steam pipe O when closed, and for admitting steam to the steam pipe O when it is desired to blow out the boiler.
  • the valve P may be of the ordinary globe pattern of valve, or of any form desired.
  • the blow-off is in position to allow steam and water from the boiler A and water chamber C to blow out through the openings b, D, e, and E, as shown by the arrows in said ligure.
  • the piston H is at the top of the steam cylinder F, and the valve I is in place against its seat d so as to close communication from the lateral opening D, to the discharge opening E through the connecting way e.
  • the valve P is closed, the spring K, and the steam pressure from within the boiler against the under side of the valve I, keeps the valve closed.
  • the globe valve P When it is desired to blow ont the boiler, the globe valve P is opened, andy steam is admitted to the steam cylinder F above the piston H, through the steam pipe O and the portf.
  • the piston H As the area of the piston H is much greater than the area of the valve I, the piston H is'driven to the bottom of the cylinder F by the overbalancing force from above; and as the piston H is forced down, it carries the valve I away from its seat d and opens the device, as illustrated.
  • the area of the piston H should be enough greater than the area of the valve I to enable the piston pressure to overcome the resistance of the spring K and the counter pressure on the valve I.)
  • the spring K After the boiler shall have blown out, the spring K will lift the rod G with the piston H and valve I to their normal positions.
  • a blow-off for steam boilers consisting of a valve chamber havinga lateral opening for communication with a boiler, a discharge opening, a way or passage from the valve-chamber to the discharge opening, a steam cylinder, a rod passing through the steam cylinder, the discharge opening and into the valve-chamber, a piston within the cylinder and a valve within the valve chamber on said rod, aspring to force said rod outwardly,a and a steam port to the cylinder, substantially as described.
  • a blow-oft' for steam boilers said blowoff consisting of a valve chamber, a lateral opening from the valve chamber for connection With a boiler, a discharge opening, a way from the valve chamber to the discharge opening, a steam cylinder having a steam port, a rod passing through the steam cylinder and through the discharge opening into the valve chamber, a piston within the steam cylinder and a valve within the valve chamber upon said rod, a spring to return the rod with its piston and valve to their normal positions, and drip openings from the cylinder, substantially as described.
  • a blow-off for steam boilers consisting of a valve chamber, a lateral opening from the valve chamber for connection with a boiler, a discharge opening above the valve-chamber, an opening from the valvechamber to the discharge opening, a vertical steam cylinder above the discharge opening, one of the heads of said steam cylinder being removable, a steam port to said cylinder, a rod passing through the steam cylinder and the discharge opening into the valve chamber, a piston within the said cylinder and a valve within the valve chamber on said rod, a spring to force said rod upwardly, and a drip opening from the steam cylinder, substantially as described.

Description

4(No Model.)
G. REED. BLOW-OPF VALVE FOR LOGOMOTIVB BOILERS.
No. 540,003. E Patented May 28, 1805.
A T70HNE YS.
UNITED SrrvrEsl .PATENT OFFICE.v
GEORGE REED, OF FOREST CITY, MISSOURI, AssIGNOR OE ONE-HALE To |J. s. OASEMENT, OE PAINEsvILLE, OI-IIO.
BLOW-OFF VALVE FORLocOMoTivE-BOILERS.
SPECIFICATION forming part of Letters Patent No. 540,003, dated May 28, 1895. y Application filed February 23, 1895, Serial No. 539,449. (No model.)
To all whom it may concern:
Be it known that I, GEORGE REED, a citizen of the United States, residing at Forest City, in the county of Holt, State of Missouri, have invented certain new and useful Improvements in Blow-O Valves for Locomotive- Boilers, of which the following, with the ac` companying drawings, is a specification.
While my invention applies more especially to blow-offs for locomotive boilers, it is applicable to all kinds of steam boilers.
The object of my invention is a construction of blow-off that is simple and not liable to get out of repair, and that can be opened by steam pressure from the boiler to which it is attached. f
My invention conssts in the construction and' in the combination of parts herein described and defined in the claims.
In the drawings, Figure l' shows my invention applied to a locomotive-boiler. an enlarged vertical section of my invention and illustrates its connection with the waterspace around the re-box. Fig..3 is an enlarged plan with the top head and the piston removed, and Fig. 4 is an enlarged plan of the piston. j
In the different figures of the drawings like reference characters refer to like parts.
A is the boiler.
B and B are the outer and the inner Walls of the chamber or water-space, C, around the lire-box.
The boiler, A, and the lire-box, B, with the water space or chamber, C, opening from the boiler, are of the usual construction. V
My blow-off:` may be attached to the boiler at any convenient place along its under side, or to the water-space or chamber around the tire-box, or to what is known as the mnd-drum. In the drawings I have shown it attached to the front end of the tire-box.
b is the opening from the waterchamber C to the blow-OE valve.
D is a valve-case, having therein the chamber I', and the lateral opening D through the projection D. The projection D aiords means for attaching the device to the tire-box B, or to the boiler. The opening b and the lateral opening D register with each other.
Above the valve-case D is a horizontal dis- Fig. 2 isl against the spring-cap L.
charge opening, Eto the atmosphere. The valve-chamber, l', communicates with the discharge opening, E, through the connecting opening or way e..
The lateral opening D, the valve-chamber I', the Way e, and the discharge opening E,
constitute the blow-Off opening through openings,f,f for the purpose hereinafterl stated.
The rod G passes vertically through the steam cylinder F and the discharge opening E, and into the valve chamber I.
Upon the rod G, withinthe steam cylinder F, is lixed the piston I-I; and to the lower end of said rod G, within the valve chamber 1, is fixed the valve I. The area of the piston H should be greater than the area of the valve I. The rod G serves as a piston rod for the piston H and as a valve-stem for the valve I. In the piston H is a drop opening, h, for the purpose hereinafter stated.l
The rod G passes through a suitable stufting box, J, to make the top-head, F, of the steam cylinder, F, steam tight.
An expansible coil-spring, K, encircles the projecting upper end of' the rod G. The
lower end ofthe spring K rests upon the cylinder top-head F', and its upper end bears The spring-cap L is held upon the end of the rod G by the nut g.
In the upper end of the valve chamber, I', where the valve chamber opens into the discharge opening E through the way e, is an annular valve-seat, d, made to receive the valve I and form a steamand water-tight bearing for the valve.
In the top-head, F', of the steam cylinder, F, is a steam port, f, through the nipple M.
near its connection with the boiler A, is a valve, P, forshutting oft' steam from the steam pipe O when closed, and for admitting steam to the steam pipe O when it is desired to blow out the boiler. The valve P may be of the ordinary globe pattern of valve, or of any form desired.
From the foregoing description of my device it will be seen that it is very simple. By reason of its extreme simplicity, its operation will be readily understood.
When the parts are in the position shown by Fig. 2 of the drawings, the blow-off is in position to allow steam and water from the boiler A and water chamber C to blow out through the openings b, D, e, and E, as shown by the arrows in said ligure. Before being in operative position, as shown, the piston H is at the top of the steam cylinder F, and the valve I is in place against its seat d so as to close communication from the lateral opening D, to the discharge opening E through the connecting way e. When the valve P is closed, the spring K, and the steam pressure from within the boiler against the under side of the valve I, keeps the valve closed. When it is desired to blow ont the boiler, the globe valve P is opened, andy steam is admitted to the steam cylinder F above the piston H, through the steam pipe O and the portf. As the area of the piston H is much greater than the area of the valve I, the piston H is'driven to the bottom of the cylinder F by the overbalancing force from above; and as the piston H is forced down, it carries the valve I away from its seat d and opens the device, as illustrated. (The area of the piston H should be enough greater than the area of the valve I to enable the piston pressure to overcome the resistance of the spring K and the counter pressure on the valve I.) After the boiler shall have blown out, the spring K will lift the rod G with the piston H and valve I to their normal positions. After the boiler shall have been blown out, the drip from the condensed steam within the pipe O and within the steam cylinder F will pass out through the drip openings h in the piston H and f,f, in the cylinder head F. As the valve I is closed at such times, the drip passes out of the discharge opening E and does not enter the valve-case D.
It will readily be seen that my blow-off may be applied to other steam boilers than locomotive boilers, and that persons skilled in the art will have no difficulty in making such application of my invention.
What I claim as my invention, and desire to secure by Letters Patent, is-
1. A blow-off for steam boilers, said blowoff consisting of a valve chamber havinga lateral opening for communication with a boiler, a discharge opening, a way or passage from the valve-chamber to the discharge opening, a steam cylinder, a rod passing through the steam cylinder, the discharge opening and into the valve-chamber, a piston within the cylinder and a valve within the valve chamber on said rod, aspring to force said rod outwardly,a and a steam port to the cylinder, substantially as described.
2. A blow-oft' for steam boilers, said blowoff consisting of a valve chamber, a lateral opening from the valve chamber for connection With a boiler, a discharge opening, a way from the valve chamber to the discharge opening, a steam cylinder having a steam port, a rod passing through the steam cylinder and through the discharge opening into the valve chamber, a piston within the steam cylinder and a valve within the valve chamber upon said rod, a spring to return the rod with its piston and valve to their normal positions, and drip openings from the cylinder, substantially as described.
3. A blow-off for steam boilers, said blowoff consisting of a valve chamber, a lateral opening from the valve chamber for connection with a boiler, a discharge opening above the valve-chamber, an opening from the valvechamber to the discharge opening, a vertical steam cylinder above the discharge opening, one of the heads of said steam cylinder being removable, a steam port to said cylinder, a rod passing through the steam cylinder and the discharge opening into the valve chamber, a piston within the said cylinder and a valve within the valve chamber on said rod, a spring to force said rod upwardly, and a drip opening from the steam cylinder, substantially as described.
GEO. REED.
Witnesses:
. G. W. HITT,
ISAAC W. YOUNG.
US540003D Blow-off valve for locomotive-boilers Expired - Lifetime US540003A (en)

Publications (1)

Publication Number Publication Date
US540003A true US540003A (en) 1895-05-28

Family

ID=2608762

Family Applications (1)

Application Number Title Priority Date Filing Date
US540003D Expired - Lifetime US540003A (en) Blow-off valve for locomotive-boilers

Country Status (1)

Country Link
US (1) US540003A (en)

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2532123A (en) * 1945-03-21 1950-11-28 William E Shafer Pressure operated valve
US2619985A (en) * 1952-12-02 Ujnit
US2925822A (en) * 1955-11-02 1960-02-23 Charles E Wight Valve device
US2991971A (en) * 1957-02-19 1961-07-11 Lever Brothers Ltd Telescopic compensating unit
US3215397A (en) * 1961-12-01 1965-11-02 Chrysler Corp Servo regulator valve
US4021137A (en) * 1975-09-24 1977-05-03 Trw Inc. Storm choke apparatus for submergible pumps

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2619985A (en) * 1952-12-02 Ujnit
US2532123A (en) * 1945-03-21 1950-11-28 William E Shafer Pressure operated valve
US2925822A (en) * 1955-11-02 1960-02-23 Charles E Wight Valve device
US2991971A (en) * 1957-02-19 1961-07-11 Lever Brothers Ltd Telescopic compensating unit
US3215397A (en) * 1961-12-01 1965-11-02 Chrysler Corp Servo regulator valve
US4021137A (en) * 1975-09-24 1977-05-03 Trw Inc. Storm choke apparatus for submergible pumps

Similar Documents

Publication Publication Date Title
US540003A (en) Blow-off valve for locomotive-boilers
US320380A (en) Check valve for steam boilers
US582445A (en) Safety-valve
US725893A (en) Blow-off cock.
US49063A (en) Improvement in steam-pumps
US715707A (en) Safety-valve.
US936571A (en) Double-valve boiler-check.
US590884A (en) Feeder and safety attach iv
US1000489A (en) Locomotive.
US386811A (en) Nough
US299006A (en) Puppet-valve
US171086A (en) Improvement in throttle-valves
US603043A (en) Blow-off cock
US95382A (en) Improvement in safety-valves for steam-generators
US642007A (en) Throttle-valve.
US1618113A (en) Throttle valve
US449827A (en) Smoke-consumer
US584445A (en) Steam-generator for whistles
US36127A (en) James m
US747843A (en) Valve-operating device for steam-generators.
US72689A (en) Improvement in steam-generatoes
US181624A (en) Steam
US360170A (en) Balance throttle-valve
US334600A (en) Half his eight to
US1204108A (en) Tender-tank valve.