US836258A - Reducing-valve. - Google Patents

Reducing-valve. Download PDF

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Publication number
US836258A
US836258A US1906301918A US836258A US 836258 A US836258 A US 836258A US 1906301918 A US1906301918 A US 1906301918A US 836258 A US836258 A US 836258A
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Prior art keywords
valve
steam
diverting
pressure
organ
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Expired - Lifetime
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Josef Huebner
Isidor Mayer
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    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05DSYSTEMS FOR CONTROLLING OR REGULATING NON-ELECTRIC VARIABLES
    • G05D16/00Control of fluid pressure
    • G05D16/04Control of fluid pressure without auxiliary power
    • G05D16/06Control of fluid pressure without auxiliary power the sensing element being a flexible membrane, yielding to pressure, e.g. diaphragm, bellows, capsule
    • G05D16/063Control of fluid pressure without auxiliary power the sensing element being a flexible membrane, yielding to pressure, e.g. diaphragm, bellows, capsule the sensing element being a membrane
    • G05D16/0675Control of fluid pressure without auxiliary power the sensing element being a flexible membrane, yielding to pressure, e.g. diaphragm, bellows, capsule the sensing element being a membrane the membrane acting on the obturator through a lever
    • G05D16/0683Control of fluid pressure without auxiliary power the sensing element being a flexible membrane, yielding to pressure, e.g. diaphragm, bellows, capsule the sensing element being a membrane the membrane acting on the obturator through a lever using a spring-loaded membrane
    • 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
    • Y10T137/7722Line condition change responsive valves
    • Y10T137/7781With separate connected fluid reactor surface
    • Y10T137/7793With opening bias [e.g., pressure regulator]
    • Y10T137/7822Reactor surface closes chamber
    • Y10T137/783Reactor operatively connected to valve by mechanical movement

Definitions

  • Pressure-reducing valves wherein the passage for the fluid is regulated by a tubular or piston-slide valve have the disadvantage of not being capable of maintaining the adj usted reduced pressure during working. This pressure mostly falls at the moment when consumption begins but in any case when a certain amount of steam has been used and to a greater extent according to the greater consumption. This is due to the fact that the high-pressure steam flowing into the lowpressure steam-chamber with increasing speed, especially when the consumption is great, acts with a correspondingly-increasing closing effect on the regulating-organs through dynamic return thrust, so that the regulating-organs of the valves open'an insufficient passage.
  • the device that forms the subject of the present invention obviates the said disadvantage in pressure-reducing valves furnished with tubular or piston slides. Furnished with this device these valves are capable whatever the extent of the consumption of opening the largest possible passage for the flowing steamthat is, to act precisely as if the steam conveyed to the chamber where it is consumed were to flow in unthrottled through a completely-opened valve out of a steam-boiler the pressure in which was the same as the desired adjusted low pressure.
  • the essential feature of this device is that the steam flowing into the reduced-pressure chamber is conveyed onto a diverting organ which. diverts it or reverses the direction of iiow.
  • a forward thrust' is'produced which modi'lies or, if desired, can be arranged to exceed the above-described objectionable pressure of the back thrust.
  • Figure 1 is a sectional elevation of a reducing-valve constructed according to this invention
  • Fig. 2 is a similar view of a slightly-modified form of valve.
  • the pressure-reducing valve shown in Fig. l consists of a box a, arranged in the casing and furnished with inlet-openings.
  • a tubular slide c acting as a regulating organ and furnished with openings b, which coincide, is fitted steam-tight.
  • This tubular slide c is pushed downward in the known manner by a weighted lever d, so that the inlet-openings in the box a, coincide with the openings t in the slide c.
  • the slide-valve c carries the valve e, which closes and effects a complete shutting off of steam when in the coursel of Working the quantity of steam taken for consumption falls to zero.
  • the valve e carries the diverting organ f, which is dished at the top and is screwed onto a central screw-pin.
  • This device f forces the steam flowing against it and spreading out in v the form of a funnel to change the direction of its flow, as indicated by the arrows. The action of this device will be at once seen from the drawings.
  • the diverting organf is screwed into a tubular extension of the tubular slide c, on the central pin Z of which is the cone k.
  • This action can be regulated in a desirable manner by introducing a portion only of the steam into the diverting organ, the remainder being allowed to fiow away undiverted into the reduced -pressure chamber.
  • Fig. l the form of the invention shown in Fig.
  • Fig. l shows, moreover, an arrangement for adjusting the height of the diverting organ ffrom outside.
  • the diverting organ is made to slide, but not, however, to turn in the iirmly-screwed-in box t, by means of the projections t, which extend into the groovesj.
  • the tubular slide c By turning the tubular slide c, preferably by means of the supporting-bracket of the released lever d', the screwing is effected, and thereby the adjustment to the proper height of the diverting organ f, without opening the casing.
  • a reducing-valve the combination with a slide-valve adapted to regulate the pressure and a stop-valve formed integral therewith, of a screw-threaded extension on the valve-spindle, a dished plate or deiiector mounted on the said extension and adapted to be adjusted by rotating'the valves, and a guide-box arranged to guide the deiiector axially but prevent its rotation during adjustment.
  • a slide-valve adapted to regulate the pressure and a stop-valve, of a dished rim surrounding said stop-valve and so arranged as to divert a portion only of the outi'lowing pressure medium, and means for adjusting the rim to vary the proportion of the diverted to the undivertedoutflowing pressure medium.

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  • Physics & Mathematics (AREA)
  • Fluid Mechanics (AREA)
  • General Physics & Mathematics (AREA)
  • Engineering & Computer Science (AREA)
  • Automation & Control Theory (AREA)
  • Lift Valve (AREA)

Description

No. 836,258. PATENTED NOV. 20, 1906'.
J. HBNER &-YI. MAYBR.
RI'IDUGINGrA VALVE.
APPLIoATIoN FILED rms. 19. 190e.
mf/fw g5.
JOSEF HBNER AND ISIDOR MAYER, OF VIENNA, AUSTRIA-HUNGARY.
REDUClNG-VALVE.
Specication of Letters Patent.
Patented Nov. 20, 1906.
Application filed February 19, 1906. Serial No. 301,918.
To all whom, t may concern:
Be it known that we, JOSEF HBNER and IsIDoR MAYER, residing at XIX/6 Muthgasse 64, (Staatbahnhof Heiligenstadt,) Vienna, Austria-Hungary, a subject of the Emperor of Austria-Hungary, have invented certain new and useful Improvements in or Connected with Reducing-Valves; and we do hereby declare the following t'o be a full, clear, and exact description of the invention, such as will enable others skilled in the art to which it appertains to make and use the same.
Pressure-reducing valves wherein the passage for the fluid is regulated by a tubular or piston-slide valve have the disadvantage of not being capable of maintaining the adj usted reduced pressure during working. This pressure mostly falls at the moment when consumption begins but in any case when a certain amount of steam has been used and to a greater extent according to the greater consumption. This is due to the fact that the high-pressure steam flowing into the lowpressure steam-chamber with increasing speed, especially when the consumption is great, acts with a correspondingly-increasing closing effect on the regulating-organs through dynamic return thrust, so that the regulating-organs of the valves open'an insufficient passage.
The device that forms the subject of the present invention obviates the said disadvantage in pressure-reducing valves furnished with tubular or piston slides. Furnished with this device these valves are capable whatever the extent of the consumption of opening the largest possible passage for the flowing steamthat is, to act precisely as if the steam conveyed to the chamber where it is consumed were to flow in unthrottled through a completely-opened valve out of a steam-boiler the pressure in which was the same as the desired adjusted low pressure.
The essential feature of this device is that the steam flowing into the reduced-pressure chamber is conveyed onto a diverting organ which. diverts it or reverses the direction of iiow. Hereby a forward thrust' is'produced which modi'lies or, if desired, can be arranged to exceed the above-described objectionable pressure of the back thrust. l
In the accompanying drawings, Figure 1 is a sectional elevation of a reducing-valve constructed according to this invention, and Fig. 2 is a similar view of a slightly-modified form of valve.
The pressure-reducing valve shown in Fig. l consists of a box a, arranged in the casing and furnished with inlet-openings. In this box a tubular slide c, acting as a regulating organ and furnished with openings b, which coincide, is fitted steam-tight. This tubular slide c is pushed downward in the known manner by a weighted lever d, so that the inlet-openings in the box a, coincide with the openings t in the slide c. The slide-valve c carries the valve e, which closes and effects a complete shutting off of steam when in the coursel of Working the quantity of steam taken for consumption falls to zero.
The valve e carries the diverting organ f, which is dished at the top and is screwed onto a central screw-pin. This device f forces the steam flowing against it and spreading out in v the form of a funnel to change the direction of its flow, as indicated by the arrows. The action of this device will be at once seen from the drawings.
The steam iiowing downward exercises against the upper surface g of the medium pressure cylinder h a dynamic back thrust which increases with the increase in the consumption of steam and produces the objectionable closing force described at the outset and throttles the passage. In consequence, however, of the arrangement of the diverting device f a novel forward-thrust action which increases with the consumption of steam is caused by the steam flowing out against the device f and which action being in the opposite direction compensates the objectionable action of the back thrust previously described and if the diverting device be suitably formed even exceeds it, and therefore is at any time capable of maintaining the necessary opening-that is, up to the fullest extent of the consumption.
In the form of the invention shown in Fig. 2 the diverting organf is screwed into a tubular extension of the tubular slide c, on the central pin Z of which is the cone k. This action can be regulated in a desirable manner by introducing a portion only of the steam into the diverting organ, the remainder being allowed to fiow away undiverted into the reduced -pressure chamber. By
ICO
varying the two parts of the stream flowing in'any desired extent of opening can be e'ffected by the diverting device= This regulating of the opening action is effected by placing the diverting device at a suitable height. The higher the diverting organ f, Fig. l, is screwed in the more steam will be conveyed onto it and the greater will be the forward-thrust action. Inversely, the lower the diverting organ f is screwed down the more steam will 'flow away undiverted. On the other hand, in the form of the invention shown in Fig. 2 the lower the diverting organ f is screwed down the smaller will be the annular space remaining between the opening 7c and the conical head of the pin l, and thereby the portion of undiverted steam, the greater, on the contrary, will be the passage-opening in the diverting organ f, and thereby the portion and the forward-thrust action of the undiverted part of the quantity of steam. The reverse takes place of course when the diverting organ is screwed up high, Fig. 2. In all the adjusted positions there remains in every case, as shown in the drawing Fig. 2, the same extent of passage for the total quantity of steam iowing against the diverting organ f and the circular space.
Fig. l shows, moreover, an arrangement for adjusting the height of the diverting organ ffrom outside. For this purpose the diverting organ is made to slide, but not, however, to turn in the iirmly-screwed-in box t, by means of the projections t, which extend into the groovesj. By turning the tubular slide c, preferably by means of the supporting-bracket of the released lever d', the screwing is effected, and thereby the adjustment to the proper height of the diverting organ f, without opening the casing.
The constructional form of the diverting device as well as the nature of the fixing or connecting of the saine with the regulating device for the pressure-reducing'valve are obviously capable of considerable variation.
It will be readily understood that the ei'lect chamber and partially reverse the direction f oi' flow and thereby produce a forward thrust to counteract the torce of the dynamic back thrust of the pressure medium.
2. In a reducing-valve the combination with a slide-valve adapted to regulate the -pressure and a stop-valve, of a dished plate or deflector surrounding said stop-valve adapted to change the direction of flow of the outtlowing pressure medium.
v3. In a reducing-valve the combination with a slide-valve adapted to regulate the pressure and a stop-valve formed integral therewith, of a screw-threaded extension on the valve-spindle, a dished plate or deiiector mounted on the said extension and adapted to be adjusted by rotating'the valves, and a guide-box arranged to guide the deiiector axially but prevent its rotation during adjustment.
4. In a reducing-valve, the combination. with a slide-valve adapted to regulate the pressure and a stop-valve, of a dished rim surrounding said stop-valve and so arranged as to divert a portion only of the outi'lowing pressure medium, and means for adjusting the rim to vary the proportion of the diverted to the undivertedoutflowing pressure medium.
In testimony whereof we have affixed our signatures 1n presence of two witnesses.
JOSEF HBNER. ISIDOR MAYER.
Witnesses:
ALvEsTo S. HoGUE, AUGUST FUGGER.
US1906301918 1906-02-19 1906-02-19 Reducing-valve. Expired - Lifetime US836258A (en)

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Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5735309A (en) * 1996-04-29 1998-04-07 Detroit Diesel Corporation Low pressure gaseous fuel pressure regulator for turbocharged gaseous fuel engines
US20080258095A1 (en) * 2007-04-20 2008-10-23 Fisher Controls International Llc Adjustable Disc Mechanism for Gas Regulator
US20080257427A1 (en) * 2007-04-20 2008-10-23 Fisher Controls International Llc Service Regulator with Improved Boost Performance
US20080257423A1 (en) * 2007-04-20 2008-10-23 Fisher Controls International Llc Secondary Seat for Gas Regulator
US20080257424A1 (en) * 2007-04-20 2008-10-23 Fisher Controls International Llc Flow Valve Port for a Gas Regulator
US20080257418A1 (en) * 2007-04-20 2008-10-23 Fisher Controls International Llc Pressure Averaging Sense Tube For Gas Regulator
US20080258096A1 (en) * 2007-04-20 2008-10-23 Fisher Controls International Llc Gas Regulator Flow Boost Cartridge

Cited By (13)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5735309A (en) * 1996-04-29 1998-04-07 Detroit Diesel Corporation Low pressure gaseous fuel pressure regulator for turbocharged gaseous fuel engines
US20080258095A1 (en) * 2007-04-20 2008-10-23 Fisher Controls International Llc Adjustable Disc Mechanism for Gas Regulator
US20080257427A1 (en) * 2007-04-20 2008-10-23 Fisher Controls International Llc Service Regulator with Improved Boost Performance
US20080257423A1 (en) * 2007-04-20 2008-10-23 Fisher Controls International Llc Secondary Seat for Gas Regulator
US20080257424A1 (en) * 2007-04-20 2008-10-23 Fisher Controls International Llc Flow Valve Port for a Gas Regulator
US20080257418A1 (en) * 2007-04-20 2008-10-23 Fisher Controls International Llc Pressure Averaging Sense Tube For Gas Regulator
US20080258096A1 (en) * 2007-04-20 2008-10-23 Fisher Controls International Llc Gas Regulator Flow Boost Cartridge
US8156958B2 (en) 2007-04-20 2012-04-17 Fisher Controls International Llc Service regulator with improved boost performance
AU2008242775B2 (en) * 2007-04-20 2012-07-05 Fisher Controls International Llc Adjustable disc mechanism for gas regulator
US8256452B2 (en) 2007-04-20 2012-09-04 Fisher Controls International Llc Gas regulator flow boost cartridge
AU2008242775C1 (en) * 2007-04-20 2012-11-29 Fisher Controls International Llc Adjustable disc mechanism for gas regulator
US8336574B2 (en) 2007-04-20 2012-12-25 Fisher Controls International Llc Pressure averaging sense tube for gas regulator
US8500092B2 (en) 2007-04-20 2013-08-06 Fisher Controls International Llc Secondary seat for gas regulator

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