US1021581A - Gas-controller and safety-valve. - Google Patents

Gas-controller and safety-valve. Download PDF

Info

Publication number
US1021581A
US1021581A US1911619814A US1021581A US 1021581 A US1021581 A US 1021581A US 1911619814 A US1911619814 A US 1911619814A US 1021581 A US1021581 A US 1021581A
Authority
US
United States
Prior art keywords
gas
valve
chamber
pressure
projecting
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
Inventor
Franz S Drummond
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Individual
Original Assignee
Individual
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Individual filed Critical Individual
Priority to US1911619814 priority Critical patent/US1021581A/en
Application granted granted Critical
Publication of US1021581A publication Critical patent/US1021581A/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Images

Classifications

    • 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
    • G05D16/0644Control 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 directly on the obturator
    • G05D16/0655Control 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 directly on the obturator using one 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
    • Y10T137/7828Valve head on yoke

Definitions

  • the invention has special reference to de vices of this kind in which an equilibrium automatic valve apparatus is employed.
  • the invention has for its object to provide an improved governing apparatus of this kind for regulating and governing the flow of gas which will readily respond to the variation in pressure of the gas and which will be simple in construction and effective in operation.
  • Figure 1 is a view in vertical section. of the gas regulating apparatus constructed in accordance with this invention.
  • Fig. 2 is a view in vertical section on the line XX, Fig. 1, of the gas controlling apparatus.
  • the gas controlling apparatus constructed in accordance with this invention is formed with an upper and lower section, each preferably of a cylindrical shape, the lower sectionl being provided with a gas inlet port 2 and with an outlet port 3, each threaded for connection with a gas pipe.
  • the section 1 is formed with the oblong chamber 4 with which the inlet port 2 communicates, said chamber opening into the chamber 5 in the bottom of the section 1 through a valve opening 6, which is provided with a pair of valve seats 7 on which are adapted to be alternately seated the valves 8 and 9, connected by a stem 10.
  • the section 1 of the apparatus is preferably provided with a detachable bottom 11 secured in place by means of threaded bolts 12.
  • the top of the section 1 is formed with an annular vertical flange 13.
  • Mounted on the top of the section 1 is a section 14 in the form of a cylindrical casing and formed with a vertical cylindrical inner wall 15 projecting upward from a horizontal annular portion 16 projecting inward from the lower edge of the casing 14,
  • the cylindrical wall 15 being spaced apart from the wall of the casing 14, and forming with the horizontal portion 16 and the wall of the casing 14 an annular chamber 17
  • the lower end of the casing 14 is seated on the top of the section 1 within the annular flange 13 and has a laterally projecting annular flange 18 which rests on top of the annular flange 13, and is secured thereto by threaded bolts 19.
  • the walls of the casing 14 extend some little distance above the top of the wall 15, and are provided with a flanged cover 20 detachably secured in place by means of screws 21.
  • the valve 9 is detachably secured by a screw 22 to the lower cross bar 23 of a ver tical rectangular frame 24, said cross bar 23 being detachably secured to the laterally projecting portions 25 of the frame 24 by bolts 26 and nuts 27.
  • the rectangular frame 24 is mounted at its upper end on a vertical tubular stem 28 projecting and slidable through a weight 29, preferably in the form of a hollow cylindrical body and normally resting on the top of the chamber 4.
  • the tubular stem 28 has projecting into thesame a vertical pin 30 secured to a disk 31 in detachable threaded engagement with the top of the chamber 4.
  • the lower end of the tubular stem 28 is provided with an annular flange 32 which is in detachable threaded engagement therewith.
  • the flange 32 which is on the lower end of the tubular stem 28 is located in the hollow space withweight 33 which rests on the top of the frame 24.
  • a guide pin 34 Projecting into the upper end of the tubular stem 28 is the lower threaded end of a guide pin 34 having a disk-shaped flange 35 between which and the upper end of the tubular stem 28 is clamped a bellshaped float 36 having its depending flange 37 projecting into mercury 38 in the annular chamber 17.
  • the upper end of the guide pin 34 projects into and is slidable in a ver tical socket projection 20' in detachable threaded engagement with the cover 20, the normal position of the parts being as shown in Fig. 1, with the valve 8 resting on its seat and the float in lower position, as shown.
  • valves 8 and 9 By means of the valves 8 and 9, an excessive pressure or dangerously low pressure is avoided.
  • a steady pressure of two inches is provided and it is desired to cut off the gas, should the pressure fall below half an inch the weight of the gas hell with parts attached thereto is such that a half inch pressure will lift them until the flange 32 engages the upper part of the weight 29, which is the high pressure weight and is of such a weight that a pressure exceeding two inches will lift it.
  • the high pressure valve 9 is brought to a partially or wholly closed position, thus restricting or entirely cutting off the flow of gas until the pressure at the outlet port has again dropped to two inches when the valve 9 will automatically open and admit more gas, thus maintaining a steady pressure of two inches on the side so long as that much or more pressure is supplied from the main. Should the pressure fall below the minimum of half an inch the valve 8 will be forced down and will shut off all gas. hen closed by this low pres sure valve, the returning pressure at the inlet port only tends to hold it more firmly in such closed position and no more gas will pass until the valve is opened manually.
  • valves connected by a stem adapted to be alternately seated on one side or the other of said valve opening, an upper chamber having a central opening communicating with the lower chamber, and an annular chamber adapted to be filled with mercury, a vertically movable cylindrical stem having an annular flange at its lower end, a vertical guide pin projecting into said cylindrical chamber, a vertical socket in the top of said upper chamber, a vertical guide pin at the upper end of said cylindrical member projecting into and slidable in said socket, a bell float mounted on the upper end of said cylindrical member and having its depending edge projecting into said annular chamber, a weight mounted on said cylindrical member, a second wei ht normally restmg on a fixed support and having a central opening through which said cylindrical member slidably projects, the

Landscapes

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

Description

F. S. DRUMMOND. GAS CONTROLLER AND SAFETY VALVE. APPLIOATIOK FILED APILB, 1911.
' 1,021,581, Patented Mar. 26, 1912;
1& I 33 16 7 J n 1/ Z I .72 E 1 Z 20- UNITED STATES PATENT OFFICE.
FRANZ S. DRUMMOND, OF BLAINE, WASHINGTON.
GAS-CONTROLLER AND SAFETY-VALVE.
Specification of Letters Patent.
Patented Mar. 26, 1912.
Application filed. April 8, 1911. Serial No. 619,814.
' regulating said flow-by the variations in the pressure thereof arising from high or low pressure of the gas.
The invention has special reference to de vices of this kind in which an equilibrium automatic valve apparatus is employed.
The invention has for its object to provide an improved governing apparatus of this kind for regulating and governing the flow of gas which will readily respond to the variation in pressure of the gas and which will be simple in construction and effective in operation.
In the accompanying drawings :Figure 1 is a view in vertical section. of the gas regulating apparatus constructed in accordance with this invention. Fig. 2 is a view in vertical section on the line XX, Fig. 1, of the gas controlling apparatus.
The gas controlling apparatus constructed in accordance with this invention is formed with an upper and lower section, each preferably of a cylindrical shape, the lower sectionl being provided with a gas inlet port 2 and with an outlet port 3, each threaded for connection with a gas pipe. The section 1 is formed with the oblong chamber 4 with which the inlet port 2 communicates, said chamber opening into the chamber 5 in the bottom of the section 1 through a valve opening 6, which is provided with a pair of valve seats 7 on which are adapted to be alternately seated the valves 8 and 9, connected by a stem 10.
The section 1 of the apparatus, as shown, is preferably provided with a detachable bottom 11 secured in place by means of threaded bolts 12. The top of the section 1 is formed with an annular vertical flange 13. Mounted on the top of the section 1 is a section 14 in the form of a cylindrical casing and formed with a vertical cylindrical inner wall 15 projecting upward from a horizontal annular portion 16 projecting inward from the lower edge of the casing 14,
the cylindrical wall 15 being spaced apart from the wall of the casing 14, and forming with the horizontal portion 16 and the wall of the casing 14 an annular chamber 17 The lower end of the casing 14 is seated on the top of the section 1 within the annular flange 13 and has a laterally projecting annular flange 18 which rests on top of the annular flange 13, and is secured thereto by threaded bolts 19. The walls of the casing 14 extend some little distance above the top of the wall 15, and are provided with a flanged cover 20 detachably secured in place by means of screws 21.
The valve 9 is detachably secured by a screw 22 to the lower cross bar 23 of a ver tical rectangular frame 24, said cross bar 23 being detachably secured to the laterally projecting portions 25 of the frame 24 by bolts 26 and nuts 27. The rectangular frame 24 is mounted at its upper end on a vertical tubular stem 28 projecting and slidable through a weight 29, preferably in the form of a hollow cylindrical body and normally resting on the top of the chamber 4. The tubular stem 28 has projecting into thesame a vertical pin 30 secured to a disk 31 in detachable threaded engagement with the top of the chamber 4. The lower end of the tubular stem 28 is provided with an annular flange 32 which is in detachable threaded engagement therewith. The flange 32 which is on the lower end of the tubular stem 28 is located in the hollow space withweight 33 which rests on the top of the frame 24.
Projecting into the upper end of the tubular stem 28 is the lower threaded end of a guide pin 34 having a disk-shaped flange 35 between which and the upper end of the tubular stem 28 is clamped a bellshaped float 36 having its depending flange 37 projecting into mercury 38 in the annular chamber 17. The upper end of the guide pin 34 projects into and is slidable in a ver tical socket projection 20' in detachable threaded engagement with the cover 20, the normal position of the parts being as shown in Fig. 1, with the valve 8 resting on its seat and the float in lower position, as shown.
By means of the valves 8 and 9, an excessive pressure or dangerously low pressure is avoided. For example, when a steady pressure of two inches is provided and it is desired to cut off the gas, should the pressure fall below half an inch the weight of the gas hell with parts attached thereto is such that a half inch pressure will lift them until the flange 32 engages the upper part of the weight 29, which is the high pressure weight and is of such a weight that a pressure exceeding two inches will lift it. In the latter case, the high pressure valve 9 is brought to a partially or wholly closed position, thus restricting or entirely cutting off the flow of gas until the pressure at the outlet port has again dropped to two inches when the valve 9 will automatically open and admit more gas, thus maintaining a steady pressure of two inches on the side so long as that much or more pressure is supplied from the main. Should the pressure fall below the minimum of half an inch the valve 8 will be forced down and will shut off all gas. hen closed by this low pres sure valve, the returning pressure at the inlet port only tends to hold it more firmly in such closed position and no more gas will pass until the valve is opened manually.
What I claim is In a gas regulator of the character described, a lower chamber and an upper chamber, the lower chamber being provided with an inlet port and an outlet port, and a partition between said ports having a double seated valve opening, a pair of Copies of this patent may be obtained for five cents each, by addressing the Commissioner of Patents.
valves "connected by a stem adapted to be alternately seated on one side or the other of said valve opening, an upper chamber having a central opening communicating with the lower chamber, and an annular chamber adapted to be filled with mercury, a vertically movable cylindrical stem having an annular flange at its lower end, a vertical guide pin projecting into said cylindrical chamber, a vertical socket in the top of said upper chamber, a vertical guide pin at the upper end of said cylindrical member projecting into and slidable in said socket, a bell float mounted on the upper end of said cylindrical member and having its depending edge projecting into said annular chamber, a weight mounted on said cylindrical member, a second wei ht normally restmg on a fixed support and having a central opening through which said cylindrical member slidably projects, the
flange at the lower end of said member being normally out of engagement with and adapted to be lifted with said cylindrical member into engagement with said weight, and a frame connecting said cylindrical member with said pair of valves in the lower chamber.
In testimony whereof I hereunto afiix my signature in presence of two witnesses.
FRANZ s. DRUMMOND.
Witnesses:
J. W. G. MERRITT, C. W. LITTON.
Washington, I). G.
US1911619814 1911-04-08 1911-04-08 Gas-controller and safety-valve. Expired - Lifetime US1021581A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
US1911619814 US1021581A (en) 1911-04-08 1911-04-08 Gas-controller and safety-valve.

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
US1911619814 US1021581A (en) 1911-04-08 1911-04-08 Gas-controller and safety-valve.

Publications (1)

Publication Number Publication Date
US1021581A true US1021581A (en) 1912-03-26

Family

ID=3089878

Family Applications (1)

Application Number Title Priority Date Filing Date
US1911619814 Expired - Lifetime US1021581A (en) 1911-04-08 1911-04-08 Gas-controller and safety-valve.

Country Status (1)

Country Link
US (1) US1021581A (en)

Similar Documents

Publication Publication Date Title
US2359111A (en) Automatic vent for fluid pressure regulators
US91599A (en) Improvement in low-water indicators
US746755A (en) Pressure-regulator.
US1816431A (en) Gas regulator
US354017A (en) Gas-regulator
US323364A (en) pfaudler
US372036A (en) Half to feank eoueche
US1075354A (en) Gas-regulator.
US411875A (en) Safety-pressure gas-regulator
US1149845A (en) Valve.
US408071A (en) Gas-governor
US417134A (en) Gas-pressure regulator
US98697A (en) Improvement in safety-valves
US417135A (en) Gas-pressure regulator
US387181A (en) Geobge pobter
US1019617A (en) Fluid-pressure regulator.
US1090221A (en) Emergency cut-off.
US544027A (en) Water-supply regulator
US1214445A (en) Reducing-valve.
US779599A (en) Air, water, and vacuum valve.
US407645A (en) Gas governor or regulator
US35104A (en) Improved balance pressure-regulator for steam, water, or gas
US927492A (en) Water-pressure-regulating valve.
US838327A (en) Automatic safety-valve.
US975120A (en) Automatic valve.