US949285A - Thermostatic controller for car-heating systems. - Google Patents

Thermostatic controller for car-heating systems. Download PDF

Info

Publication number
US949285A
US949285A US31122706A US1906311227A US949285A US 949285 A US949285 A US 949285A US 31122706 A US31122706 A US 31122706A US 1906311227 A US1906311227 A US 1906311227A US 949285 A US949285 A US 949285A
Authority
US
United States
Prior art keywords
valve
discharge
inlet
valves
car
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
US31122706A
Inventor
James F Mcelroy
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.)
Consolidated Car Heating Co Inc
Original Assignee
Consolidated Car Heating Co Inc
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 Consolidated Car Heating Co Inc filed Critical Consolidated Car Heating Co Inc
Priority to US31122706A priority Critical patent/US949285A/en
Application granted granted Critical
Publication of US949285A publication Critical patent/US949285A/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
    • G05D23/00Control of temperature
    • G05D23/01Control of temperature without auxiliary power
    • G05D23/02Control of temperature without auxiliary power with sensing element expanding and contracting in response to changes of temperature
    • G05D23/08Control of temperature without auxiliary power with sensing element expanding and contracting in response to changes of temperature with bimetallic element

Definitions

  • This invention relates to means for controlling car-heating' and other steam-heating systems and its object is to provide an improved arrangement for conjointly controlling the inlet and discharge of the radiator, according to which the inletand discharge-valves are'yieldingly connected, and so disposed that the inlet-valve closes before the discharge-valve.
  • the construction of such a controller is preferably such that the inlet-valve or both the inletand discharge-valves are located at or above the level of the car floor, which therefore requires a long controller-casing in order to bring the discharge-orilice and thermostat below the ear fioor and exposed to the outside air.
  • Figure 1 represents a vertical section of a thermostatie controller embodying my invention.
  • Fig. Q represents a cross-section of a car showing the controllers and piping.
  • I? ig. 3 represents an enlarged section transverse to the plane of Fig. 1, showing the valves and valve-chambers.
  • 10 is the trap or thermostat-casing having an open mouth or cage at its lower end in which is located the expansible fluid cell 11 normally collapsed by a spring 12 and connecting by a rod 13 which passes upwardly through the easing with the steam inlet and discharge valves 14:, 15.
  • Steam passes from the main steampipe 1G extending longitudinally under the ear through lateral branch pipes 17 and risers 18 past the hand-valves 19 to the valve-easings Q0 at the upper' ends 0f the two controllers.
  • the steam enters an ante-chamber 21 and passes into an inlet-chamber 22 through a port in a partition 23 separating the said chambers,
  • Chamber Q2 connects with a branch pipe Q4; supplying the car radiator 25, and ⁇ the lower 0r discharge end of the radiator connects by a branch-pipe 2G with a chamber 27 in the valve-easing seen in Fig. and leading to a port in a partition .28 controlled by the discharge-valve 15.
  • the inlet and discharge of the radiator are both controlled by the thermostat 11.
  • the body of discharge-valve 15 is connected with stem 13 by a ball-and-soclret joint Q9 permitting a slight amount of universal movement of said stem with respect to the valve.
  • This joint is made by first cupping the valve-body to lit the ball and then spinning the edges of the cup over upon the ball, the result being a joint without lost motion.
  • the valve-body is formeel with wings 30 for guiding it in the port in partition 28, and to the valvebody is pinned an upwardly-extending stem 3l having a head located within the cylindrical body of inlet-valve 14. The latter is guided within an aperture formed in a partition 32 separating the inlet and discharge chambers 22 and 27, and is further guided by wings 33 below said aperture.
  • valve 11 Between the valve 11 and the head of stem 31 is interposed a spring SI1.
  • inlet-valve 14 closes first, slightly before the dischargevalve 15, and spring 34 then permits further upward movement of the thermostat-stem and closure of the discharge-valve 15. Both valves are capable of limited universal movement and their even seating is thus promoted.
  • the above arrangement not only permits proper seating of both the inletand discharge-valves of the radiator but it also closes the inlet-valve first and the dischargevalve last when steam has so lilled the radiator as to have reached the mouth of the trap-casing 10 and expanded the thermostat. IVhen the thermostat has sufficiently cooled down to withdraw the valves from their seats, the discharge-valve 15 opens lirst and the inlet-valve 14 last. Thereby I avoid the accumulation of any considerable steampressure within the radiator at times of steam-inlet, or the formation of any considerable vacuum when the inlet-valve is closed.
  • the foregoing arrangement is such that the inlet-valve 14 will pass through the port in partition 28, and the stem 13 and both valves connected therewith may, together with the thermostat 1l, be withdrawn downwardly through the mouth of the casing by unfastening the lower half of the thermostat-cage, which opens in the usual manner.
  • the pipe or neck forming its body is embraced by a cast steam-jacket having ⁇ a steam-chamber 36 connecting by a short pipe-section 37 with the branch steam-pipe 17 so that live steam is supplied to the jacket and warms the lower part of the controller-casing, thus preventing freezing of the discharge water in cold weather.
  • This jacket has a close but not friction-tightfit upon the neck of the trap casing so that while it affords a hot metallic contact it also enables the lower art of the Vtrap-casing to be withdrawn rom said jacket by unscrewing the neck of the casing from valve-casing 20.
  • This jacket and the short pipe 37 also afford a support for the lower part of the trap casing against lateral movement, thereby effectively bracing it.
  • a controller for steam-heating systems comprising, in combination with the steam heater, a thermo-stat subject to the discharge of said heater, an inlet-valve and a discl'iarge-valve controlling respectively the supply of steam to the heater and the discharge therefrom, and means operatively connecting said thermostat with the valves, said means including ⁇ a yielding connection between said valves permitting one of said valves to close after the other is seated. 7(7) Ll.
  • a thermostatic controller comprising inlet and discharge chambers, a port leading into the inlet-chamber, a second port leading out of the discharge-chamber, a 'thermostatstein, inlet and discharge valves connected with said stem and controlling the respective ports, a spring interposed between said valves and permitting the discharge-valve to close after the inlet-valve is seated, .and a thermostat connected with said stem and subject to the -discharge from said dischargeport.
  • a thermostatic controller comprising a valve-casing having inlet and discharge chambers and ports, a thermostat subject to the outflow from the discharge-port and having a stem, a discharge-valve controlling said discharge-port and having a universal connection with said stein, a second stem attached to said valvevand having a head, an inlet-valve controlling said inlet-port and having a hollow body inclosing said head, and a spring inclosed in said body and interposed between said head and inlet-valve.

Landscapes

  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Engineering & Computer Science (AREA)
  • Automation & Control Theory (AREA)
  • Temperature-Responsive Valves (AREA)

Description

APPLICATION FILED APR.12,1906A Patented Feb. 15, 1910.
Ewa ud l 1 wou UNITED STATES PATENT OFFICE.
JAMES F. MCELROY, OF ALBANY, NEW YORK, ASSIGNOR TO CONSOLIDATED CAR HEAT'- ING- COMPANY, OF ALBANY, NEW YORK, A CORPORATION OF WEST VIRGINIA.
THERMOSTATIC CONTROLLER FOR CAR-HEATING SYSTEMS.
Specification of Letters Patent.
Application 'filed April 12, 1906.
Patented Feb. 15, 1910.
sei-m1 No. 311,227.
To all 'whom it 'may concern:
Be it known that I, J Arms F. MCELROY, a citizen of the United States, residing at Albany, in the county of Albany and State of New York, have invented certain new and useful Improvements in Thermostatie Controllers for Car-Heating Systems, of which the followingspecification and accompanying drawings illustrate the invention in a forni which I now regard as the best out of the various forms in which it may be embodied.
This invention relates to means for controlling car-heating' and other steam-heating systems and its object is to provide an improved arrangement for conjointly controlling the inlet and discharge of the radiator, according to which the inletand discharge-valves are'yieldingly connected, and so disposed that the inlet-valve closes before the discharge-valve. The construction of such a controller is preferably such that the inlet-valve or both the inletand discharge-valves are located at or above the level of the car floor, which therefore requires a long controller-casing in order to bring the discharge-orilice and thermostat below the ear fioor and exposed to the outside air.
Of the accompanying drawings, Figure 1 represents a vertical section of a thermostatie controller embodying my invention. Fig. Q represents a cross-section of a car showing the controllers and piping. I? ig. 3 represents an enlarged section transverse to the plane of Fig. 1, showing the valves and valve-chambers.
The same reference characters represent the same parts in all the views.
In the drawings, 10 is the trap or thermostat-casing having an open mouth or cage at its lower end in which is located the expansible fluid cell 11 normally collapsed by a spring 12 and connecting by a rod 13 which passes upwardly through the easing with the steam inlet and discharge valves 14:, 15. Steam passes from the main steampipe 1G extending longitudinally under the ear through lateral branch pipes 17 and risers 18 past the hand-valves 19 to the valve-easings Q0 at the upper' ends 0f the two controllers. In this casing the steam enters an ante-chamber 21 and passes into an inlet-chamber 22 through a port in a partition 23 separating the said chambers,
under control of the inlet-valve 14. Chamber Q2 connects with a branch pipe Q4; supplying the car radiator 25, and `the lower 0r discharge end of the radiator connects by a branch-pipe 2G with a chamber 27 in the valve-easing seen in Fig. and leading to a port in a partition .28 controlled by the discharge-valve 15. Thus the inlet and discharge of the radiator are both controlled by the thermostat 11.
The body of discharge-valve 15 is connected with stem 13 by a ball-and-soclret joint Q9 permitting a slight amount of universal movement of said stem with respect to the valve. This joint is made by first cupping the valve-body to lit the ball and then spinning the edges of the cup over upon the ball, the result being a joint without lost motion. Above the valve 15 the valve-body is formeel with wings 30 for guiding it in the port in partition 28, and to the valvebody is pinned an upwardly-extending stem 3l having a head located within the cylindrical body of inlet-valve 14. The latter is guided within an aperture formed in a partition 32 separating the inlet and discharge chambers 22 and 27, and is further guided by wings 33 below said aperture. Between the valve 11 and the head of stem 31 is interposed a spring SI1. During an upward closing movement of stem 13 caused by expansion of the thermostat, inlet-valve 14 closes first, slightly before the dischargevalve 15, and spring 34 then permits further upward movement of the thermostat-stem and closure of the discharge-valve 15. Both valves are capable of limited universal movement and their even seating is thus promoted.
The above arrangement not only permits proper seating of both the inletand discharge-valves of the radiator but it also closes the inlet-valve first and the dischargevalve last when steam has so lilled the radiator as to have reached the mouth of the trap-casing 10 and expanded the thermostat. IVhen the thermostat has sufficiently cooled down to withdraw the valves from their seats, the discharge-valve 15 opens lirst and the inlet-valve 14 last. Thereby I avoid the accumulation of any considerable steampressure within the radiator at times of steam-inlet, or the formation of any considerable vacuum when the inlet-valve is closed.
the same thermostat, or by a thermostat of the kind described. Those present improvements which relate to the valves are directed more especially to the yielding connection and to t-he closure of the discharge-vaive subsequent to that of the inlet-valve.
It will be seen that the foregoing arrangement is such that the inlet-valve 14 will pass through the port in partition 28, and the stem 13 and both valves connected therewith may, together with the thermostat 1l, be withdrawn downwardly through the mouth of the casing by unfastening the lower half of the thermostat-cage, which opens in the usual manner. 1 Near the lower end of the controller-casing 10, the pipe or neck forming its body is embraced by a cast steam-jacket having` a steam-chamber 36 connecting by a short pipe-section 37 with the branch steam-pipe 17 so that live steam is supplied to the jacket and warms the lower part of the controller-casing, thus preventing freezing of the discharge water in cold weather. This jacket has a close but not friction-tightfit upon the neck of the trap casing so that while it affords a hot metallic contact it also enables the lower art of the Vtrap-casing to be withdrawn rom said jacket by unscrewing the neck of the casing from valve-casing 20. This jacket and the short pipe 37 also afford a support for the lower part of the trap casing against lateral movement, thereby effectively bracing it. These latter details however, while preferred, are not essential to my invention.
What I claim as new and desire to secure by Letters Patent is: l 1. In a steam heating system, the combination with a heater, of positively-seatingl valves controlling the heater inlet and discharge, a thermostat subject to the discharge of the heater and operatively connected with said valves, and a spring permitting the discharge valve to close after the inlet valve is seated.
2. In a steam heating system, the combination with a heater, of a valve controlling the heater inlet, a second valve controlling the heater discharge, means permitting the latter valve to close after the closing of the inlet valve, and a thermostat located posteri or to the discharge valve in the line of the outflow, and operatively connected with said valves.
3. A controller for steam-heating systems comprising, in combination with the steam heater, a thermo-stat subject to the discharge of said heater, an inlet-valve and a discl'iarge-valve controlling respectively the supply of steam to the heater and the discharge therefrom, and means operatively connecting said thermostat with the valves, said means including` a yielding connection between said valves permitting one of said valves to close after the other is seated. 7(7) Ll. A thermostatic controller comprising inlet and discharge chambers, a port leading into the inlet-chamber, a second port leading out of the discharge-chamber, a 'thermostatstein, inlet and discharge valves connected with said stem and controlling the respective ports, a spring interposed between said valves and permitting the discharge-valve to close after the inlet-valve is seated, .and a thermostat connected with said stem and subject to the -discharge from said dischargeport.
A thermostatic controller comprising a valve-casing having inlet and discharge chambers and ports, a thermostat subject to the outflow from the discharge-port and having a stem, a discharge-valve controlling said discharge-port and having a universal connection with said stein, a second stem attached to said valvevand having a head, an inlet-valve controlling said inlet-port and having a hollow body inclosing said head, and a spring inclosed in said body and interposed between said head and inlet-valve.
In testimony whereof I have hereunto set my hand in the presence of two subscribing witnesses, this 10th day of April, 1906.
JAMES F. MCELROY.
US31122706A 1906-04-12 1906-04-12 Thermostatic controller for car-heating systems. Expired - Lifetime US949285A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
US31122706A US949285A (en) 1906-04-12 1906-04-12 Thermostatic controller for car-heating systems.

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
US31122706A US949285A (en) 1906-04-12 1906-04-12 Thermostatic controller for car-heating systems.

Publications (1)

Publication Number Publication Date
US949285A true US949285A (en) 1910-02-15

Family

ID=3017699

Family Applications (1)

Application Number Title Priority Date Filing Date
US31122706A Expired - Lifetime US949285A (en) 1906-04-12 1906-04-12 Thermostatic controller for car-heating systems.

Country Status (1)

Country Link
US (1) US949285A (en)

Similar Documents

Publication Publication Date Title
US1198918A (en) Steam-trap for vapor-heating systems.
US398719A (en) Steam-trap
US868772A (en) Low-pressure fluid-heating system.
US758437A (en) Automatic supply-regulator
US949286A (en) Steam-heat regulator.
US1109675A (en) Low-pressure steam-heating system.
US1122781A (en) Heating system.
US1235508A (en) Heating system.
US604335A (en) Steam-heating system
US2255904A (en) Suction-vapor heating system
US792700A (en) Trap.
US632937A (en) Steam-trap.
US572254A (en) Oab heating apparatus
US700569A (en) Valve device for steam-heating systems.
US961300A (en) Steam-regulating valve.
US557264A (en) Steam sepaeatoe
US1033896A (en) Water-heater.
US477464A (en) Heating apparatus for cars
US771628A (en) Adjustable low-pressure heating system.
US838641A (en) Heating system.
US990760A (en) Steam-heating apparatus.
US2331407A (en) Vapor heating system
US996271A (en) Adjustable automatic steam-regulator.
US884287A (en) Regulating device for steam-heating systems.
US1376818A (en) Thermostatic valve