US1096493A - Load-regulated governing device for fluid-pressure. - Google Patents

Load-regulated governing device for fluid-pressure. Download PDF

Info

Publication number
US1096493A
US1096493A US71665712A US1912716657A US1096493A US 1096493 A US1096493 A US 1096493A US 71665712 A US71665712 A US 71665712A US 1912716657 A US1912716657 A US 1912716657A US 1096493 A US1096493 A US 1096493A
Authority
US
United States
Prior art keywords
pressure
load
switch
car
pump
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
US71665712A
Inventor
James S Doyle
Frank Hedley
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 US71665712A priority Critical patent/US1096493A/en
Application granted granted Critical
Publication of US1096493A publication Critical patent/US1096493A/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Images

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60TVEHICLE BRAKE CONTROL SYSTEMS OR PARTS THEREOF; BRAKE CONTROL SYSTEMS OR PARTS THEREOF, IN GENERAL; ARRANGEMENT OF BRAKING ELEMENTS ON VEHICLES IN GENERAL; PORTABLE DEVICES FOR PREVENTING UNWANTED MOVEMENT OF VEHICLES; VEHICLE MODIFICATIONS TO FACILITATE COOLING OF BRAKES
    • B60T8/00Arrangements for adjusting wheel-braking force to meet varying vehicular or ground-surface conditions, e.g. limiting or varying distribution of braking force
    • B60T8/18Arrangements for adjusting wheel-braking force to meet varying vehicular or ground-surface conditions, e.g. limiting or varying distribution of braking force responsive to vehicle weight or load, e.g. load distribution
    • B60T8/1837Arrangements for adjusting wheel-braking force to meet varying vehicular or ground-surface conditions, e.g. limiting or varying distribution of braking force responsive to vehicle weight or load, e.g. load distribution characterised by the load-detecting arrangements
    • B60T8/185Arrangements for detecting vehicle level

Definitions

  • This invention relates in general to apparatus for regulating the ⁇ fluid pressure for braking purposes upon railway cars according to the weight of the load upon the car, and is more particularly designed for use in connection with electrically propelled vehicles in which the air pressure for the brake system is supplied to a main reservoir by means of an electric motor-driven pump, the motor of which is controlled by an electric pump governor according to the pressure in the reservoir.
  • our improvement is applied in connection with an electric pump governor of the type commercially known as the Westinghouse Gr type, in which a magnet coil is employed for assisting the spring to hold the switch closed and thereby require the reservoir pressure to rise to a point suflicient to overcome both the spring and the magnetic pull of the coil in order to open the switch and eut out the pump.
  • Current is supplied to the motordriven pump, 20, through leads, 4, connected to the switch terminal points, 8, one of said leads containing the coil, 2, of the governor.
  • the switch terminal points are adapted to be joined by the connecting bar, 9, when the switch is closed, at which time current lows through leads, Ll, switch terminal points and coil, 2, to the motor-driven pump, 20, which operates to compress air into the reservoir, l.
  • the spring, 12, is adjusted for the cutting in pressure, and when the reservoir pressure has reduced to the degree for which the spring is set, it operates to move t the switch bar to its closed position, the magnet, 2, being energized the instant that the contact is made.
  • the construction as thus far described, relates to this standard form of electric pump governor.
  • any means controlled by the weight of the load on the car may be employed for regulating the action ofthe pump governor, and the pressure in the reservoir.
  • an additional coil, 3, for the governor included in a circuit, 14, and acting in a manner similar to the coil, 2, that is, to exert a magnetic pull upon the armature or switch bar, 9, and assist in holding the same closed in order to thereby raise the cutting out point and increase the maximum pressure carried in the reservoir.
  • the current for the coil, 3, may be taken from any convenient source, as for instance from a lead, 18, tapped from the line, and the strength of this current and the corresponding ⁇ magnetic pull in coil, 3, may be controlled by a resistance, R, inserted in this circuit, 14.
  • This circuit may also be provided with contact terminals, 10, adapted to be connected by a bar, 11, carried on the switch arm, 9, when in closed position, and disconnected in the open position in order not to affect the cutting in point ot the governor.
  • switch mechanism operated automatically by the weight of the load on the car may be employed for varying the resistance in circuit, 14, and thereby regulate the governor, and for this purpose Vwe have indicated a switch arm, 15, ulcrumed at 1G to some fixed part of the car or truck, such as transom, 19, and connected at one end, 17, to a depressible part, such as the bolster, 18, supported on the car springs.
  • the arm, 15, occupies the position shown in which all et the resistance, R, is included in the circuit, 1a, so that there is little or no current passing through the coil, 3, and consequently there is no additional magnetic pull or eiiect upon the governor, which then operates in the usual way to cut out the pump at desired maximum degree of pressure for which the governor is adjusted.
  • the car springs are further depressed and the switch arm, 15, swings over the contact points to a position in which a certain amount of resistance is cut out, thereby increasing the current in circuit, 14:, and the strength ot the magnetic pull eX- erted by the coil, 3. rlhis operates to raise the cutting out point of the governor and increases the maximum pressure stored in the reservoir.
  • a governing device for Huid pressure pumps the combination with a switch for controlling the supply of current to the pump, ot a piston subject to the iluid pressure for operating said switch, and means cont-rolled by the weight of the load on the ear for opposing the action of the iiuid pressure on the piston.

Landscapes

  • Engineering & Computer Science (AREA)
  • Transportation (AREA)
  • Mechanical Engineering (AREA)
  • Regulating Braking Force (AREA)

Description

J. S. DOY-LE & F. HEDLBY. LoLD REGULATED GUVERNING DEVICE EUR FLUID PRESSURE. APPLICATION FILED AUG. 23, 1912.
1,096,493 Patented May 12, 1914.v
6 @gm ...at w@ cQLuMnIA PLANoonAPn CD.,WASHINGTON,D.C.
UTED STATES PATENT OFFICE.
JAMES S. DOYLE, OF MOUNT VERNON, AND FRANK HEDLEY, 0F YONKERS, NEW YORK.
LOAD-REGULATED GOVERNING DEVICE FOR FLUID-PRESSURE.
Specication of Letters Patent.
Patented May 12, 1914.
Application led August 23, 1912. Serial No. 716,657.
To all 'whom it may concern:
Be it known that we, JAMEs S. DoYLn and FRANK HEDLEY, both citizens of the United States, residing, respectively, at Mount Vernon and Yonkers, in the county of Testchester and State of New York, have nvented a certain new and useful Improvement in Load-Regulated Governing Devices for Fluid-Pressure, of which the following is a specification.
This invention relates in general to apparatus for regulating the `fluid pressure for braking purposes upon railway cars according to the weight of the load upon the car, and is more particularly designed for use in connection with electrically propelled vehicles in which the air pressure for the brake system is supplied to a main reservoir by means of an electric motor-driven pump, the motor of which is controlled by an electric pump governor according to the pressure in the reservoir.
It is well known that a higher braking power is required to control a heavily loaded car than a light or empty car, also that a much greater braking pressure may be applied to the shoes of a loaded car than to a light car without danger of sliding the wheels. It is therefore important to be able to vary the maximum braking pressure according to the weight of the load in order that the braking apparatus shall operate efticiently and satisfactory in actual service.
rlhe principal object of our invention is therefore to provide means for automatically varying the maximum degree of pressure stored for braking purposes, in accordance with the weight of the .load on the car, and as a preferred means for this purpose we may employ a device governed by the weight of the load on the car for regulating the pump governor, whereby the maximum degree of reservoir pressure at which the governor cuts out the pump will be increased as the load is increased.
The single figure of the accompanying drawing illustrates diagrammatically an apparatus embodying our improvement.
According to the construction shown, our improvement is applied in connection with an electric pump governor of the type commercially known as the Westinghouse Gr type, in which a magnet coil is employed for assisting the spring to hold the switch closed and thereby require the reservoir pressure to rise to a point suflicient to overcome both the spring and the magnetic pull of the coil in order to open the switch and eut out the pump. Current is supplied to the motordriven pump, 20, through leads, 4, connected to the switch terminal points, 8, one of said leads containing the coil, 2, of the governor. The switch terminal points are adapted to be joined by the connecting bar, 9, when the switch is closed, at which time current lows through leads, Ll, switch terminal points and coil, 2, to the motor-driven pump, 20, which operates to compress air into the reservoir, l. As the pressure accumulates in the reservoir, it is also admitted to cylinder, G, where it acts upon the piston, 5, and rod, 7 of the governor and tends to open the switch against the pressure of the adjustable spring, l2, and the magnetic pull exerted by the coil, Q. lVhen the air pressure has increased to a point sul'licient to overcome the spring and the pull of the magnet, it pushes the switch bar away from the switch terminals, and the instant the circuit, which includes the coil, 2, is broken, the magnetic pull, of course, ceases, so that the governor piston and rod move witha quick positive movement to the cut out position at the end of the stroke of the piston. The spring, 12, is adjusted for the cutting in pressure, and when the reservoir pressure has reduced to the degree for which the spring is set, it operates to move t the switch bar to its closed position, the magnet, 2, being energized the instant that the contact is made. The construction, as thus far described, relates to this standard form of electric pump governor.
According to our improvement,any means controlled by the weight of the load on the car may be employed for regulating the action ofthe pump governor, and the pressure in the reservoir. As a preferred construction we have shown an additional coil, 3, for the governor, included in a circuit, 14, and acting in a manner similar to the coil, 2, that is, to exert a magnetic pull upon the armature or switch bar, 9, and assist in holding the same closed in order to thereby raise the cutting out point and increase the maximum pressure carried in the reservoir. The current for the coil, 3, may be taken from any convenient source, as for instance from a lead, 18, tapped from the line, and the strength of this current and the corresponding` magnetic pull in coil, 3, may be controlled by a resistance, R, inserted in this circuit, 14. This circuit may also be provided with contact terminals, 10, adapted to be connected by a bar, 11, carried on the switch arm, 9, when in closed position, and disconnected in the open position in order not to affect the cutting in point ot the governor.
Any suitable or preferred form of switch mechanism operated automatically by the weight of the load on the car may be employed for varying the resistance in circuit, 14, and thereby regulate the governor, and for this purpose Vwe have indicated a switch arm, 15, ulcrumed at 1G to some fixed part of the car or truck, such as transom, 19, and connected at one end, 17, to a depressible part, such as the bolster, 18, supported on the car springs. `When the car is empty, the arm, 15, occupies the position shown in which all et the resistance, R, is included in the circuit, 1a, so that there is little or no current passing through the coil, 3, and consequently there is no additional magnetic pull or eiiect upon the governor, which then operates in the usual way to cut out the pump at desired maximum degree of pressure for which the governor is adjusted. When, however, the load is increased upon the car, the car springs are further depressed and the switch arm, 15, swings over the contact points to a position in which a certain amount of resistance is cut out, thereby increasing the current in circuit, 14:, and the strength ot the magnetic pull eX- erted by the coil, 3. rlhis operates to raise the cutting out point of the governor and increases the maximum pressure stored in the reservoir.
While we have shown our improvement applied in connection with a particular form ot pump governor, it will be evident that it is not restricted to this form, but may also be employed with any other suitable or preferred governor construction.
lt will now be apparent that by means of our improvement, the maximum degree of air pressure in the reservoir will be regulated according to the weight of the load on the car, increasing as the load increases, and
vdiminishing as the load is reduced, thereby affording at all times a suitable and adequate braking pressure for controlling the ear in an eiiicient and satisfactory manner.
Having now described our invention, what we claim as new and desire to secure by Letters Patent is:
1. The combination on a car, of a pump and reservoir for storing air under pressure, and a pump governor controlled by the weight of the load on the car.
2. The combination on a car, of a pump governor for controlling the degree of fluid pressure stored for braking purposes, and means controlled by the weight of the load on the car for regulating the governor to vary the maximum degree of pressure stored.
3. ln a governing device for Huid pressure pumps, the combination with a switch for controlling the supply of current to the pump, ot a piston subject to the iluid pressure for operating said switch, and means cont-rolled by the weight of the load on the ear for opposing the action of the iiuid pressure on the piston.
4:. ln a governing device for Huid pressure pumps, the combination with a switch operated by the opposing pressures of the compressed luid and an adjustable spring, and means controlled by the weight of the load on the car for assisting the spring in holding the switch closed.
5. ln a governing device for `fluid pressure pumps, the combination with a switch governed by the fluid pressure for controlling the action of the pump, a magnet `coil tending to hold said switch closed, and
means controlled by the weight of the load on the car for varying the current in said magnet.
6. In a governing device for fluid pressure pumps, the combination with a lswitch governed by the fluid pressure for controlling the action of the pump, a magnet coil tending to hold said switch closed, and means controlled by the weight of the load on the car for varying the resistance in the circuit of said magnet. Y
7. ln a governing device for fluid pressure pumps, the combination of a switch for controlling the action of the pump, a piston subject to the opposing pressures of the pump and an adjustable spring for operating the switch, a magnet coil tending to assist the spring in holding the switch closed,
mechanism controlled by the weight Vet theV subject to the opposing pressures of the pump and an adjustable spring for operat- In testimony whereof we have hereunto ing the switch, a magnet coil included in the set our hands. pump circuit and tending to hold the switch JAMES S DOYLE closed, another magnet coil also tending to hold the switch closed, and mechanism controlled by the Weight of the load on the car Witnesses:
for varying the strength of the latter mab- GEO. KEEGAN, net. v H. M. Norms.
FRANK HEDLEY.
Copies of this patent may be obtained for five cents each, by addressing the Commissioner of Patents, Washington, D. C.
US71665712A 1912-08-23 1912-08-23 Load-regulated governing device for fluid-pressure. Expired - Lifetime US1096493A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
US71665712A US1096493A (en) 1912-08-23 1912-08-23 Load-regulated governing device for fluid-pressure.

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
US71665712A US1096493A (en) 1912-08-23 1912-08-23 Load-regulated governing device for fluid-pressure.

Publications (1)

Publication Number Publication Date
US1096493A true US1096493A (en) 1914-05-12

Family

ID=3164699

Family Applications (1)

Application Number Title Priority Date Filing Date
US71665712A Expired - Lifetime US1096493A (en) 1912-08-23 1912-08-23 Load-regulated governing device for fluid-pressure.

Country Status (1)

Country Link
US (1) US1096493A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2991130A (en) * 1956-08-23 1961-07-04 Thompson Ramo Wooldridge Inc Load controlled brake system

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2991130A (en) * 1956-08-23 1961-07-04 Thompson Ramo Wooldridge Inc Load controlled brake system

Similar Documents

Publication Publication Date Title
US1025559A (en) Automatic electric regulator.
US1096493A (en) Load-regulated governing device for fluid-pressure.
US2092364A (en) Braking system
US762620A (en) Pump controller system.
US523873A (en) Fluid-pressure regulator
US875822A (en) Pressure device for electric-current collectors.
US1075733A (en) Pressure-operating device.
US789754A (en) Governor for non-automatic electric-motor controllers.
US1175047A (en) Multiple pump-controlling device.
US372361A (en) Leo daft
US1077737A (en) Motor-control system.
US1085920A (en) Electrical switch.
US777034A (en) Controlling device for electrically-propelled vehicles.
US2118403A (en) Compressor control
US745683A (en) Air-pump governor.
US665437A (en) Fluid-pressure regulator.
US1774138A (en) Compressor control device
US671244A (en) Air-pump governor.
US929055A (en) Pressure-governing apparatus.
US766325A (en) Regulating electric motors.
US567651A (en) mebriam
US616842A (en) Automatic regulator
US702152A (en) Electrical controlling apparatus.
US1343210A (en) System of control
US919013A (en) Pressure-regulator.