US743484A - Power-transmission device. - Google Patents

Power-transmission device. Download PDF

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Publication number
US743484A
US743484A US13267102A US1902132671A US743484A US 743484 A US743484 A US 743484A US 13267102 A US13267102 A US 13267102A US 1902132671 A US1902132671 A US 1902132671A US 743484 A US743484 A US 743484A
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Prior art keywords
pump
liquid
motor
power
receptacle
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US13267102A
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Heinrich Gerdes
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F15FLUID-PRESSURE ACTUATORS; HYDRAULICS OR PNEUMATICS IN GENERAL
    • F15BSYSTEMS ACTING BY MEANS OF FLUIDS IN GENERAL; FLUID-PRESSURE ACTUATORS, e.g. SERVOMOTORS; DETAILS OF FLUID-PRESSURE SYSTEMS, NOT OTHERWISE PROVIDED FOR
    • F15B1/00Installations or systems with accumulators; Supply reservoir or sump assemblies
    • F15B1/02Installations or systems with accumulators
    • F15B1/027Installations or systems with accumulators having accumulator charging devices
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60LPROPULSION OF ELECTRICALLY-PROPELLED VEHICLES; SUPPLYING ELECTRIC POWER FOR AUXILIARY EQUIPMENT OF ELECTRICALLY-PROPELLED VEHICLES; ELECTRODYNAMIC BRAKE SYSTEMS FOR VEHICLES IN GENERAL; MAGNETIC SUSPENSION OR LEVITATION FOR VEHICLES; MONITORING OPERATING VARIABLES OF ELECTRICALLY-PROPELLED VEHICLES; ELECTRIC SAFETY DEVICES FOR ELECTRICALLY-PROPELLED VEHICLES
    • B60L1/00Supplying electric power to auxiliary equipment of vehicles
    • B60L1/14Supplying electric power to auxiliary equipment of vehicles to electric lighting circuits
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F15FLUID-PRESSURE ACTUATORS; HYDRAULICS OR PNEUMATICS IN GENERAL
    • F15BSYSTEMS ACTING BY MEANS OF FLUIDS IN GENERAL; FLUID-PRESSURE ACTUATORS, e.g. SERVOMOTORS; DETAILS OF FLUID-PRESSURE SYSTEMS, NOT OTHERWISE PROVIDED FOR
    • F15B2211/00Circuits for servomotor systems
    • F15B2211/40Flow control
    • F15B2211/405Flow control characterised by the type of flow control means or valve
    • F15B2211/40515Flow control characterised by the type of flow control means or valve with variable throttles or orifices

Definitions

  • the present invention relates to driving mechanisms for the dynamo-machines employed for lighting railway-trains and similar purposes-4'. e., to that class of driving devices which are of the secondary order, which do not generate the power necessary, but transmit it. Driving or power-transmitting mechanisms of this class are often driven or derive their rotation from a source of power which varies in speed, while it is necessary that the dynamomachine run at an even speed.
  • the object of the present invention is to provide a power-transmitting mechanism which within certain obvious limits Will drive the dynamo-machine from the car-axle at an even speed in spite of the variations of the speed of the axle due to the varying speed of the train.
  • the rotation of the car-axle X is transmitted to the dynamo-machine y by means of a pump 1) and a rotary or other motor e, driven by the fluid circulated by the pump.
  • arotary pump 1 has been chosen, but obviously any other system might be employed, and the pump is driven by means of a belt and a pulley a from thecaraxle X;
  • the liquid-receptacle g contains any suitable liquid, such as glycerin, and this liquid is circulated from the said receptacle through the throttle-valve 2 and pipe h by the pump, through the pipe (1 to the motor e, and thence through pipe f back to the receptacle 9.
  • a three-way cook 70 is arranged in the pipe (Z, and a branch pipe 21. leads fromthe same to the liquid-receptacle above the level Mr I 'of the liquid.
  • the throttle-valve 2' is also a three-way cock and has a branch m, also leading to the liquid-receptacle above the level of the liquid.
  • the throttle-valve i is controlled by a governor z, driven by the motor 6, the said governor working a lever r, pivotally supported at o and having its lower end linked at w to the lever-arm of the plug of the throttle-valve 2'.
  • Each side of the rotary pump is provided with a pressure-valve D and a suction-valve S, and both the pressure-valves are connected up to the pipe (Z and the suction-valves to the pipe h.
  • the pump Will always Work the rotary motor in one direction whatever be the direction of motion of the car-axle X, which changes with the-direction of motion of the car.
  • This device works automatically, since the suctionvalve, which is out of operation, will always be kept closed by the pressure, and the pressure-valve, which is not working, will be kept closed by suction, as indicated in the drawing by the arrows.
  • the device operates in the following manner: Assuming that the required speed of rotation of the dynamo corresponds with the speed ofrotation of the car-axle X when the train is running at twenty miles an hour and that the governor z is adjusted to this speed, as soon as the speed of the train rises above twenty miles an hour the governor will work the lever r and by means of the link 10 will partially close the throttle-valve i and cut off the liquid-feed to the pump, thereby correspondingly regulating the speed of the motor e as the driving medium for the sameviz., the liquid-feed-is reduced.
  • the pump When the train is running by daylight, it is not necessary for the dynamo-machine to run, and in order to enable this machine to be cut off the cooks t' and 7c are three-way cocks.
  • the pump When the plugs of the same are turned ninety degrees by any suitable mechanism, the pump will be placed in connection with the part of ,the receptacle 9 above the liquid and will pump air or gas from and back to the receptacle without driving the motor, as will be readily understood.
  • the pump may also be allowed to pump liquid without driving the motor by merely turning off the cock is, instead of both the cooks, in which case the liquid will circulate through the pump along pipes h and cl and through 02 back to the receptacle.
  • the governor may be arranged to make the circuit to the accumulators when the train stops and to break the circuit again when the train is running as soon as the tension falls below that of the accumulators or reaches it, asthe case may be.
  • an air-bell may be provided in the pipe 01 to prevent shocks.
  • a device for driving a dynamo-machine at a substantially even speed from a varying source of power consisting of a liquid-receptacle, a pump driven by the source of power, a motor to drive the dynamo and pipe connections to enable the pump to circulate the liquid and drive the motor, a governor on the motor-shaft and means in connection therewith for controlling the liquid-supply to the motor according to the speed of the latter substantially as described.
  • a power-transmittin g device of the class specified consisting of a pump driven from the source of varying power, a liquid-receptacle and pipe connections from the same to the pump, a rotary motor to drive the dynamo and pipe connections from the pump to the same, said pipe connections being adapted to conduct the pressure fluid to drive the motor in one and the same direction, whatever the direction of rotation of the source of varying power may be, a throttling device in the pipe leading from the holder to the pump and means for controlling the same from the motor-shaft substantially as described.
  • a power-transmittin g device of the class specified consisting of a pump driven from the source of varying power, a liquid receptacle, pipe connections from the same to the pump, a motor to drive the dynamo and pipe connections from the pump to the same whereby the motor is always driven in one direction whatever the direction of rotation of the driving-shaft for the pump may be, means for throttling the liquid-feed to the pump, means for controlling the throttling mechanism from the motor-shaft and means for cutting out the motor from the circulation and for confining the latter to the pump and liquid-holdersubstantially as described.
  • a power-transmitting device of the class specified consisting of a pump driven by the source of varying power, a liquid-receptacle and a motor to drive the dynamo, pipe connections to enable the circulation of the liquid from the holder to the motor so as to drive the latter in one and the same direction Whatever the direction of rotation of the drivingshaft may be, means for controlling the liquid fed to the pump from the motor-shaft and means for cutting the liquid out of circulation, when the motor is not running and for establishing communication to and from the pump and the upper part of the liquid-holder substantially as described.

Description

I Patented Llovember 1( 19631.
PATENT OFFICE.
HEINRICH GERDES, OF BERLIN, GERMANY.
V POWER-TRANSMISSION DEVICE.
SPECIFICATION forming part of Letters Patent No. 743,484, dated November 10, 1903. A plication filed November 24,1902. Serial No. 192.671. (No model.)
To all whom it may concern:
Be it known that I, HEINRICH GERDES, a subject of the German Emperor, and a resident of Berlin, Germany, have invented a new and useful Power-Transmitting Device, of which the following is a description.
The present invention relates to driving mechanisms for the dynamo-machines employed for lighting railway-trains and similar purposes-4'. e., to that class of driving devices which are of the secondary order, which do not generate the power necessary, but transmit it. Driving or power-transmitting mechanisms of this class are often driven or derive their rotation from a source of power which varies in speed, while it is necessary that the dynamomachine run at an even speed. For instance, in the case of lighting railway-carriages by electricity the dynamomachine is often driven from the car-axle, the speed of which varies between very large limits; and the object of the present invention is to provide a power-transmitting mechanism which within certain obvious limits Will drive the dynamo-machine from the car-axle at an even speed in spite of the variations of the speed of the axle due to the varying speed of the train.
In order to render the present specification easily intelligible, reference is had to the accompanying drawing, which shows the arran gement of the various parts in perspective view.
The rotation of the car-axle X is transmitted to the dynamo-machine y by means of a pump 1) and a rotary or other motor e, driven by the fluid circulated by the pump. In the present instance and for the purposes of the present specification arotary pump 1) has been chosen, but obviously any other system might be employed, and the pump is driven by means of a belt and a pulley a from thecaraxle X; The liquid-receptacle g contains any suitable liquid, such as glycerin, and this liquid is circulated from the said receptacle through the throttle-valve 2 and pipe h by the pump, through the pipe (1 to the motor e, and thence through pipe f back to the receptacle 9. A three-way cook 70 is arranged in the pipe (Z, and a branch pipe 21. leads fromthe same to the liquid-receptacle above the level Mr I 'of the liquid. The throttle-valve 2' is also a three-way cock and has a branch m, also leading to the liquid-receptacle above the level of the liquid. The throttle-valve i is controlled by a governor z, driven by the motor 6, the said governor working a lever r, pivotally supported at o and having its lower end linked at w to the lever-arm of the plug of the throttle-valve 2'. Each side of the rotary pump is provided with a pressure-valve D and a suction-valve S, and both the pressure-valves are connected up to the pipe (Z and the suction-valves to the pipe h. By this means the pump Will always Work the rotary motor in one direction whatever be the direction of motion of the car-axle X, which changes with the-direction of motion of the car. This device works automatically, since the suctionvalve, which is out of operation, will always be kept closed by the pressure, and the pressure-valve, which is not working, will be kept closed by suction, as indicated in the drawing by the arrows.
The device operates in the following manner: Assuming that the required speed of rotation of the dynamo corresponds with the speed ofrotation of the car-axle X when the train is running at twenty miles an hour and that the governor z is adjusted to this speed, as soon as the speed of the train rises above twenty miles an hour the governor will work the lever r and by means of the link 10 will partially close the throttle-valve i and cut off the liquid-feed to the pump, thereby correspondingly regulating the speed of the motor e as the driving medium for the sameviz., the liquid-feed-is reduced.
When the train is running by daylight, it is not necessary for the dynamo-machine to run, and in order to enable this machine to be cut off the cooks t' and 7c are three-way cocks. When the plugs of the same are turned ninety degrees by any suitable mechanism, the pump will be placed in connection with the part of ,the receptacle 9 above the liquid and will pump air or gas from and back to the receptacle without driving the motor, as will be readily understood. The pump may also be allowed to pump liquid without driving the motor by merely turning off the cock is, instead of both the cooks, in which case the liquid will circulate through the pump along pipes h and cl and through 02 back to the receptacle.
If the train is lighted by a combined system of dynamomachines and accumulators, the governor may be arranged to make the circuit to the accumulators when the train stops and to break the circuit again when the train is running as soon as the tension falls below that of the accumulators or reaches it, asthe case may be.
If necessary, an air-bell may be provided in the pipe 01 to prevent shocks.
Owing to the fact that the dynamo-motor is always driven in one and the same direction, by means of the present device no complicated apparatuses, such as commutators, are necessary.
I claim 1. A device for driving a dynamo-machine at a substantially even speed from a varying source of power, consisting of a liquid-receptacle, a pump driven by the source of power, a motor to drive the dynamo and pipe connections to enable the pump to circulate the liquid and drive the motor, a governor on the motor-shaft and means in connection therewith for controlling the liquid-supply to the motor according to the speed of the latter substantially as described.
2. A power-transmittin g device of the class specified, consisting of a pump driven from the source of varying power, a liquid-receptacle and pipe connections from the same to the pump, a rotary motor to drive the dynamo and pipe connections from the pump to the same, said pipe connections being adapted to conduct the pressure fluid to drive the motor in one and the same direction, whatever the direction of rotation of the source of varying power may be, a throttling device in the pipe leading from the holder to the pump and means for controlling the same from the motor-shaft substantially as described.
. 3. A power-transmittin g device of the class specified consisting of a pump driven from the source of varying power, a liquid receptacle, pipe connections from the same to the pump, a motor to drive the dynamo and pipe connections from the pump to the same whereby the motor is always driven in one direction whatever the direction of rotation of the driving-shaft for the pump may be, means for throttling the liquid-feed to the pump, means for controlling the throttling mechanism from the motor-shaft and means for cutting out the motor from the circulation and for confining the latter to the pump and liquid-holdersubstantially as described.
4. A power-transmitting device of the class specified, consisting of a pump driven by the source of varying power, a liquid-receptacle and a motor to drive the dynamo, pipe connections to enable the circulation of the liquid from the holder to the motor so as to drive the latter in one and the same direction Whatever the direction of rotation of the drivingshaft may be, means for controlling the liquid fed to the pump from the motor-shaft and means for cutting the liquid out of circulation, when the motor is not running and for establishing communication to and from the pump and the upper part of the liquid-holder substantially as described.
In witness whereof I have hereunto set my hand in presence of two witnesses.
HEINRICH GERDES.
Witnesses WALDEMAR HAUPT, HENRY HASPER.
US13267102A 1902-11-24 1902-11-24 Power-transmission device. Expired - Lifetime US743484A (en)

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Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2447348A (en) * 1943-05-21 1948-08-17 Bendix Aviat Corp Hydraulic drive
US2500655A (en) * 1947-07-10 1950-03-14 Bendix Aviat Corp Constant speed and frequency drive
US2556378A (en) * 1949-03-08 1951-06-12 Sisson Lowell Rotary pump and motor hydraulic transmission
US2628564A (en) * 1949-12-01 1953-02-17 Charles R Jacobs Hydraulic system for transferring rotary motion to reciprocating motion
US2803112A (en) * 1951-12-04 1957-08-20 Sundstrand Machine Tool Co Control means for constant speed hydraulic pump and motor transmission

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2447348A (en) * 1943-05-21 1948-08-17 Bendix Aviat Corp Hydraulic drive
US2500655A (en) * 1947-07-10 1950-03-14 Bendix Aviat Corp Constant speed and frequency drive
US2556378A (en) * 1949-03-08 1951-06-12 Sisson Lowell Rotary pump and motor hydraulic transmission
US2628564A (en) * 1949-12-01 1953-02-17 Charles R Jacobs Hydraulic system for transferring rotary motion to reciprocating motion
US2803112A (en) * 1951-12-04 1957-08-20 Sundstrand Machine Tool Co Control means for constant speed hydraulic pump and motor transmission

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