US44972A - Improvement in apparatus for supplying the pneumatic springs of railroad-cars - Google Patents

Improvement in apparatus for supplying the pneumatic springs of railroad-cars Download PDF

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US44972A
US44972A US44972DA US44972A US 44972 A US44972 A US 44972A US 44972D A US44972D A US 44972DA US 44972 A US44972 A US 44972A
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air
cars
railroad
piston
steam
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B61RAILWAYS
    • B61FRAIL VEHICLE SUSPENSIONS, e.g. UNDERFRAMES, BOGIES OR ARRANGEMENTS OF WHEEL AXLES; RAIL VEHICLES FOR USE ON TRACKS OF DIFFERENT WIDTH; PREVENTING DERAILING OF RAIL VEHICLES; WHEEL GUARDS, OBSTRUCTION REMOVERS OR THE LIKE FOR RAIL VEHICLES
    • B61F5/00Constructional details of bogies; Connections between bogies and vehicle underframes; Arrangements or devices for adjusting or allowing self-adjustment of wheel axles or bogies when rounding curves
    • B61F5/26Mounting or securing axle-boxes in vehicle or bogie underframes
    • B61F5/30Axle-boxes mounted for movement under spring control in vehicle or bogie underframes
    • B61F5/301Axle-boxes mounted for movement under spring control in vehicle or bogie underframes incorporating metal springs
    • B61F5/302Leaf springs

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  • the object of this invention is to arrange an apparatus for keeping the air springs of locomotives and railroad-cars supplied with air in such a manner that it can be operated by the direct action of the steam from the boiler of the locomotive, whether the train be in motion or not, in contradistinction to an apparatus for the same purpose on, which a patent was granted me April 15, 1859, and the operation of which depends upon the motion of the train, but which will not operate when the train stands still.
  • A represents the platform of a locomotiveengine tender or car, supported by wheels B B, the axles G of which have their bearings in boxes D, which are provided with pneumatic springs.
  • These springs consist simply of an air-tight cylinder, a, (see Fig. 2,) in which a piston, 1), moves, and the piston-rod c is connected to the box D.
  • the piston b bears on the body of the air contained in the upper part of the cylinder, and this air forms an effective spring as long as it is not allowed to exhaust itself.
  • an air-pump, F which is secured to the platform A, and operated by the direct action of steam taken from the boiler G of the locomotive.
  • a series of pipes, H conduct the air forced out by the action of the air-pump to the several air-springs E, and in case the cars are also provided with such springs a large pipe or trunk is extended throughout the entire length of the train, which is supplied with air from the airpump, and from which theair is conducted by a number of branch pipes to all the airsprings of the cars.
  • the air-pump employed for this purpose may be constructed of a cylinder, (1, which is firmly secured to the platform, and in which a piston, 0, moves, as shown in Fig. 1 of the drawings.
  • a pipe, f admits steam from the boiler under the piston, and a valve, g, in the upper head of the cylinder admits air when the piston descends.
  • a valve, g in the upper head of the cylinder admits air when the piston descends.
  • the piston-rod [L of the piston 0 extends through the platform, and is provided with a tappet, i, which acts upon the curved edge of a hinged cam-lever, 7', an 1 by the action of the cam-lever motion is imparted to the valve is, which opens and closes the steam-pipe f and the exhaust pipe t.
  • the cam-lever j is so arranged that the steam-pipe is closed and the exhaust-pipe opened as soon as the piston reaches its highest point in th cylinder, and when the steam exhausts said piston descends by its own gravity. On approachingits lowest point the valve is changed, the exhaust is closed, and the steam-pipe opened, and the piston ascends.
  • the pump is set in motion by the direct action of the steam from the boiler, and the air-springs can be supplied with air at any moment, and whenever the engineer may consider it necessary to set the pump in motion he is at liberty to do so, whether the train le in motion or not, simply by admitting steam to the air-pump.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Compressors, Vaccum Pumps And Other Relevant Systems (AREA)

Description

S. G. RANDALL.
Car Spring. No. 44,972. Patented Nov. 8. 1864.
Witnesses:
%W lnvenron AM. PH OTO-LITHOCCLNY. (OSEORNE'S PROCESS.)
UNITED STATES PATET SILAS G. RANDALL, OF NEYV YORK, N. Y.
lMPROVl-IMENT lN APPARATUS FOR SUPPLYING THE PNEUMATIC SPRINGS OF RAILROAD-CARS.
Specification forming part of Letters Patent No. 4%,9792, dated November 8, 1864.
To all whom it may concern Be it known that I, S. G. RANDALL, of the city, county, and State of New York, have invented a new and useful Improvement in Apparatus for Keeping Air-Sprin gs Supplied with Air; and I do hereby declare that the following is a full, clear, and exact description of the same, reference being had to the accompanying drawings, forming a part of this specification, in which- Figure 1 represents a longitudinal vertical section of my invention. Fig. 2 is a sectional side elevation of the same. Fig. 3 is an inverted plan of the pump detached.
Similar letters of reference indicate corresponding parts.
The object of this invention is to arrange an apparatus for keeping the air springs of locomotives and railroad-cars supplied with air in such a manner that it can be operated by the direct action of the steam from the boiler of the locomotive, whether the train be in motion or not, in contradistinction to an apparatus for the same purpose on, which a patent was granted me April 15, 1859, and the operation of which depends upon the motion of the train, but which will not operate when the train stands still.
The nature of my present invention and its peculiar advantages will be readily understood from the following description.
A represents the platform of a locomotiveengine tender or car, supported by wheels B B, the axles G of which have their bearings in boxes D, which are provided with pneumatic springs. These springs consist simply of an air-tight cylinder, a, (see Fig. 2,) in which a piston, 1), moves, and the piston-rod c is connected to the box D. The piston b bears on the body of the air contained in the upper part of the cylinder, and this air forms an effective spring as long as it is not allowed to exhaust itself.
In order to prevent the exhaustion of the air, and to enable the engineer to keep up a regular supply at any moment, whether the engine or train be moving or not, I have applied an air-pump, F, which is secured to the platform A, and operated by the direct action of steam taken from the boiler G of the locomotive. A series of pipes, H, conduct the air forced out by the action of the air-pump to the several air-springs E, and in case the cars are also provided with such springs a large pipe or trunk is extended throughout the entire length of the train, which is supplied with air from the airpump, and from which theair is conducted by a number of branch pipes to all the airsprings of the cars. The air-pump employed for this purpose may be constructed of a cylinder, (1, which is firmly secured to the platform, and in which a piston, 0, moves, as shown in Fig. 1 of the drawings. A pipe, f, admits steam from the boiler under the piston, and a valve, g, in the upper head of the cylinder admits air when the piston descends. By the action of the steam on its under side the piston is forced up, and the air is forced out through the pipe or pipes H to the airsprings. The piston-rod [L of the piston 0 extends through the platform, and is provided with a tappet, i, which acts upon the curved edge of a hinged cam-lever, 7', an 1 by the action of the cam-lever motion is imparted to the valve is, which opens and closes the steam-pipe f and the exhaust pipe t. The cam-lever j is so arranged that the steam-pipe is closed and the exhaust-pipe opened as soon as the piston reaches its highest point in th cylinder, and when the steam exhausts said piston descends by its own gravity. On approachingits lowest point the valve is changed, the exhaust is closed, and the steam-pipe opened, and the piston ascends. By these means the pump is set in motion by the direct action of the steam from the boiler, and the air-springs can be supplied with air at any moment, and whenever the engineer may consider it necessary to set the pump in motion he is at liberty to do so, whether the train le in motion or not, simply by admitting steam to the air-pump.
hat I claim as new, and desire to secure by Letters Patent, is-- p The combination of an air-pum p, F, with the platform A of a locomotive tender or ca-r,and with the boiler G and air-springs 1G, constructed and operating substantially as herein specified, so that the a r-springs can be supplied with air by the action of steam derived from the boiler, whether the engine or car he in motion or not.
- SILAS G. RANDALL. \Vitnesses JAMns P. HALL, M, M. LIVINGSTON.
US44972D Improvement in apparatus for supplying the pneumatic springs of railroad-cars Expired - Lifetime US44972A (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20050050481A1 (en) * 2003-08-25 2005-03-03 Keller S. Brandon Systems and methods for determining activity factors of a circuit design

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20050050481A1 (en) * 2003-08-25 2005-03-03 Keller S. Brandon Systems and methods for determining activity factors of a circuit design

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