US1042236A - Automatic signaling and checking apparatus for railway-signals. - Google Patents

Automatic signaling and checking apparatus for railway-signals. Download PDF

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US1042236A
US1042236A US50640309A US1909506403A US1042236A US 1042236 A US1042236 A US 1042236A US 50640309 A US50640309 A US 50640309A US 1909506403 A US1909506403 A US 1909506403A US 1042236 A US1042236 A US 1042236A
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checking apparatus
railway
signal
reservoir
signaling
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US50640309A
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Iwan Von Korotkiewitsch
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B61RAILWAYS
    • B61LGUIDING RAILWAY TRAFFIC; ENSURING THE SAFETY OF RAILWAY TRAFFIC
    • B61L25/00Recording or indicating positions or identities of vehicles or trains or setting of track apparatus
    • B61L25/06Indicating or recording the setting of track apparatus, e.g. of points, of signals

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  • the present invention relates to an automaticsignaling and checking apparatus for railway signals the object of which on the one hand is to warn the locomotive driver and the officials on the train by means of a detonator signal, which can be heard for a considerable distance of the danger of entering a stat-ion when the signal is at danger, and on the other hand, to indicate exactly how many vehicle axles pass a signal at danger so that it is possible to answer with certainty the question as to Whether the signal was set at danger before the passage of the train or only later during or after its passage, which is a question that frequently has to be settled in order to determine the blame attaching to the various railway officials when an accident occurs.
  • the automatic signaling and checking apparatus broadly is provided with a yielding reservoir arranged beneath the track and an apparatus connected therewith by means of a pipe for receiving pressure and transmitting this pressure for the purpose of sig naling and recording.
  • Figure 1 is a side elevation of the pedal device
  • Fig. 1 is a section on line a-a of Fig. 1
  • Fig. 1 is a section on line of Fig. 1
  • Fig. 1 is a diagrammatic view of the operation or give of the rails
  • Fig. 2 is a sectional view of the semaphore operating means
  • Fig. 3 is a side view of Fig. 2 with one side of inclosing casing removed
  • Fig. 4: is an enlarged elevational view of a section of Fig. 2
  • Fig. 5 is an enlarged detail view.
  • Fig. 6 is a perspective View showing the difierent parts of my invention in their assembled or working position.
  • the yielding reservoir the action of which depends upon the give of the rail during the passage of the train, consists of a flat thin walled receptacle 3, fixed on a beam 2. It is fixed directly to the rail by means of bolts and indirectly by means of rod connections 1, in such a manner that owing to the pressure exerted by the undulatory give of the rail the reservoir 3, is compressed from above and from below, and its internal volume considerably reduced.
  • the connections may be arranged at such intervals as correspond approximately to the usual minimum interval between adjacent vehicle axles, (see Fig. 1).
  • the reservoir 3 communicates with the rest of the signal mechanism fixed to a semaphore, and is filled with any suitable non-freezing liquid serving as a pressure-transmitting medium, (see Figs. 2, 3 and 4).
  • the connecting pipe 5 opens into a reservoir 8, which is provided with a liquid gage pipe 9, inserted through an outer opening 9 by means of which the entire signaling apparatus can be filled.
  • the reservoir 8 consists of two vertical cylindrical chambers 8 and 8 of different dimensions, which are arranged in proximity to each other and communicate through an opening and of a third and lower chamber 8, located between the mouth of the said pipe and the lower openings of the two vertical chambers 8 and 8
  • acut oifvalve 8 is suspended from rod 8*", to the semaphore board 18, by means of a chain 19, and a compensation spring 20, in such a manner that when the signal is at danger, that is to say, when it occupies the horizontal position, the valve 8 shuts ofi the upper chamber 8 and leaves only the communication between the lower chamber 8, and smaller vertical chamber 8*, free.
  • the shaft 12 mounted in a suitable frame 7 fixed to the cylinder casing 7, carries the lever 12, already referred to together with a pawl 12"-, and a cam 12"; said lever and cam being arranged in such a manner, that when the lever 12 rests on the head of the piston. 11, the pawl 12 is adapted to hold the weight 13, by the projecting collar 13, in its raised position, and when the lever 12 is raised, and the shaft 12 rotated, the pawl 12, releases the weight 13, to slide down the rod 1a, striking against small rod or rods 15, and producing the detonation by exploding suitably arranged cartridges 16.
  • the cam 12 becomes operative simul taneously with the pawl 12, and when the shaft 12 is rotated, it is adapted to lift the lever 21, by means of the cam engaging with a roller with which the lever is provided, the latter being rotatable about a suitably arranged shaft 21 supported in a bracket; by this means the pawl 22, connected with lever 21, and held from above by a spiral spring 24, rotates a ratchet wheel 23, to the extent of one tooth.
  • the position of the ratchet 23 is firmly held'by means of any suitable means as a pawl.
  • the operation of the device is as follows:
  • the reservoir 3 is compressed on both sides by the undulatory give of the rails, and its liquid contents ascends through the pipe to the chamber 8, where when the valve 8 is lifted itfinds accessto the chamber 8 cut off, and hence the piston 11, being raised, the lever 12, which is thereby lifted, rotates the shaft 12 and causes the weight to be released and fall, and by striking against the cartridges this weight produces the detonation signal.
  • the ratchet wheel 23 is rotated to the extent of one tooth.
  • Another device is also connected with the detonating mechanism: Upon the weight 13, an arm 17, is suspended and when the weight slides down it protrudes from the casing 6, and owing to the fact that it is appropriately hinged at 17 and loaded at 17 it assumes the horizontal position, as shown in Fig. 1.
  • This projecting arm is a visible sign that the signaling mechanism has acted and that it must again be set for proper operation.
  • the signaling apparatus is filled to about half the height of the gage pipe 9, for the reason that with such a large excess of liquid there is no danger of any evaporation of liquid due to variation of temperature and thereby destroying the proper operation of the apparatus.
  • A. combined signaling and checking apparatus comprising a railroad track, a yielding reservoir connected with said track and whose volume is decreased by the motion from the track of the railroad, a signal, a checking device, means for connecting and disconnecting said reservoir from the checking device consisting of a receptacle having two vertical and intercommunicating chambers and a lower chamber communicating with said vertical chambers, a valve for closing the communication between the lower chamber and one of said vertical. chambers and connected with the signal, a movable piston in the other ver tical chamber adapted to close the communication between the two vertical chambers and transmit its motion to the checking apparatus.
  • a combined signaling and checking apparatus comprising a railroad track, a hollow yielding reservoir connected with and receiving motion from the track, a signal, a checking device, means for operating said checking device consisting of a receptacle provided with a pipe connecting with the yielding reservoir, said receptacle consisting of two vertical and intercommunicating chambers, and a lower chamber communicating with the vertical chambers, a valve for closing the communication between the lower chamber and one of said vertical chambers, and connected with the signal, a movable piston in the the vertical chambers is closed and the liquid is caused to lift the piston, and operate 10 the checking device.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Train Traffic Observation, Control, And Security (AREA)

Description

I. VON KOROTKIEWITSOH.
AUTOMATIC SIGNALING AND CHECKING APPARATUS FOR RAILWAY SIGNALS.
APPLICATION FILED JULY 7, 1909. v 1,942,236, Patented Oct. 22,1912.
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I. VON KOROTKIEWITSGH. AUTOMATIC SIGNALING AND CHECKING APPARATUS FOR RAILWAY SIGNALS.
APPLICATION IlLED JULY 7, 1909.
Patented Oct. 22, 1912} a" SHEETS-SHEET 2.
x A. ad w W .0 W of wunwacwa/szs w a 4 I. VON KOROTKIEWITSGH. AUTOMATIG SIGNALING AND-CHECKING APPARATUS FOR RAILWAY SIGNALS.
APPLICATION FILED JULY7, 1909.
Patented Oct. 22, 1912.
3 SHEETS-SHEET 3.
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oaaeae.
Specification of Letters Patent.
Patented @ct. 22, 1912.
Application filed July 7, 1909. Serial No. 506,403.
To all whom it may concern:
Be it known that I, IwAN VON Kono r- KHEWITSCH, a subject of the Emperor of Russia, residing in Warsaw, Russian Empire, have invented new and useful Improvements in and Relating to Automatic Signaling and Checking Apparatus for Railway- Signals, of which the following is a specification.
The present invention relates to an automaticsignaling and checking apparatus for railway signals the object of which on the one hand is to warn the locomotive driver and the officials on the train by means of a detonator signal, which can be heard for a considerable distance of the danger of entering a stat-ion when the signal is at danger, and on the other hand, to indicate exactly how many vehicle axles pass a signal at danger so that it is possible to answer with certainty the question as to Whether the signal was set at danger before the passage of the train or only later during or after its passage, which is a question that frequently has to be settled in order to determine the blame attaching to the various railway officials when an accident occurs.
The automatic signaling and checking apparatus broadly is provided with a yielding reservoir arranged beneath the track and an apparatus connected therewith by means of a pipe for receiving pressure and transmitting this pressure for the purpose of sig naling and recording.
My invention consists of structural features and relative arrangements of parts which will be hereinafter more fully described and particularly pointed out in the appended claims.
In the drawings: Figure 1 is a side elevation of the pedal device, Fig. 1 is a section on line a-a of Fig. 1, Fig. 1 is a section on line of Fig. 1, Fig. 1 is a diagrammatic view of the operation or give of the rails, Fig. 2, is a sectional view of the semaphore operating means, Fig. 3, is a side view of Fig. 2 with one side of inclosing casing removed, Fig. 4:, is an enlarged elevational view of a section of Fig. 2, and Fig. 5, is an enlarged detail view. Fig. 6 is a perspective View showing the difierent parts of my invention in their assembled or working position.
Referring to Figs. 1, 1 and 1 the yielding reservoir, the action of which depends upon the give of the rail during the passage of the train, consists of a flat thin walled receptacle 3, fixed on a beam 2. It is fixed directly to the rail by means of bolts and indirectly by means of rod connections 1, in such a manner that owing to the pressure exerted by the undulatory give of the rail the reservoir 3, is compressed from above and from below, and its internal volume considerably reduced. In order to attain this object in a difierent and probably better manner the connections may be arranged at such intervals as correspond approximately to the usual minimum interval between adjacent vehicle axles, (see Fig. 1).
By means of a pipe 5, the reservoir 3, communicates with the rest of the signal mechanism fixed to a semaphore, and is filled with any suitable non-freezing liquid serving as a pressure-transmitting medium, (see Figs. 2, 3 and 4). At its upper end the connecting pipe 5, opens into a reservoir 8, which is provided with a liquid gage pipe 9, inserted through an outer opening 9 by means of which the entire signaling apparatus can be filled. The reservoir 8 consists of two vertical cylindrical chambers 8 and 8 of different dimensions, which are arranged in proximity to each other and communicate through an opening and of a third and lower chamber 8, located between the mouth of the said pipe and the lower openings of the two vertical chambers 8 and 8 In this lower chamber 8 immediately beneath the opening of the upper vertical chamber 8 acut oifvalve 8 is suspended from rod 8*", to the semaphore board 18, by means of a chain 19, and a compensation spring 20, in such a manner that when the signal is at danger, that is to say, when it occupies the horizontal position, the valve 8 shuts ofi the upper chamber 8 and leaves only the communication between the lower chamber 8, and smaller vertical chamber 8*, free. When the signal is oif on the other hand, that is to say when it occupies a position 45 from the horizontal, a free passage is provided between the lower chamber 8, and two vertical chambers 8 and 8 A tight fitting piston 11, is arranged in the smaller vertical cylindrical chamber 8 which is open at both ends, said chamber together with the rest of the detonating and checking mechanism is arranged in an ap propriate casing 6. The piston 11 when it is in its lowest position as shown in Fig. closes the aperture connecting chambers 85 and 8 that is to say, cuts off communication between the two vertical chambers 8 and 8", while in a raised position it opens this aperture, and communication between said chambers.
The end of a lever 12, is connected with ashaft 12 which rests above the cylindrical chamber 8 provided with the aforesaid piston 11, and this lever connects the yielding reservoir 3, with the signaling and checking apparatus proper.
The shaft 12, mounted in a suitable frame 7 fixed to the cylinder casing 7, carries the lever 12, already referred to together with a pawl 12"-, and a cam 12"; said lever and cam being arranged in such a manner, that when the lever 12 rests on the head of the piston. 11, the pawl 12 is adapted to hold the weight 13, by the projecting collar 13, in its raised position, and when the lever 12 is raised, and the shaft 12 rotated, the pawl 12, releases the weight 13, to slide down the rod 1a, striking against small rod or rods 15, and producing the detonation by exploding suitably arranged cartridges 16.
The cam 12, becomes operative simul taneously with the pawl 12, and when the shaft 12 is rotated, it is adapted to lift the lever 21, by means of the cam engaging with a roller with which the lever is provided, the latter being rotatable about a suitably arranged shaft 21 supported in a bracket; by this means the pawl 22, connected with lever 21, and held from above by a spiral spring 24, rotates a ratchet wheel 23, to the extent of one tooth. The position of the ratchet 23 is firmly held'by means of any suitable means as a pawl.
It will of course be understood that this signaling and checking apparatus is operative only when the signal is at danger that is to say when the semaphore arm occupies the horizontal'position.
The operation of the device is as follows: The reservoir 3 is compressed on both sides by the undulatory give of the rails, and its liquid contents ascends through the pipe to the chamber 8, where when the valve 8 is lifted itfinds accessto the chamber 8 cut off, and hence the piston 11, being raised, the lever 12, which is thereby lifted, rotates the shaft 12 and causes the weight to be released and fall, and by striking against the cartridges this weight produces the detonation signal. Simultaneously, owing to the lifting of the cam 12, in the manner described, the ratchet wheel 23 is rotated to the extent of one tooth. This is repeated each time a vehicle axle passes over the reservoir 3, so that it is possible to deter mine exactly how many axles of a given train have passed a signal at danger, thereby afiording direct and indisputable evidence as to the responsibility of the various olficials in case of accident.
Another device is also connected with the detonating mechanism: Upon the weight 13, an arm 17, is suspended and when the weight slides down it protrudes from the casing 6, and owing to the fact that it is appropriately hinged at 17 and loaded at 17 it assumes the horizontal position, as shown in Fig. 1. This projecting arm is a visible sign that the signaling mechanism has acted and that it must again be set for proper operation.
The signaling apparatus is filled to about half the height of the gage pipe 9, for the reason that with such a large excess of liquid there is no danger of any evaporation of liquid due to variation of temperature and thereby destroying the proper operation of the apparatus.
lVhat I claim as new and desire to secure by Letters Patent is 1. A. combined signaling and checking apparatus comprising a railroad track, a yielding reservoir connected with said track and whose volume is decreased by the motion from the track of the railroad, a signal, a checking device, means for connecting and disconnecting said reservoir from the checking device consisting of a receptacle having two vertical and intercommunicating chambers and a lower chamber communicating with said vertical chambers, a valve for closing the communication between the lower chamber and one of said vertical. chambers and connected with the signal, a movable piston in the other ver tical chamber adapted to close the communication between the two vertical chambers and transmit its motion to the checking apparatus.
2. A combined signaling and checking apparatus comprising a railroad track, a hollow yielding reservoir connected with and receiving motion from the track, a signal, a checking device, means for operating said checking device consisting of a receptacle provided with a pipe connecting with the yielding reservoir, said receptacle consisting of two vertical and intercommunicating chambers, and a lower chamber communicating with the vertical chambers, a valve for closing the communication between the lower chamber and one of said vertical chambers, and connected with the signal, a movable piston in the the vertical chambers is closed and the liquid is caused to lift the piston, and operate 10 the checking device.
IWAN VON KOROTKIEWITSGH.
other vertical chamber adapted to close the communication between the two vertical chambers and transmit its motion to the checking device, whereby When the signal is ofi, the Valve permits the fluid forced from the reservoir to pass freely into all the chambers of the receptacle While When the signal is at danger the inlet to one of Witnesses:
VIKroRrN VON LoUIN, Hnzson VON RABTNoURIs.
Copies of this patent may be obtained for five cents each, by addressing the Commissioner of Patents Washington, D. 0.
US50640309A 1909-07-07 1909-07-07 Automatic signaling and checking apparatus for railway-signals. Expired - Lifetime US1042236A (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3402677A (en) * 1966-02-07 1968-09-24 Whiting Corp Signal producing means for use with a railway car handling mechanism

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3402677A (en) * 1966-02-07 1968-09-24 Whiting Corp Signal producing means for use with a railway car handling mechanism

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