US3562419A - Inspection method and apparatus for track alignment - Google Patents

Inspection method and apparatus for track alignment Download PDF

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US3562419A
US3562419A US692566A US3562419DA US3562419A US 3562419 A US3562419 A US 3562419A US 692566 A US692566 A US 692566A US 3562419D A US3562419D A US 3562419DA US 3562419 A US3562419 A US 3562419A
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track
horizontal
datum
vertical
subframe
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US692566A
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John Kenneth Stewart
Helmut R E Von Beckmann
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Ivacan Inc
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Ivacan Inc
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    • EFIXED CONSTRUCTIONS
    • E01CONSTRUCTION OF ROADS, RAILWAYS, OR BRIDGES
    • E01BPERMANENT WAY; PERMANENT-WAY TOOLS; MACHINES FOR MAKING RAILWAYS OF ALL KINDS
    • E01B35/00Applications of measuring apparatus or devices for track-building purposes
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B61RAILWAYS
    • B61KAUXILIARY EQUIPMENT SPECIALLY ADAPTED FOR RAILWAYS, NOT OTHERWISE PROVIDED FOR
    • B61K9/00Railway vehicle profile gauges; Detecting or indicating overheating of components; Apparatus on locomotives or cars to indicate bad track sections; General design of track recording vehicles
    • B61K9/08Measuring installations for surveying permanent way
    • EFIXED CONSTRUCTIONS
    • E01CONSTRUCTION OF ROADS, RAILWAYS, OR BRIDGES
    • E01BPERMANENT WAY; PERMANENT-WAY TOOLS; MACHINES FOR MAKING RAILWAYS OF ALL KINDS
    • E01B2203/00Devices for working the railway-superstructure
    • E01B2203/16Guiding or measuring means, e.g. for alignment, canting, stepwise propagation

Definitions

  • FIG. 1 is a schematic plan view of apparatus in accordance I with the invention, two reference wires being diagrammatically shown;
  • FIG. 2 is a diagram showing the nature of the observations desired to be made when two wires are used to measure alignment and surface;
  • FIG. 3 is a schematic illustration of an optical system suita- I ble for providing that observation
  • I I I b traversing a portioniof railroad track to be inspected with a vehicle: I I I b. recording on tape by means of a television camera a record of the track condition; and
  • the camera may record such data as the conditionof the ballast rail anchors and tie plates, tie and rail, the track level and alignment and gauge.
  • the present invention also provides a system for observing the horizontal and vertical alignment of a railroad track comprising a track travelling vehicle; datum-providing means for. the track; a subframe connected to the vehicle, adapted to ride on the rail and referenced thereto; horizontal and vertical scale means on the subframe; and optical means for providing on a screen means a comparative picture of the instantaneous horizontal and vertical alignment of the horizontal and vertical scale means relative to the datum, whereby to provide a picture of the instantaneous horizontal and vertical alignment ofthetrack. 1.
  • the optical means may include a television camera which may be provided by mounting the, camera on a longitudinal track travelling frame, a hairline reference being provided in the camera optical system and longitudinally extending of the tracks.
  • the apparatus can be used as a control reference system for a maintenance of way vehicle, say, a jacking and tamping vehicle.
  • the datum may be provided
  • FIG. 4 The picture of the instantaneous horizontal and vertical FIG. 4 is a diagrammatic representation of the optical system of FIG. 3 including a television camera;
  • FIG. 5 is a view similar to FIG. 3 indicating the configuration used when a single wire system is provided;
  • FIG. 6 is a schematic detail of a subframe capable of providing observations of track cross level and track gauge condition; and 1 FIGS. 7 and 8 are perspective diagrammatic representations of alternative arrangements, a television camera being referenced to the track by a track running frame and in the absence of wire references, an index mark being provided in the camera optical system.
  • a light metal frame 10 comprising six 8 ft. long sections 11 mechanically coupled together, is' referenced to the track by means of spring biased rollers 12. Strung between the ends of the frame 10 adjacent and immediately above each rail of the track is a reference wire 14', 14A.'Be cause of the length of the frame 10 the wires 14 and 14A can be considered to be referenced to the track and since over this length track errors would be averaged the wires'can be considered to be referenced datum wires.
  • the frame could be mounted beneath an inspection car 18 or, where it is desired to inspect track under load conditions the front and rear sections 11 of the frame 10 could be attached to the front and rear portions of a locomotive and the wires 14 and 14A strung beneath the locomotive; subframe 15 with its scales and optical system also being positioned beneath the locomotive independent thereof but propelled thereby. Yet again theframe 10 and its associated members and the subframe 15 could be provided beneath a jacking and tamping machine and the observations obtained from the system could be used to control the operation of the jacking and tamping machine.
  • FIG. 2 there is seen the it is desired to make in order to present a picture of the track condition.
  • centerline on the subframe 15 and associated with the reference wire 14 is a vertical scale 20 and a horizontal scale 21.
  • the scales 20 and 21 are shown facing outwardly from the plane of the paper but, of course, in actual practice the scale 21 will lie horizontally so that an optical system which provides an observation point 22 will look down directly on the wire 14 and measure the scale 21 position thereagainst.
  • the scale 20 will be vertically arranged and inwardly directed so that from an observation point 24 the wire 14 can be directly compared against thescale 20.
  • FIGS. 3 and 4 there is illustrated an optical system mounted on the subframe whereby the track alignment and surface condition can be projected-onto a single screen.
  • observation position 22 of FIG. 2 is provided by means of a mirror 32 which reflects onto a mirror 34, which mirror also provides the observation point 24 and, similarly, mirrors 36 and 37 provide the observation points for the reference wire 14A.
  • Mirrors 37 and 34 then project onto a single mirror 38, which provides the observation position 39 so that an observer looking into the plane of the paper at the angled mirror 38 is provided with a view which he would have had had he taken a downwardly observing position from the observation position 39.
  • the mirror 38 has a television camera 40 focused thereon and the television camera records the picture displayed on the mirror 38 for either instantaneous reproduction on a television screen 41, which television screen may be directly coupled on a closed circuit with the television receiver 40 or may be at a remote point, for example the engineering office of the railroad, on which the picture may be received on the railroads own microwave system or may be used for analysis and comparison from a tape at a later date.
  • a television screen 41 which television screen may be directly coupled on a closed circuit with the television receiver 40 or may be at a remote point, for example the engineering office of the railroad, on which the picture may be received on the railroads own microwave system or may be used for analysis and comparison from a tape at a later date.
  • FIG. 5 there is shown an optical system mounted on the subframe which is similar to the optical system of FIG. 3 but in this instance it will be observed that a single centrally located reference wire 14B is provided in place of the reference wires 14 and 14A.
  • a corrective lens system 32C and 36C may be provided.
  • FIG. 6 the subframe l5 beneath the mirror 38 is shown to be made in two sections 15A and 15B telescopic one to the other.
  • a reference marker 60 on the portion 158 when read against the portion 15A provides an immediate picture of the gauge condition of the track.
  • a cross-level bubble provided on the section 15A provides in the screen 38 an im-
  • FIG. 7 there is shown an arrangement in which the frame mediate picture of the cross-level condition of the track.
  • the frame 10 is split into two sections 70 and 71 connected by a rigid link 73.
  • the frame 10 is again referenced to the track.
  • Standing upright from the rear comers of the section 70 and from the leading comers of the section 71 are upright posts 75, 76, 77 and 78.
  • Four cables are cross-connected, one from the top of the post 75 to the base of post 77, one from the top of the post 78 to the bottom of post 76, one from the top of post 77 to the bottom of post 75 and one from the top of the post 76 to the bottom of post 78.
  • Mounted on these cables is a camera lens system diagrammatically indicated at 80.
  • This camera 0bserves a mirror and scale system on subframe 15 but in this embodiment the reference wires 14, 14A and 14B are replaced by a hairline or hairlines inscribed on the optical screen of the television camera.
  • a hairline is provided extending in the longitudinal direction of the track and a second hairline is positioned transversely of the track to form a cross-wire arrangement.
  • the camera will be able to observe the relation to the scales to the cross-wires and to provide a picture of the track condition.
  • a trussed structure 81 which is made of a light rigid metal braced in a manner to give maximum rigidity, forms the frame 10.
  • the frame is referenced to the track and a subframe 15 floats therebetween and is itself referenced in the manner aforementioned.
  • a camera 80 is rigidly mounted on the structure 81 and its optical screen is provided with longitudinally extending hairline or hairlines.
  • camera 80 and subframe 15 are shown positioned at the center of the longitudinal span of the frame 10, it will be clear that it could occupy any other position on the frame if certain ratios were desired.
  • the system of the present invention can be made to pass over the track and record for immediate or later use the state of the track condi tion.
  • the quite well-known method of stringlining could be performed with the device and where it is desired to perform such method, the frame could suitably be made the conventional 66 feet long so that the mid-ordinate of the scale, measured in inches, could be referenced directly to 10 a grid or other scale device could be employed in the optical system and an engineerobserving an inspection tape could; at a glance, by comparing against the grid, observe the precise. spots at which work was required to maintain the track to the standards set by the'grid. Inspection films could be made before and after tamping operations and could be compared on side by side monitors or on the same screen in order to get an instantaneous impression of the success of the track-working operation which had been performed.
  • audio channels could be provided for any one function of the system and could be used. for example, by the track-working foreman to advise that at this point the jacking and tamping machine had to stop and wait the arrival of further ballast, tie plates or the like, or record any other useful information which would assist in the planning of future operations. 7
  • the invention also contemplates a situation where the reference wire or wires are not attached to the frame but are tagged to the track at a predetermined reference position prior to the arrival of the remainder of the system of the invention.
  • a system for observing'the horizontal and vertical alignment of a. railroad track comprising a track-travelling vehicle
  • datum'providing means for the track a subframe connected to the vehicle, adapted to ride on the rail and referenced thereto; horizontal and vertical scale means on the subframe; and optical means for providing on a single screen means a comparative picture of the instantaneous horizontal and vertical alignment of the horizontal and vertical scale means relative to the datum, whereby to provide a picture of the instantaneous horizontal and vertical alignment of the track.
  • the optical means includes a television camera; and wherein the datum is provided by mounting the camera on a long track-travelling frame and providing a hairline reference longitudinally extending of the track in the camera optical screen.
  • a system for observing the horizontal and vertical alignment of a railroad track comprising a track-travelling vehicle; datum wire means extending longitudinally of the track; a subframe connected to the vehicle, adapted to ride on the rail and referenced thereto; horizontal and vertical scale means on the subframe; and optical means for providing on a single screen a comparative picture of the instantaneoushorizontal and vertical alignment of the horizontal and vertical scale means relative to the datum wire means, whereby to provide a picture of the instantaneous horizontal and vertical alignment of the track.
  • the datum wire means comprises two datum wires extending longitudinally of the track one adjacent each rail, the subframe being referenced to the track; and in which the horizontal and vertical scale means comprise horizontal and vertical scales for the grade rail and for the other rail; the optical means providing on said single screen a comparative picture of the instantaneous horizontal and vertical alignment of each of the horizontal and vertical scales relative to its appropriate datum wire.
  • the datum wire means comprises a single wire and in which the horizontal and vertical scale means compriselhorizontal and vertical scales for the grade and for the other rail; saidv optical means providing on said single screen a comparative picture of the instantaneous horizontal and vertical alignment of both horizontal and both vertical scales relative to the datum wire.
  • indicator means is provided in the horizontal plane on the subframc, movable transversely and referenced to the track to further provide a pictorial indication on the screen of the instantaneous gauge condition of the track.
  • a systentfor observing the horizontal and vertical align ment of a railroad track having at least one rail comprising a track travelling vehicle, datum-providing means for the track, a subframe connected to the vehicle, adapted to ride on the rail and referenced thereto and'means for optically displaying on a single screen the movement of the subframe relative to the datum-providing means.

Abstract

An inspection method and apparatus for observing the instantaneous horizontal and vertical alignment of a railroad track by optically comparing scales on a subframe of the vehicle which is referenced to and follows the longitudinal contours of the track with a datum line extending longitudinally of the track and providing on a single screen, preferably a television screen, a pictorial representation, which may be recorded on tape for reproduction, of the track vertical and horizontal alignment condition, and also in a preferred embodiment, the gauge condition or tie plate or rail anchor and tie condition.

Description

I United States Patent 1 1 3,562,419
[72] Inventors John Kenneth Stewart; 3,101,175 8/1963 Brown l78/6IND Helrnut R. E. von Beckmann, Columbia, S.C. 3,240,160 3/1966 Blix 33/60 [21] App]. No 692,566 3,278,680 l0/l966 Hummel..... l78/6IND [22] Filed Dec. 21, 1967 3,426,146 2/1969 Seaman l78/6IND [45] Patented Pn'ma Examiner-Richard Murra 731 Assignee Canada Iron Foundries, Limited 'f Examiner floward Brlitton Montreal Quebec Canada AttorneySmart & Biggar [54] INSPECTION METHOD AND APPARATUS FOR TRACK ALIGNMENT 12 Claims, 8 Drawing Figs.
U.S. i An ins ection method and apparatus for obge v. 33/60 ing the instantaneous horizontal and vertical alignment of a [5 l] Int. Cl Elllb 29/04, railroad track by optically comparing Scales on a subframe of Eolb l 8 the vehicle which is referenced to and follows the longitudinal of Search contours of the track a datum line extending longitu- 178/6IND dinally of the track and providing on a single screen, preferably a television screen, a pictorial representation, [56] References cued which may be recorded on tape for reproduction, of the track UNITED STATES PATENTS vertical and horizontal alignment condition, and also in a 2,962,979 12/ 1960 McCormick 33/60 preferred embodiment, the gauge condition or tie plate or rail 7/1962 Plasser 1 78/6lND anchor and tie condition.
PATENIEU FEB 9 IQYI SHEET 1 OF 3 INVENTORS JOHN K. STEWART R. E. VON BECKMANN HELMUTH ATTORNEYS.
PATENTED FEB 9l97| SHEET 2 BF 3 INVENTORS m m A m m T B N 0 m o R AT fORNEYS' PATENTED FEB 9 an SHEEI30F3,
ENTORS JOHN K STEWART R. E. VON BECKMANN I iigga TTORNEY INSPECTION METHOD AND APPARATUS FOR TRACK ALIGNMENT BACKGROUND OF THE INVENTION -tive to a datum. This provides to an engineer responsible for the maintenance of the track, a graphical record 'of the track condition so that he may determine at his office whether the track condition has deteriorated beyond an acceptable minimum standard and requires maintenance, or whether it is BRIEF DESCRIPTION OF THE DRAWINGS The following is a description by way of example of certain embodiments in accordance with the present invention, reference being had to the accompanying drawings in which:
FIG. 1 is a schematic plan view of apparatus in accordance I with the invention, two reference wires being diagrammatically shown;
FIG. 2 is a diagram showing the nature of the observations desired to be made when two wires are used to measure alignment and surface;
FIG. 3 is a schematic illustration of an optical system suita- I ble for providing that observation;
still acceptable. After an analysis of the graphical records, if j the engineer decides that corrective operation is required, he orders the necessary measures taken. However, the maintenance machines which operate to perform such corrective measures as'vertically aligning and horizontally aligning the track operate to their own individual datum-providing systems which cannot be absolutely referenced to the datums of the track recording vehicle. Furthermore, the datum-providing systems that are available on the market which control the horizontal and vertical corrective operations of the maintenance vehicles are only capable of exerting control at the time of the actual operation of correction and cannot provide a pennanent record of the track condition. 1
SUMMARY OF THE INVENTION The present inventionprovides an inspection method for the control of the condition of a railroadtrack which method comprises the steps of:
a. traversing a portioniof railroad track to be inspected with a vehicle: I I I b. recording on tape by means of a television camera a record of the track condition; and
c. screening the picture so recorded to compare the results with a standard.
The camera may record such data as the conditionof the ballast rail anchors and tie plates, tie and rail, the track level and alignment and gauge. v
The present invention also provides a system for observing the horizontal and vertical alignment of a railroad track comprising a track travelling vehicle; datum-providing means for. the track; a subframe connected to the vehicle, adapted to ride on the rail and referenced thereto; horizontal and vertical scale means on the subframe; and optical means for providing on a screen means a comparative picture of the instantaneous horizontal and vertical alignment of the horizontal and vertical scale means relative to the datum, whereby to provide a picture of the instantaneous horizontal and vertical alignment ofthetrack. 1.
It is a feature of the invention that the picture can be presented on a single screen. I
The optical means may include a television camera which may be provided by mounting the, camera on a longitudinal track travelling frame, a hairline reference being provided in the camera optical system and longitudinally extending of the tracks.
In an alternative by a wire or wires extending longitudinally of the track.
It is a feature of the invention that the apparatus can be used as a control reference system for a maintenance of way vehicle, say, a jacking and tamping vehicle.
arrangement the datum may be provided,
The picture of the instantaneous horizontal and vertical FIG. 4 is a diagrammatic representation of the optical system of FIG. 3 including a television camera;
FIG. 5 is a view similar to FIG. 3 indicating the configuration used when a single wire system is provided;
FIG. 6 is a schematic detail of a subframe capable of providing observations of track cross level and track gauge condition; and 1 FIGS. 7 and 8 are perspective diagrammatic representations of alternative arrangements, a television camera being referenced to the track by a track running frame and in the absence of wire references, an index mark being provided in the camera optical system.
DESCRIPTION OF THE PREFERRED EMBODIMENTS Referring now to the drawings: 7
In FIG; 1 a light metal frame 10, comprising six 8 ft. long sections 11 mechanically coupled together, is' referenced to the track by means of spring biased rollers 12. Strung between the ends of the frame 10 adjacent and immediately above each rail of the track is a reference wire 14', 14A.'Be cause of the length of the frame 10 the wires 14 and 14A can be considered to be referenced to the track and since over this length track errors would be averaged the wires'can be considered to be referenced datum wires. Mounted on the frame 10 but suspended independently thereof on the track and referenced to the track by means of sprung rollers 16 is a subframe. The subframe carries horizontal and vertical scales for each of the wires and an optical system as will presently become apparent.
example the frame could be mounted beneath an inspection car 18 or, where it is desired to inspect track under load conditions the front and rear sections 11 of the frame 10 could be attached to the front and rear portions of a locomotive and the wires 14 and 14A strung beneath the locomotive; subframe 15 with its scales and optical system also being positioned beneath the locomotive independent thereof but propelled thereby. Yet again theframe 10 and its associated members and the subframe 15 could be provided beneath a jacking and tamping machine and the observations obtained from the system could be used to control the operation of the jacking and tamping machine.
In FIG. 2 there is seen the it is desired to make in order to present a picture of the track condition. centerline on the subframe 15 and associated with the reference wire 14 is a vertical scale 20 and a horizontal scale 21. In the diagram the scales 20 and 21 are shown facing outwardly from the plane of the paper but, of course, in actual practice the scale 21 will lie horizontally so that an optical system which provides an observation point 22 will look down directly on the wire 14 and measure the scale 21 position thereagainst. Similarly, the scale 20 will be vertically arranged and inwardly directed so that from an observation point 24 the wire 14 can be directly compared against thescale 20.
Similar scales 26, 27 are provided for the wire 14A.
In FIGS. 3 and 4 there is illustrated an optical system mounted on the subframe whereby the track alignment and surface condition can be projected-onto a single screen. The
nature of the observations which observation position 22 of FIG. 2 is provided by means of a mirror 32 which reflects onto a mirror 34, which mirror also provides the observation point 24 and, similarly, mirrors 36 and 37 provide the observation points for the reference wire 14A. Mirrors 37 and 34 then project onto a single mirror 38, which provides the observation position 39 so that an observer looking into the plane of the paper at the angled mirror 38 is provided with a view which he would have had had he taken a downwardly observing position from the observation position 39.
In FIG. 4 the mirror 38 has a television camera 40 focused thereon and the television camera records the picture displayed on the mirror 38 for either instantaneous reproduction on a television screen 41, which television screen may be directly coupled on a closed circuit with the television receiver 40 or may be at a remote point, for example the engineering office of the railroad, on which the picture may be received on the railroads own microwave system or may be used for analysis and comparison from a tape at a later date.
In FIG. 5 there is shown an optical system mounted on the subframe which is similar to the optical system of FIG. 3 but in this instance it will be observed that a single centrally located reference wire 14B is provided in place of the reference wires 14 and 14A. In view of the long optical path between the reference wire 14B and the scales B and 218 as reflected in the mirror 34B and thence the mirror 388, a corrective lens system 32C and 36C may be provided.
In FIG. 6 the subframe l5 beneath the mirror 38 is shown to be made in two sections 15A and 15B telescopic one to the other. A reference marker 60 on the portion 158 when read against the portion 15A provides an immediate picture of the gauge condition of the track. Also a cross-level bubble provided on the section 15A provides in the screen 38 an im- In FIG. 7 there is shown an arrangement in which the frame mediate picture of the cross-level condition of the track.
10 is split into two sections 70 and 71 connected by a rigid link 73. The frame 10 is again referenced to the track. Standing upright from the rear comers of the section 70 and from the leading comers of the section 71 are upright posts 75, 76, 77 and 78. Four cables are cross-connected, one from the top of the post 75 to the base of post 77, one from the top of the post 78 to the bottom of post 76, one from the top of post 77 to the bottom of post 75 and one from the top of the post 76 to the bottom of post 78. Mounted on these cables is a camera lens system diagrammatically indicated at 80. This camera 0bserves a mirror and scale system on subframe 15 but in this embodiment the reference wires 14, 14A and 14B are replaced by a hairline or hairlines inscribed on the optical screen of the television camera. Preferably one hairline is provided extending in the longitudinal direction of the track and a second hairline is positioned transversely of the track to form a cross-wire arrangement. Thus, the camera will be able to observe the relation to the scales to the cross-wires and to provide a picture of the track condition.
In FIG. 8 a trussed structure 81 which is made of a light rigid metal braced in a manner to give maximum rigidity, forms the frame 10. Again the frame is referenced to the track and a subframe 15 floats therebetween and is itself referenced in the manner aforementioned. Again a camera 80 is rigidly mounted on the structure 81 and its optical screen is provided with longitudinally extending hairline or hairlines. Although camera 80 and subframe 15 are shown positioned at the center of the longitudinal span of the frame 10, it will be clear that it could occupy any other position on the frame if certain ratios were desired.
In operation it will be observed that the system of the present invention can be made to pass over the track and record for immediate or later use the state of the track condi tion. If desired, the quite well-known method of stringlining" could be performed with the device and where it is desired to perform such method, the frame could suitably be made the conventional 66 feet long so that the mid-ordinate of the scale, measured in inches, could be referenced directly to 10 a grid or other scale device could be employed in the optical system and an engineerobserving an inspection tape could; at a glance, by comparing against the grid, observe the precise. spots at which work was required to maintain the track to the standards set by the'grid. Inspection films could be made before and after tamping operations and could be compared on side by side monitors or on the same screen in order to get an instantaneous impression of the success of the track-working operation which had been performed.
As before, some suitable counting mechanism could show a distance reference on the screen.
It is also contemplated that audio channels could be provided for any one function of the system and could be used. for example, by the track-working foreman to advise that at this point the jacking and tamping machine had to stop and wait the arrival of further ballast, tie plates or the like, or record any other useful information which would assist in the planning of future operations. 7
It is to be understood that the invention also contemplates a situation where the reference wire or wires are not attached to the frame but are tagged to the track at a predetermined reference position prior to the arrival of the remainder of the system of the invention. i l i We claim:
l. A system for observing'the horizontal and vertical alignment of a. railroad track comprising a track-travelling vehicle;
. datum'providing means for the track; a subframe connected to the vehicle, adapted to ride on the rail and referenced thereto; horizontal and vertical scale means on the subframe; and optical means for providing on a single screen means a comparative picture of the instantaneous horizontal and vertical alignment of the horizontal and vertical scale means relative to the datum, whereby to provide a picture of the instantaneous horizontal and vertical alignment of the track.
2. A system as claimed in claim 1 in which the optical means includes a television camera; and wherein the datum is provided by mounting the camera on a long track-travelling frame and providing a hairline reference longitudinally extending of the track in the camera optical screen. I
3. A system for observing the horizontal and vertical alignment of a railroad track comprising a track-travelling vehicle; datum wire means extending longitudinally of the track; a subframe connected to the vehicle, adapted to ride on the rail and referenced thereto; horizontal and vertical scale means on the subframe; and optical means for providing on a single screen a comparative picture of the instantaneoushorizontal and vertical alignment of the horizontal and vertical scale means relative to the datum wire means, whereby to provide a picture of the instantaneous horizontal and vertical alignment of the track.
4. Apparatus as in claim 3 wherein the optical means includes a television camera and wherein the screen is a television screen.
5. A system as claimed in claim 3 in which the datum wire means comprises two datum wires extending longitudinally of the track one adjacent each rail, the subframe being referenced to the track; and in which the horizontal and vertical scale means comprise horizontal and vertical scales for the grade rail and for the other rail; the optical means providing on said single screen a comparative picture of the instantaneous horizontal and vertical alignment of each of the horizontal and vertical scales relative to its appropriate datum wire.
6. Apparatus as claimed in claim 5 in which the subframc is in two sections telescoped one to the other transversely of the track, scale means being provided on one section and marker means being provided on the other section whereby to provide, by comparison of marker and scale, the instantaneous gauge condition of the track.
7. Apparatus as in claim 3 wherein the datum wire means is attached to the track-travelling vehicle and moves therewith.
8. A system as claimed in claim 7 in which the tracktravelling vehicle has separate carriages mechanically connected together.
9. A system as claimed in claim 3 in which the datum wire means comprises a single wire and in which the horizontal and vertical scale means compriselhorizontal and vertical scales for the grade and for the other rail; saidv optical means providing on said single screen a comparative picture of the instantaneous horizontal and vertical alignment of both horizontal and both vertical scales relative to the datum wire.
10. Apparatus as claimed in claim 9 wherein the datum wire is located substantially centrally of the track.
11. A system as in claim 12 wherein indicator means is provided in the horizontal plane on the subframc, movable transversely and referenced to the track to further provide a pictorial indication on the screen of the instantaneous gauge condition of the track.
12. A systentfor observing the horizontal and vertical align ment of a railroad track having at least one rail comprising a track travelling vehicle, datum-providing means for the track, a subframe connected to the vehicle, adapted to ride on the rail and referenced thereto and'means for optically displaying on a single screen the movement of the subframe relative to the datum-providing means.

Claims (12)

1. A system for observing the horizontal and vertical alignment of a railroad track comprising a track-travelling vehicle; datum providing means for the track; a subframe connected to the vehicle, adapted to ride on the rail and referenced thereto; horizontal and vertical scale means on the subframe; and optical means for providing on a single screen means a comparative picture of the instantaneous horizontal and vertical alignment of the horizontal and vertical scale means relative to the datum, whereby to provide a picture of the instantaneous horizontal and vertical alignment of the track.
2. A system as claimed in claim 1 in which the optical means includes a television camera; and wherein the datum is provided by mounting the camera on a long track-travelling frame and providing a hairline reference longitudinally extending of the track in the camera optical screen.
3. A system for observing the horizontal and vertical alignment of a railroad track comprising a track-travelling vehicle; datum wire means extending longitudinally of the track; a subframe connected to the vehicle, adapted to ride on the rail and referenced thereto; horizontal and vertical scale means on the subframe; and optical means for providing on a single screen a comparative picture of the instantaneous horizontal and vertical alignment of the horizontal and vertical scale means relative to the datum wire means, whereby to provide a picture of the instantaneous horizontal and vertical alignment of the track.
4. Apparatus as in claim 3 wherein the optical means includes a television camera and wherein the screen is a television screen.
5. A system as claimed in claim 3 in which the datum wire means comprises two datum wires extending longitudinally of the track one adjacent each rail, the subframe being referenced to the track; and in which the horizontal and vertical scale means comprise horizontal and vertical scales for the grade rail and for the other rail; the optical means providing on said single screen a comparative picture of the instantaneous horizontal and vertical alignment of each of the horizontal and vertical scales relative to its appropriate datum wire.
6. Apparatus as claimed in claim 5 in which the subframe is in two sections telescoped one to the other transversely of the track, scale means being provided on one section and marker means being provided on the other section whereby to provide, by comparison of marker and scale, the instantaneous gauge condition of the track.
7. Apparatus as in claim 3 wherein the datum wire means is attached to the track-travelling vehicle and moves therewith.
8. A system as claimed in claim 7 in which the track-travelling vehicle has separate carriages mechanically connected together.
9. A system as claimed in claim 3 in which the datum wire means comprises a single wire and in which the horizontal and vertical scale means comprise horizontal and vertical scales for the grade and for the other rail; said optical means providing on said single screen a comparative picture of the instantaneous horizontal and vertical alignment of both horizontal and both vertical scales relative to the datum wire.
10. Apparatus as claimed in claim 9 wherein the datum wire is located substantially centrally of the track.
11. A system as in claim 12 wherein indicator means is provided in the horizontal plane on the subframe, movable transversely and referenced to the track to further provide a pictorial indication on the screen of the instantaneous gauge condition of the track.
12. A system for observing the horizontal and vertical alignment of a railroad track having at least one rail comprising a track travelling vehicle, datum-providing means for the track, a subframe connected to the vehicle, adapted to ride on the rail and referenced thereto and means for optically displaying on a single screen the movement of the subframe relative to the datum-providing means.
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US3864039A (en) * 1973-07-12 1975-02-04 Us Transport Rail gage apparatus
JPS5112505A (en) * 1974-07-23 1976-01-31 Furukawa Electric Co Ltd Sharyono zenhokanshihoho
US4040738A (en) * 1975-03-20 1977-08-09 Gulton Industries, Inc. Railroad track profile spacing and alignment apparatus
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US5708470A (en) * 1996-06-10 1998-01-13 Condor Systems, Inc. Optical monitoring system apparatus
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US20140142868A1 (en) * 2012-11-18 2014-05-22 Andian Technologies Ltd. Apparatus and method for inspecting track in railroad
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US9255913B2 (en) 2013-07-31 2016-02-09 General Electric Company System and method for acoustically identifying damaged sections of a route
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US10807623B2 (en) 2018-06-01 2020-10-20 Tetra Tech, Inc. Apparatus and method for gathering data from sensors oriented at an oblique angle relative to a railway track
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US3864039A (en) * 1973-07-12 1975-02-04 Us Transport Rail gage apparatus
JPS5112505A (en) * 1974-07-23 1976-01-31 Furukawa Electric Co Ltd Sharyono zenhokanshihoho
JPS5416886B2 (en) * 1974-07-23 1979-06-26
US4040738A (en) * 1975-03-20 1977-08-09 Gulton Industries, Inc. Railroad track profile spacing and alignment apparatus
US4167756A (en) * 1976-09-08 1979-09-11 Lectrolarm Custom Systems, Inc. Split image camera system
US5708470A (en) * 1996-06-10 1998-01-13 Condor Systems, Inc. Optical monitoring system apparatus
US6064428A (en) * 1996-08-05 2000-05-16 National Railroad Passenger Corporation Automated track inspection vehicle and method
US6356299B1 (en) * 1996-08-05 2002-03-12 National Railroad Passenger Corporation Automated track inspection vehicle and method
US9950722B2 (en) 2003-01-06 2018-04-24 General Electric Company System and method for vehicle control
US7755660B2 (en) 2003-05-02 2010-07-13 Ensco, Inc. Video inspection system for inspection of rail components and method thereof
US20040263624A1 (en) * 2003-05-02 2004-12-30 Ensco, Inc. Video inspection system for inspection of rail components and method thereof
US8081320B2 (en) 2004-06-30 2011-12-20 Georgetown Rail Equipment Company Tilt correction system and method for rail seat abrasion
US9441956B2 (en) 2004-06-30 2016-09-13 Georgetown Rail Equipment Company System and method for inspecting railroad ties
US20060017911A1 (en) * 2004-06-30 2006-01-26 Villar Christopher M System and method for inspecting railroad track
US7616329B2 (en) 2004-06-30 2009-11-10 Georgetown Rail Equipment Company System and method for inspecting railroad track
US20090319197A1 (en) * 2004-06-30 2009-12-24 Villar Christopher M Tilt Correction System and Method for Rail Seat Abrasion
US9956974B2 (en) 2004-07-23 2018-05-01 General Electric Company Vehicle consist configuration control
US9733625B2 (en) 2006-03-20 2017-08-15 General Electric Company Trip optimization system and method for a train
US10308265B2 (en) 2006-03-20 2019-06-04 Ge Global Sourcing Llc Vehicle control system and method
US9828010B2 (en) 2006-03-20 2017-11-28 General Electric Company System, method and computer software code for determining a mission plan for a powered system using signal aspect information
WO2010151345A1 (en) * 2009-06-23 2010-12-29 Georgetown Rail Equipment Company Tilt correction system and method for rail seat abrasion
WO2013058807A1 (en) * 2011-10-18 2013-04-25 Daniel Brian S Laser-based dimensional object measurement method and system
US9671358B2 (en) 2012-08-10 2017-06-06 General Electric Company Route examining system and method
US9702715B2 (en) 2012-10-17 2017-07-11 General Electric Company Distributed energy management system and method for a vehicle system
US20140142868A1 (en) * 2012-11-18 2014-05-22 Andian Technologies Ltd. Apparatus and method for inspecting track in railroad
US8914171B2 (en) 2012-11-21 2014-12-16 General Electric Company Route examining system and method
US9846025B2 (en) 2012-12-21 2017-12-19 Wabtec Holding Corp. Track data determination system and method
US9255913B2 (en) 2013-07-31 2016-02-09 General Electric Company System and method for acoustically identifying damaged sections of a route
US9689681B2 (en) 2014-08-12 2017-06-27 General Electric Company System and method for vehicle operation
US9849894B2 (en) 2015-01-19 2017-12-26 Tetra Tech, Inc. Protective shroud for enveloping light from a light emitter for mapping of a railway track
US10349491B2 (en) 2015-01-19 2019-07-09 Tetra Tech, Inc. Light emission power control apparatus and method
US10728988B2 (en) 2015-01-19 2020-07-28 Tetra Tech, Inc. Light emission power control apparatus and method
US10384697B2 (en) 2015-01-19 2019-08-20 Tetra Tech, Inc. Protective shroud for enveloping light from a light emitter for mapping of a railway track
US9618335B2 (en) 2015-01-19 2017-04-11 Tetra Tech, Inc. Light emission power control apparatus and method
US9849895B2 (en) 2015-01-19 2017-12-26 Tetra Tech, Inc. Sensor synchronization apparatus and method
US10322734B2 (en) 2015-01-19 2019-06-18 Tetra Tech, Inc. Sensor synchronization apparatus and method
US10362293B2 (en) 2015-02-20 2019-07-23 Tetra Tech, Inc. 3D track assessment system and method
US11399172B2 (en) 2015-02-20 2022-07-26 Tetra Tech, Inc. 3D track assessment apparatus and method
US11259007B2 (en) 2015-02-20 2022-02-22 Tetra Tech, Inc. 3D track assessment method
US11196981B2 (en) 2015-02-20 2021-12-07 Tetra Tech, Inc. 3D track assessment apparatus and method
US10416098B2 (en) 2016-05-26 2019-09-17 Georgetown Rail Equiptment Company Three-dimensional image reconstruction using transmission and scatter radiography methods
US10311551B2 (en) 2016-12-13 2019-06-04 Westinghouse Air Brake Technologies Corporation Machine vision based track-occupancy and movement validation
CN107268348B (en) * 2017-07-25 2019-04-05 中铁六局集团天津铁路建设有限公司 Subway column check pit construction method
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US10870441B2 (en) 2018-06-01 2020-12-22 Tetra Tech, Inc. Apparatus and method for gathering data from sensors oriented at an oblique angle relative to a railway track
US11377130B2 (en) 2018-06-01 2022-07-05 Tetra Tech, Inc. Autonomous track assessment system
US11919551B2 (en) 2018-06-01 2024-03-05 Tetra Tech, Inc. Apparatus and method for gathering data from sensors oriented at an oblique angle relative to a railway track
US11560165B2 (en) 2018-06-01 2023-01-24 Tetra Tech, Inc. Apparatus and method for gathering data from sensors oriented at an oblique angle relative to a railway track
US10807623B2 (en) 2018-06-01 2020-10-20 Tetra Tech, Inc. Apparatus and method for gathering data from sensors oriented at an oblique angle relative to a railway track
US10730538B2 (en) 2018-06-01 2020-08-04 Tetra Tech, Inc. Apparatus and method for calculating plate cut and rail seat abrasion based on measurements only of rail head elevation and crosstie surface elevation
US11305799B2 (en) 2018-06-01 2022-04-19 Tetra Tech, Inc. Debris deflection and removal method for an apparatus and method for gathering data from sensors oriented at an oblique angle relative to a railway track
US10625760B2 (en) 2018-06-01 2020-04-21 Tetra Tech, Inc. Apparatus and method for calculating wooden crosstie plate cut measurements and rail seat abrasion measurements based on rail head height
US11529980B2 (en) 2019-01-30 2022-12-20 Ensco, Inc. Systems and methods for inspecting a railroad
US11938982B2 (en) 2019-01-30 2024-03-26 Ensco, Inc. Systems and methods for inspecting a railroad
US10908291B2 (en) 2019-05-16 2021-02-02 Tetra Tech, Inc. System and method for generating and interpreting point clouds of a rail corridor along a survey path
US11169269B2 (en) 2019-05-16 2021-11-09 Tetra Tech, Inc. System and method for generating and interpreting point clouds of a rail corridor along a survey path
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CN113550184A (en) * 2021-07-28 2021-10-26 中铁四院集团南宁勘察设计院有限公司 Construction method of assembled foundation pit, rail weighbridge foundation and integral ballast bed

Also Published As

Publication number Publication date
GB1204558A (en) 1970-09-09
AT318692B (en) 1974-11-11
CH498249A (en) 1970-10-31
FR1596227A (en) 1970-06-15
SE350787B (en) 1972-11-06
ES361515A1 (en) 1971-06-16

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