The invention relates to a method for determining vertical and lateral position faults of a track, wherein the track is scanned with the aid of track position measuring units following one another in a longitudinal direction of the track, while using a reference base connecting the track position measuring units to one another. The invention also relates to a track maintenance machine for carrying out track position corrections, including a machine frame which is mobile by on-track undercarriages on rails of a track and includes a track lifting and lining unit, a track position measuring system composed of track position measuring units following one another with regard to a longitudinal direction of the machine and each registering the track position, and a reference base common to the track position measuring units.
According to WO 2015/124253, a track measuring system for determining track position faults is already known, wherein the machine frame itself is used as reference base for the track position measuring units. These are likewise arranged on the machine frame and designed for non-contact scanning of the rails.
It is the object of the present invention to create a method or a track maintenance machine of the kind mentioned at the beginning with which a simplification of the engineering effort can be achieved.
According to the invention, this object is achieved with a method in which both vertical as well as lateral position faults of the track are scanned on the track position measuring unit located centrally with regard to the longitudinal direction of the track, at a single measuring chord which is fixed to the two outer track position measuring units and forms the entire reference base. This object is also achieved with a track maintenance machine in which the common reference base is formed of a single measuring chord disposed centrally between the rails and extending in the longitudinal direction of the machine.
Due to the use of only a single measuring chord as reference base, a simplified design of the track position measuring units is possible since the hitherto known transferring of the vertical position faults onto two measuring chords, which are additionally placed in the upper region of the machine, is completely unnecessary. This also has the particular advantage that the free space, which was thus far required for the unhindered longitudinal guidance of the measuring chord over the entire length of the machine, is now available without hindrance for the structure of the machine. Also, using a single measuring chord guarantees a precise measurement independent of deflections or torsion of the machine frame.
Additional advantages of the invention become apparent from the further claims and the drawing description.
The invention will be described in more detail below with reference to embodiments represented in the drawing.
A track maintenance machine 1, shown in
Provided for determining track position faults is a track position measuring system 10 which is composed of three track position measuring units 12, arranged one following the other with regard to the longitudinal direction 11 of the machine and each registering the position of the rail 4, and a reference base 13 common for said units. The reference base 13 consists of a single measuring chord 14 arranged centrally between the rails 4 and extending in the longitudinal direction 11 of the machine.
Associated with each track position measuring unit 12 is an inclinometer 15 for registering a transverse level of the track 5. The track position measuring unit 12 located centrally with regard to the longitudinal direction 11 of the machine is fastened directly on the track lifting-lining unit 8, while the two track position measuring units 12 at the ends are arranged, together with the associated inclinometer 15, on the on-track undercarriage 2 in each case. The inclinometer 15 associated with the central track position measuring unit 12 is positioned on the satellite frame 9 (see
Arranged on the central track position measuring unit 12 are two measuring transducers 16, each contacting the measuring chord 14, for detecting a longitudinal level (i.e. the difference between target position and actual position of the track in vertical direction) on the one hand and for detecting a versine (corresponds to the difference between target position and actual position of the track in horizontal direction) on the other hand.
Each of the three track position measuring units 12 has two laser scanners 17, associated with a rail 4 in each case, for scanning in a horizontal y-axis, extending perpendicularly to a longitudinal direction of the rail, and in a z-axis extending in vertical direction (see
As shown schematically in
The schematic representation according to
In
With this scanning movement in the horizontal y-axis, extending perpendicularly to the longitudinal direction of the rail, and in the z-axis extending in vertical direction, it is possible to register both an upper rail edge (SOK) for the vertical position as well as an inner rail edge (SIK) for a versine (see
The further variant, pictured in
Arranged on the measuring base 22 of the central track position measuring unit 12 is a measuring transducer 29 for simultaneously determining both a longitudinal level as well as a versine. This measuring transducer 29 has a contact member, not further shown, for contacting the measuring chord 14 situated between the rails 4 and serving as reference base 13. The measuring base 22 is connected to an inclinometer 15 for detecting the transverse track position.
Prior to working operations of the track maintenance machine 1 shown in
By lowering the track lifting- and lining unit 8 onto the two rails 4, the two track tracing rollers 23 are automatically placed upon the rails 4, whereby the two coil springs 25 are compressed (see left-hand half of the picture in
In further sequence, the drive 27 is actuated for a slight transverse displacement of the entire track position measuring unit 12 relative to the track lifting- and lining unit 8 in order to press it against the rail 4 selected as reference rail.
After finishing working operations, along with lifting the track lifting- and lining unit 8, the central track position measuring unit 12 connected thereto is automatically also lifted, whereby the two coil springs 25 are relaxed again.
Number | Date | Country | Kind |
---|---|---|---|
382/2015 | Jun 2015 | AT | national |
Filing Document | Filing Date | Country | Kind |
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PCT/EP2016/000812 | 5/17/2016 | WO | 00 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2016/202420 | 12/22/2016 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
3547039 | Franz | Dec 1970 | A |
3664265 | Sauterel | May 1972 | A |
3799058 | Plasser | Mar 1974 | A |
3864039 | Wilmarth | Feb 1975 | A |
4165693 | Theurer | Aug 1979 | A |
6804621 | Pedanckar | Oct 2004 | B1 |
20180106000 | Fruehwirt | Apr 2018 | A1 |
20190257038 | Wollanek | Aug 2019 | A1 |
Number | Date | Country |
---|---|---|
483520 | Feb 1970 | CH |
10045468 | Apr 2002 | DE |
2015124253 | Aug 2015 | WO |
Number | Date | Country | |
---|---|---|---|
20180106000 A1 | Apr 2018 | US |