MACHINE FOR STABILIZING A TRACK
20170159244 ยท 2017-06-08
Assignee
Inventors
Cpc classification
E01B27/20
FIXED CONSTRUCTIONS
E01B27/17
FIXED CONSTRUCTIONS
E01B27/13
FIXED CONSTRUCTIONS
International classification
E01B27/13
FIXED CONSTRUCTIONS
E01B27/20
FIXED CONSTRUCTIONS
E01B27/17
FIXED CONSTRUCTIONS
Abstract
A machine (1) for stabilization of a track (2) has a machine frame (5), mobile on the track by means of on-track undercarriages, on which a stabilizing unit (4) is arranged which has vertical adjustment drives (6) as well as a vibration exciter (7). The stabilizing unit is designed to be displaceable relative to the machine frame (5) in a longitudinal direction (23) of the machine by means of a longitudinal displacement drive (24).
Claims
1. A machine for stabilization of a track (2), including a machine frame (5) mobile on the track (2) by means of on-track undercarriages (3) and a stabilizing unit (4) which has vertical adjustment drives (6) as well as a vibration exciter (7), wherein the stabilizing unit (4) is designed to be displaceable relative to the machine frame (5) in a longitudinal direction (23) of the machine by means of a longitudinal displacement drive (24).
2. The machine according to claim 1, wherein, between the machine frame (5) and the stabilizing unit (4), a thrust drive (28) is provided which is articulatedly connected at a first end (27) to a thrust lever (26) and by a second end (29) to the stabilizing unit (4), wherein the thrust lever (26) has a lower end (30)with regard to the verticalwhich is articulatedly connected to the stabilizing unit (4) while a thrust roller (33) provided for application to the machine frame (5) is arranged at an upper end (31).
3. The machine according to claim 1, wherein a compensating lever (21) is provided which is connected by a first linkage (19) to the machine frame (5) and by a second linkage (20) to the stabilizing unit (4), and wherein the longitudinal displacement drive (24) is connected between the two linkages (19, 20) to the compensating lever (21).
4. The machine according to claim 1, wherein a speedometer (34) connected to the stabilizing unit (4) or the machine frame (5) is provided which is designed to roll on a rail (17) of the track (2).
5. The machine according to claim 1, wherein flanged rollers (16), designed to roll on the track (2), of the stabilizing unit (4) are connected in each case to a separate, independently actuatable hydraulic drive (35).
Description
[0007] The invention will be described in more detail below with reference to an embodiment represented in the drawing in which
[0008]
[0009]
[0010] A machine 1, shown in
[0011] As can be seen in
[0012] The stabilizing unit 4 is equipped with a thrusting device 25 for producing a vertical load. Said device consists of a thrust lever 26 which is articulatedly connected to a first end 27 of a thrust drive 28, the second end 29 of which is linked to the stabilizing unit 4. The thrust lever 26, in turn, is articulatedly connected by a lower end 30with regard to the verticalto the stabilizing unit 4 while, at an upper end 31, a thrust roller 33 is arranged which is provided for application to the machine frame 5 (or to a plate 32 mounted on the same).
[0013] Further provided on the machine 1 is a speedometer 34 (
[0014] During working operations, the tamping machine 9 is moved in steps from sleeper to sleeper of the track 2 and cyclically stopped in each case in order to lower the tamping unit 12 into the track bed for the tamping operation. To the rear in the working direction, the tamped track 2which is in a temporary vertical positionis set into vibrations by means of the stabilizing unit 4 and, with application of a downward load, is lowered into a target position. In order to prevent the track 2, in the process, from being lowered too much in one place by excessively lengthy stabilizing action during the stopping phase of the tamping machine 9, the stabilizing unit 4 is now moved forward relative to the machine frame 5 by means of the longitudinal displacement drive 24assisted by actuation of the hydraulic drives 35 of the flanged rollers 16 rolling on the track 2while the stopping phase continues. With the aid of the speedometer 34 which registers the forward motion of the two machines 1 and 9 coupled to one another, it is possible to control the forward motion by the longitudinal displacement drive 24 correspondingly, or to match it to the forward motion of the machine in such a way that an optimal working result is achieved.
[0015] Shown in