The invention relates to a method of adjusting the height of a fixed rail carriageway in which the sleepers supporting the rails are embedded in a carriageway panel resting on a substrate.
Various methods of manufacturing fixed rail carriageways have already been disclosed, e.g. by DE 196 53 858 A1. In general, with fixed rail carriageways, the sleepers supporting the rails are embedded in a carriageway panel by casting. The carriageway panel in turn rests on a substrate, the term “substrate” being used in the present patent application to represent various types of substructure which may include for example a hydraulically bonded support layer (HGT).
In practice, the problem has arisen that the actual height of the rails deviates over time from the specified target height, these deviations usually being ascribable to settlement of the substructure. In the ballast tracks formerly used, such faults can be remedied relatively simply by plugging operations. In the case of rails in the form of a fixed carriageway, in particular with concrete constructions, there is a possibility of compensating to a limited degree the height differences which have arisen in the region of the rail support points. With this method, however, only a comparatively slight height difference can be adjusted. In the case of massive settlement, however, it is not possible to regain the target height of the rails solely within the rail support points.
In DE 196 31 430 C2, a method is described for incorporating filler material between two layers of a fixed carriageway for rail vehicles. The filler material is in the form of a liquid and is incorporated or squeezed into the fixed carriageway through apertures.
In DE 198 48 655 A1, a method is described for renovating fixed carriageways in which the layers of the fixed carriageway are separated by mechanical means, e.g. separation can be carried out by means of a wedge, by saws or by water-jet cutting.
The problem on which the invention is based is to indicate a method for the height adjustment of a fixed rail carriageway, which can be used even if there are relatively great height differences and with which the layers can be reliably separated.
To solve this problem, according to the invention a method of adjusting the height of a fixed rail carriageway is proposed comprising the following steps:
The invention is based on the realisation that height adjustment is not only possible by measures in the region of the rail support points, but can be effected by lifting of the entire carriageway panel. According to the invention, to this end the carriageway panel is separated from the substrate or substructure or the hydraulically bonded support layer by pressure impacts in such a manner that none of the parts is damaged. Then, perpendicular to the carriageway panel, filling apertures are formed at regular intervals. With suitable aids, the carriageway panel resting loosely on the substrate is lifted and moved into the desired target position, in particular to the target height and is fixed there. Then, a flowable casting material is introduced through the filling apertures and flows through the filling apertures into the space between the carriageway panel and the substrate until the entire gap between the carriageway panel and the substrate is filled up. After hardening of the casting material, the rail carriageway is permanently fixed in the specified target height.
In the method according to the invention, it is preferred that the filling apertures are formed in the carriageway panel in the region of the rails. It is advantageous if transverse to the rails plural, preferably two, filling apertures are formed. Alternatively, or in addition, optionally plural filling apertures can be formed in the longitudinal direction of the rails, their number depending on the length of the track section to have its height adjusted.
The necessary filling apertures can be drilled while the method according to the invention is being carried out. In order to simplify the incorporation of the casting material, this can be poured in, squeezed in or injected.
In order that after carrying out the method according to the invention for height adjustment, the necessary carrying capacity is available, in particular concrete or concrete substitute systems are used as casting material.
In the method according to the invention, the separation of the carriageway panel from the substrate can be carried out in particular by pneumatic pressure impacts. It is advantageous if, before separation, apertures are generated for incorporating the pressure impact tools.
If necessary, separation can additionally be carried out by horizontally disposed, force-generating elements such as hydraulic cylinders. As a further option, it can be provided to separate the carriageway panel by means of a horizontally disposed cable saw.
Further advantages and details of the invention will be explained by means of an embodiment with reference to the Figures, which are schematic section diagrams and show:
The fixed rail carriageway 1 shown in
In the carriageway panel 2, sleepers are embedded, whose single blocks 4, 5 support rails 6, 7. In
In order to adjust this height difference, the carriageway panel 2 is separated from the substrate 3 by pressure impacts, care being taken that the carriageway panel 2 and the substrate 3 are not damaged. Accordingly, separation is effected exactly at the contact face 9 between the carriageway panel 2 and the substrate 3. After separation, the carriageway panel 2 rests loosely on the substrate 3.
Filling apertures 10 are drilled in the carriageway panel 2. The filling apertures 10 extend transverse to the carriageway panel 2 from the upper face to the lower face. In the longitudinal direction of the rails, a large number of such filling apertures are drilled at regular intervals. In addition to the two filling apertures 10 shown in
After the drilling of the filling apertures 10, the carriageway panel 2 resting loosely on the substrate 3 is lifted. To this end, a suitable lifting means is used, which makes it possible to indicate and adjust the rails 6, 7 precisely to the target height. When this adjustment is complete, the “floating” carriageway panel 2 is fixed in this position.
After fixing of the carriageway panel 2, casting material 11 is injected via the filling apertures 10. The casting material 11 passes into the gap between the lower face of the carriageway panel 2 and the upper face of the substrate 3 and completely fills this gap. The viscosity of the casting material 11 is so selected that it does not run out of the open sides. At the sides of the carriageway panel 2, casing can also be applied, which is removed again after hardening of the casting material 11. To inject the casting material 11, a pump or other suitable tool can be used. After hardening of the casting material 11, the process of adjusting the height is complete, and then the rail carriageway 1 is available raised to the specified target height with the same carrying capacity as before the measure was carried out.
Number | Date | Country | Kind |
---|---|---|---|
10 2005 013 947 | Mar 2005 | DE | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
---|---|---|---|---|
PCT/DE2006/000501 | 3/20/2006 | WO | 00 | 9/14/2006 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2006/102866 | 10/5/2006 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
20040099750 | Reichel et al. | May 2004 | A1 |
20040182946 | Reichel et al. | Sep 2004 | A1 |
Number | Date | Country |
---|---|---|
196 31 430 | Feb 1998 | DE |
196 39 142 | Apr 1998 | DE |
196 53 858 | Jun 1998 | DE |
198 34 072 | Feb 1999 | DE |
198 34 060 | Apr 1999 | DE |
198 48 655 | Nov 1999 | DE |
WO-0222957 | Mar 2002 | WO |
Number | Date | Country | |
---|---|---|---|
20080257971 A1 | Oct 2008 | US |