This application claims priority of European Patent Application EP 10 014 721.4-1268 filed Nov. 18, 2010.
The invention relates to a bellows of a passage or side panel between two vehicles joined in an articulated manner, e.g. a railway vehicle or an articulated bus, wherein the design includes numerous adjacent pleats.
A design of the type specified above is sufficiently known from the prior art. As such, pleated or corrugated bellows as part of a passage between vehicles joined in an articulated manner are known, wherein a bellows of this type is designed in the form of a tunnel, and encompasses the bridge and, where applicable, the joint connecting the two vehicle segments. Pleated or corrugated bellows of this type are used with railway vehicles as well as buses. In particular, with high-speed trains, i.e. with an ICE [trans: InterCity Express train] for example, double walled bellows are incorporated in a passage in order to reduce the noise level as well as to diminish the pressure surges occurring when a train of this type enters a tunnel, for example. These bellows, in which an outer and, separated from the outer bellows, an additional inner corrugated bellows is provided, located at the end surface of the respective vehicle, form both a thermal insulation as well as contributing to noise reduction; they are also capable of diminishing the previously mentioned pressure surges. The rigidity of the bellows is particularly relevant specifically for preventing pressure surges.
Particularly in the field of railway vehicles, it is known to connect carriages to one another only by couplings, wherein a coupling of this type is likewise regarded as an articulated connection in the scope of the invention. With carriages of a railway vehicle of this type, which are joined together with a coupling, it is not abnormal to not connect the carriages to one another with a passage, i.e. with a bridge and a bellows. This means that the vehicle segments or carriages are not connected to one another in such a manner that passage by a person from one carriage to another carriage is enabled, as would be the case if a passage of this type were provided. When the vehicles are joined together with only a coupling, it is, however, still possible to pass from one to the other. This applies in particular when, on the coupling, as is often the case, there is a coupling plate, which is there for the sole purpose of enabling service personnel to step from one carriage to another, or to stand on top of the coupling for inspection purposes. It has been determined, however, that these coupling plates, or respectively, the coupling itself, are used for riding purposes while the train is in motion. This so-called “surfing” has led to numerous accidents.
Furthermore, railway articulated vehicles are known which are joined to one another by means of a passage, wherein the bellows is offset inwards by between 10 and 30 cm between the two vehicle segments. As a result, there is a gap between the edge of the platform and the bellows.
As a result it is possible that, in particular when there are large crowds on the platform, a person could end up in the space between the bellows and the edge of the platform, and in particularly adverse circumstances, fall onto the track bed. It is conceivable in this context, to have a side panel, flush with the outer walls, between the vehicle segments.
It has been discussed elsewhere that bellows in high-speed trains must be capable of compensating for pressure surges as well. In another context, a side panel for covering the lateral space between the bellows and the platform should be rigid enough to prevent people from being able to stick their leg in the space between the bellows and the platform when the side panel of a bellows is bowed inwards. This also applies in the same context to a side panel between two vehicle segments without a passage bellows, placed there in order to prevent “subway surfing.”
The objective of the invention is therefore to produce a design for a bellows, which is distinguished by a high degree of rigidity over the course of its surface.
To attain the objective it is proposed, according to the invention, that at least on one side of the numerous pleats, a corrugation element is disposed in each pleat, wherein the ends of the respective pleat and the corrugation element are connected to one another. This means that the subject matter of the invention is the combination of a pleat with a corrugation element, wherein the corrugation element is a component of each pleat. Both the pleats as well as the corrugation element are produced from a plastic coated reinforcement, e.g. a textile. It has been shown that by means of a combination of this type an increase in rigidity of a side panel produced in this manner, as well as a bellows produced in this manner, can be obtained, without any sacrifices noticed regarding the elasticity of a bellows of this type or the side panel as a result of the combination of pleats and corrugation elements.
As such, it is provided, in particular, that the ends of the pleat and the corrugation element are connected by a frame having a U-shaped cross-section. With a side panel per se, the frame extends only over the course of the height of the side panel; with a bellows, in this context, at least a U-shaped, or an encompassing, bellows frame is provided.
According to a special characteristic of the invention, numerous pleats have a slit on their inner surfaces, i.e. the surface facing the interior of the carriage body, in particular, at least one slit centrally located in the region of the respective pleat crease or pleat spine on the side panel, or centrally located on a side panel, ceiling or floor section of a tunnel-like encompassing bellows. By means of a slit of this type, the expansion width, in particular, is somewhat increased, without contributing any sacrifices to the rigidity. It is also advantageous when not only one such slit is provided but with a side panel as such, aside from a central location of the slit there is also a slit-like design at each end, based on the fact that according to a further characteristic of the invention for increasing the rigidity and also to increase the spring action for the purpose of the compression of the side panel, or the bellows, respectively, the pleat walls of two adjacent pleats are connected in the region of the slit, for example, in that the connection is created by at least one seam, which extends over the length of the pleat. The seam causes not only an increase in the rigidity of the side panel, or a bellows produced entirely in this manner, but also increases the spring action, which is necessary in order that the bellows retracts to its normal state after it has been expanded.
A seam of this type is advantageously provided in a side panel at the top end as well as the bottom end, in order to enable a uniform expansion and retraction of the side panel. applies in principle for the design of a bellows, and at least in the region of each bellows section, a slit of this type with a corresponding seam is disposed over the extent of a U-shaped or tunnel-like encompassing bellows of this type. The incorporation of slits of this type, in particular in the corners of a bellows, results in an increased expansion width in this region, which supports the accommodation of rolling and pitched movements, or from overlapping movements of rolling, pitched and angular motions.
According to a further special characteristic of the invention, the pleat in the passage at the end surface of the carriage body of a vehicle segment is connected to the end surface of the carriage body at at least one of its upright or longitudinal edges and at least one, preferably however, both upright edges of the pleat. From this it is clear that the pleat is not only, for example, connected to the end surface of the vehicle at an upright edge, but rather substantially over the course of the entire surface. This results in a further increase in the rigidity of the bellows or even a solo-side panel, and as a result the inward bowing due to external loads is further reduced. In this context, in some cases, the pleat on the end of a passage is provided with a frame, wherein the bellows or the side panel can be connected to the end surface of the vehicle by means of these frames.
A bellows or side panel produced in the manner according to the invention, as has already been described elsewhere, is particularly stable in the direction perpendicular to the longitudinal axis of the vehicle, wherein it also applies in particular to a bellows produced in this manner that is capable, to a very high degree, of accommodating pressure surges, and that furthermore a side panel as a solo-side panel is also effective in preventing an inward bowing due to the effects of transverse forces.
According to another characteristic of the invention, it is provided that the corrugation elements bow outwards in the same direction as that of the receiving pleats. This measure serves not only to increase the rigidity, but is also space-saving.
The invention shall be explained in greater detail below based on the illustrations.
From the illustration according to
The subject matter of the invention is thereby the design for creating the bellows of a passage or a side panel. In this context reference is made to the
As can be seen in
Number | Date | Country | Kind |
---|---|---|---|
EP10014721 | Nov 2010 | EP | regional |
Number | Name | Date | Kind |
---|---|---|---|
777285 | Fuller | Dec 1904 | A |
903893 | Schroyer | Nov 1908 | A |
1078757 | Whitmore | Nov 1913 | A |
1450007 | Pflager | Mar 1923 | A |
2408473 | Nelson | Oct 1946 | A |
4860665 | Schmidt | Aug 1989 | A |
5456186 | Hubner | Oct 1995 | A |
6926344 | Koch et al. | Aug 2005 | B2 |
7392748 | De Antonio et al. | Jul 2008 | B2 |
20060174958 | Koch | Aug 2006 | A1 |
Number | Date | Country |
---|---|---|
4127535 | Feb 1993 | DE |
19638154 | Mar 1998 | DE |
19721285 | Nov 1998 | DE |
1990563 | Nov 2008 | EP |
2149461 | Feb 2010 | EP |
2258568 | Dec 2010 | EP |
2350091 | Nov 2000 | GB |
Number | Date | Country | |
---|---|---|---|
20120112432 A1 | May 2012 | US |