The invention relates to a system for handling freight containers at a railroad station, a truck terminal or a harbour to facilitate their transfer between a transfer vehicle and a flatcar of a freight train, another transfer vehicle, a roadside truck and also a vessel.
In the prior art U.S. Pat. No. 4,522,546 a system is described for transfer of containers to and from flatcars of a freight train halted on a main track, by means of sets of self-propelled transfer vehicles running on ancillary tracks in parallel with the main track, wherein said transfer vehicles are equipped with supporting arms extendable transversely to the tracks enabling movement of a selected container onto such vehicle from a flatcar aligned therewith or, vice versa, from the vehicle to the flatcar. Said supporting arms can extend half of its length to span the main track and to project underneath a container on a flatcar, whereupon the arms are elevated by jacks in order to release the container from stationary sills and to shift it together with the arms moving back on the corresponding transfer vehicle and resting on said vehicle. Moreover, the container can be transferred between transfer vehicles on neighbouring tracks, and between a transfer vehicle and a roadside truck.
Said system faces balance problems during transfer operations that are counteracted by means of railhead-gripping jaws on the transfer vehicles.
The main object of the invention is to provide a secure method and a more efficient system for automatically shifting freight containers between transfer vehicles and a freight carrier e,g a train, a truck and a vessel, requiring only a short handling time wherein such system is usable to serve as part of a container distribution system, if so desired.
It is an object of the method and the system to handle as well customized containers as ordinary standard containers.
It is a further object of the invention to provide a system to automatically lock and unlock the freight containers at the time of pulling a container between secured positions thereof.
The method according to the invention is used to automatically transfer a container between a flatcar or the like and a transfer vehicle moving along said flatcar, comprising the following steps.
Said conveying means can be provided as separate installations on each side of the vehicle or as installations integrated in the vehicle. A vital condition being that of providing an adjustable height difference between the second transfer surface and the upper surface of the conveying means determining which surface is carrying the container at any given time.
Aligning the transfer vehicle with the flatcar is performed under guidance of position sensors provided on the transfer vehicle and position information stored in the computer. Said alignment of the vehicle is performed by drive means of the vehicle.
The locking means provided in the bottom frame of the container or in a separate bottom frame for a container comprise locking bodies or hooks, which are normally preloaded to a locking position by a compression spring and capable of entering container locks arranged on a flatcar, said locking bodies being released by the gripping means in order to separate the container from the flatcar prior to transferring said container.
In a preferred embodiment of the invention the gripping means are formed as a kind of forklift, whereof fork arms are moved firstly in a forward direction into receiving openings in said bottom frame in order to connect with the locking means thereof; next the arms are moved in a release direction, presently towards each other, whereby each locking body is released from the container locks.
In an advantageous method according to the invention the container bottom is provided with wheels, and the flatcar is provided with a first transfer surface in the form of wheel supporting rails whereby the container can be transferred laterally over the transfer vehicle to a second transfer surface provided with a set of rails thereon, and wherein the second transfer surface is lowered relative to the conveying means, thereby depositing the container on said conveying means and moving the container in the longitudinal direction of the transfer vehicle passing over at least one transfer vehicle.
The system according to the invention comprises a transfer vehicle moving alongside a freight train track until it has reached a position in alignment with a freight flatcar whereupon a container can be transferred between the vehicle and the flatcar. Such transfer vehicle has preferably its own drive means and is equipped with extendable gripping means to engage in receiving openings in the container bottom when initiating transfer of the container from a locked position on a flatcar, followed by pulling the container from its first position to a second position on the transfer vehicle. The gripping means are preferably provided with means obstructing withdrawal thereof from the openings as long as the container is in the unlocked mode. Said obstructing means may be formed as protrusions or recessions on the gripping means locking with the receiving openings.
In one embodiment of the invention the container is provided with transverse wheels to run on corresponding lateral rails in the floor of the flatcar and the transfer vehicle, respectively, in order to facilitate the transfer movement.
Built into the transfer vehicle or arranged on the ground in close proximity to each side of the vehicle, conveying means are provided, and provisions have been made to let said conveying means protrude higher than the lateral rails on the vehicle for the container to end in a position carried by the conveyors only and to move the container by the conveying means in the longitudinal direction of the main railway track to a desired location. The container may be moved over several transfer vehicles before landing on a traverse distribution track leading each container to a handling terminal of a distribution centre. The container may be pulled or pushed by any applicable means along the distribution track in the terminal.
The transfer vehicle may also be configured in an embodiment allowing containers to be pulled onto the vehicle from each side thereof at the same time if required. Moreover, the transfer vehicle can transfer either one long container or up to two half-size containers (40′ or 2×20′) at the same time.
According to the invention a complete automatic container distribution system is suggested, wherein transfer vehicles according to the invention are used. Said system comprises a computer-supported container distribution centre and at the end of the transfer tracks a track for the containers to be moved between freight carriers e.g. trains, trucks and vessels is provided. The vessels, however, will require a crane to transfer a container between the vessel and a transfer vehicle of a container distribution system.
The automatic container distribution system could again be one of several similar systems constituting a global container distribution concept.
The invention will now be described in further details and with reference to the accompanying drawing, in which:
However,
As suggested schematically in
Furthermore in
In order to facilitate the transfer of a container 1 between a flatcar 2 and a transfer vehicle 3 these are provided with transfer surfaces 11, 12, respectively. Said surfaces 11, 12 are configured as a set of rails in the bottom of the flatcar 2 and an elevatable surface 12 having a set of rails in the transfer vehicle 3, whereby the container bottom frame 8 is provided with sets of wheels 17 (see
In a preferred embodiment of the invention the transfer vehicle 3 comprises conveying means 13 in the form of rollers protruding vertically up through the surface 12 for actively moving a container 1 supported thereon. When the transfer surface 12 is thereby disengaging the wheels 17 of the container bottom 8 from the rails on said surface, the container 1 is moved by the rollers 13 in the longitudinal direction of the transfer vehicle 3, until reaching an unloading location in a container distribution system. Then the unloaded container 1 can be loaded again on a new flatcar, a truck or a vessel lined up next to the container 1.
Referring to
In an alternative embodiment conveying rollers 13 would be installed separately on the ground on each side of the ancillary track 4 to receive containers pulled from flatcars and to move them along, after the rails 12 are no longer engaged with the wheels 17.
In case a container 1 does not have a locking mechanism, the gripping means 6 are still able to extend into receiving openings 7 and to pull back the container 1 by the gripping means 6 being prohibited in withdrawal from the container 1.
The transfer vehicle 3 is provided with driving means D, which can drive the vehicle 3 along the track 4 and can extend and retract the gripping means 6 laterally of the transfer vehicle 3.
The transfer vehicle 3 is adapted to transfer containers 1 to/from both sides and provisions can be made for transfer vehicles lining up on each side of flatcars 2 of a freight train T.
The bottom frame 8 can be configured as an integral feature of a container 1 or it can be a separate unit on which a standard container having a plane bottom can be placed.
When a container 1 leaves the last of a row of transfer vehicles 3 it will eventually land with it sets of wheels 7 engaging rails of a traverse distribution track and an applicable pulling or pushing device will move the container 1 along said track to a next position.
The container-transfer system described above is adapted to be part of a local or global computerized container distribution system wherein containers can be loaded/unloaded between several carrier types according to information in a computer system C including destinations of containers arriving at a terminal for automatic rail/rail, rail/road or rail/vessel transfer.
T freight train
D drive
C computer
1 container
2 flatcar
3 transfer vehicle
4 ancillary track
5 main track
6, 6a, 6b gripping means
7 receiving opening
8 bottom frame
9 locking means
10 container lock
11 first transfer surface (rails)
12 second transfer surface (rails)
13 conveying means, rollers
14 position sensor
15 locking bodies or hooks
16 linkage system
17 wheels
18 protrusions
19 central distribution track
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/IB2009/055388 | 11/27/2009 | WO | 00 | 8/7/2012 |