RAILWAY WAGON FOR TRANSPORTATION OF SEMI-TRAILERS AND THE LIKE
20250026385 ยท 2025-01-23
Assignee
Inventors
Cpc classification
B61D3/184
PERFORMING OPERATIONS; TRANSPORTING
B61D3/04
PERFORMING OPERATIONS; TRANSPORTING
International classification
B61D47/00
PERFORMING OPERATIONS; TRANSPORTING
B61D3/04
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A railway wagon for semitrailers and the like has a first bogie, a second bogie and a carrying section therebetween. An elongated channel configured to receive conduits for air, hydraulics and/or electronics extends between the two bogies. The media channel is lowered in a mechanical way when the carrying section is turned out to a loading/unloading position.
Claims
1. A railway wagon configured to carry a semitrailer or the like, said railway wagon comprising a first bogie, a second bogie and a carrying section; said carrying section being movable between a first position in which it extends between said bogies, and a second position in which the carrying section is turned out from the railway wagon for loading and unloading of a semitrailer; wherein said railway wagon comprises a beam assembly configured to be moved out from and back to the railway wagon and to support a front portion of the carrying section; wherein the beam assembly comprises a leg which is arranged at an outer end of the beam assembly and which is configured to support against the ground; and wherein the beam assembly further comprises an actuator which is configured to lower and raise the leg and which is arranged substantially in parallel with a main extension of the beam assembly.
2. The railway wagon as claimed in claim 1, wherein said actuator comprises a hydraulic cylinder.
3. The railway wagon as claimed in claim 1, wherein said leg has a foot at its free end, said foot being configured to abut the ground.
4. The railway wagon as claimed in claim 1, wherein the actuator is connected to the leg at a first pivot at a first end of the leg.
5. The railway wagon as claimed in claim 3, wherein the foot is connected to the leg at a second pivot at a second end of the leg.
6. The railway wagon as claimed in claim 5, wherein a link is connected between said outer end of the beam assembly and the leg, and wherein the link is connected to the leg at a point at a distance from the first and second ends of the leg.
7. The railway wagon as claimed in claim 6, wherein the link is connected to the beam assembly at a third pivot and to the leg at a fourth pivot.
8. The railway wagon as claimed in claim 7, wherein the leg and the link form a scissor linkage able to take up forces in several directions.
9. The railway wagon as claimed in claim 1, wherein the first end of the leg is placed at a sliding member which is moveable along a rail mounted substantially in parallel with said main extension of the beam assembly.
10. The railway wagon as claimed in claim 2, wherein the legwhen a piston of the hydraulic cylinder is fully retractedhas a horizontal position, in which the beam assembly represents a compact unit.
11. The railway wagon as claimed in claim 3, wherein a force or pressure sensing device is arranged in connection with the foot of the beam assembly leg.
12. The railway wagon as claimed in claim 11, wherein said force or pressure sensing device comprises a sensor configured to send signals to control systems ensuring that correct pressure or load is put on the foot and thereby on the leg and the entire beam assembly.
13. The railway wagon as claimed in claim 11, wherein said sensing device is configured to sense when the foot gets into contact with the ground and to send signals to the actuator which controls the movements of the foot.
14. The railway wagon as claimed in claim 1, wherein the beam assembly during its movementfrom an idle position in parallel with the railway wagon to an active position turned out from the railway wagon in a direction transverse to the sameis configured to guide said front portion of the carrying section.
15. The railway wagon as claimed in claim 1, further comprising means for lowering and raising the front portion of the carrying section.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Embodiments of the present invention will be described further below by way of example and with reference to the accompanying drawings, in which:
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DETAILED DESCRIPTION OF EMBODIMENTS
[0034] In the example of
[0035] For turning the carrying section 5 in and out, a beam 6 is moved out from the first bogie 3 of the railway wagon 1. The beam 6 is supported by a telescopic leg 7, in the form of a hydraulic cylinder, at an outer end. The hydraulic cylinder is placed and works in a vertical direction. After the carrying section 5 has been turned out, the beam 6 is moved back to the first bogie 3, in order for allowing a semitrailer 2 to be brought onto the carrying section 5. Then the beam 6 is moved back out again, to turn the load-carrying section 5 back in line with the first and second bogies 3, 4. In the position where the carrying section 5 has been turned out, it is lowered to receive the semitrailer 2 and then raised again when it is to be turned back. The railway wagon 1 is provided with means (not shown) for lowering and raising the front portion 1a of the carrying section 5.
[0036] In the following, the position shown in
[0037] In
[0038] With reference to
[0039] The end of the leg 10 at the hydraulic cylinder 9 is placed on a sliding member 8A which is connected to a rail 8B mounted to the beam assembly 8. The sliding member 8A is free to move along the rail 8B and thereby along the beam assembly 8. However, the sliding member 8A is not free to move in a vertical direction and, thus, the hydraulic cylinder 9 is kept in parallel with a main extension of the beam assembly 8.
[0040] In the shown embodiment, the leg 10 is formed of two parallel plates. However, a person skilled in the art realizes that the leg 10 can have different designs.
[0041] When the piston of the hydraulic cylinder 9 is fully retracted, the leg 10 has a horizontal position at the beam assembly 8, as shown in
[0042] To lower the leg 10 in the active position of the beam assembly 8, the piston of the hydraulic cylinder 9 is pushed out. Due to the link 14 placed between the beam body and the leg 10, this leg will be turned downwardly. The leg 10 will be lowered until the foot 11 hits the ground G, as shown in
[0043] The leg 10 and link 14 form a kind of scissor linkage which can take up forces in several directions. As the hydraulic cylinder 9 is horizontally placed at the beam assembly 8, it has a well defined position and working area, and it will not be exposed to any skewed forces irrespectively of the direction of forces on the foot 11 from the ground G.
[0044] Briefly described, the railway wagon 1 provided with the improved beam assembly 8 operates in the following manner. When a semitrailer 2 is to be loaded onto the railway wagon 1, the beam assembly 8 is moved out from the wagon 1 to an active position, in which it guides the front portion 1a of the carrying section 5 being turned out to its loading position. The beam assembly 8 is moved back to the wagon 1 and the semitrailer 2 is driven onto the lowered, sloping carrying section 5 which is raised after loading. Then the beam assembly 8 is moved out again to the position transverse to the longitudinal axis of the wagon 1 and guides the front portion 1a of the raised load-carrying section 5 (with the semitrailer thereon) back to wagon position. Finally, the beam assembly 8 is moved back to the wagon 1 which is ready for railway transportation. The railway wagon 1 is provided with means (not shown) for lowering and raising the front portion 1a of the carrying section 5.
[0045] The railway wagon 1 of
[0046] As shown in
[0047] The railway wagon 1 of
[0048] This dampening effect is achieved in that a reservoir (not shown) is provided for the oil of the cylinders 21 and that a spring-loaded valve is provided (not shown), which valve at a certain predetermined pressure will let oil through from the cylinders 21 to the reservoir. When the cylinders 21 have moved a certain distance, for instance 50 mm, the reservoir will be full and the cylinders 21 will not move any further. Before reaching the end position there has been a certain degree of dampening.
[0049] A slightly modified version of the beam assembly 8 is shown in
[0050] When the leg 10 of the beam assembly 8 is lowered into support against the ground G, the pivot 13 presses against the upper portion 22 of the actuating member 22, 23 which means that the downwardly projecting portion 23 is inserted in the opening 24 against the action of the cup springs 25. This movement is detected by the sensor 26 which is configured to send signals to control systems (not shown) ensuring that the correct pressure or load is put on the foot 11, and thereby on the leg 10 as well as the entire beam assembly 8. During lowering of the foot 11 towards the ground G, the sensing device 22-26 senses when the foot 11 gets into contact with the ground G and can send signals to the actuating cylinder 9 which controls the movements of the foot 11 via the assembly of links, legs and pivots 10-16. Hereby a smooth and safe abutment of the foot 11 on the ground G is achieved which results in a safe operation of the beam assembly 8.
[0051] Certain aspects and variants of the present disclosure are set forth in the following clauses numbered I-XV. [0052] I. A beam assembly for a railway wagon is configured to carry semitrailers and the like, said railway wagon comprising a first bogie (3), a second bogie (4) and a load-carrying section (5) therebetween, and said beam assembly (8) being configured to be moved out from and back to the railway wagon. The beam assembly is characterized in that the beam assembly (8) comprises an actuator (9) configured to lower and raise a leg (10) arranged at an outer end of the beam assembly (8), wherein the actuator (9) is arranged substantially in parallel with a main extension of the beam assembly (8). [0053] II. The beam assembly of clause 1, wherein said actuator comprises a hydraulic cylinder (9). [0054] III. The beam assembly of clause 1 or 2, wherein the leg (10) has a foot (11) at its free end. [0055] IV. The beam assembly of any one of the clauses I-III, wherein the actuator (9) is connected to the leg (10) at a first pivot (12) at a first end of the leg (10). [0056] V. The beam assembly of clause IV, wherein the first end of the leg (10) is placed at a sliding member (8A) which is moveable along a rail (8B) mounted substantially in parallel with said main extension of the beam assembly (8). [0057] VI. The beam assembly of clause IV or V, wherein the foot (11) is connected to the leg (10) at a second pivot (13) at a second end of the leg (10). [0058] VII. The beam assembly of any one of the clauses I-VI, wherein a link (14) is connected between an outer end of the beam assembly (8) and the leg (10), and wherein the link (14) is connected to the leg (10) at a point at a distance from the first and second ends of the leg (10). [0059] VIII. The beam assembly of clause VII, wherein the link (14) is connected to the beam (8) at a third pivot (15) and to the leg (10) at a fourth pivot (16). [0060] IX. A railway wagon comprises a first bogie (3), a second bogie (4) and a load-carrying section (5) therebetween. The railway wagon is characterized in that it has a beam assembly (8) as set forth in any one of the clauses I-XIII. [0061] X. The railway wagon of clause IX, further comprising a channel (17) for conduits extending between the first bogie (3) and the second bogie (4). [0062] XI. The railway wagon of clause X, wherein the channel (17) is configured to be automatically lowered in a mechanical way when the load-carrying section (5) is turned out. [0063] XII. The railway wagon of clause X, wherein one end of the channel (17) is received moveable on a bar (18) having a sloping part (19). [0064] XIII. The railway wagon of clause XII, wherein a roller (17A) of the channel (17) is received on the bar (18). [0065] XIV. The railway wagon of any one of the clauses IX-XIII, wherein a slide (20) of a king pin locking system is arranged moveable by means of two cylinders (20A). [0066] XV. The railway wagon of claim XIV, wherein the two cylinders (20A) are connected to a reservoir via a spring-loaded valve to act as dampers.
[0067] It should be mentioned that the inventive concept is by no means limited to the embodiments described herein, and modifications are feasible within the scope defined by the appended claims.
[0068] For instance, the improved railway wagon can be used for transportation not only of semitrailers, but also tractors, haulers and the like.
[0069] Furthermore, the movement of the beam assembly out from the wagon body to its active position can be performed in different ways.
[0070] One option is to mount the beam assembly turnable or pivotable about a vertical pivot provided on the wagon.
[0071] Another option is to arrange the beam assembly slideable in a direction substantially transverse the longitudinal axis of the wagon (the beam is slided out to its active position).
[0072] Finally, it should be noted that the actuator of the beam assembly can be of different design. As an alternative to the hydraulic cylinder described above, the actuator can also be pneumatically or electro-mechanically operated.