CHASSIS FOR A RAIL-BOUND TRANSPORT VEHICLE
20220194439 · 2022-06-23
Assignee
Inventors
Cpc classification
B61F5/38
PERFORMING OPERATIONS; TRANSPORTING
B61F9/00
PERFORMING OPERATIONS; TRANSPORTING
B60B17/00
PERFORMING OPERATIONS; TRANSPORTING
International classification
B61F5/38
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A chassis (1) for a rail-bound transport vehicle for transporting goods, in particular in intralogistics. The chassis (1) has at least one chassis axle (2) and at least one load-bearing roller (3) configured for rolling on a rail (4) that is rotatably supported on a pivot arm (5) about a roller rotation axis (6) and the pivot arm (5) together with the roller (3) is pivotably supported by a pivot joint (7) on the chassis axle (2). The pivot arm (5) is additionally supported by a support bearing (8) on the chassis axle (2) and the roller (3) is arranged between the pivot joint (7) and the support bearing (8).
Claims
1. A chassis for a rail-bound transport vehicle for transporting goods, the chassis comprising: at least one chassis axle; at least one load-bearing roller configured for rolling on a rail; the at least one roller being rotatably supported on a pivot arm about a roller rotation axis, and the pivot arm together with the roller is pivotably supported by a pivot joint on the chassis axle; and a support bearing that supports the pivot arm on the chassis axle, and the at least one roller is arranged between the pivot joint and the support bearing.
2. The chassis as claimed in claim 1, wherein a pivot axis of the pivot joint, about which axis the pivot arm is pivotable, is arranged parallel with a support direction, and the pivot arm is supported on the chassis axle by the support bearing in the support direction.
3. The chassis as claimed in claim 2, wherein the support bearing is a plain bearing which permits a pivoting of the pivot arm via the pivot joint.
4. The chassis as claimed in claim 3, wherein the plain bearing has two sliding surfaces which slide along each other when the pivot arm is pivoted.
5. The chassis as claimed in claim 4, wherein one of the sliding surfaces comprises metal, and an other of the sliding surfaces comprises a plastic material.
6. The chassis as claimed in claim 4, wherein the sliding surfaces are at least partially constructed with planar regions and a surface normal on the planar region of one of the sliding surfaces is arranged parallel with the pivot axis of the pivot joint, about which axis the pivot arm is pivotable.
7. The chassis as claimed in claim 2, wherein the roller rotation axis is arranged orthogonally relative to the pivot axis of the pivot joint, about which axis the pivot arm is pivotable.
8. The chassis as claimed in claim 1, further comprising at least one guide roller arranged on the chassis axle and which is resiliently pretensioned by a pretensioning apparatus in a direction toward the rail.
9. The chassis as claimed in claim 8, further comprising a vibration damper integrated in the pretensioning apparatus.
10. The chassis as claimed in claim 8, wherein the pretensioning apparatus is configured to be securable to and removable from the chassis axle without any tools.
11. The chassis as claimed in claim 1, wherein a majority of the chassis axle is comprised of a plastic material.
12. The chassis as claimed in claim 11, wherein the plastic material a fiber-reinforced plastic material.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Other features and details of preferred embodiments of the invention will be explained below by way of example with reference to a construction variant of the invention. In the drawings:
[0019]
[0020]
[0021]
[0022]
[0023]
[0024]
[0025]
DETAILED DESCRIPTION
[0026]
[0027] In the embodiment shown, the chassis 1 has two load-bearing rollers 3. The rollers 3 are rotatably supported for rolling on one of the rails 4 in each case in a pivot arm 5 about a roller rotation axis 6. The pivot arms 5 are in each case together with the rollers 3 pivotably supported on the chassis axle 2 by means of a pivot joint 7. According to the invention, there is provision for the pivot arms 5 to be additionally supported on the chassis axle 2 in each case by means of a support bearing 8 and for the rollers 3 to be arranged between the pivot joint 7 and the support bearing 8.
[0028] In this embodiment, the chassis 1 additionally has guide rollers 14 which are arranged on the chassis axle 2 and which are resiliently pretensioned by means of a pretensioning apparatus 15, which will be explained in detail below, in the direction toward the respective rail 4 with which they are in abutment.
[0029] The construction of the chassis 1 according to the invention can be seen particularly clearly in the front view according to
[0030] In preferred embodiments, such as the one shown here, the support bearing 8 is configured as a plain bearing. It permits pivoting of the pivot arm 5 by means of the pivot joint 7. The plain bearing has two sliding surfaces 11 and 12 which slide along each other when the pivot arm 5 is pivoted about the pivot axis 9. In order to achieve the lowest possible friction coefficients, preferred variants, such as the one shown here, make provision for one of the sliding surfaces, in this instance the sliding surface 11 on the chassis axle 2, to be made from metal, in particular from steel. The other of the sliding surfaces, in this instance the sliding surface 12 on the pivot arm 5, is advantageously made from a plastics material. Suitable plastics materials were mentioned in the introduction. The friction coefficient is advantageously in the value range mentioned in the introduction. In the embodiment shown, both sliding surfaces 11 and 12 are configured in a planar manner. The surface normal 13 on the planar regions of the sliding faces 11 and 12 extends parallel with the pivot axis 9 of the pivot joint 7. In contrast, the roller rotation axis 6 extends orthogonally to the pivot axis 9.
[0031] As a result of the invention, the pivot joint 7 can also be constructed in a relatively simple manner. In the embodiment shown, it has a plain pivot bearing 22 in which two surfaces 23 and 24 slide on each other in order to permit the pivot movement. One of the surfaces, in this instance the surface 23, is advantageously again constructed from metal, in particular steel, the other of the surfaces, in this instance the surface 24, again advantageously comprises plastics material. Both in the surfaces 23 and 24 of this plain pivot bearing 22 and in the sliding surfaces 11 and 12 of the support bearing 8, lubrications are advantageously incorporated. How these may be specifically configured has already been explained in the introduction.
[0032]
[0033] The delimiting projections 32 which can be seen in
[0034] It should further be noted that the variant of the pretensioning apparatus 15 as shown here by way of example acts in a linear manner in a longitudinal direction 34 on the guide roller 14 in order to press it on the rail 4.
[0035]
[0036] Finally, it should further be noted that, in this embodiment, the chassis axle 2 preferably comprises at least for the most part a plastics material, in a particularly preferred manner a fiber-reinforced plastics material. The chassis axle can thereby be constructed in a very light but nonetheless very stable manner, whereby the inertia forces which have to be overcome during acceleration and braking of the transport vehicle are reduced. Furthermore, such chassis axles of plastics material or fiber-reinforced plastics material can be produced in a relatively inexpensive manner.
LEGEND OF THE REFERENCE NUMERALS
[0037] 1 Chassis [0038] 2 Chassis axle [0039] 3 Roller [0040] 4 Rail [0041] 5 Pivot arm [0042] 6 Roller rotation axis [0043] 7 Pivot joint [0044] 8 Support bearing [0045] 9 Pivot axis [0046] 10 Support direction [0047] 11 Sliding surface [0048] 12 Sliding surface [0049] 13 Surface normal [0050] 14 Guide roller [0051] 15 Pretensioning apparatus [0052] 16 Vibration damper [0053] 17 Housing [0054] 18 Securing bracket [0055] 19 Support [0056] 20 Ball bearing [0057] 21 Guide roller rotation axis [0058] 22 Plain pivot bearing [0059] 23 Surface [0060] 24 Surface [0061] 25 Roller carrier [0062] 26 Pretensioning spring [0063] 27 Damping piston [0064] 28 Plate [0065] 29 Seal [0066] 30 Throttle opening [0067] 31 Damper housing [0068] 32 Delimiting projections [0069] 33 Connection [0070] 34 Longitudinal direction [0071] 35 Guide channel