Railcar adapter for connecting a railcar body to a bearing
10576999 ยท 2020-03-03
Assignee
Inventors
Cpc classification
B61F15/12
PERFORMING OPERATIONS; TRANSPORTING
International classification
B61F15/12
PERFORMING OPERATIONS; TRANSPORTING
Abstract
Railcar adapter for connecting a railcar body to a bearing providing an adapter body having two lateral channels each axially delimited by a pair of opposed lugs and a lateral surface perpendicular to the opposed lugs, each lateral channel being adapted to cooperate with the railcar body. The railcar adapter further provides swivelling means allowing swivelling of the railcar adapter relative to the railcar body.
Claims
1. A railcar adapter for connecting a railcar body to a bearing, comprising: an adapter body having a frame seat side configured to abut the railcar body and having two lateral channels extending perpendicularly from the frame seat side, each of the two lateral channels being axially delimited by a pair of opposed lugs and a lateral surface extending therebetween, each of the two lateral channels being adapted to cooperate with the railcar body, and each of the two lateral channels comprising a first centering bump located on the lateral surface, the first centering bump being spaced from the frame seat side and extending into the lateral channel, the first centering bump being configured to allow swivelling of the railcar adapter relative to the railcar body, wherein each of the two lateral channels has a plurality of the first centering bump located on the lateral surface and extending across an entire length, as measured parallel to the frame seat side, of the lateral surface.
2. The railcar adapter according to claim 1, wherein a contact surface of the first centering bump which abuts the railcar body is a flat surface.
3. The railcar adapter according to claim 1, wherein a contact surface of the first centering bump which abuts the railcar body is a cylindrical surface.
4. The railcar adapter according to claim 1, wherein a contact surface of the first centering bump which abuts the railcar body is a spheroidal surface.
5. The railcar adapter according to claim 1, wherein the first centering bump is part of the adapter.
6. The railcar adapter according to claim 1, wherein the first centering bump is a separate component from the adapter and is affixed thereto.
7. The railcar adapter according to claim 6, wherein the first centering bump is made of a material different from a material of the adapter.
8. The railcar adapter according to claim 1, wherein the railcar adapter is made from any one of steel and cast iron.
9. A railcar adapter assembly comprising: the railcar adapter of claim 1, a bearing mounted inside the railcar adapter, a backing ring adapted to come into axial contact with the bearing at a first side, and an end cap assembly adapted to come into axial contact with the bearing at another side, opposite to the first side.
10. The railcar adapter assembly according to claim 9, wherein the bearing comprises at least one inner ring and at least one outer ring mounted in radial contact with the inner surface of the railcar adapter.
11. The railcar adapter assembly according to claim 10, wherein the bearing comprises at least one row of rolling elements, arranged between raceways provided on the inner and outer rings.
12. The railcar adapter assembly according to claim 10, wherein the inner ring of the bearing is made in two parts, axially separated by an axial spacer.
13. A railcar adapter assembly, comprising: the railcar adapter of claim 1, a bearing mounted inside the railcar adapter, a backing ring adapted to come into axial contact with the bearing at a first side, an end cap assembly adapted to come into axial contact with the bearing at another side, opposite to the first side, and a shaft rotatably mounted about an axis of rotation (X-X) relative to a railcar adapter, inside the bearing, the shaft including a first end mounted radially inside the backing ring and a second end, opposite to the first end, secured to the end cap assembly.
Description
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWING
(1) Other advantages and features of the invention will emerge upon examining the detailed description of embodiments, which are in no way limiting, and the appended drawings wherein:
(2)
(3)
DETAILED DESCRIPTION OF THE INVENTION
(4) Referring to
(5) A bearing 16 is radially provided between the railcar adapter 14 and the shaft 12. As illustrated, the bearing 16 is of the rolling bearing type, and provides an inner ring 18 mounted on the shaft 12, an outer ring 20 mounted inside the railcar adapter 14 and two rows of rolling elements 22a, 22b, for example rollers, arranged between raceways 24, 26 provided on the inner and outer rings 18, 20. The inner ring 18 is, for example, made in two parts, axially separated by an axial spacer 28. In this embodiment, the bearing 16 is a tapered rollers bearing.
(6) The railcar adapter 14 is secured to the outer ring 20 by its radially inward side or bearing seat side 30 and is mounted inside the bogie frame by its radially outward side or frame seat side 32.
(7) The shaft 12 provides a journal 12a and a dust guard having a cylindrical surface 12b whose diameter is bigger than the diameter of the journal 12a. A concave fillet 12c connects the cylindrical surface 12b on the journal 12a. The inner ring 18 of the bearing is mounted on the journal 12a.
(8) As illustrated on
(9) The railcar axle 10 also provides an end cap assembly 38. The end cap assembly 38 includes an end cap 38a provided for being a stop element in case of a leftward translation (relative to
(10) As illustrated in detail on
(11) The inner surface 30 has a concave shape of constant radius so as to sit on the outer cylindrical surface of the outer ring 20 of the bearing 16.
(12) The outer surface 32 is provided with an upper central groove 32a extending along an axis parallel to the axis of rotation X-X of the bearing 16.
(13) The railcar adapter 14 further provides two lateral channels 40, 42 each axially delimited by a pair of opposed lugs 44, 46 and a lateral surface 48, 50 perpendicular to the opposed lugs 44, 46. Each lateral channel 40, 42 has a U-shape and is adapted to engage with a lug of a jaw (not shown) of the bogie frame, so as to act as an insertion guide between the adapter and the bogie frame.
(14) As illustrated, the lateral surface 50 is provided with a first centering bump 52 on the whole length of the lateral surface. As an alternative, the lateral surface 50 may be provided with a plurality of first centering bump or with a first centering bump not covering the whole length of the lateral surface.
(15) The inner lateral surface 46a of each lug 46 is provided with second and third centering bumps 54. As illustrated, the second and third centering bumps 54 are provided on the whole length of the corresponding inner lateral surface. As an alternative, the inner lateral surfaces 46a may be provided with a plurality of second and third centering bumps or with a second and third centering bump not covering the whole length of the corresponding inner lateral surface.
(16) Furthermore, the perspective views of
(17) The centering bumps 52, 54 forms swivelling means allowing the swivelling of the adapter 14 relative to the bogie frame, thus reducing the wear of the adapter in case of twisting of the bogie frame relative to the railcar axle. The connection between the bogie frame and the railcar axle is thus less rigid thanks to such adapter.
(18) As shown on
(19) As shown on
(20) The railcar adapter 14 is made from metal by any suitable process, such as, for example, by casting or machining. For example, the railcar adapter 14 is made from steel or cast iron.
(21) It should be noted that the embodiments, illustrated and described were given merely by way of non-limiting indicative examples and that modifications and variations are possible within the scope of the invention.
(22) The invention has been illustrated on the basis of a rolling bearing provided with at least one row of rolling elements radially disposed between the inner and outer rings. Alternatively, the bearing may be a plain bearing or a sliding bearing comprising one or two rings.