RAILROAD CAR TRUCK WITH WARP RESTRAINTS
20190168786 ยท 2019-06-06
Inventors
Cpc classification
B61F5/38
PERFORMING OPERATIONS; TRANSPORTING
B61F5/383
PERFORMING OPERATIONS; TRANSPORTING
International classification
B61F5/38
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A railroad car truck including a first side frame, a second side frame, a bolster, and a first plurality of warp restraints, each first warp restraint configured to prevent warping of the bolster relative to the side frames. Various embodiments include opposing bearings of each warp restraint that engage each other.
Claims
1. A railroad car truck comprising: a first side frame; a second side frame; a bolster; a first plurality of warp restraints positioned at first inner portions of the bolster and the first side frame, each of the plurality of first warp restraints including: (a) a first bearing connected to the bolster and including a wear member, and (b) a second bearing connected to the first side frame, the second bearing including an engagement pad configured to be engaged by the wear member of the first bearing; and a second plurality of warp restraints positioned at second inner portions of the bolster and the second side frame, each of the plurality of second warp restraints including: (a) a first bearing connected to the bolster and including a wear member, and (b) a second bearing connected to the second side frame, the second bearing including an engagement pad configured to be engaged by the wear member of the first bearing.
2. The railroad car truck of claim 1, wherein the wear member of each first bearing of the first plurality of warp restraints is removable.
3. The railroad car truck of claim 2, wherein the wear member of each first bearing of the second plurality of warp restraints is removable.
4. The railroad car truck of claim 1, wherein the wear member of each first bearing of the first plurality of warp restraints is pivotable.
5. The railroad car truck of claim 4, wherein the wear member of each first bearing of the second plurality of warp restraints is pivotable.
6. The railroad car truck of claim 1, wherein for each of the first warp restraints, the first bearing extends perpendicularly from the bolster, and for each of the second warp restraints, the first bearing extends perpendicularly from the bolster.
7. The railroad car truck of claim 6, wherein for each of the first warp restraints, the second bearing extends perpendicularly from the first side frame, and for each of the second warp restraints, the second bearing extends perpendicularly from the second side frame.
8. The railroad car truck of claim 1, wherein for each of the first warp restraints, the second bearing extends perpendicularly from the first side frame, and for each of the second warp restraints, the second bearing extends perpendicularly from the second side frame.
9. The railroad car truck of claim 1, wherein the first inner portions are inwardly of an inner surface of the first side frame, and the second inner portions are inwardly of an inner surface of the second side frame.
10. A railroad car truck comprising: a first side frame; a second side frame; a bolster; a first plurality of warp restraints positioned at a first inner portion of the bolster and the first side frame, each of the plurality of first warp restraints including: (a) a first bearing connected to the bolster and including a rotatable engagement roller, and (b) a second bearing connected to the first side frame, the second bearing including an engagement pad configured to be engaged by the engagement roller of the first bearing; and a second plurality of warp restraints positioned at a second inner portion of the bolster and the second side frame, each of the plurality of second warp restraints including: (a) a first bearing connected to the bolster and including a rotatable engagement roller, and (b) a second bearing connected to the second side frame, the second bearing including an engagement pad configured to be engaged by the engagement roller of the first bearing.
11. The railroad car truck of claim 10, wherein the engagement pad of the first bearing is removable and the engagement pad of the second bearing is removable.
12. The railroad car truck of claim 10, wherein for each of the first warp restraints, the first bearing extends perpendicularly from the bolster, and for each of the second warp restraints, the first bearing extends perpendicularly from the bolster.
13. The railroad car truck of claim 12, wherein for each of the first warp restraints, the second bearing extends perpendicularly from the first side frame, and for each of the second warp restraints, the second bearing extends perpendicularly from the second side frame.
14. The railroad car truck of claim 10, wherein for each of the first warp restraints, the second bearing extends perpendicularly from the first side frame, and for each of the second warp restraints, the second bearing extends perpendicularly from the second side frame.
15. The railroad car truck of claim 10, wherein the first inner portions are inwardly of an inner surface of the first side frame, and the second inner portions are inwardly of an inner surface of the second side frame.
Description
BRIEF DESCRIPTION OF THE FIGURES
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DETAILED DESCRIPTION
[0035] Referring now to the drawings and particularly to
1.SUP.st .Example Embodiment
[0036] Referring now to
[0037] In this illustrated example embodiment of the present disclosure, as best shown in
[0038] It should be appreciated that each of the warp restraints 100, 200, 500, and 600 in various embodiments are identical or substantially identical (except for their positioning and arrangement of their connectors to, connections with, or formations with the side frames and the bolster). Therefore, warp restraints 100 and 200 are primarily discussed in further detail below as examples of the warp restraints of this example embodiment. However, it should be appreciated that the warp restraints of the present disclosure do not need to be identical or substantially identical and can vary based on the respective positions and connections to or formations with the side frames and the bolster. For example, the two bearings of any set of warp restraints may be different.
[0039] Example warp restraint 100 includes a first bearing 110 integrally formed with a first portion of the bolster 40 and a second opposing bearing 140 integrally formed with the first side frame 60. It should be appreciated that the first bearing 110 may be connected to the bolster 40 by one or more suitable first bearing connecters (not shown). It should also be appreciated that the second bearing 140 may be connected to the bolster 40 by one or more suitable second bearing connecters (not shown).
[0040] As best shown in
[0041] In this illustrated embodiment, the engagement pad 114 is pivotal about a horizontally or substantially horizontally extending axis (not shown) extending through the pivot pin (not shown). It should be appreciated that in various alternative embodiments of the present disclosure, the mounting bracket 112, the engagement pad 114, the connection arm 113, and the pivot pin can be configured such that the engagement pad 114 is pivotal about a differently extending axis.
[0042] In this illustrated embodiment, the engagement pad 114 and/or the engagement surface 114a each extend in the same direction (such as parallel) to the centerline, center plane, or center axis of the bolster (that in turn extends transversely relative to straight tracks). It should be appreciated that in various alternative embodiments of the present disclosure, the engagement pad 114 and/or the engagement surface 114a is: (a) angled outwardly; (b) angled inwardly; (c) initially angled upwardly; (d) initially angled downwardly; (e) initially angled outwardly and upwardly; (f) initially angled outwardly and downwardly; (g) initially angled inwardly and upwardly; or (h) initially angled inwardly and downwardly, to assist in providing the desired forces on the bolster 40 and the side frames 60 and 80 to reduce, inhibit, and/or minimize warping of the side frames 60 and 80 relative to the bolster 40. Thus, in various embodiments, the angle between: (a) a plane extending through the engagement pad 114 and/or along the engagement surface 114a in its initial position; relative to: (b) a plane extending through the side frame 60 may be right (as shown in
[0043] As also best shown in
[0044] In this illustrated embodiment, the engagement wall 144, the engagement side 144a, the engagement pad 146, and the engagement surface 146a also extend in the same direction (such as parallel) to the centerline, center plane, or center axis of the bolster (that in turn extends transversely relative to straight tracks). It should be appreciated that in various alternative embodiments of the present disclosure, the engagement wall 144, the engagement side 144a, the engagement pad 146, and/or the engagement surface 146a is: (a) angled outwardly; (b) angled inwardly; (c) angled upwardly; (d) angled downwardly; (e) angled outwardly and upwardly; (f) angled outwardly and downwardly; (g) angled inwardly and upwardly; or (h) angled inwardly and downwardly, to assist in providing the desired forces on the bolster 40 and the side frames 60 and 80 to reduce, inhibit, and/or minimize warping of the side frames 60 and 80 relative to the bolster 40 as further described below. Thus, in various embodiments, the angle between: (a) a plane extending through the engagement wall 144, along the engagement side 144a, through the engagement pad 146, or through the engagement surface 146a; relative to: (b) a plane extending through the side frame 60 may be right (as shown in
[0045] The first bearing 110 and the second opposing bearing 140 are thus configured to engage each other (as generally shown in
[0046] Likewise, example warp restraint 200 includes a first bearing 210 integrally formed with a first portion of the bolster 40 and a second opposing bearing 240 integrally formed with the first side frame 60. It should be appreciated that the first bearing 210 may be connected to the bolster 40 by one or more suitable first bearing connecters (not shown). It should also be appreciated that the second bearing 240 may be connected to the bolster 40 by one or more suitable second bearing connecters (not shown).
[0047] More specifically, as best shown in
[0048] In this illustrated embodiment, the engagement pad 214 is pivotal about a horizontally or substantially horizontally extending axis (not shown) extending through the pivot pin (not shown). It should be appreciated that in various alternative embodiments of the present disclosure, the mounting bracket 212, the engagement pad 214, the connection arm 213, and the pivot pin can be configured such that the engagement pad 214 pivots about a differently extending axis.
[0049] In this illustrated embodiment, the engagement pad 214 and/or the engagement surface 214a extends in the same direction (such as parallel) to the centerline, center plane, or center axis of the bolster (that in turn extends transversely relative to straight tracks). It should be appreciated that in various alternative embodiments of the present disclosure, the engagement pad 214 and/or the engagement surface 214a is: (a) angled outwardly; (b) angled inwardly; (c) initially angled upwardly; (d) initially angled downwardly; (e) initially angled outwardly and upwardly; (f) initially angled outwardly and downwardly; (g) initially angled inwardly and upwardly; or (h) initially angled inwardly and downwardly, to assist in providing the desired forces on the bolster 40 and the side frames 60 and 80 to reduce, inhibit, and/or minimize warping of the side frames 60 and 80 relative to the bolster 40. Thus, in various embodiments, the angle between: (a) a plane extending through the engagement pad 214 or along the engagement surface 214a in its initial position; relative to: (b) a plane extending through the side frame 60 may be right (as shown in
[0050] As also best shown in
[0051] The engagement wall 244 includes an inner substantially vertically extending engagement side 244a (that extends substantially parallel with the center line, center plane, or center axis of the bolster). The engagement pad 246 includes an inner substantially vertically extending engagement surface 246a (that extends substantially parallel with the crosswise axis of the bolster). It should be appreciated that in various alternative embodiments of the present disclosure, the engagement wall 244, the engagement side 244a, the engagement pad 246, and/or the engagement surface 246a is: (a) angled outwardly; (b) angled inwardly; (c) angled upwardly; (d) angled downwardly; (e) angled outwardly and upwardly; (f) angled outwardly and downwardly; (g) angled inwardly and upwardly; or (h) angled inwardly and downwardly, to assist in providing the desired forces on the bolster 40 and the side frames 60 and 80 to reduce, inhibit, and/or minimize warping of the side frames 60 and 80 relative to the bolster 40 as further described below. Thus, in various embodiments, the angle between: (a) a plane extending through the engagement wall 244, along the engagement side 244a, through the engagement pad 246, or through the engagement surface 246a; relative to: (b) a plane extending through the side frame 60 may be right (as shown in
[0052] The first bearing 210 and the second opposing bearing 240 are thus configured to engage each other (as generally shown in
[0053] In this example embodiment, the removable wear members 116 and 216 of the respective engagement pads 114 and 214 of the bearings can be made from a relatively hard plastic material with self-lubricating characteristics such as from an acetal resin such as a DELRIN material. DELRIN is a registered trademark of E. I. du Pont de Nemours.
[0054] In this example embodiment, engagement pads 146 and 246 are made from a suitable steel for strength.
[0055] It should be appreciated that in various embodiments, the removable wear members 116 and 216 are respectively removeably attached to the mounting bases 115 and 215 to facilitate replacement of such wear member as they wear out.
[0056] In various such embodiments, before replacement but after the wear members are worn to a certain degree, suitable shims (not shown) may be employed to maintain engagement between the respective sets of first and second bearings.
[0057] In various other such embodiments, one or more of the first and second bearings can include one or more biasing members (not shown) to maintain engagement between the respective sets of first and second bearings.
[0058] In various other such embodiments, one or more adjustment devices (not shown) can be used with the bearing members to maintain engagement between the respective sets of first and second bearings. In various embodiments, the adjustment devices include opposing threaded members that are rotatably adjustable to maintain engagement between the respective sets of first and second bearings.
[0059] As mentioned above, warp restraints 500 and 600 of the present disclosure are identical to warp restraints 100 and 200 except that warp restraints 500 and 600 are attached to the second side frame 80 and the second portion of the bolster 40. Thus, these warp restraints 500 and 600 are not described in further detail.
[0060] It should be appreciated that bearing 110 (and specifically the mounting bracket 112 thereof), bearing 210 (and specifically the mounting bracket 212 thereof), bearing 510 (and specifically the mounting bracket thereof), and bearing 610 (and specifically the mounting bracket thereof) can be integrally cast with the bolster 40 in various embodiments of the present disclosure. Likewise, it should be appreciated that bearing 140 (and specifically the mounting wall 142 thereof) and bearing 240 (and specifically the mounting wall 242 thereof) can be integrally cast with the side frame 60 in various embodiments of the present disclosure. Likewise, it should be appreciated that bearing 540 (and specifically the mounting wall thereof) and bearing 640 (and specifically the mounting wall thereof) can be integrally cast with the side frame 80 in various embodiments of the present disclosure.
[0061] When warping occurs as generally shown in
[0062] For example, if the warping shown on the right end portion of the bolster in
[0063] The four warp restraints 100, 200, 500, and 600 of the present disclosure thus act independently and/or co-act in groups to bias the bolster toward the square positions relative to the side frames 60 and 80 such that the centerline or center plane of the bolster (that extends transversely relative to straight tracks) is perpendicular or substantially perpendicular to the centerlines or center planes of the respective side frames 60 and 80 (that extend longitudinally relative to straight tracks).
2.SUP.nd .Example Embodiment
[0064] Referring now to
[0065] It should be appreciated that each of the warp restraints in this illustrated example embodiment are identical or substantially identical (except for positioning and arrangement of their connectors to, connections with, or formations with the side frames and the bolster). However, it should be appreciated that the warp restraints of the present disclosure do not need to be identical or substantially identical and can vary based on the respective positions and connections to or formations with the side frames and the bolster. For example, the two bearings of any set of warp restraints may be different.
[0066] More specifically, example warp restraint 1100 includes a first bearing 1110 integrally formed with a first portion of the bolster 1040 and a second opposing bearing 1140 integrally formed with the first side frame 1060. It should be appreciated that the first bearing 1110 may be connected to the bolster 1040 by one or more suitable first bearing connecters (not shown). It should also be appreciated that the second bearing 1140 may be connected to the side frame 1060 by one or more suitable second bearing connecters (not shown).
[0067] As shown in
[0068] In this illustrated embodiment, the engagement pad 1114 is pivotal about a horizontally or substantially horizontally extending axis (not shown) extending through the pivot pin (not shown). It should be appreciated that in various alternative embodiments of the present disclosure, the mounting bracket 1112, the engagement pad 1114, the connection arm 1113, and the pivot pin can be configured such that the engagement pad 1114 is pivotal about a differently extending axis.
[0069] In this illustrated embodiment, the engagement pad 1114 and/or the engagement surface 1114a extend at an angle to the centerline, center plane, or center axis of the bolster (that in turn extends transversely relative to straight tracks). In other words, in this embodiment, the engagement pad 1114 and/or the engagement surface 1114a is angled outwardly to provide the desired forces on the bolster 1040 and the side frames 1060 and 1080 to reduce, inhibit, and/or minimize warping of the side frames relative to the bolster. Thus, in this embodiment, the angle between: (a) a plane extending through the engagement pad 1114 or along the engagement surface 1114a; relative to: (b) a plane extending through the side frame 1060 is obtuse.
[0070] As also shown in
[0071] In this illustrated embodiment, the engagement wall 1144, the engagement side 1144a, the engagement pad 1146, and the engagement surface 1146a extend at an angle to the centerline, center plane, or center axis of the bolster (that in turn extends transversely relative to straight tracks). In other words, in this example embodiment, the engagement wall 1144, the engagement side 1144a, the engagement pad 1146, and/or the engagement surface 1146a are angled to assist in providing the desired forces on the bolster 1040 and the side frames (such as side frame 1060) to reduce, inhibit, and/or minimize warping of the side frames relative to the bolster 1040 as further described below. Thus, in various embodiments, the angle between: (a) a plane extending through the engagement wall 1144, along the engagement side 1144a, through the engagement pad 1146, or through the engagement surface 1146a; relative to: (b) a plane extending through the side frame 1060 is acute.
[0072] The first bearing 1110 and the second opposing bearing 1140 are thus configured to engage each other (as generally shown in
[0073] Likewise, example warp restraint 1200 includes a first angled bearing 1210 integrally formed with a first portion of the bolster 1040 and a second opposing angled bearing 1240 integrally formed with the first side frame 1060. It should be appreciated that the first bearing 1210 may be connected to the bolster 1040 by one or more suitable first bearing connecters (not shown). It should also be appreciated that the second bearing 1240 may be connected to the bolster 1040 by one or more suitable second bearing connecters (not shown).
[0074] More specifically, as shown in
[0075] In this illustrated embodiment, the engagement pad 1214 is pivotal about a horizontally or substantially horizontally extending axis (not shown) extending through the pivot pin (not shown). It should be appreciated that in various alternative embodiments of the present disclosure, the mounting bracket 1212, the engagement pad 1214, the connection arm 1213, and the pivot pin can be configured such that the engagement pad 1214 pivots about a differently extending axis.
[0076] In this illustrated embodiment, the engagement pad 1214 and/or the engagement surface 1214a extend at an outward angle to provide the desired forces on the bolster 1040 and the side frames (such as side frame 1060) to reduce, inhibit, and/or minimize warping of the side frames relative to the bolster 1040. Thus, in various embodiments, the angle between: (a) a plane extending through the engagement pad 1214 or along the engagement surface 1214a; relative to: (b) a plane extending through the side frame 1060 is obtuse.
[0077] As also shown in
[0078] In this embodiment, the engagement wall 1244, the engagement side 1244a, the engagement pad 1246, and/or the engagement surface 1246a is angled to assist in providing the desired forces on the bolster and the side frames to reduce, inhibit, and/or minimize warping of the side frames relative to the bolster. Thus, in this embodiment, the angle between: (a) a plane extending through the engagement wall 1244, along the engagement side 1244a, through the engagement pad 1246, or through the engagement surface 1246a; relative to: (b) a plane extending through the side frame 60 is acute.
[0079] The first bearing 1210 and the second opposing bearing 1240 are thus configured to engage each other (as generally shown in
[0080] In these embodiments, the wear members of the engagement pads of the bearings can be made from a relatively hard plastic material with self-lubricating characteristics such as from an acetal resin such as a DELRIN material.
[0081] In this example embodiment, engagement pads 1146 and 1246 are made from a suitable steel for strength.
[0082] It should be appreciated that in various embodiments, the wear member are respectively removably attached to the mounting bases to facilitate replacement of such wear members as they wear out.
[0083] In various such embodiments, before replacement but after the wear members are worn to a certain degree, suitable shims (not shown) may be employed to maintain engagement between the respective sets of first and second bearings.
[0084] In various other such embodiments, one or more of the first and second bearings can include one or more biasing members (not shown) to maintain engagement between the respective sets of first and second bearings.
[0085] In various other such embodiments, one or more adjustment devices (not shown) can be used with the bearing members to maintain engagement between the respective sets of first and second bearings. In various embodiments, the adjustment devices include opposing threaded members that are rotatably adjustable to maintain engagement between the respective sets of first and second bearings.
[0086] It should be appreciated that bearing 1110 (and specifically the mounting bracket 1112 thereof), bearing 1210 (and specifically the mounting bracket 1212 thereof), and the other respective bearings (and specifically the mounting brackets thereof), can be integrally cast with the bolster 40 in various embodiments of the present disclosure. Likewise, it should be appreciated that bearing 1140 (and specifically the mounting wall 1142 thereof) and bearing 1240 (and specifically the mounting wall 1242 thereof) can be integrally cast with the side frame 1060 in various embodiments of the present disclosure. Likewise, it should be appreciated that the other bearings (and specifically the mounting walls thereof) can be integrally cast with the other side frame in various embodiments of the present disclosure.
3.SUP.rd .Example Embodiment
[0087] Referring now to
[0088] In this illustrated example embodiment of the present disclosure, the railroad car truck with warp restraints 1050A includes: (1) a first plurality or set of warp restraints 100 and 200; (2) a second plurality or set of warp restraints 500 and 600 (on the outer side of the bolster and first side frame); (3) a third plurality or set of warp restraints 300 and 400; and (4) a fourth plurality or set of warp restraints 700 and 800 (on the outer side of the bolster and second side frame). In this illustrated example embodiment of the present disclosure: (1) the first plurality or set of warp restraints 100 and 200 are the same as the warp restraints 100 and 200 of
[0089] Warp restraints 300, 400, 700, and 800 are similar to warp restraints 100, 200, 500, and 600, and are thus similarly described below.
[0090] Warp restraint 300 has a first bearing 310 including: (a) a substantially horizontally extending mounting bracket 312 integrally connected to the bolster 40; (b) a movable engagement pad 314 pivotally connected to the mounting bracket 312; (c) a connection arm 313 extending transversely from the back of the engagement pad 314; and (d) a pivot pin (not shown). The movable engagement pad 314 is pivotally connected to the mounting bracket 312 by the connection arm 313 and by the pivot pin (not shown). The engagement pad 314 includes an inner substantially vertically extending engagement surface 314a. In this illustrated embodiment, the engagement pad 314 includes a mounting base 315 and a wear member 316 removably connected to the mounting base 315 by one or more suitable fasteners (not shown).
[0091] In this illustrated embodiment, the engagement pad 314 is pivotal about a horizontally or substantially horizontally extending axis (not shown) extending through the pivot pin (not shown). It should be appreciated that in various alternative embodiments of the present disclosure, the mounting bracket 312, the engagement pad 314, the connection arm 313, and the pivot pin can be configured such that the engagement pad 314 is pivotal about a differently extending axis.
[0092] In this illustrated embodiment, the engagement pad 314 and/or the engagement surface 314a each extend in the same direction (such as parallel) to the centerline, center plane, or center axis of the bolster (that in turn extends transversely relative to straight tracks). It should be appreciated that in various alternative embodiments of the present disclosure, the engagement pad 314 and/or the engagement surface 314a is: (a) angled outwardly; (b) angled inwardly; (c) initially angled upwardly; (d) initially angled downwardly; (e) initially angled outwardly and upwardly; (f) initially angled outwardly and downwardly; (g) initially angled inwardly and upwardly; or (h) initially angled inwardly and downwardly, to assist in providing the desired forces on the bolster 40 and the side frames 60 and 80 to reduce, inhibit, or minimize warping of the side frames 60 and 80 relative to the bolster 40. Thus, in various embodiments, the angle between: (a) a plane extending through the engagement pad 314 and/or along the engagement surface 314a in its initial position; relative to: (b) a plane extending through the side frame 60 may be right (as shown in
[0093] The second bearing 340 includes: (a) a substantially vertically extending side frame mounting wall 342 integrally connected to the outer surface of the side frame 60; (b) a substantially vertically extending engagement wall 344 integrally connected to the side frame mounting wall 342 and extending inwardly transversely from the side frame mounting wall 342; (c) a substantially vertically extending engagement pad 346 integrally connected to the engagement wall 344; and (d) a plurality of substantially horizontally extending braces (such as brace 348a) each integrally connected to the side frame mounting wall 342 and integrally connected to the engagement wall 342. The engagement wall 344 includes an inner substantially vertically extending engagement side 344a. The engagement pad 346 includes an inner substantially vertically extending engagement surface 346a.
[0094] In this illustrated embodiment, the engagement wall 344, the engagement side 344a, the engagement pad 346, and the engagement surface 346a also extend in the same direction (such as parallel) to the centerline, center plane, or center axis of the bolster (that in turn extends transversely relative to straight tracks). It should be appreciated that in various alternative embodiments of the present disclosure, the engagement wall 344, the engagement side 344a, the engagement pad 346, and/or the engagement surface 346a is: (a) angled outwardly; (b) angled inwardly; (c) angled upwardly; (d) angled downwardly; (e) angled outwardly and upwardly; (f) angled outwardly and downwardly; (g) angled inwardly and upwardly; or (h) angled inwardly and downwardly, to assist in providing the desired forces on the bolster 40 and the side frames 60 and 80 to reduce, inhibit, and/or minimize warping of the side frames 60 and 80 relative to the bolster 40 as further described below. Thus, in various embodiments, the angle between: (a) a plane extending through the engagement wall 344, along the engagement side 344a, through the engagement pad 346, or through the engagement surface 346a; relative to: (b) a plane extending through the side frame 60 may be right (as shown in
[0095] The first bearing 310 and the second opposing bearing 340 are thus configured to engage each other (as generally shown in
[0096] Likewise, example warp restraint 400 includes a first bearing 410 integrally formed with a first portion of the bolster 40 and a second opposing bearing 440 integrally formed with the first side frame 60. It should be appreciated that the first bearing 410 may be connected to the bolster 40 by one or more suitable first bearing connecters (not shown). It should also be appreciated that the second bearing 440 may be connected to the bolster 40 by one or more suitable second bearing connecters (not shown).
[0097] More specifically, as shown in
[0098] In this illustrated embodiment, the engagement pad 414 is pivotal about a horizontally or substantially horizontally extending axis (not shown) extending through the pivot pin (not shown). It should be appreciated that in various alternative embodiments of the present disclosure, the mounting bracket 412, the engagement pad 414, the connection arm 413, and the pivot pin can be configured such that the engagement pad 414 pivots about a differently extending axis.
[0099] In this illustrated embodiment, the engagement pad 414 and/or the engagement surface 414a extends in the same direction (such as parallel) to the centerline, center plane, or center axis of the bolster (that in turn extends transversely relative to straight tracks). It should be appreciated that in various alternative embodiments of the present disclosure, the engagement pad 414 and/or the engagement surface 414a is: (a) angled outwardly; (b) angled inwardly; (c) initially angled upwardly; (d) initially angled downwardly; (e) initially angled outwardly and upwardly; (f) initially angled outwardly and downwardly; (g) initially angled inwardly and upwardly; or (h) initially angled inwardly and downwardly, to assist in providing the desired forces on the bolster 40 and the side frames 60 and 80 to reduce, inhibit, and/or minimize warping of the side frames 60 and 80 relative to the bolster 40. Thus, in various embodiments, the angle between: (a) a plane extending through the engagement pad 414 or along the engagement surface 414a in its initial position; relative to: (b) a plane extending through the side frame 60 may be right (as shown in
[0100] As also shown in
[0101] The engagement wall 444 includes an inner substantially vertically extending engagement side 444a (that extends substantially parallel with the center line, center plane, or center axis of the bolster). The engagement pad 446 includes an inner substantially vertically extending engagement surface 446a (that extends substantially parallel with the crosswise axis of the bolster). It should be appreciated that in various alternative embodiments of the present disclosure, the engagement wall 444, the engagement side 444a, the engagement pad 446, and/or the engagement surface 446a is: (a) angled outwardly; (b) angled inwardly; (c) angled upwardly; (d) angled downwardly; (e) angled outwardly and upwardly; (f) angled outwardly and downwardly; (g) angled inwardly and upwardly; or (h) angled inwardly and downwardly, to assist in providing the desired forces on the bolster 40 and the side frames 60 and 80 to reduce, inhibit, or minimize warping of the side frames 60 and 80 relative to the bolster 40 as further described below. Thus, in various embodiments, the angle between: (a) a plane extending through the engagement wall 444, along the engagement side 444a, through the engagement pad 446, or through the engagement surface 446a; relative to: (b) a plane extending through the side frame 60 may be right (as shown in
[0102] The first bearing 410 and the second opposing bearing 440 are thus configured to engage each other (as generally shown in
[0103] In this embodiment, the removable wear members 316 and 416 of the respective engagement pads 314 and 414 of the bearings can be made from a relatively hard plastic material with self-lubricating characteristics such as from an acetal resin such as a DELRIN material.
[0104] In this example embodiment, engagement pads 346 and 446 are made from suitable steel for strength.
[0105] It should be appreciated that in various embodiments, the removable wear members 316 and 416 are respectively removably attached to the mounting bases 315 and 415 to facilitate replacement of such wear members as they wear out.
[0106] In various such embodiments, before replacement but after the wear members are worn to a certain degree, suitable shims (not shown) may be employed to maintain engagement between the respective sets of first and second bearings.
[0107] In various other such embodiments, one or more of the first and second bearings can include one or more biasing members (not shown) to maintain engagement between the respective sets of first and second bearings.
[0108] In various other such embodiments, one or more adjustment devices (not shown) can be used with the bearing members to maintain engagement between the respective sets of first and second bearings. In various embodiments, the adjustment devices include opposing threaded members that are rotatably adjustable to maintain engagement between the respective sets of first and second bearings.
[0109] It should be appreciated that bearing 110 (and specifically the mounting bracket 112 thereof), bearing 210 (and specifically the mounting bracket 212 thereof), bearing 510 (and specifically the mounting bracket thereof), and bearing 610 (and specifically the mounting bracket thereof) can be integrally cast with the bolster 40 in various embodiments of the present disclosure. Likewise, it should be appreciated that bearing 140 (and specifically the mounting wall 142 thereof) and bearing 240 (and specifically the mounting wall 242 thereof) can be integrally cast with the side frame 60 in various embodiments of the present disclosure. Likewise, it should be appreciated that bearing 540 (and specifically the mounting wall thereof) and bearing 640 (and specifically the mounting wall thereof) can be integrally cast with the side frame 80 in various embodiments of the present disclosure.
[0110] Warp restraints 700 and 800 of the present disclosure are identical to warp restraints 300 and 400 except that warp restraints 700 and 800 are attached to the second side frame 80 and the second portion of the bolster 40.
[0111] When warping begins to occur or occurs as generally shown in
[0112] The eight warp restraints 100, 200,300, 400, 500, 600, 700, and 800 of this example embodiment of the present disclosure thus act independently and co-act in groups to bias the bolster toward the square positions relative to the side frames 60 and 80 such that the centerline or center plane of the bolster (that extends transversely relative to straight tracks) is perpendicular or substantially perpendicular to the centerlines or center planes of the respective side frames 60 and 80 (that extend longitudinally relative to straight tracks).
[0113] In further alternative example embodiments of the railroad car truck with warp restraints of the present disclosure that are not shown, the railroad car truck with warp restraints includes: (a) the third plurality or set of warp restraints 300 and 400; and (b) the fourth plurality or set of warp restraints 700 and 800, but do not include: (1) the first plurality or set of warp restraints 100 and 200; and (2) the second plurality or set of warp restraints 500 and 600.
4.SUP.th .Example Embodiment
[0114] Referring now to
[0115] In this illustrated example embodiment of the present disclosure, as shown in
[0116] It should be appreciated that each of the warp restraints 2100, 2200, 2500, and 2600 in various embodiments are identical or substantially identical (except for positioning and arrangement of their connectors to, connections with, or formations with the side frames and the bolster). Therefore, warp restraints 2100 and 2200 are primarily discussed in further detail below. However, it should be appreciated that the warp restraints of the present disclosure do not need to be identical or substantially identical and can vary based on the respective positions and connections to or formations with the side frames and the bolster. For example, the two bearings of any set of warp restraints may be different. It should also be appreciated that the warp restraint of the various different embodiments of the present disclosure may be used on a truck (i.e., the various example warp restraints of the present disclosure may be mixed on single truck or railroad car).
[0117] More specifically, example warp restraint 2100 includes a first bearing 2110 integrally formed with a first portion of the bolster 2040 and a second opposing bearing 2140 integrally formed with the first side frame 2060. It should be appreciated that the first bearing 2110 may be connected to the bolster 2040 by one or more suitable first bearing connecters (not shown). It should also be appreciated that the second bearing 2140 may be connected to the bolster 2040 by one or more suitable second bearing connecters (not shown).
[0118] As best shown in
[0119] In this illustrated embodiment, the portion or engagement edge of the engagement roller 2114 and/or the engagement surface 2114a that engages bearing 2100 extends in the same direction (such as parallel) to the centerline, center plane, or center axis of the bolster (that in turn extends transversely relative to straight tracks). It should be appreciated that in various alternative embodiments of the present disclosure, the engagement roller 2114 and/or the engagement edge of the engagement surface 2114a is: (a) angled outwardly; (b) angled inwardly; (c) angled upwardly; (d) angled downwardly; (e) angled outwardly and upwardly; (f) angled outwardly and downwardly; (g) angled inwardly and upwardly; or (h) angled inwardly and downwardly to provide the desired forces on the bolster 2040 and the side frames 2060 and 2080 to reduce, inhibit, or minimize warping of the side frames 2060 and 2080 relative to the bolster 2040. Thus, in various embodiments, the angle between: (a) a plane extending through the engagement edge of the engagement roller 2114; relative to: (b) a plane extending through the side frame 60 may be right (as shown in
[0120] As best shown in
[0121] In this illustrated embodiment, the engagement wall 2144, the engagement side 2144a, the engagement pad 2146, and the engagement surface 2146a also extend in the same direction (such as parallel) to the centerline, center plane, or central axis of the bolster (that in turn extends transversely relative to straight tracks). It should be appreciated that in various alternative embodiments of the present disclosure, the engagement wall 2144, the engagement side 2144a, the engagement pad 2146, and/or the engagement surface 2146a is: (a) angled outwardly; (b) angled inwardly; (c) angled upwardly; (d) angled downwardly; (e) angled outwardly and upwardly; (f) angled outwardly and downwardly; (g) angled inwardly and upwardly; or (h) angled inwardly and downwardly, to assist in providing the desired forces on the bolster 2040 and the side frames 2060 and 2080 to reduce, inhibit, and/or minimize warping of the side frames relative to the bolster 2040. Thus, in various embodiments, the angle between: (a) a plane extending through the engagement wall 2144, along the engagement side 2144a, through the engagement pad 2146, or through the engagement surface 2146a; relative to: (b) a plane extending through the side frame 2060 may be right (as shown in
[0122] The first bearing 2110 and the second opposing bearing 2140 are thus configured to engage each other (as generally shown in
[0123] Likewise, example warp restraint 2200 includes a first bearing 2210 integrally formed with a first portion of the bolster 2040 and a second opposing bearing 2240 integrally formed with the first side frame 2060. It should be appreciated that the first bearing 2210 may be connected to the bolster 2040 by one or more suitable first bearing connecters (not shown). It should also be appreciated that the second bearing 2240 may be connected to the bolster 2040 by one or more suitable second bearing connecters (not shown).
[0124] More specifically, as best shown in
[0125] It should be appreciated that in various alternative embodiments of the present disclosure, the engagement roller 2214 is: (a) angled outwardly; (b) angled inwardly; (c) angled upwardly; (d) angled downwardly; (e) angled outwardly and upwardly; (f) angled outwardly and downwardly; (g) angled inwardly and upwardly; or (h) angled inwardly and downwardly, to assist in providing the desired forces on the bolster 2040 and the side frames 2060 and 2080 to reduce, inhibit, or minimize warping of the side frames 2060 and 2080 relative to the bolster 2040. Thus, in various embodiments, the angle between: (a) a plane extending through the engagement pad 2214 or along the engagement edge of the engagement surface 2214a; relative to: (b) a plane extending through the side frame 60 may be right (as shown in
[0126] As best shown in
[0127] The first bearing 2210 and the second opposing bearing 2240 are thus configured to engage each other (as generally shown in
[0128] In this illustrated example embodiment, the engagement pads 2146 and 2246 are steel and the rollers 2114 and 2214 are made from steel. It should be appreciated that these engaging components can be made from other suitable materials.
[0129] It should also be appreciated that the rollers of the warp restraints are identical in the illustrated embodiments of
[0130] In various such embodiments, before replacement but after the wear members are worn to a certain degree, suitable shims (not shown) may be employed to maintain engagement between the respective sets of first and second bearings.
[0131] In various other such embodiments, one or more of the first and second bearings can include one or more biasing members (not shown) to maintain engagement between the respective sets of first and second bearings.
[0132] In various other such embodiments, one or more adjustment devices (not shown) can be used with the bearing members to maintain engagement between the respective sets of first and second bearings. In various embodiments, the adjustment devices include opposing threaded members that are rotatably adjustable to maintain engagement between the respective sets of first and second bearings.
[0133] It should be appreciated that bearing 2110 (and specifically the mounting bracket 2112 thereof), bearing 2210 (and specifically the mounting bracket 2212 thereof), bearing 2510 (and specifically the mounting bracket thereof), and bearing 2610 (and specifically the mounting bracket thereof) can be integrally cast with the bolster 2040 in various embodiments of the present disclosure. Likewise, it should be appreciated that bearing 2140 (and specifically the mounting wall 2142 thereof) and bearing 2240 (and specifically the mounting wall 2242 thereof) can be integrally cast with the side frame 2060 in various embodiments of the present disclosure. Likewise, it should be appreciated that bearing 2540 (and specifically the mounting wall thereof) and bearing 2640 (and specifically the mounting wall thereof) can be integrally cast with the side frame 2080 in various embodiments of the present disclosure.
5.SUP.th .Example Embodiment
[0134] Referring now to
[0135] In this illustrated example embodiment of the present disclosure, the railroad car truck with warp restraints 2050A includes: (1) a first plurality or set of warp restraints 2100 and 2200; (2) a second plurality or set of warp restraints 2500 and 2600; (3) a third plurality or set of warp restraints 2300 and 2400; and (4) a fourth plurality or set of warp restraints 2700 and 2800. In this illustrated example embodiment of the present disclosure: (1) the first plurality or set of warp restraints 2100 and 2200 are the same as the warp restraints 2100 and 2200 of
[0136] Warp restraints 2300, 2400, 2700, and 2800 are similar to warp restraints 2100, 2200, 2500, and 2600, and are thus similarly described below.
[0137] In this illustrated embodiment: (a) warp restraint 2300 includes a first bearing 2310 integrally formed at and extending from a first portion of the bolster 2040 and a second opposing bearing 2340 integrally formed at and extending from the first side frame 2060; (b) warp restraint 2400 includes a first bearing 2410 integrally formed at and extending from the first portion of the bolster 2040 and a second opposing bearing 2440 integrally formed at and extending from the first side frame 2060; (c) warp restraint 2700 includes a first bearing 2710 integrally formed at and extending from a second portion of the bolster 2040 and a second opposing bearing 2740 integrally formed at and extending from the second side frame 2080; and (d) warp restraint 2800 includes a first bearing 2810 integrally formed at and extending from the second end portion of the bolster 2040, a second opposing bearing 2840 integrally formed at and extending from the second side frame 2080. Thus, bearings 2310, 2410, 2710, and 2810 are integrally formed at and extend from the respective outer portions of the bolster 2040, bearings 2340 and 2440 are integrally formed at and extend from the outer side of the first side frame 2060, and bearings 2740 and 2840 are integrally formed at and extend from the outer side of the second side frame 2080.
[0138] It should be appreciated that each of the warp restraints 2300, 2400, 2700, and 2800 in various embodiments are identical or substantially identical (except for positioning and arrangement of their connectors to, connections with, or formations with the side frames and the bolster). Therefore, warp restraints 2300 and 2400 are primarily discussed in further detail below. However, it should be appreciated that the warp restraints of the present disclosure do not need to be identical or substantially identical and can vary based on the respective positions and connections to or formations with the side frames and the bolster. For example, the two bearings of any set of warp restraints may be different. It should also be appreciated that the warp restraint of the various different embodiments of the present disclosure may be used on a truck (i.e., the various example warp restraints of the present disclosure may be mixed on single truck or railroad car).
[0139] More specifically, example warp restraint 2300 includes a first bearing 2310 integrally formed with a first portion of the bolster 2040 and a second opposing bearing 2340 integrally formed with the first side frame 2060. It should be appreciated that the first bearing 2310 may be connected to the bolster 2040 by one or more suitable first bearing connecters (not shown). It should also be appreciated that the second bearing 2340 may be connected to the bolster 2040 by one or more suitable second bearing connecters (not shown).
[0140] As shown in
[0141] In this illustrated embodiment, the portion or engagement edge of the engagement roller 2314 and/or the engagement surface 2314a that engages bearing 2100 extends in the same direction (such as parallel) to the centerline, center plane, or center axis of the bolster (that in turn extends transversely relative to straight tracks). It should be appreciated that in various alternative embodiments of the present disclosure, the engagement roller 2314 and/or the engagement edge of the engagement surface 2314a is: (a) angled outwardly; (b) angled inwardly; (c) angled upwardly; (d) angled downwardly; (e) angled outwardly and upwardly; (f) angled outwardly and downwardly; (g) angled inwardly and upwardly; or (h) angled inwardly and downwardly to provide the desired forces on the bolster 2040 and the side frames 2060 and 2080 to reduce, inhibit, or minimize warping of the side frames 2060 and 2080 relative to the bolster 2040. Thus, in various embodiments, the angle between: (a) a plane extending through the engagement edge of the engagement roller 2314; relative to: (b) a plane extending through the side frame 60 may be right (as shown in
[0142] As also shown in
[0143] In this illustrated embodiment, the engagement wall 2344, the engagement side 2344a, the engagement pad 2346, and the engagement surface 2346a also extend in the same direction (such as parallel) to the centerline, center plane, or central axis of the bolster (that in turn extends transversely relative to straight tracks). It should be appreciated that in various alternative embodiments of the present disclosure, the engagement wall 2344, the engagement side 2344a, the engagement pad 2346, and/or the engagement surface 2346a is: (a) angled outwardly; (b) angled inwardly; (c) angled upwardly; (d) angled downwardly; (e) angled outwardly and upwardly; (f) angled outwardly and downwardly; (g) angled inwardly and upwardly; or (h) angled inwardly and downwardly, to assist in providing the desired forces on the bolster 2040 and the side frames 2060 and 2080 to reduce, inhibit, and/or minimize warping of the side frames relative to the bolster 2040. Thus, in various embodiments, the angle between: (a) a plane extending through the engagement wall 2344, along the engagement side 2344a, through the engagement pad 2346, or through the engagement surface 2346a; relative to: (b) a plane extending through the side frame 2060 may be right (as shown in
[0144] The first bearing 2310 and the second opposing bearing 2340 are thus configured to engage each other (as shown in
[0145] Likewise, example warp restraint 2400 includes a first bearing 2410 integrally formed with a first portion of the bolster 2040 and a second opposing bearing 2440 integrally formed with the first side frame 2060. It should be appreciated that the first bearing 2410 may be connected to the bolster 2040 by one or more suitable first bearing connecters (not shown). It should also be appreciated that the second bearing 2440 may be connected to the bolster 2040 by one or more suitable second bearing connecters (not shown).
[0146] More specifically, as shown in
[0147] It should be appreciated that in various alternative embodiments of the present disclosure, the engagement roller 2414 is: (a) angled outwardly; (b) angled inwardly; (c) angled upwardly; (d) angled downwardly; (e) angled outwardly and upwardly; (f) angled outwardly and downwardly; (g) angled inwardly and upwardly; or (h) angled inwardly and downwardly, to assist in providing the desired forces on the bolster 2040 and the side frames 2060 and 2080 to reduce, inhibit, and/or minimize warping of the side frames 2060 and 2080 relative to the bolster 2040. Thus, in various embodiments, the angle between: (a) a plane extending through the engagement pad 2414 or along the engagement edge of the engagement surface 2414a; relative to: (b) a plane extending through the side frame 2060 may be right (as shown in
[0148] As also shown in
[0149] The first bearing 2410 and the second opposing bearing 2440 are thus configured to engage each other (as shown in
[0150] It should also be appreciated that the rollers of the warp restraints are identical in the illustrated embodiments, but may be different, and in particular may have different roller sizes (such as different roller outer diameters or different roller elasticity or spring characteristics).
[0151] In this illustrated example embodiment, the engagement pads 2346 and 2446 are steel and the rollers 2314 and 2414 are made from steel. It should be appreciated that these engaging components can be made from other suitable materials.
[0152] In various such embodiments, before replacement but after the wear members are worn to a certain degree, suitable shims (not shown) may be employed to maintain engagement between the respective sets of first and second bearings.
[0153] In various other such embodiments, one or more of the first and second bearings can include one or more biasing members (not shown) to maintain engagement between the respective sets of first and second bearings.
[0154] In various other such embodiments, one or more adjustment devices (not shown) can be used with the bearing members to maintain engagement between the respective sets of first and second bearings. In various embodiments, the adjustment devices include opposing threaded members that are rotatably adjustable to maintain engagement between the respective sets of first and second bearings.
[0155] Warp restraints 2700 and 2800 of the present disclosure are identical to warp restraints 2300 and 2400 except that warp restraints 2700 and 2800 are attached to the second side frame 2080 and the second portion of the bolster 2040.
[0156] It should be appreciated that bearing 2110 (and specifically the mounting bracket 2112 thereof), bearing 2210 (and specifically the mounting bracket 2212 thereof), bearing 2510 (and specifically the mounting bracket thereof), and bearing 2610 (and specifically the mounting bracket thereof) can be integrally cast with the bolster 2040 in various embodiments of the present disclosure. Likewise, it should be appreciated that bearing 2140 (and specifically the mounting wall 2142 thereof) and bearing 2240 (and specifically the mounting wall 2242 thereof) can be integrally cast with the side frame 2060 in various embodiments of the present disclosure. Likewise, it should be appreciated that bearing 2540 (and specifically the mounting wall thereof) and bearing 2640 (and specifically the mounting wall thereof) can be integrally cast with the side frame 2080 in various embodiments of the present disclosure.
[0157] In further alternative example embodiments of the railroad car truck with warp restraints of the present disclosure that are not shown, the railroad car truck with warp restraints includes: (a) the third plurality or set of warp restraints 2300 and 2400; and (b) the fourth plurality or set of warp restraints 2700 and 2800, but does not include: (1) the first plurality or set of warp restraints 2100 and 2200; and (2) the second plurality or set of warp restraints 2500 and 2600.
[0158] It should be appreciated that the warp restraints of the present disclosure do not need to be identical or substantially identical and can vary based on the respective positions and connections to or formations with the side frames and the bolster. For example, the two bearings of any set of warp restraints may be different. It should also be appreciated that the warp restraint of the various different embodiments of the present disclosure may be used on a truck (i.e., the various example warp restraints of the present disclosure may be mixed on single truck or railroad car).
Additional Embodiments and Disclosure
[0159] It should be appreciated that in various embodiments and in various circumstances, the warp restraints of the present disclosure may also act to provide other biasing forces to the bolster relative to the side frames and/or may co-act with one or more other components of the railroad car truck to provide other biasing forces to the bolster relative to the side frames. These other biasing effects of the warp restraints of the present disclosure can be considered as secondary potential biasing effects.
[0160] More specifically, known prior art railroad cars trucks typically have bolsters that have free lateral or transverse movement relative to the side frames of around +/ inches, where the end of that lateral or transverse travel is limited by or arrested by stopping members that are often called Gibs. Gibs are the physical blocks that prevent movement beyond this travel allowance. In certain embodiments of the present disclosure, the warp restraints replace or act with certain of the Gibs.
[0161] In the case where the warp restraints of the present disclosure replace certain of the Gibs, the bearings can perform certain of the functions of the Gibs. In the case where the warp restraints of the present disclosure do not replace the Gibs, the warp restraints will allow for limited lateral movement of the bolster relative to the side frames. In certain embodiments, depending upon the position, shape, and angles of the bearings, the warp restraints may assist or help to limit the lateral movement of the bolster relative to the side frames.
[0162] In another example of possible secondary biasing forces provided by the warp restraints of the present disclosure, the warp restraints may co-act with the springs or spring groups of the truck to provide biasing forces to the bolster relative to the side frames. The lateral or transverse movement of the bolster relative to the side frames is partially controlled by the equilibrium preference of the spring group on which the bolster rides. In other words, the spring groups provide lateral as well as vertical elasticity to the interaction between the bolster and the springs. More specifically, in certain embodiments of the warp restraints lateral biasing forces (beyond that provided by the spring group) are expected to be produced.
[0163] Thus, in certain circumstances and certain embodiments of the present disclosure, if the bolster moves laterally or transversely outwardly relative to the side frame, the warp restraints may be expected to exert certain biasing forces on those respective bearings, that will in turn transfer such forces to the bolster and the side frame to cause the bolster to move in an opposite direction laterally or transversely inwardly relative to the side frame and return to its normal position. Likewise, in certain circumstances and embodiments of the present disclosure, if the bolster moves laterally or transversely inwardly relative to the side frame, the warp restraints may be expected to exert certain biasing forces on those respective bearings, that will in turn transfer such forces to the bolster and the side frame to cause the bolster to move in an opposite direction laterally or transversely outwardly relative to the side frame and return to its normal position.
[0164] The warp restraints of certain embodiments of the present disclosure can also inhibit or reduce longitudinal movement of the bolsters relative to the side frames depending upon the shape and angles of the bearings. For example, if the bolster begins to move forward longitudinally relative to the side frame, the bearings can, in certain configurations, exert biasing forces on those respective bearing that will in turn transfer such forces to the bolster and the side frame to cause the bolster to move in an opposite direction rearwardly longitudinally relative to the side frame and return to its normal position. Likewise, if the bolster begins to move rearward longitudinally relative to the side frame, certain of the warp restraints can, in certain configurations, exert biasing forces on those respective warp restraints, that will in turn transfer such forces to the bolster and the side frame to cause the bolster to move in an opposite direction forwardly longitudinally relative to the side frame and return to its normal position.
[0165] It should also be appreciated that most movements of the bolster relative to the side frames will likely be in a direction that may be a combination of different directions, and that the warp restraints can act in combination or co-act with one or more other components of the truck to cause the bolster and side frames to move in opposing directions to return to their normal positions; thus, co-acting to prevent, reduce, or inhibit warping while also possibly applying other additional secondary forces as explained above.
[0166] Additionally, it should be appreciated that the warp restraints of the present disclosure can be employed to take up clearance between the side frame and bolster, thereby producing more resistance to truck warping.
[0167] As mentioned above, it should be appreciated that the bearings of the warp restraints may be differently formed, and in particular, the bearings may have different sizes such as diameters, thicknesses or widths, elasticity or spring characteristics and shapes.
[0168] It should be appreciated from the above that that over the expected life of certain of the bearings or engagement members thereof, it is expected that the size or width of the engagement member may decrease due to: (1) abrasion against the surfaces upon which the surfaces of that engagement member; (2) plastic deformation of the engagement member due to compression; (3) corrosion; and/or (4) other degenerative processes. In such case, the present disclosure contemplates replacement of such members, adjustment of the positions of such member (or other members), and/or other devices employed to facilitate necessary engagements.
[0169] It should further be appreciated that the warp restraints of the present disclosure require relatively little material or weight to the truck to provide additional stiffness.
[0170] It should be appreciated that in various embodiments, one or more of the surfaces of the bearings do not need any lubrication.
[0171] It should be appreciated that in various embodiments, one or more of the surfaces of the bearings are self-lubricating.
[0172] It should also be appreciated that one or more of the surfaces or engagement members will in certain embodiments have a high resistance to compressive forces such as compressive forces caused by warping. Such materials can for example include a composite polyester.
[0173] It will be understood that modifications and variations may be effected without departing from the scope of the novel concepts of the present invention, and it is understood that this application is to be limited only by the scope of the claims.