Claims
- 1. In a railway car truck assembly including a wheel set, a pair of axles, a pair of side frames, and a truck bolster, each side frame having a pedestal opening at each end thereof, a pair of opposing thrust lugs located on side walls which define each said pedestal opening in positions proximate a top of said pedestal opening, and a bearing assembly on each end of each axle positioned in a corresponding side frame pedestal opening for mounting the side frame on the end of a corresponding axle, the improvement comprising, in combination, a pedestal liner secured to said side frame to underlie a top wall of said pedestal opening, said pedestal liner having depending laterally extending end walls so said pedestal liner not only underlies said top wall of said pedestal opening but also wraps the inner faces of said thrust lugs, an adapter mounted in said pedestal opening on top of each said bearing assembly, said adapter having a thrust lug opening at each longitudinal end thereof, each said thrust lug opening being defined by a laterally extending adapter end wall and a pair of longitudinally extending laterally spaced shoulders, said shoulders being spaced greater than the lateral width of a corresponding thrust lug to permit predetermined lateral movement of said adapter relative to said side frame, an adapter plate mounted on top of said adapter, said adapter plate being of an approximately inverted U-shape having a top wall overlying a top of said adapter and a pair of longitudinally spaced depending end walls each of which extends down into a corresponding one of said thrust lug openings adjacent to and in covering relation with a corresponding adapter end wall, whereby when said adapter moves laterally relative to said side frame, said adapter plate depending end walls will slide against said pedestal liner depending end walls thereby protecting said thrust lugs and said adapter from wear.
- 2. The invention defined in claim 1 where a polymer pad is applied to the top of said adapter plate.
- 3. The invention defined in claim 2 where said polymer pad extends down the outside of said adapter plate depending end walls.
- 4. The invention defined in claim 3 where a plurality of longitudinally extending grooves are formed on the top of said polymer pad.
- 5. The invention defined in claim 2 where said polymer pad has a coefficient of friction in the range of 0.05 to 0.15.
- 6. The invention defined in claim 5 where said polymer pad comprises a thermoset polyurethane, polyester based material with a 70-75 shore D durometer.
- 7. The invention defined in claim 1 where a pair of laterally spaced longitudinal rails are formed on the top of said adapter, said adapter plate being dimensioned to fit between said rails which serve to retain said adapter plate against lateral movement relative to said adapter.
- 8. The invention defined in claim 1 where each of said depending end walls of said pedestal liner are formed with outwardly bent tabs at its two ends whereby said pedestal liner wraps three exposed sides of each thrust lug.
- 9. The invention defined in claim 1 where said longitudinally extending laterally spaced shoulders which define a thrust lug opening are spaced apart an amount sufficient to allow at least one-half inch lateral sliding movement of said adapter relative to said side frame.
- 10. The invention defined in claim 9 where said shoulders are spaced apart an amount sufficient to allow approximately 3/4ths inch lateral sliding movement of said adapter relative to said side frame.
- 11. The invention defined in claim 1 where said adapter plate comprises a formed metal plate having a urethane pad bonded to the top thereof and also to the outside of said depending end walls of said adapter plate.
- 12. The invention of claim 11 where the metal portion of said depending end walls of said adapter plate is replaced with a urethane layer which is softer than said urethane pad.
- 13. In a railway car truck assembly including a wheel set, a pair of axles, a pair of side frames, and a truck bolster, each side frame having a pedestal opening at each end thereof, a pair of opposing thrust lugs located on side walls which define each said pedestal opening in positions proximate a top of said pedestal opening, and a bearing assembly on each end of each axle positioned in a corresponding side frame pedestal opening for mounting the side frame on the end of a corresponding axle, the improvement comprising, in combination, a pedestal liner secured to said side frame to underlie a top wall of said pedestal opening, said pedestal liner having depending laterally extending end walls so said pedestal liner not only underlies said top wall of said pedestal opening but also wraps the inner faces of said thrust lugs, an adapter mounted in said pedestal opening on top of each said bearing assembly, said adapter having a thrust lug opening at each longitudinal end thereof, each said thrust lug opening being defined by a laterally extending adapter end wall and a pair of longitudinally extending laterally spaced shoulders, said shoulders being spaced apart greater than the lateral width of a corresponding thrust lug by an amount sufficient to allow at least one-half inch lateral sliding movement of said adapter relative to said side frame, an adapter plate mounted on top of said adapter, said adapter plate being of an approximately inverted U-shape having a top wall overlying a top of said adapter and a pair of longitudinally spaced depending end walls each of which extends down into a corresponding one of said thrust lug openings adjacent to and in covering relation with a corresponding adapter end wall, whereby when said adapter moves laterally relative to said side frame, said adapter plate depending end walls will slide against said pedestal liner depending end walls thereby protecting said thrust lugs and said adapter from wear, and a polymer pad bonded to the top of said adapter plate to facilitate sliding movement between said adapter plate and the underside of said pedestal liner, said polymer pad extending down the outside of said adapter plate depending end walls to facilitate sliding between said adapter plate depending end walls and said pedestal liner depending end walls, and a pair of laterally spaced longitudinal rails formed on the top of said adapter, said adapter plate being dimensioned to fit closely between said rails which serve to retain said adapter plate against lateral movement relative to said adapter.
- 14. The invention defined in claim 13 where a plurality of longitudinally extending grooves are formed on the top of said polymer pad.
- 15. The invention defined in claim 13 where each of said pedestal liner depending end walls is formed with outwardly bent tabs at its two ends whereby said pedestal liner wraps three exposed sides of each said thrust lug.
- 16. The invention defined in claim 13 where said shoulders are spaced apart an amount sufficient to allow approximately 3/4th inch lateral sliding movement of said adapter relative to said side frame.
- 17. The invention defined in claim 13 where said polymer pad has a coefficient of friction in the range of 0.05 to 0.15.
- 18. The invention defined in claim 13 where said polymer pad comprises a thermoset polyurethane, polyester based material with a 70-75 shore D durometer.
- 19. The invention defined in claim 13 where said adapter plate comprises a formed metal plate having a urethane pad bonded to the top thereof and also to the outside of said depending end walls of said adapter plate.
- 20. The invention defined in claim 19 where the metal portion of said depending end walls of said adapter plate is replaced with a urethane layer which is softer than said urethane pad.
RELATED PRIOR APPLICATION
This application is a continuation-in-part of U.S. Ser. No. 07/742,593, filed Aug. 8, 1991, now abandoned.
US Referenced Citations (12)
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
742593 |
Aug 1991 |
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