Claims
- 1. A train collision attenuator for mounting to a leading end of a leading rail car rollably supported on a railway, said attenuator comprising:an energy absorbing assembly having a leading surface, said energy absorbing assembly dimensioned and configured for attenuating the force of impact between a moving train and a pedestrian or a vehicle located in the path of the moving train as the pedestrian impacts against said leading surface, a mounting assembly adapted to secure said energy absorbing assembly to the leading end of the leading rail car, and said energy absorbing assembly comprises an airbag, said leading surface being formed by said airbag when said airbag is inflated, said airbag being dimensioned and configured for attenuating the force of impact between the moving train and the pedestrian or the vehicle, said airbag including an upper pedestrian cushioning portion and a lower pedestrian support portion, wherein said lower pedestrian support portion has a deployed shape and said lower pedestrian support portion maintains its shape while said upper cushioning portion deflates.
- 2. A train collision attenuator for mounting to a leading end of a leading rail car rollably supported on a railway, said attenuator comprising:an energy absorbing assembly having a leading surface, said energy absorbing assembly dimensioned and configured for attenuating the force of impact between a moving train and a pedestrian and between a moving train and a vehicle located in the path of the moving train as the pedestrian or the vehicle impacts against said leading surface, a mounting assembly adapted to secure said energy absorbing assembly to the leading end of the leading rail car, and said attenuator is adapted for mounting to a leading end of the leading rail car proximal a train coupling mechanism of the rail car, said mounting assembly includes a lifting mechanism wherein said energy absorbing assembly is adapted to be moved up and away from the train coupling mechanism from a deployed position to a retracted position in less than approximately 2.5 seconds.
- 3. The train collision attenuator of claim 2 wherein said energy absorbing assembly comprises an airbag, said leading surface being formed by said airbag when said airbag is inflated, said airbag being dimensioned and configured for attenuating the force of impact between the moving train and the pedestrian.
- 4. The train collision attenuator of claim 3 wherein said airbag further comprises an upper pedestrian cushioning portion and a lower pedestrian support portion for supporting the pedestrian after impact.
- 5. A train collision attenuator mounted to a leading end of a leading rail car rollably supported on a railway, said attenuator comprising:an energy absorbing assembly having a leading surface, said energy absorbing assembly dimensioned and configured for attenuating the force of impact between a moving train and a pedestrian and between a moving train and a vehicle located in the path of the moving train as the pedestrian or the vehicle impacts against said leading surface, a mounting assembly adapted to secure said energy absorbing assembly to the leading end of the leading rail car, said energy absorbing assembly comprises a first energy absorbing section located adjacent said leading surface, said first energy absorbing section is dimensioned and configured for attenuating the force of impact between the moving train and the pedestrian, said first energy absorbing section having an energy absorption coefficient of approximately 25 to 500 ft-lbs/ft3, and said energy absorbing assembly further comprises a second energy absorbing section dimensioned and configured for attenuating the force of impact between the moving train and an automobile, said second section having an energy absorption coefficient of approximately 500 to 4000 ft-lbs/ft3.
- 6. The train collision attenuator of claim 5 wherein said energy absorbing assembly further comprises a third energy absorbing section dimensioned and configured for attenuating the force of impact between the moving train and a truck or bus, said third section having an energy absorption coefficient of approximately 8000 to 32,000 ft-lbs/ft3.
- 7. The train collision attenuator of claim 5 further comprising an airbag including an upper pedestrian cushioning portion and a lower pedestrian support portion.
- 8. The train collision attenuator of claim 5 further comprising a fluid-spray pedestrian deflector wherein said deflector sprays a fluid laterally with respect to the direction of travel of the train in order to deflect the pedestrian from the path of the train.
- 9. A train collision attenuator for mounting to a leading end of a leading rail car rollably supported on a railway, said attenuator comprising:an energy absorbing assembly having a leading surface, said energy absorbing assembly dimensioned and configured for attenuating the force of impact between a moving train and a pedestrian located in the path of the moving train as the pedestrian impacts against said leading surface, a mounting assembly adapted to secure said energy absorbing assembly to the leading end of the leading rail car, and said energy absorbing assembly comprises an airbag, said leading surface being formed by said airbag when said airbag is inflated, said airbag being dimensioned and configured for attenuating the force of impact between the moving train and the pedestrian and including an upper deflatable portion and a lower pedestrian support portion for supporting the pedestrian after impact.
- 10. The train collision attenuator of claim 9 wherein said airbag inflates within approximately 5 milliseconds to 10 seconds.
- 11. The train collision attenuator of claim 9 further comprising a proximity detector configured for detecting obstacles within the path of the train.
- 12. The train collision attenuator of claim 9 wherein said leading surface comprises a center portion and side portions, said center portion protruding further forward than said side portions and being configured and dimensioned to laterally deflect the pedestrian from the path of the train.
- 13. The train collision attenuator of claim 9 further comprising an air pressure dump valve configured and dimensioned allow deflation of the airbag upon impact with the pedestrian or the vehicle.
- 14. In combination, a train collision attenuator and a train, said train including a leading rail car having a leading end to which said collision attenuator is mounted, said collision attenuator comprising:an energy absorbing assembly having a leading surface, said energy absorbing assembly dimensioned and configured for attenuating the force of impact between said train while it is in motion and a pedestrian or a vehicle located in the path of said train as the pedestrian or vehicle impacts against said leading surface, and a mounting assembly securing said energy absorbing assembly to said leading end of said leading rail car, wherein said attenuator is mounted to said leading end of said leading rail car proximal a train coupling mechanism of said rail car, said combination further comprising a lifting mechanism wherein said energy absorbing assembly is adapted to be moved up and away from said train coupling mechanism from a deployed position to a retracted position in less than approximately 2.5 seconds.
- 15. The combination of claim 14, said train collision attenuator further comprising a lower pedestrian support portion for supporting the pedestrian after impact.
RELATED APPLICATIONS
This application is a Continuation-in-Part of U.S. patent application Ser. No. 09/267,028 filed Mar. 12, 1999, now abandoned, the entire contents of which is incorporated herein by this reference.
US Referenced Citations (15)
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
09/267028 |
Mar 1999 |
US |
Child |
09/753540 |
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US |