Claims
- 1. A shockless bumper system comprising a thermoplastic beam and an energy absorber coupled to said beam, said beam comprising a flange, said energy absorber comprising a flanged frame for attachment to said beam and a body extending from said frame, said body comprising a first transverse wall, a second transverse wall spaced from said first wall and a plurality of tunable crush boxes extending therebetween, said flanged frame comprising at least one finger configured to snap over said beam flange, said bumper system having greater than fifty percent efficiency.
- 2. A shockless bumper system according to claim 1 wherein said energy absorber is injection molded.
- 3. A shockless bumper system according to claim 1 wherein said beam is an I-beam and comprises a first flange extending from a first surface and a second flange extending from a second surface, and a plurality of stiffening ribs on at least one of said first and second surfaces.
- 4. A shockless bumper system according to claim 1 wherein said beam comprises a compression molded glass mat thermoplastic.
- 5. A shockless bumper system according to claim 1 wherein said first and second transverse walls are rippled, and wherein said crush boxes are spaced apart along the body and have open areas disposed therebetween.
- 6. A shockless bumper system according to claim 1 wherein said crush boxes have an overall three dimensional I-shape and comprise side and rear walls.
- 7. A shockless bumper system according to claim 6 wherein said side and rear walls comprise windows of predetermined shape and size.
- 8. A shockless bumper system according to claim 1 wherein said energy absorber form a snap fit with said beam.
- 9. A shockless bumper system according to claim 1 wherein said energy absorber comprises extensions that form a tight fit with said beam.
- 10. A bumper assembly for an automotive vehicle comprising:a thermoplastic beam configured to maintain a section modulus throughout an impact event, said beam comprising at least one flange; a non-foam type thermoplastic energy absorber coupled to said beam, said energy absorber comprising a flanged frame for attachment to said beam, said flanged frame comprising at least one finger configured to snap over said beam flange; and a fascia attachable to said energy absorber to substantially envelop said beam and said energy absorber.
- 11. A bumper assembly according to claim 10 wherein said beam is compression molded and said energy absorber is injection molded.
- 12. A bumper assembly according to claim 10 wherein said beam is an I-beam and comprises a first flange extending from a first surface and a second flange extending from a second surface, and a plurality of stiffening ribs on at least one of said first and second surfaces.
- 13. A bumper assembly according to claim 10 wherein said beam comprises a compression molded glass mat thermoplastic.
- 14. A bumper assembly according to claim 10 wherein said energy absorber is a unitary elongated energy absorber and comprises a body extending from said frame, said body comprising a first transverse wall, a second transverse wall spaced from said first wall and a plurality of tunable crush boxes extending therebetween.
- 15. A bumper assembly according to claim 14 wherein said first and second transverse walls are rippled, and wherein said crush boxes are spaced apart along the body and have open areas disposed therebetween, said crush boxes having an overall three dimensional I-shape and comprise side and rear walls.
- 16. A bumper assembly according to claim 10 wherein said energy absorber forms a snap fit with said beam.
CROSS REFERENCE TO RELATED APPLICATIONS
This application claims the benefit of International Application No. PCT/US01/28453 filed Sep. 12, 2001.
PCT Information
Filing Document |
Filing Date |
Country |
Kind |
PCT/US01/28453 |
|
WO |
00 |
Publishing Document |
Publishing Date |
Country |
Kind |
WO03/02263 |
3/20/2003 |
WO |
A |
US Referenced Citations (17)