Claims
- 1. A discharge door for selectively opening and closing a discharge opening in a railcar, the discharge door comprising:
an aluminum frame having hinge means at one end and an actuating beam at the other end; and, a main body of polymer molded over the frame by a molding process to define a generally planar surface on the top side facing the interior of the car to close the opening and a ribbed surface on the bottom side to further reinforce the body.
- 2. The discharge door of claim 1, wherein the hinge means includes spaced hinge members not covered by the polymer.
- 3. The discharge door of claim 1, wherein the actuating beam is hollow.
- 4. The discharge door of claim 3, wherein the hollow beam is box-shaped and extends from one side of the main body for interconnection with another door to operate as a set for a pair of side-by-side openings.
- 5. The discharge door of claim 1, wherein a lip is formed peripherally to coact with the discharge opening to close same against leakage of coal.
- 6. The discharge door of claim 1, which further includes a liner on the planar surface of an abrasion-resistant material.
- 7. The discharge door of claim 6, wherein the liner is of a UV resistant ultrahigh molecular weight polyethylene.
- 8. The discharge door of claim 1, wherein the main body of polymer is composed of a thermoset polymer.
- 9. The discharge door of claim 1, wherein the main body of polymer is composed of a polycyclic olefin based polymer.
- 10. The discharge door of claim 1, wherein the main body of polymer is composed of polydicyclopentadiene.
- 11. The discharge door of claim 1, wherein the molding process is selected from resin casting, resin transfer molding, reaction injection molding, and reinforced reaction injection molding.
- 12. The discharge door of claim 1, wherein the molding process is reaction injection molding.
- 13. In a hopper coal car having a bottom with a plurality of discharge openings, a plurality of discharge doors for selectively opening and closing said openings, the improvement being in said doors, each door comprising:
an aluminum frame having hinge means at one end and an actuating beam at the other end, and, a main body of polymer molded over the frame by a molding process to define a generally planar surface on the top side facing the interior of the car to close the opening and a ribbed surface on the bottom side to further reinforce the body.
- 14. The combination of claim 13, wherein the discharge opening and doors extend transversely of the car.
- 15. The combination of claim 13, wherein the discharge opening and doors extend longitudinally of the car.
- 16. The combination of claim 13, wherein the beam includes an extension at one side of the main body, and connecting means interconnects a pair of doors in side-by side relation as a set for a pair of transversely spaced apart discharge openings.
- 17. The combination of claim 16, wherein the connecting means includes a bracket attached to the beam extensions.
- 18. The combination of claim 13, wherein the ends of the beams for each door are substantially flush with the sides of the main body, and wherein the connecting means interconnects a pair of doors in side-by-side relation as a set for a pair of transversely spaced apart discharge openings.
- 19. The combination of claim 18, wherein the connecting means includes a spline received in and attached to said beams.
- 20. The combination of claim 13, wherein the main body of polymer is composed of a thermoset polymer.
- 21. The combination of claim 13, wherein the main body of polymer is composed of a polycyclic olefin based polymer.
- 22. The combination of claim 13, wherein the main body of polymer is composed of polydicyclopentadiene.
- 23. The combination of claim 13, wherein the molding process is selected from resin casting, resin transfer molding, reaction injection molding, and reinforced reaction injection molding.
- 24. The combination of claim 13, wherein the molding process is reaction injection molding.
- 25. A discharge door for selectively opening and closing a discharge comprising:
a metal frame; and, a main body of polymer molded over the frame.
- 26. The discharge door described in claim 25, wherein the frame has two ends and includes hinge means at one end and an actuating beam at the other end.
- 27. The discharge door described in claim 25, wherein the metal is aluminum.
- 28. The discharge door described in claim 25, wherein the molding process is selected from resin casting, resin transfer molding, reaction injection molding, and reinforced reaction injection molding.
- 29. The discharge door described in claim 25, wherein the main body of polymer is composed of a polycyclic olefin based polymer.
- 30. A process for improving the structural properties of an aluminum frame by placing an aluminum frame in a mold and over molding the frame with a polymeric material that shrinks around the frame placing the frame under compression.
- 31. The process described in claim 30 where the over molding process used is reaction injection molding.
- 32. The process described in claim 30 where the over molding polymeric material is a thermoset.
- 33. The process described in claim 30 where the over molding polymeric material is a polycyclic olefin based polymer.
- 34. The process described in claim 30 where the over molding polymeric material is polydicyclopentadiene.
Parent Case Info
[0001] This application claims priority from U.S. Provisional Application 60/136,183, filed May 27,1999, which application is incorporated herein by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60136183 |
May 1999 |
US |