Claims
- 1. A powered door system disposed within an aperture of a transit vehicle structure for at least partially covering an uncovering said aperture, said powered door system comprising:
(a) a door (b) a powered door operator substantially attached to said door for driving said door in a drive direction to cover and uncover an aperture of a transit passenger vehicle, said door operator mounted substantially overhead of said door; said door operator attached to said transit vehicle structure.
- 2. A powered door system according to claim 1, wherein said door operator includes:
(a) a drive system; and (b) a door hanger integral with said drive system, said door hanger connected to said door for driving said door in a drive direction, said door hanger enabled for driving by said drive system.
- 3. A powered door system according to claim 2, wherein said drive system includes:
(a) a prime mover; (b) a helical drive member attached to said prime mover at one end, said drive member being aligned substantially parallel to such drive direction; (c) a bearing engaging said helical drive member at a distal end; (d) a coupling means disposed intermediate said helical drive member and said prime mover, said coupling means connecting said helical drive member with said drive member; and (e) a drive nut having a first predetermined diameter, said drive nut engaging said helical drive member; said drive nut is driven thereby in a linear direction upon rotation of said helical drive member enabled by said prime mover, said drive nut having a force transmitting member.
- 4. A powered door system according to claim 2, wherein said door hanger includes:
(a) a hanger rail; (b) a driving trolley assembly, said driving trolley assembly disposed for movement within said hanger rail; (c) a driven trolley assembly, said driven trolley assembly disposed for movement within said hanger rail; and (d) at least one hanger bracket substantially attached to said door, said at least one hanger bracket attached to said driving trolley assembly, said at least one hanger bracket further attached to said driven trolley assembly.
- 5. A powered door system according to claim 2, wherein said coupling means is at least one of a flexible type coupling and a universal joint.
- 6. A powered door system according to claim 2, wherein said helical drive member is directly connected to said prime mover.
- 7. A powered door system according to claim 4, wherein said hanger rail includes:
(a) a first roller portion having a first roller cavity; (b) a second roller portion having a second roller cavity, said second roller cavity disposed substantially opposite said first roller cavity; and (c) a mounting surface portion disposed intermediate said first roller portion at one end and said second roller portion at a distal end
- 8. A powered door system according to claim 7, wherein said first roller cavity includes:
(a) a first concave portion; (b) a second concave portion; and (c) a first wall portion disposed intermediate said first concave portion at one end and said second concave portion at a distal end.
- 9. A powered door system according to claim 7, wherein said second roller cavity includes:
(a) a third concave portion; (b) a fourth concave portion; and (c) a second wall portion disposed intermediate said third concave portion at one end and said forth concave portion at a distal end.
- 10. A powered door system according to claim 7, wherein said first roller cavity includes:
(a) a first convex portion; (b) a second convex portion; and (c) a first wall portion disposed intermediate said first convex portion at one end and said second convex portion at a distal end.
- 11. A powered door system according to claim 7, wherein said second roller cavity includes:
(a) a third convex portion; (d) a fourth convex portion; and (e) a second wall portion disposed intermediate said third convex portion at one end and said forth convex portion at a distal end.
- 12. A powered door system according to claim 7, wherein said first roller cavity is substantially identical to said second roller cavity.
- 13. A powered door system according to claim 7, wherein said first roller cavity is one of inwardly disposed and outwardly within said hanger rail.
- 14. A powered door system according to claim 7, wherein said second roller cavity is one of inwardly disposed and outwardly disposed within said hanger rail.
- 15. A powered door system according to claim 7, wherein said hanger rail further having a wear resistant means disposed within said hanger rail, said wear resistant means substantially eliminating surface wear due to the contact by said first trolley assembly, said wear resistant means further substantially eliminating surface wear due to the contact by said second trolley assembly
- 16. A powered door system according to claim 15, wherein said wear resistant means produced by one of an anodizing process and a hard anodizing process.
- 17. A powered door system according to claim 7, wherein said hanger rail is manufactured by an aluminum extrusion process, said hanger rail having a third predetermined structural strength to support said door, said hanger rail further having a third predetermined structural strength to support said drive system; said hanger rail further having a third predetermined structural strength to support said plurality of trolley assemblies.
- 18. A powered door system according to claim 7, wherein said hanger rail further includes mounting means for substantial attachment to said transit vehicles structure.
- 19. A powered door system according to claim 4, wherein said driving trolley assembly includes:
(a) a driving trolley housing having at least two substantially cylindrical roller mounting portion disposed within a first body portion; said first body portion having a first cylindrical cavity, said driving trolley housing; (b) at least two rollers engaging said two substantially cylindrical roller mounting portion disposed within a first body portion of said driving trolley housing, said at least two rollers disposed substantially opposite each other; and (c) at least two retaining rings engaging said two substantially cylindrical roller mounting portion disposed within a first body portion of said driving trolley housing; said retaining rings are for substantial retainment of said at least two rollers thereof.
- 20. A powered door system according to claim 19, wherein said driving trolley housing further includes:
(a) a second body portion substantially connected to said first body portion; (b) a second semi-cylindrical cavity disposed within said second body portion; said second semi-cylindrical cavity having a second predetermined diameter; said second predetermined diameter substantially equal to said first predetermined diameter of said drive nut; (c) a force receiving member disposed within said second body portion, said forth receiving member engaging the force transmitting member disposed within said drive nut; and (d) a force transmitting portion having a vertical displacement compensation cavity for transferring linear motion generated by said drive nut to said hanger bracket, said force transmitting portion having a vertical displacement compensation cavity for transferring linear motion generated by said drive nut to said door.
- 21. A powered door system according to claim 20, wherein said driving trolley housing is manufactured from a stainless steel, said driving trolley housing having a first predetermined structural strength of the first body portion and second body portion in combination with said first cylindrical cavity and said second semi-cylindrical cavity, said first predetermined structural strength capable of supporting at least partial weight of said door.
- 22. A powered door system according to claim 4, wherein said driven trolley assembly includes:
(a) a driven trolley housing having at least two substantially cylindrical roller mounting portion disposed within a body portion; said body portion having a third cylindrical cavity; (b) at least two rollers engaging said two substantially cylindrical roller mounting portion disposed within a body portion of said driven trolley housing, said at least two rollers disposed substantially opposite each other; and (c) at least two retaining rings engaging said two substantially cylindrical roller mounting portion disposed within a body portion of said driven trolley housing; said retaining rings are for substantial retainment of said at least two rollers thereof.
- 23. A powered door system according to claim 22, wherein said driven trolley housing further includes at least one force transmitting portion disposed within said body portion having a vertical displacement compensation cavity for transferring said linear motion to said hanger bracket, said force transmitting portion having a vertical displacement compensation cavity for transferring linear motion generated by said drive nut to said door.
- 24. A powered door system according to claim 19, wherein said roller having a bearing means disposed within a roller housing having a convex outer surface of a third predetermined diameter.
- 25. A powered door system according to claim 4, wherein said at least one hanger bracket is two hanger brackets equally disposed about said door, said two hanger brackets attached to said driving trolley assembly at one end of said door, said two hanger brackets attached to said driven trolley assembly at the distal end of said door.
- 26. A powered door operator according to claim 4, wherein said at least one hanger bracket providing rotational constraint in order to prevent said drive nut from rotating about an axis of said helical drive member, said at least one hanger bracket, further providing linear constraint of said drive nut along such axis of said helical drive member between said drive nut and such door so that rotation of said helical drive member causing motion of said drive nut parallel to such axis of said helical drive member causes movement of said door parallel to such drive direction.
- 27. A powered door operator according to claim 4, wherein said roller having the convex outer surface of a third predetermined diameter engages said first concave portion of said first roller cavity, said roller having the convex outer surface of a third predetermined diameter further engages said third concave portion of said second roller cavity.
- 28. A powered door operator according to claim 4, wherein said roller having the concave outer surface of a third predetermined diameter engages said first convex portion of said first roller cavity, said roller having the concave outer surface of a third predetermined diameter further engages said third convex portion of said second roller cavity.
- 29. A powered door system disposed within an aperture of a transit vehicle structure for at least partially covering an uncovering said aperture, said powered door system comprising:
(a) a door; (b) a powered door operator having a connection to said door for enabling said door to move in a drive direction to cover and uncover an aperture of a transit passenger vehicle, said door operator mounted adjacent of said door; said door operator attached to said transit vehicle structure; and (c) a door hanger connected to said door for driving said door in a drive direction, said door hanger attached to said transit vehicle structure.
- 30. A powered door system according to claim 29, wherein said door hanger includes:
(a) a hanger rail; (b) at least one trolley assembly disposed for movement within said hanger rail; (c) at least one hanger bracket substantially attached to said door, said at least one hanger bracket attached to said at least one trolley assembly.
- 31. A powered door system according to claim 30, wherein said at least one trolley assembly is a two trolley assembly equally disposed about said door.
- 32. A powered door system according to claim 30, wherein said at least one hanger is a two hanger brackets equally disposed about said door.
- 33. A powered door system according to claim 30, wherein said hanger rail includes:
(a) a first roller portion having a first roller cavity; (b) a second roller portion having a second roller cavity, said second roller cavity disposed substantially opposite said first roller cavity; and (c) a mounting surface portion disposed intermediate said first roller portion at one end and said second roller portion at a distal end
- 34. A powered door system according to claim 33, wherein said first roller cavity includes:
(a) a first concave portion; (b) a second concave portion; and (c) a first wall portion disposed intermediate said first concave portion at one end and said second concave portion at a distal end.
- 35. A powered door system according to claim 33, wherein said second roller cavity includes:
(a) a third concave portion; (b) a fourth concave portion; and (c) a second wall portion disposed intermediate said third concave portion at one end and said forth concave portion at a distal end.
- 36. A powered door system according to claim 33, wherein said first roller cavity includes:
(a) a first convex portion; (b) a second convex portion; and (c) a first wall portion disposed intermediate said first convex portion at one end and said second convex portion at a distal end.
- 37. A powered door system according to claim 33, wherein said second roller cavity includes:
(a) a third convex portion; (b) a fourth convex portion; and (c) a second wall portion disposed intermediate said third convex portion at one end and said forth convex portion at a distal end.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is related to and claims priority from U.S. Provisional Patent Application Serial No. 60/322,060 filed on Sep. 12, 2001. This application is also related to the invention disclosed in U.S. Pat. No. 6,032,416, titled “Transit Vehicle Door” and to the invention disclosed in U.S. Pat. No. 6,094,867, titled “Door Drive and Lock for Mass Transit Vehicle”. The teachings of U.S. Pat. No. 6,032,416 and U.S. Pat. No. 6,094,867 are incorporated into this document by reference thereto.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60322060 |
Sep 2001 |
US |