Overhead bi-fold door
10815718 ยท 2020-10-27
Assignee
Inventors
Cpc classification
E06B3/01
FIXED CONSTRUCTIONS
International classification
Abstract
An overhead bi-fold door mounted on a freestanding header has a door lift device with polymer cylindroids and capstans operated with an electric motor driven power transmission to selectively move the bi-fold door from an upright closed position to a folded open position and allow the bi-fold door to move from the folded open position to the upright closed position. Anchors mounted on the bi-fold door adjust the working length of the cylindroids between the capstans and anchors. The capstans have laterally spaced disks engageable with the cylindroids during the helical winding and unwinding of the cylindroid on the capstans as the bi-fold door moves at an increasing rate of speed from the upright closed to folded open positions and a decreasing rate of speed from the folded open to upright closed positions.
Claims
1. An overhead bi-fold door for selectively opening and closing a doorway of a structure comprising: a first panel having a first frame including an upper horizontal frame member and a lower horizontal frame member, a plurality of first hinges for pivotally connecting the upper horizontal frame member of the first panel to the structure, a second panel having a second frame including an upper horizontal frame member and a lower horizontal frame member, a plurality of second hinges connecting the lower horizontal frame member of the first panel to the upper horizontal frame member of the second panel, said first and second hinges being operable to allow the first panel and the second panel to be moved from aligned upright positions, closing the doorway to side-by-side folded positions opening the doorway, sheathing attached to the first and second frames of the first panel and the second panel, a door lift device operable to selectively move the first panel and the second panel from the aligned upright positions to the side-by-side folded positions and allow the first and second panels to move from the side-by-side folded positions back to the aligned upright positions to close the doorway comprising: a horizontal shaft located adjacent the lower horizontal frame member of the second panel, supports secured to the second panel rotatably holding the horizontal shaft on the second panel, a power transmission drivably connected to the shaft for rotating the shaft, a bracket securing the power transmission to the second panel, a reversible electric motor drivably connected to the power transmission for operating the power transmission to selectively rotate the shaft in opposite directions, a plurality of capstans secured to the shaft for rotation with the shaft, each capstan including: a hub secured to the shaft, a first disk joined to the hub, a second disk joined to the hub, said first disk having a first circular flat wall, extended radially away from the shaft, said second disk having a second flat circular wall laterally spaced from the first flat circular wall of the first disk, said first and second flat circular walls being parallel to each other, a flexible cylindroid having cooperating strands of polymer fibers, the cylindroid having a first end section located between and in contact with the first and second flat walls of the first and second disks and a second end section, anchors secured to the upper horizontal frame member of the first panel, said capstan upon rotation of the shaft by the power transmission in one direction helically winds the first section of the cylindroid around the hub in the space between the first and second disks to move the first panel and the second panel of the bi-fold door at an increasing rate of speed from the upright aligned closed positions to the folded open positions and upon rotation of the shaft in a direction opposite the one direction, the first section of the cylindroid unwinds from between the first and second disks to allow the first panel and the second panel to move at a decreasing rate of speed from the folded open positions back to the upright aligned closed positions, each anchor including a bracket secured to the upper horizontal frame member of the first panel, a sleeve rotatably mounted on the bracket, said second end section of the cylindroid being connected to and wrapped around the sleeve to adjust the length of the cylindroid between the capstan and anchor, a ratchet wheel connected to the sleeve, and a latch engageable with the ratchet wheel to prevent rotation of the ratchet wheel and sleeve thereby maintaining the adjusted length of the cylindroid between the capstan and anchor, said latch disengaged from the ratchet wheel to allow the ratchet wheel and sleeve to be rotated to adjust the length of the cylindroid between the capstan and anchor.
2. The overhead bi-fold door of claim 1 wherein: the first disk of the capstan includes an annular peripheral lip extended outwardly from the flat wall of the first disk, the second disk of the capstan includes an annular peripheral lip extended outwardly from the flat wall of the second disks, the lips of the first and second disks are laterally spaced from each other and guide the cylindroid into the space between the flat walls of the first and second disks during the winding of the cylindroid on the capstan.
3. The overhead bi-fold door of claim 1 wherein: the polymer fibers of the strands of the cylindroid comprises polyester fibers.
4. The overhead bi-fold door of claim 1 wherein: the polymer fibers of the strands of the cylindroid comprise nylon fibers.
5. A combination of a freestanding header and an overhead bi-fold door for opening and closing a passage in a structure comprising: a freestanding header located around the passage in the structure, a freestanding header includes a horizontal header member having a first end and a second end, a first upright leg engageable with the first end of the horizontal header member, a first splice secured to the first end of the horizontal header member and engageable with the first leg, first fasteners securing the first leg to the first splice to retain the first leg in engagement with the first end of the horizontal header member, a second upright leg engageable with the second end of the horizontal header member, a second splice secured to the second end of the horizontal header member and engageable with the second end of the horizontal member, second fasteners securing the second leg to the second splice to retain the second leg in engagement with the second end of the horizontal header member, an overhead bi-fold door for selectively opening and closing the passage in the structure comprising a first panel having a first frame including an upper horizontal frame member and a lower horizontal frame member, a plurality of first hinges pivotally connecting the upper horizontal frame member of the first panel to the horizontal header, a second panel having a second frame including an upper horizontal frame member and a lower horizontal frame member, a plurality of second hinges connecting the lower horizontal frame member of the first panel to the upper horizontal frame member of the second panel, said first and second hinges being operable to allow the first and second panels to be moved from aligned upright positions, closing the passage to side-by-side folded positions opening the passage, sheathing attached to the first and second frames of the first panel and the second panel, a door lift device operable to selectively move the first panel and the second panel from the aligned upright positions to the side-by-side folded positions and allow the first panel and the second panel to move from the side-by-side folded positions back to the aligned upright positions to close the passage comprising: a horizontal shaft located adjacent the lower horizontal frame member of the second panel, supports secured to the second frame of the second panel rotatably holding the horizontal shaft on the second panel, a power transmission drivably connected to the shaft for rotating the shaft, a bracket securing the power transmission to the second frame of the second panel, a reversible electric motor drivably connected to the power transmission for operating the power transmission to selectively rotate the shaft in opposite directions, a plurality of capstans secured to the shaft for rotation with the shaft, each capstan including: a hub secured to the shaft, a first disk joined to the hub, a second disk joined to the hub, said first disk having a first circular flat wall, extended radially away from the shaft, said second disk having a second flat circular wall laterally spaced from the first flat circular wall of the first disk, said first and second flat circular walls being parallel to each other, a flexible cylindroid having cooperating strands of polymer fibers, the cylindroid having a first end section located between and in contact with the first and second flat walls of the first and second disks and a second end section, anchors secured to the upper horizontal frame member of the first panel, said capstan upon rotation of the shaft by the power transmission in one direction helically winds the first section of the cylindroid around the hub in the space between the first and second disks to move the first and second panels of the bi-fold door at an increasing rate of speed from the upright aligned closed positions to the folded open positions and upon rotation of the shaft in a direction opposite the one direction, the first section of the cylindroid unwinds from between the first and second disks to allow the first panel and the second panel to move at a decreasing rate of speed from the folded open positions back to the upright aligned closed positions, each anchor including a bracket secured to the upper horizontal frame member of the first panel, a sleeve rotatably mounted on the bracket, said second end section of the cylindroid being connected to and wrapped around the sleeve to adjust the length of the cylindroid between the capstan and anchor, a ratchet wheel connected to the sleeve, and a latch engageable with the ratchet wheel to prevent rotation of the ratchet wheel and sleeve thereby maintaining the adjusted length of the cylindroid between the capstan and anchor, said latch being disengaged from the ratchet wheel to allow the ratchet wheel and sleeve to be rotated to adjust the length of the cylindroid between the capstan and anchor.
6. The combination of claim 5 wherein: the first disk of the capstan includes an annular peripheral lip extended outwardly from the flat wall of the first disk, the second disk of the capstan includes an annular peripheral lip extended outwardly from the flat wall of the second disks, the lips of the first and second disks are laterally spaced from each other and guide the cylindroid into the space between the flat walls of the first and second disks during the winding of the cylindroid on the capstan.
7. The combination of claim 5 wherein: the polymer fibers of the strands of the cylindroid comprises polyester fibers.
8. The combination of claim 5 wherein: the polymer fibers of the strands of the cylindroid comprise nylon fibers.
9. An overhead bi-fold door for selectively opening and closing a doorway of a structure comprising: a first panel having a first frame including an upper horizontal frame member and a lower horizontal frame member, a plurality of first hinges for pivotally connecting the upper horizontal frame member of the first frame of the first panel to the structure, a second panel having a second frame including an upper horizontal frame member and a lower horizontal frame member, a plurality of second hinges connecting the lower horizontal frame member of the first panel to the upper horizontal frame member of the second panel, said first and second hinges being operable to allow the first panel and the second panel to be moved from aligned upright positions, closing the doorway to side-by-side folded positions opening the doorway, sheathing attached to the first and second frames of the first and second panels, a door lift device operable to selectively move the first panel and the second panel from the aligned upright positions to the side-by-side folded positions and allow the first panel and the second panel to move from the side-by-side folded positions back to the aligned upright positions to close the doorway comprising: a horizontal shaft located adjacent the upper horizontal frame member of the first panel, supports secured to the first frame of the first panel, bearings mounted on the supports rotatably supporting the shaft, a power transmission drivably connected to the shaft to rotate the shaft, a bracket securing the power transmission to the first frame of the first panel, a reversible electric motor for operating the power transmission to selectively rotate the shaft in opposite directions, a plurality of capstans secured to the shaft for rotation with the shaft, each capstan including: a hub secured to the shaft, a first disk joined to the hub, a second disk joined to the hub, said first disk having a first circular flat wall, extended radially away from the shaft, said second disk having a second flat circular wall laterally spaced from the first flat circular wall of the first disk, said first and second flat circular walls being parallel to each other, a flexible cylindroid having cooperating strands of polymer fibers, the cylindroid having a first end section located between and in contact with the first and second flat walls of the first disk and the second disk and a second end section, anchors secured to the lower horizontal frame member of the second panel, said capstan upon rotation of the shaft by the power transmission in one direction helically winds the first section of the cylindroid around the hub in the space between the first and second disks to move the first and second panels of the bi-fold door at an increasing rate of speed from the upright aligned closed positions to the folded open positions and upon rotation of the shaft in a direction opposite the one direction, the first section of the cylindroid unwinds from between the first and second disks to allow the first and second panels to move at a decreasing rate of speed from the folded open positions back to the upright aligned closed positions, each anchor including a bracket secured to the lower horizontal frame member of the second panel, a sleeve rotatably mounted on the bracket, said second end section of the cylindroid being connected to and wrapped around the sleeve to adjust the length of the cylindroid between the capstan and anchor, a ratchet wheel connected to the sleeve, and a latch engageable with the ratchet wheel to prevent rotation of the ratchet wheel and sleeve thereby maintaining the adjusted length of the cylindroid between the capstan and anchor, said latch being disengaged from the ratchet wheel to allow the ratchet wheel and sleeve to be rotated to adjust the length of the cylindroid between the capstan and anchor.
10. The overhead bi-fold door of claim 9 wherein: the first disk of the capstan includes an annular peripheral lip extended outwardly from the flat wall of the first disk, the second disk of the capstan includes an annular peripheral lip extended outwardly from the flat wall of the second disks, the lips of the first and second disks are laterally spaced from each other and guide the cylindroid into the space between the flat walls of the first and second disks during the winding of the cylindroid on the capstan.
11. The overhead bi-fold door of claim 9 wherein: the polymer fibers of the strands of the cylindroid comprises polyester fibers.
12. The overhead bi-fold door of claim 9 wherein: the polymer fibers of the strands of the cylindroid comprise nylon fibers.
13. A combination of a freestanding header and an overhead bi-fold door for opening and closing a passage in a structure comprising: a freestanding header located around the passage in the structure, a freestanding header includes a horizontal header member having a first end and a second end, a first upright leg engageable with the first end of the horizontal header member, a first splice secured to the first end of the horizontal header member and engageable with the first leg, first fasteners securing the first leg to the first splice to retain the first leg in engagement with the first end of the horizontal header member, a second upright leg engageable with the second end of the horizontal header member, a second splice secured to the second end of the horizontal header member and engageable with the second end of the horizontal member, second fasteners securing the second leg to the second splice to retain the second leg in engagement with the second end of the horizontal header member, an overhead bi-fold door for selectively opening and closing the passage in the structure comprising a first panel having a first frame including an upper horizontal frame member and a lower horizontal frame member, a plurality of first hinges pivotally connecting the upper horizontal frame member of the first panel to the horizontal header, a second panel having a second frame including an upper horizontal frame member and a lower horizontal frame member, a plurality of second hinges connecting the lower horizontal frame member of the first panel to the upper horizontal frame member of the second panel, said first and second hinges being operable to allow the first panel and the second panel to be moved from aligned upright positions, closing the passage to side-by-side folded positions opening the passage, a door lift device operable to selectively move the first panel and the second panel from the aligned upright positions to the side-by-side folded positions and allow the first panel and the second panel to move from the side-by-side folded positions back to the aligned upright positions to close the passage comprising: a horizontal shaft located adjacent the lower horizontal frame member of the second panel, supports secured to the second frame of the second panel for rotatably supporting the shaft, a power transmission mounted on the second frame of the second panel and drivably connected to the shaft operable to rotate the shaft, a reversible electric motor for operating the power transmission to selectively rotate the shaft in opposite directions, a plurality of capstans secured to the shaft for rotation with the shaft, each capstan including: a hub secured to the shaft, a first disk joined to the hub, a second disk joined to the hub, said first disk having a first circular flat wall, extended radially away from the shaft, said second disk having a second flat circular wall laterally spaced from the first flat circular wall of the first disk, said first and second flat circular walls being parallel to each other, a flexible cylindroid having a first end section located between and in contact with the first and second flat walls of the first disk and the second disk and a second end section, anchors secured to the upper horizontal frame member of the first panel, said capstan upon rotation of the shaft by the power transmission in one direction helically winds the first section of the cylindroid around the hub in the space between the first and second disks to move the first panel and the second panel of the bi-fold door at an increasing rate of speed from the upright aligned closed positions to the folded open positions and upon rotation of the shaft in a direction opposite the one direction, the first section of the cylindroid unwinds from between the first and second disks to allow the first panel and the second panel to move at a decreasing rate of speed from the folded open positions back to the upright aligned closed positions, each anchor including a bracket secured to the lower horizontal frame member of the second panel, a sleeve rotatably mounted on the bracket, said second end section of the cylindroid being connected to and wrapped around the sleeve to adjust the length of the cylindroid between the capstan and anchor, a ratchet wheel connected to the sleeve, and a latch engageable with the ratchet wheel to prevent rotation of the ratchet wheel and sleeve thereby maintaining the adjusted length of the cylindroid between the capstan and anchor, said latch being disengaged from the ratchet wheel to allow the ratchet wheel and sleeve to be rotated to adjust the length of the cylindroid between the capstan and anchor.
14. The combination of claim 13 wherein: the first disk of the capstan includes an annular peripheral lip extended outwardly from the flat wall of the first disk, the second disk of the capstan includes an annular peripheral lip extended outwardly from the flat wall of the second disks, the lips of the first and second disks are laterally spaced from each other and guide the cylindroid into the space between the flat walls of the first and second disks during the winding of the cylindroid on the capstan.
15. The combination of claim 13 wherein: the cylindroid comprises polyester fibers.
16. The overhead bi-fold door of claim 13 wherein: the cylindroid comprises nylon fibers.
17. An apparatus for opening and closing a passage in a structure with an overhead bi-fold door having a first panel and a second panel pivotally connected for movement from an upright aligned first position closing the passage to a side-by-side folded second position opening the passage in the structure characterized by: a door lift device operable to selectively move the bi-fold door from the bi-fold door closed first position to the bi-fold door open second position comprising: a horizontal shaft, supports secured to one of the first panel or the second panel for rotatably holding the shaft, a power transmission drivably connected to the shaft operable to rotate the shaft, motor for operating the power transmission to selectively rotate the shaft in opposite directions, a plurality of capstans secured to the shaft for rotation with the shaft, each capstan including a first disk having a flat first wall, a second disk having a second flat wall, said flat second wall being parallel and laterally spaced from flat first wall, a cylindroid having a first end section located between and in contact with the flat first and second walls of the first and second disks of the capstan and a second end section, anchors secured to the panel opposite the one panel accommodating the supports for the shaft, said capstan upon rotation of the shaft by the power transmission in one direction helically winds the first section of the cylindroid in the space between the flat first and second walls of the first disk and the second disk to move the bi-fold door at an increasing rate of speed from the first position clearing the passage to the second position opening the passage, and upon rotation of the shaft in a direction opposite the one direction the first section of the cylindroid unwinds from the space between the flat first and second walls of the first disk and the second disk to allow the bi-fold door to move at a decreasing rate of speed from the second position to the first position closing the passage in the structure, each anchor including a bracket secured to the panel opposite the one panel accommodating the supports for the shaft, a sleeve rotatably mounted on the bracket, said second end of the cylindroid being connected to and wrapped around the sleeve to adjust the length of the cylindroid between the capstan and the anchor, a ratchet wheel connected to the sleeve, and a latch engageable with the ratchet wheel to prevent rotation of the ratchet wheel and sleeve thereby maintaining the adjusted length of the cylindroid between the capstan and the anchor, said latch being disengaged from the ratchet wheel to allow the ratchet wheel and the sleeve to be rotated to adjust the length of the cylindroid between the capstan and the anchor.
18. The apparatus of claim 17 wherein: the first disk of the capstan includes an annular peripheral lip extended outwardly from the flat wall of the first disk, the second disk of the capstan includes an annular peripheral lip extended outwardly from the flat wall of the second disks, the lips of the first and second disks are laterally spaced from each other and guide the cylindroid into the space between the flat walls of the first and second disks during the winding of the cylindroid on the capstan.
19. The apparatus of claim 17 wherein: the polymer fibers of the strands of the cylindroid comprises polyester fibers.
20. The apparatus of claim 17 wherein: the polymer fibers of the strands of the cylindroid comprise nylon fibers.
Description
DESCRIPTION OF THE DRAWING
(1)
(2)
(3)
(4)
(5)
(6)
(7)
(8)
(9)
(10)
(11)
(12)
(13)
(14)
(15)
(16)
(17)
(18)
(19)
(20)
(21)
(22)
(23)
(24)
DESCRIPTION OF THE BI-FOLD DOOR AND DOOR LIFT APPARATUS
(25) The following description and drawing of the overhead bi-fold door and door lift apparatus are embodiments in which the invention may be used. Other embodiments of the bi-fold door including structural changes can be made without departing from the invention. As shown in
(26) The inside or back elevational view of bi-fold door 26, shown in
(27) An alternative splice connection for attaching header member 32 to legs 33 and 34 is disclosed by M. L. Schweiss in U.S. Patent Application Publication No. US2016/0362929. The splice structure of this U.S. Patent Publication is incorporated herein by reference.
(28) Bi-fold door 26, shown in
(29) A horizontal flexible seal 76, shown in
(30) A door lift device 83 is operable to move bi-fold door 26 from its upright closed position, shown in
(31) A pair of capstans 101 and 102 secured to shaft 84 accommodate polymer cylindroids 103 and 104. Capstans 101 and 102 and polymer cylindroids 103 and 104 are identical in structure and function. The following description is directed to capstan 101 and cylindroid 103. Capstan 102 and cylindroid 104 has the same structure and advantages of capstan 101 and cylindroid 103. The number of capstans and associated cylindroids can be increased according to the length, height and weight of the bi-fold door. As shown in
(32) Cylindroids 103 and 104 are identical in structure and function. The following description of cylindroid 103 is applicable to cylindroid 104. Cylindroid 103 is an elongated flexible polymer cylindroid lines of synthetic fibers comprising nylon, polyester or polypropylene fibers. Nylon fibers are made from continuous filament polyamide. The fibers are twisted into strands. A plurality of strands are twisted or braided into a cord or line. Cylindroid 103 shown in
(33) Returning to
(34) Anchor 127, shown in
(35) In use, lift device 83 is activated by operation of electric motor 95 to move bi-fold door 26 from the closed position to the open position. Motor controller 96 is an electric switch that couples electric motor 95 to an electric power supply. Electric motor 95 operates power transmission 94 to rotate shaft 84 shown by arrow 99, via chain and sprocket drives 97 and 98. Capstans 101 and 102 secured to shaft 84 rotates to helically wind cylindroids 103 and 104 between the circular disks 106 and 107. As shown in
(36) Bi-fold door 26 is retained in the folded open position adjacent header member 32 by the brake mechanisms of power transmission 94. Bi-fold door 26 is allowed to return from the folded open position back to the upright position, shown in
(37) The inside or back elevational view of a second embodiment of bi-fold door 226, shown in
(38) An alternative splice connection for attaching header member 232 to legs 233 and 234 is disclosed by M. L. Schweiss in U.S. Patent Application Publication No. US2016/0362929. The splice structure of this U.S. patent application publication is incorporated herein by reference.
(39) The second embodiment of bi-fold door 226, shown in
(40) A horizontal flexible seal 276, shown in
(41) A door lift device 283 is operable to move bi-fold door 226 from its upright closed position, shown in
(42) A pair of capstans 301 and 302 secured to shaft 284 accommodate polymer cylindroids 303 and 304. Capstans 301 and 302 and polymer cylindroids 303 and 304 are identical in structure and function. The following description is directed to capstan 301 and cylindroid 303. Capstan 302 and cylindroid 304 has the same structure and advantages of capstan 301 and cylindroid 303. The number of capstans and associated cylindroids can be increased according to the length, height and weight of the bi-fold door. As shown in
(43) Cylindroids 303 and 304 are identical in structure and function. The following description of cylindroid 303 is applicable to cylindroid 304. Cylindroid 303 is an elongated flexible polymer cylindroid lines of synthetic fibers comprising nylon, polyester or polypropylene fibers. Nylon fibers are made from continuous filament polyamide. The fibers are twisted into strands. A plurality of strands are twisted or braided into a cord or line. Cylindroid 303 shown in
(44) Returning to
(45) Anchor 327, shown in
(46) In use, lift device 283 is activated by operation of electric motor 295 to move bi-fold door 226 from the closed position to the open position. Electric motor 295 operates power transmission 294 to rotate shaft 284 shown by arrow 299, via chain and sprocket drives 297 and 298. Capstans 301 and 302 secured to shaft 284 rotates to helically wind cylindroids 303 and 304 between the circular disks 306 and 307. As shown in
(47) Bi-fold door 226 is retained in the folded open position adjacent header member 232 by the brake mechanisms of power transmission 294. Bi-fold door 226 is allowed to return from the folded open position back to the upright position, shown in
(48) The overhead bi-fold door has been described and illustrated in the drawing in connection with several embodiments thereof. Changes in materials, structures and arrangement of structures may be made by persons skilled in the art without departing from the scope of the invention.