This invention relates to hurricane and storm shutter or panel assemblies including elongated corrugated panels of sheet material which may be light transmitting and which are used for temporarily covering a window or exterior door opening within a building in preparation of heavy storms and impacts such as produced by a hurricane. Examples of such storm shutter or panel assemblies are disclosed in U.S. Pat. Nos. 2,878,536, 4,333,271, 5,345,716, 5,457,921, 5,487,244, 5,651,221, 5,855,099, 5,996,292, 6,079,168, 6,189,264 and 6,615,555. In any such storm shutter or panel assembly, it is desirable for the assembly to be easily and quickly installed over a door or window opening and for the panels to be conveniently and easily removed after the forces of impacts and windloading has ceased.
Once a panel assembly has been installed on a building over an exterior door opening or window opening of the building, it is frequently desirable for the storm panels to be conveniently removed from inside the building through the opening and to be reinstalled from within the building through the opening without the requirement of a ladder, especially on a second floor level or above. In addition to the above desirable features, it is desirable for the installed panel assembly to be architecturally pleasing and to meet all of the building codes on repetitive impacts and cyclic windloading as well as provide for quick removal of a panel from inside the building for escape through the window or door opening if it becomes necessary to vacate the building.
The present invention is directed to an improved storm panel assembly of the general type disclosed in the above mentioned patents and which provides all of the desirable features mentioned above. In accordance with the illustrated embodiment of the invention, a plurality of elongated panels are formed from the sheet material having a uniform thickness and which is preferably light transmitting. Each panel has longitudinally extending and parallel spaced ribs to form a corrugated cross-sectional configuration and also has co-planar longitudinal opposite edge portions which are also co-planar with a longitudinal center portion.
A support member is mounted on the upper end portion of each panel and is attached to the opposite edge portions and center portion of the panel. The support member includes an upper hook portion having opposite end surfaces recessed laterally inwardly from the longitudinal edge surfaces of the panel. The hook portion of each panel engages a hook-shaped support rail mounted on the building above the opening and provides for overlapping longitudinal edge portions of adjacent panels. The lower edge portion of each outer panel is supported by a sill bracket mounted on the building and projecting under the ribs of an outer panel, and an elongated track member is secured to the lower end portion of an outer panel and receives the support bracket. A pair of pull pins are located within the ribs of the outer panel and secure the track member to the bracket and provide for quick removal of the outer panel for escape from the building.
Other features and advantages of the invention will be apparent from the following description, the accompanying drawings and the appended claims.
Referring to
An elongated support rail or member 24 is attached to the upper end portion of each panel 12 and is formed from an extrusion of rigid material such as aluminum. Each support member 24 includes a longitudinally extending flat base portion 26 which is secured to the upper end portion of the panel 12 by a set of flat head threaded fasteners or screws 28 (
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From the drawings and the above description, it is apparent that a storm panel assembly constructed and installed in accordance with the invention, provides all of the desirable features and advantages mentioned above. More specifically, after the top support rail 40 and the lower sill bracket 55 are attached to the outer surface of the building above and below the window or door opening 20, the panels 12 may be quickly and conveniently attached or hooked onto the rail 40 with the edge portions 16 of the panels overlapping so that the overlapping edge portions 16 of the panels reinforce the assembly. Furthermore, when a set of three panels 12 are used to cover an opening 20, as shown in
In the event it is desired to remove the center panel quickly from inside the building and through the opening 20, the pull pins 82 are pulled upwardly, and the lower end portion of the center panel 12 is pushed outwardly from the sill bracket 55 and unhooked from the rail 40 so that the center panel may be completely removed and placed outside or inside the building. If it is desired to have more or all of the panels 12 be installed and/or removable through the opening 20 from inside the building, a separate track member 70 may be attached to the lower end portion of each of the panels 12 and used in place of the angle tracks 60. Thus after the header rail 40 and sill bracket 55 are once installed above and below a window on a floor above the ground floor, all of the panels 12 may be conveniently installed and removed from inside the building through the window opening 20 by attaching a track member 70 to the lower end portion of each panel 12.
While the form of storm panel assembly herein described constitutes a preferred embodiment of the invention, it is to be understood that the invention is not limited to this precise form of storm panel assembly, and that changes made therein without departing from the scope and spirit of the invention as defined in the appended claims.
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Number | Date | Country | |
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20090288352 A1 | Nov 2009 | US |