This invention presents a sill assembly with an adjustable threshold to be installed onto the floor of an entry-door. A sill assembly with a threshold, either fixed or adjustable, is usually used with door jambs together to frame an entry-door unit. An entry-door is also commonly equipped at the bottom with a weatherstrip, for instance, a door sweep. When an entry-door is closed, the sill's threshold is in the same plane with the door's weather-strip, is flushed with it, and pressed against it; therefore, the sill assembly with a threshold helps prevent exterior water, moisture, and air from entering a home.
Prior arts include a variety of sill assemblies which have been designed to be installed as thresholds for doorway. The sill assemblies of prior arts can be classified into two categories: fixed sills and adjustable sills. Both categories of sills feature some generally recognizable parts: a unitary housing which holds all inner parts, two or multiple supporting legs, and a raised and flat platform against which an entry-door's weather-strip, such as a door sweep, is pressed when a door is closed.
In the first category, fixed sills have an elongated unitary body with or without a removable threshold cap. They are usually made of solid woods, or extruded metals, for examples, aluminum or brass. Sills in this category are fixed because the threshold sections are uniformly fixed and connected to the base, and cannot be adjusted by any means. Because sills are fixed, they have consistent height and shape from one end to the other end.
In the second category, adjustable sills also have an elongated unitary body, but usually with an adjustable threshold cap. Examples of adjustable sills include prior arts U.S. Pat. Nos. 5,426,894 and 5,517,788 and 5,638,641 and 6,345,477. The adjustable threshold cap and its housing can be made of extruded aluminum or routed hardwood. An adjustable sill is usually adjusted manually by hand to achieve a desired uniform height of the cap, so that the cap can be properly pressed against a weatherstrip which is installed at the entry-door's bottom. The said cap may have multiple screw-holes, punched and countersunk with equal spacing along the cap's longitudinal axis, so that adjustment screws can be fastened into the housing. An installer can lower the height by turning the adjustment screws clockwise, one-by-one in sequence. Conversely, an installer can raise the height by turning the adjustment screws counter-clockwise, one-by-one in sequence. In general, the adjustable sills of prior arts have adjustment screws which are visible and accessible from the threshold cap's top, as presented by U.S. Pat. Nos. 5,179,804 and 5,517,788 and 5,524,391. In the example of U.S. Pat. No. 6,345,477, the threshold cap's screw-holes are covered by plastic plugs.
In adjustable sills of prior arts, some lack water-proof seals, but others have exposed water-proof seals. Examples of adjustable sills that lack water-proof seals include U.S. Pat. Nos. 4,352,258 and 6,345,477. In these two prior-art examples, the absence of a water-proof seal may allow water, moisture, and air to penetrate through the sill into a home. Over time, the inner adjustment parts may deteriorate due to external weatherization.
Examples of adjustable sills that have water-proof seals are: U.S. Pat. Nos. 5,179,804 and 5,230,181 and 5,426,894 and 5,517,788 and 5,524,391 and 5,638,641 and 7,472,516. These prior inventions' water-proof seals may be made be of flexible vinyl, plastic, or foam weather-strip, all for preventing water, moisture, and air from passing through the sill into a home. Nonetheless, these prior inventions' water-proof seals are exposed and visible. Such exposed, visible seals can deteriorate over time due to weatherization and normal wear-and-tear. Finally, these exposed, visible seals reduce the aesthetic value of a uniform look and shape in the sill assemblies.
This invention presents a new sill assembly with an adjustable threshold, which is to be installed onto the floor of a doorway. This sill, being used together with a weather-strip, such as a door shoe, or vinyl sealing strip, is to block water, moisture, and air from entering a home.
This invention presents a new sill assembly with an adjustable threshold cap that rests on top of a housing. The housing is supported by one front foot, and by a vinyl substrate underneath. The adjustable threshold cap has been punched, in several locations with equal distance apart, to have screw-holes with countersinks. The cap is fastened to the adjustment screws by Phillips flat-headed cap-screws. Each cap-screw' lower portion has a center-hole. Each adjustment screw's head has vertical straight threads. The adjustment screw's head is locked tightly into the center-hole of the cap-screw, so that there is no disengagement from the cap-screw when the cap-screw is turned at the top manually with a screw-driver.
This invention also features adjustment screws each with a large diametric disc in the middle, to support the cap's two inner walls, so that any weight being exerted on the cap, is transferred through the adjustment screws to the housing and the vinyl substrate below. The adjustment screws are made with male threads. Both the housing and the vinyl substrate are tapped in the same locations on the same plane, with female screw-threads. The adjustment screws' male threads are mated with and engaged with the female threads of the housing and vinyl substrate, so that the adjustment screws connect and fasten the cap to the housing underneath, and simultaneously connect and fasten the housing to the substrate below.
Furthermore, this invention provides a vinyl substrate, which together with the housing's front foot, supports the overall sill assembly to a consistent height. The substrate's front side has an indented bottom. The substrate's indented front is slid into the housing's front interior and is flushed with the housing's front foot. The substrate's other side has a vertical back-wall. The backwall's interior side presses one side of the cap to push the latter into the correct position. Made from the same extruded vinyl, the said substrate's back-wall serves as an insulation to prevent hot or cold air from passing through the sill into a home.
As mentioned above, prior inventions have water-proof seals that are exposed, rather than hidden or covered. Prior inventions' exposed water-proof seals can easily deteriorate due to weatherization or unintentional damages or normal wear-and-tear; therefore, they may lose their air-tight, water-proof functions over time. Furthermore, prior inventions' exposed seals lack the aesthetic look in a uniform housing.
This invention provides a novel means of preventing water, moisture, and air from penetrating the sill into a home. The said novel means comprises of two rubber gaskets which are inserted into two recessed channels on the housing's vertical supporting walls. Both rubber gaskets have two enlarged sides and one narrow neck. Rubber gaskets are positioned in opposite directions, with one enlarged side inserted into a recessed channel. The other side of the each gasket is to face the cap. When the cap is inserted into the housing, the interior of the cap's outer walls, is facing a rubber gasket's enlarged side and is compressing the said rubber gasket to create a tight sealing. Because the rubber gaskets are covered by the cap above, the rubber gaskets are invisible, and are protected from weatherization and possible damages. This invisibility of the rubber gaskets in this invention enhances the sill assembly's aesthetic appearance, in contrast to the exposed gaskets in prior inventions. This invention specifically solves prior inventions' problems, by using the adjustable threshold cap to cover the said rubber gaskets, and by using the recessed channels in the housing's vertical supporting walls to fit and secure the rubber gaskets.
With reference to
The adjustable threshold cap 7, is made of extruded aluminum using a die. It covers the top portion of the housing 1. With reference to
As shown in
As indicated by
During the final assembly, the cap-screws 10 are inserted through the cap's screw-holes, then are mated with the adjustment screws 12 underneath by coupling tightly the cap-screws' center hole 11 onto the head 13 of the adjustment screws 12, so that the cap 7 is fastened on the top by cap-screws, and is simultaneously supported below by adjustment screws' large diametric disc 14. The cap will be fitted onto the housing later, pending assembly of other components. Next, the rubber gaskets 15 are inserted into the recessed channels 4 of the vertical supporting walls 3 of the housing 1. Then, the substrate 16 is tucked under the housing 1, with the housing's back-foot 6 standing on the lowest recessed step 19 of the substrate. Because the substrate is hidden under the housing, the substrate is less susceptible to weatherization and possible damages. Finally, the cap is put onto the housing, with the interior of the cap's outer walls 8, compressing the rubber gaskets 15. The adjustment screws 12 are aligned with the screw-holes which have already been tapped on the housing's U-shaped channel 5 and the substrate 16. It is important to note that, by this time, all screw-holes in the cap 7, in the housing's U-shaped channel 5, and in the substrate 16 have been tapped with female screw-threads, all in alignment, with equal spacing along the housing's longitudinal axis, as described above. Using a Phillips-headed screw-driver, the cap-screws 10 are turned individually in the clockwise direction with one-turn, one screw following another. Turning the cap-screws 10 in the clockwise direction is repeated in the same manner and in the same sequence until the cap 7 sits uniformly on the top of the housing's two vertical supporting walls 3.
This sill assembly can be installed onto an entry-door unit, by fastening screws through the door jambs into the substrate's two lateral sides. Adjustment to the sill works like this: a person uses a Phillips-headed screw-driver to turn all cap-screws, one by one sequentially, in the same direction with the same number of turns each time. To raise the cap, a person turns cap-screws, one by one sequentially, in the counter-clockwise direction, with the same number of turns on each cap-screw. The fact that all cap-screws are turned one-by-one sequentially, in the same counter-clockwise direction, with the same number of turns, will ensure the cap is leveled with the housing. To lower the cap, a person uses a Phillips-headed screw-driver to turn all cap-screws, one by one sequentially, in the clockwise direction, with the same number of turns on each cap screw. The fact that the cap can be raised or lowered makes this sill assembly manually adjustable.
| Number | Name | Date | Kind |
|---|---|---|---|
| 3008198 | Grunwald | Nov 1961 | A |
| 3354757 | Grimm et al. | Nov 1967 | A |
| 3962828 | McAllister | Jun 1976 | A |
| 3967412 | Governale | Jul 1976 | A |
| 4352258 | Bursk et al. | Oct 1982 | A |
| 4711760 | Blaushild | Dec 1987 | A |
| 5010690 | Geoffrey | Apr 1991 | A |
| 5179804 | Young | Jan 1993 | A |
| 5230181 | Geoffrey et al. | Jul 1993 | A |
| 5395196 | Notaro | Mar 1995 | A |
| 5426894 | Headrick | Jun 1995 | A |
| 5517788 | McGough et al. | May 1996 | A |
| 5524391 | Joffe et al. | Jun 1996 | A |
| 5611173 | Headrick et al. | Mar 1997 | A |
| 5638641 | Joffe et al. | Jun 1997 | A |
| 6185870 | Mettler | Feb 2001 | B1 |
| 6345477 | Kepler et al. | Feb 2002 | B1 |
| 6484446 | Young | Nov 2002 | B2 |
| 7389611 | Palenske CI | Jun 2008 | B2 |
| 7713012 | Coonjohn | May 2010 | B2 |
| 20020129557 | Young | Sep 2002 | A1 |
| 20020194787 | Bennett | Dec 2002 | A1 |
| 20030035701 | Hui | Feb 2003 | A1 |
| 20040200152 | Khanlarian | Oct 2004 | A1 |
| 20040200153 | Khanlarian | Oct 2004 | A1 |
| 20050210754 | Ferrell | Sep 2005 | A1 |
| 20060053695 | Palenske | Mar 2006 | A1 |
| 20060112644 | Pepper et al. | Jun 2006 | A1 |
| 20060133910 | Wilson | Jun 2006 | A1 |
| 20060174545 | Young | Aug 2006 | A1 |
| 20080229669 | Abdollahzadeh et al. | Sep 2008 | A1 |