1. Field of the Invention
The present invention relates to threshold and door sill assemblies for use in door jam assemblies. In particular, the present invention relates to a molded door sill assembly having a threshold formed therewith.
2. Description of Related Art
Known threshold and door sill assemblies typically include multiple components such as a sill base, an inclined tread, and a threshold. These multiple components are typically constructed separately from one another and then secured to one another in a suitable manner to form the threshold and door sill assembly. Thus, known threshold and door sill assemblies are manufactured from several parts that require a highly structured assembly and installation process.
The present invention provides improvements over known threshold and door sill assemblies to simplify the manufacturing process, reduce the number of parts, and simplify the assembly and installation process. Furthermore, the present invention provides increased protection against moisture penetration and rot.
One aspect of the invention relates to a threshold and door sill assembly that includes a sill assembly formed by an injection molding process. This aspect of the invention provides a threshold and door sill assembly including a sill assembly having a sill base that is molded to an inclined threshold. The sill base is constructed of one material that is overmolded in an injection molding process onto the inclined threshold constructed of a second material to form an integral molded sill assembly. The sill assembly is configured to receive various sill components including but not limited to an adjustable rail assembly. The rail assembly is adjustably secured to the sill base.
Another aspect of the invention relates to a door sill assembly having a sill base, jamb supports, and an inclined threshold. This aspect of the invention provides a sill assembly for a door jamb assembly, wherein the doorjamb assembly includes a pair of vertically extending jamb members, a header structure, and at least one door. The threshold and door sill assembly includes a molded sill assembly having a sill base and an inclined threshold. The sill base is constructed of one material that is overmolded in an injection molding process onto the inclined threshold constructed of a second material to form the molded integral sill assembly. The threshold was previously formed by, for example, an extrusion process. The threshold and door sill assembly can include a pair of jamb supports. One of the jamb supports is provided on one end of the sill base and the other of the jamb supports is provided on the opposite end of the sill base. The jamb supports protrude outwardly from the opposing ends of the sill base for engaging and supporting respective jamb members. The jamb supports provide a raised platform for the jamb members to protect against rot an moisture penetration. An adjustable rail assembly and other components are secured to the sill base.
Still another aspect of the invention relates to a method of forming a threshold and door sill assembly. This aspect of the invention provides a method of forming a threshold and door sill assembly for a door jamb assembly, wherein the door jamb assembly includes a pair of vertically extending jamb members, a header structure, and at least one door. The sill assembly includes a sill base that is injection molded around an inclined threshold, the sill base being constructed of one material that is overmolded in the injection molding process onto the inclined threshold constructed of a second material to form an integral sill assembly.
Other aspects, features, and advantages of this invention will become apparent from the following detailed description when taken in conjunction with the accompanying drawings, which are a part of this disclosure and which illustrate, by way of example, the principles of this invention.
The accompanying drawings facilitate an understanding of the various embodiments of this invention. In such drawings:
The sill assembly 12 is not limited to use with the specific configuration of doorjamb assembly shown and other various configurations are contemplated, for example, a door jamb assembly may include a pair of doors, sliding door panel, a combination of fixed and movable door panels and any combination of side panels including side panels disposed on one or both sides of the door. To accommodate the placement and support of side panels, the doorjamb assembly may include one or more vertically extending mullions, which are connected at upper ends thereof to the header structure and at lower ends thereof to the threshold and door sill assembly 12 through a mullion boot assembly. Various arrangements and components are disclosed, for example, in U.S. patent application Ser. No. 10/673,639, entitled “Adjustable Rail Assembly And Components For The Same,” the disclosure of which is incorporated herein specifically by reference.
In the illustrated embodiment, the sill assembly 12 includes a sill assembly 20 and a rail assembly 22 adjustably secured to the sill assembly 20. The sill assembly 20 is formed in one-piece by an injection molding process so as to simplify the manufacturing process, reduce the number of parts, and simplify the assembly and installation process.
As shown in
The inclined threshold 26 is overmolded with the sill base 24 by an injection molding process to provide a one-piece sill assembly 20. In the illustrated embodiment, the jamb supports 28 are formed in one-piece in the injection molding process along with the sill base 24 and the inclined threshold 26.
The rail assembly 22, shown in greater detail in
The one-piece injection molded sill assembly 20 will now be described in greater detail. As shown in
The inclined threshold 26 includes a leading edge portion 34 that extends downwardly from the forward edge thereof. The leading edge portion 34 provides a support member 38 that engages the floor in use to support the forward edge of the threshold 26. It is contemplated that the threshold 26 can be either a low threshold for a low profile sill assembly or a threshold for a high profile threshold sill assembly. Additionally, the threshold 26 can have an increased width to permit wheelchair use.
The threshold 26 includes a plurality of downwardly projecting extensions 40 (e.g., three extensions). The extensions 40 are provided to interconnect the threshold 26 with the sill base 24 during the overmolding process. The extensions 40 extend generally parallel to each other in the longitudinal direction. One or more extensions 40 are contemplated.
As shown in
The sill base 24 is preferably formed of a non-rot synthetic material, e.g., polymeric or composite material. Thus, the sill base 24 is constructed of one material, e.g., synthetic, that is overmolded onto the threshold 26 that is constructed of a second material, e.g., aluminum, to form the one-piece sill assembly 20. However, it is contemplated that the sill base 24 and threshold 26 may be formed of similar materials and molded as a single unit. With such an arrangement, the number of walls 44 and 46 may be increased to improve the rigidity of the sill assembly.
The lip structure 32 of the threshold 26 forms one side of a channel 48 that extends along the length of the sill base 24. An opposite side of the channel 48 is formed from an upwardly extending rear portion 50 provided on the sill base 24. A plurality of tapped holes 52 are provided in the channel 48 of the sill base 24 for securing the rail assembly 22. The tapped holes 52 may be formed in the sill base 24 during the injection molding process or may be formed in a separate machining operation. Also, the upwardly extending rear portion 50 has an attachment structure 54 formed thereon for securing a trim piece 76, as will be further discussed below.
In the illustrated embodiment, the vertically extending jamb members 14 are connected to the sill assembly 20 by directly securing the vertically extending jamb members 14 to the jamb supports 28 provided on the sill assembly 20. As best shown in
The jamb support surface 56 includes a plurality of upwardly extending support flanges that are structured to engage the corresponding jamb member 14 and prevent lateral movement of the same on the jamb support 28. As best shown in
The jamb supports 28 are secured to respective jamb members 14 by a plurality of fasteners. In the illustrated embodiment, a pair of openings 66 (see
The jamb supports 28 also have an interlocking structure 68 formed therewith that allows the jam supports 28 to interlock with a jam support extension 88, as will be further discussed.
An advantage of the integral jamb supports 28 is that they eliminate a critical machining operation. That is, the jamb members 14 only need a square cut on the bottom thereof in order to accommodate the jamb supports 28. This simplifies modifications for shorter doors and improves quality control.
In the illustrated embodiment, the sill base 24 and jamb supports 28 are preferably formed of a synthetic material. It is noted that a synthetic material is preferable, since this type of material is generally resistant to decay or other degradation. For example, water cannot travel up the jamb supports 28 and into the jamb members 14 to cause rot.
As shown in
As noted above, the jamb supports 28, 228 have an interlocking structure 68, in the form of a recess, formed therewith. The jamb support extension 88 has an interlocking structure 94, in the form of an extension, formed therewith. In use, the extension of the jamb support extension 88 is inserted into the recess of the jamb support 28, 228 to interlock the jamb support extension 88 with the jamb support 28, 228 in cooperating relation. The jamb support extension 88 allows the sill assembly 20 to accommodate wider door jambs 14 and/or wider thresholds 26. Accordingly, the jamb support extension 88 includes a substantially flat jamb support surface 96 that is flush with the support surface 56 in use. The jamb support extension 88 also includes an openings 98 that allows a fastener to extend therethrough and into the respective jamb member 14. Additionally, the jamb support extension 88 includes seal members 100 that overlap the jamb support 28, 228 in use to seal the edges between the jamb support extension 88 and the jam support 28, 228. The jamb support extension 88 may be formed with a similar material and by a similar process, e.g., molding, as the jamb supports 28, 228.
In the illustrated embodiment, the sill assembly 20 has a high profile. However, the sill assembly 20 may be suitably modified to provide a low profile wherein the overall height is lower than that of the high profile sill assembly.
It can thus be appreciated that the aspects of the present invention have been fully and effectively accomplished. The foregoing specific embodiments have been provided to illustrate the structural and functional principles of the present invention, and are not intended to be limiting. To the contrary, the present invention is intended to encompass all modifications, alterations, and substitutions within the spirit and scope of the appended claims.