The present disclosure generally relates to the field of flashing systems for pipes that extend through a shingle roof or other similar type of roof.
A roof flashing is often placed around discontinuities or objects which extend through or from the roof of a building in order to deflect water away from seams or joints. For example, a roof flashing is often used to prevent rain water from leaking about a pipe protruding from the roof. Modern roof flashing may be metal, rubber or other waterproof synthetic materials that are shaped to meet a specific need.
A typical roof flashing for a pipe has an extension that fits snuggly about the pipe and where the extension has a downward taper away from the pipe and a base that is approximately perpendicular to the pipe, for attaching the flashing to roof decking. Caulking is sometimes used around seams formed where the pipe flashing material contacts the pipe or decking to ensure water does not leak through the roof of the structure and into the building protected by the roof.
There are roof flashings for metal roofing. The roof flashings for metal roofs have extensions through which pipes or other objects can extend, as described hereinabove. In addition, the roof flashings have a small flange-like base that extends from bottom of the extension for attaching the roof flashing to the metal roof. There are some metal roof flashings that have an opening that extends the entire length of the extension for wrapping the roof flashing around the pipe or the object before it is attached, via the based, to the metal roof. Caulking can then be used around the base to where it attaches to the metal roof and around the opening through which the pipe or object extends in order to mitigate or prevent leakage. One such roof flashing is described in U.S. Pat. No. 5,176,408.
The disclosure can be better understood with reference to the following drawings. The elements of the drawings are not necessarily to scale relative to each other, emphasis instead being placed upon clearly illustrating the principles of the invention. Furthermore, like reference numerals designate corresponding parts throughout the several views.
The present disclosure generally pertains to a roof flashing that provides a weather-proof seal for keeping water and other material from leaking into a building. The roof flashing of the present disclosure is installable around a pipe, for example, as opposed to being installed by sliding the flashing over the top of the pipe. In addition, the roof flashing of the present disclosure is for use on shingle roofing or shingle-like roofing in that it integrates with the shingles on the roof in order to mitigate or prevent moisture from leaking through the shingle roofing, which is described further herein.
One embodiment of a roof flashing 100 for shingle roofing is depicted in
The attachment edge 103 is formed, as will be shown, when material is removed from the collar 102. A bottom edge 113 of the base 104, located in the negative z-direction, from the top edge 112 and has a slightly larger diameter then the top edge 112.
Note that the collar 102, the base 104 and the foot 101 are coupled together utilizing attachment methods well-known by those skilled in fabricating devices with elastomeric materials. In other embodiments, the flashing 100 is made of other materials and other fabrication methods are possible. The flashing 100 may be fabricated in a single molding operation or may be made by combining parts together using attachment methods that provide water-proof joints.
The foot 101 is substantially rectangular and extends outwardly from the bottom edge 113 of the base 104. The foot 101 is sufficiently extended in the −z direction so that a front portion 115 of the foot 101 can be layered on top of one or more shingles (not shown) of a shingle roof. In addition, the foot 101 is sufficiently extended in the +z direction so that a back portion 116 of the foot 101 so that one or more shingles (not shown) can be layered on top of the back portion 116 of the foot 101. Integrating the foot 101 with the shingles by layering the foot 101 with the shingles mitigates or prevents moisture from penetrating the shingle roofing where the roof flashing 101 is installed. Such layering of the roof flashing 100 with the shingles is described further with reference to
Note that in one embodiment the foot 101 has embedded reinforcement material, such as a thin sheet of metal, molded within the elastomeric material forming the foot 101. The foot 101 and the base 104 are coupled together at different angles in order to meet the needs of roofs with different pitches (roof slope). In one embodiment the base 104 has sufficient height and flexibility for installation on shingle roofs having a range of pitches. In this regard, the thickness and flexibility of the foot 101 is such that it acts as a shingle.
A longitudinal opening 106 extends from the apex 110 of the collar 102 to an edge of the foot 101. The longitudinal opening 106 is defined by a first edge 108 and a second edge 107 of the flashing 100 as seen in
The longitudinal opening 106 allows for the installation of the roof flashing 100 about a pipe (not shown) over which a flashing could not be placed. As an example, the pipe may be an electrical pipe that has wires that extend therefrom. In such an example, it is not possible to slide a flashing over the top of the electrical pipe. Instead, the roof flashing 100 can be installed around the pipe via the longitudinal opening 106 and thereafter secured as described hereinabove. As another example, the pipe may have a hood or weatherhead that prevents installation of a flashing over the top of the pipe. Again, the roof flashing 100 can be installed around the pipe via the longitudinal opening 106 and thereafter secured.
An embodiment for providing a longitudinal seal is depicted
In order to securely attach the collar 102 about a pipe of a specific diameter; such as, for example, a 1.5 inch pipe, it is necessary to remove material from the collar as shown in
Note that when installing the roof flashing, the longitudinal opening 106 is in a separated position, like shown in
The foot 101 is attached to the roof decking using roofing nails (not shown) or other roofing fasteners (not shown). After the flashing 100 is fastened in place, the shingles 602 are placed on top of the back portion 116 of the foot 101 so that water will drain around and over the flashing 100.
The foot 101 of the roof flashing 100 may have thin sheets of metal (not shown) embedded within the elastomeric material forming the foot 101 in order to keep roof fasteners from damaging the foot 101. In addition, the thin sheetsof metal makes the foot 101 more rigid to minimize or prevent lifting of the foot 101 by wind, which may cause water infiltration.
It should be emphasized that the above-described embodiments of the present disclosure are merely examples of implementations, set forth for a clear understanding of the principles of the disclosure. Many variations and modifications may be made to the above-described embodiments of the disclosure without departing substantially from the spirit and principles of the invention. All such modifications and variations are intended to be included herein within the scope of this disclosure and the present invention and protected by the following claims.
This application is a Continuation of and claims the benefit of the filing date of U.S. application Ser. No. 13/403,444 filed Feb. 23, 2012, which is a Continuation of and claims the benefit of the filing date of U.S. application Ser. No. 12/604,933 filed Oct. 23, 2009, now U.S. Pat. No. 8,141,303 issued Mar. 27, 2012.
Number | Name | Date | Kind |
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4903997 | Kifer | Feb 1990 | A |
5036636 | Hasty | Aug 1991 | A |
5176408 | Pedersen | Jan 1993 | A |
5226263 | Merrin et al. | Jul 1993 | A |
5588267 | Rodriguez et al. | Dec 1996 | A |
6185885 | Thaler | Feb 2001 | B1 |
20070101664 | Hoy et al. | May 2007 | A1 |
Entry |
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Multi-Flash Master Flash®—“Two Flashings in One”—http://www.aztecwasher.com. |
Number | Date | Country | |
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20130113204 A1 | May 2013 | US |
Number | Date | Country | |
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Parent | 13403444 | Feb 2012 | US |
Child | 13723588 | US | |
Parent | 12604933 | Oct 2009 | US |
Child | 13403444 | US |