The present invention relates generally to gutters and more specifically to a gutter expansion joint, which is more efficient and less expensive to manufacture than that of the prior art.
A portion of a gutter expansion joint must be fabricated from a resilient material, which allows for the expansion and contraction of two adjacent gutter ends. A finished sheet assembly to construct the gutter expansion joint can only be obtained from a country outside the United States. The prior art finished sheet assembly is constructed of a first aluminum sheet, a second aluminum sheet and a strip of neoprene. Both aluminum and neoprene are very expensive materials. A first edge of the neoprene is bonded to the first aluminum sheet and a second edge of the neoprene is bonded to the second aluminum sheet. The finished sheet assembly comes in a roll, which must be uncoiled. However, it is impossible to completely flatten the finished sheet assembly. It is difficult to shear the finished sheet assembly, because it cannot be completely flattened for a metal shear. The finished sheet assembly is bent into a cross-sectional shape of a gutter.
Accordingly, there is a clearly felt need in the art for a gutter expansion joint, which is more efficient and less expensive to manufacture than that of the prior art.
The present invention provides a gutter expansion joint, which is more efficient and less expensive to manufacture than that of the prior art. The gutter expansion joint includes a first metal sheet, a second metal sheet and a roof membrane strip. A thermoplastic polyolefin coating is applied to one side of the first and second metal sheets. The first and second metal sheets are preferably fabricated from steel sheet with a galvanized metal coating. A first end of the roof membrane strip overlaps the first metal sheet and is secured to the first metal sheet by heating the first metal sheet and the roof membrane strip with hot air or the like. A second end of the roof membrane strip overlaps the second metal sheet and is secured to the second metal sheet by heating the second metal sheet and roof membrane strip with hot air or the like. The first metal sheet, the roof membrane strip and the second metal sheet are bent to be received by an inner perimeter of two adjacent gutters. The cross section of the gutter expansion joint is sized to be received by an inner perimeter of two adjacent gutters. A cross section of the gutter expansion joint preferably includes an inside vertical wall, a horizontal wall, an angled wall, an outside vertical wall and a horizontal inward facing flange. A bead of non-curing sealant is applied to an inside surface of the two adjacent gutters, before insertion of the gutter expansion joint. A gutter expansion joint cover with the same cross sectional elements as the gutter expansion joint is attached to an outside perimeter of the two adjacent gutters.
Accordingly, it is an object of the present invention to provide a gutter expansion joint, which is more efficient and less expensive to manufacture than that of the prior art.
These and additional objects, advantages, features and benefits of the present invention will become apparent from the following specification.
With reference now to the drawings, and particularly to
With reference to
With reference to
The first and second gutter sections 100, 102 are attached to a fascia of a building with a plurality of fasteners 106. The gutter expansion joint 1 and the gutter expansion joint cover 26 are preferably secured to either the first gutter section 100 or the second gutter section 102 with a plurality of fasteners, such as pop rivets.
While particular embodiments of the invention have been shown and described, it will be obvious to those skilled in the art that changes and modifications may be made without departing from the invention in its broader aspects, and therefore, the aim in the appended claims is to cover all such changes and modifications as fall within the true spirit and scope of the invention.
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