The present invention relates generally to a tool for preparing gypsum board or drywall panel joints, and particularly to a tool for compressing the gypsum board panels along their cut edges.
In construction, interior walls are commonly constructed with finish layers of gypsum board panels. Typical gypsum board panels are manufactured with tapered edges to accommodate joint tape and finish compound, i.e., “mud.” The tapered configurations provide relatively flat, smooth-finish surfaces after the excess mud is sanded. Such flat, smooth surfaces accommodate paint and wall coverings to achieve relatively high levels of finish.
Drywall construction normally involves field-cutting multiple panels to fit, creating non-factory cut edges, which lack the factory-formed tapered edges. Finishing the joints between such full-thickness cut edges tends to build up slight protrusions due to the thicknesses of the tape and mud. Such field-created protrusions compromise the flat, smooth aesthetics of drywalls.
The drywall joint tool of the present invention addresses these concerns by providing a tool configured for efficiently and uniformly compressing field-cut gypsum board panel edges. Previously, there has not been available a drywall joint tool with the advantages and features of the present invention.
In the practice of an aspect of the present invention, a drywall joint tool is provided including a housing configured for holding by an operator. Multiple rollers protrude from the housing and are configured for gripping and compressing gypsum board panel edges. The housing contains a drivetrain including gears, which are driven by motorized drive source. For example, an electric drill can provide the motorized drive source and connect to the drivetrain via a chuck and driveshaft. Alternatively, an electric drive motor with forward and reverse modes of operation can be integrally incorporated in the housing. Such drills and drive motors can utilize AC current or DC batteries, which can be rechargeable.
The drawings constitute a part of this specification and include exemplary embodiments of the present invention and illustrate various objects and features thereof.
I. Introduction and Environment
As required, detailed embodiments and/or aspects of the present invention are disclosed herein; however, it is to be understood that the disclosed embodiments/aspects are merely exemplary of the invention, which may be embodied in various forms. Therefore, specific structural and functional details disclosed herein are not to be interpreted as limiting, but merely as a basis for the claims and as a representative basis for teaching one skilled in the art to variously employ the present invention in virtually any appropriately detailed structure.
II. Drywall Joint Tool 2
Referring to the drawings in more detail, the reference numeral 2 generally designates a drywall joint tool embodying an aspect or example of the present invention. The tool 2 is particularly configured for compressing a gypsum board (drywall) panel 4 along a cut edge 6 thereof. The tool 2 generally includes a housing 8 comprising upper and lower housing sections 8a, 8b with respective housing upper and lower surfaces 10a, 10b. The housing sections 8a, 8b enclose a housing interior 12. A handle 14 is mounted on and extends upwardly from the upper surface 10a and is positioned whereby an operator can simultaneously hold the tool 2 with the handle 14 and operate an electric drill 16. The drill 16 is preferably variable-speed reversible (VSR) and can be AC-powered or DC-powered. A portable, DC-powered drill can include a rechargeable battery unit 17. In an alternative aspect or embodiment of the present invention, a drive motor can be integrally incorporated in the housing 8 for a self-contained, stand-alone drywall joint tool.
The housing interior 12 receives a drivetrain 18 originating at an input driveshaft 20 extending upwardly from the housing upper surface 10a and configured for coupling with a drill chuck 22. The drivetrain 18 preferably comprises multiple gear sets, which collectively reduce the rotational speed at the input driveshaft 20 and correspondingly increase the output torque, which rotationally drives a pair of rollers 24 extending downwardly from the housing lower surface 10b. A guide fence 26 is adjustably mounted on the housing lower surface 10b. The guide fence 26 includes a guide wall 28 which is spaced from the rollers 24 by approximately the thickness of the gypsum board panel 4. The guide fence 4 can be finely adjusted to optimize the compression of the gypsum board cut edge 6. An adjustable-width guide slot is formed between the rollers 24 and the guide wall 28. The guide fence has slightly curved portions for guiding the panel cut edge 6 through compression by the rollers 24.
III. Operation
Drywall construction of interior walls and partitions generally follows the rough-in and framing construction phases. Common gypsum board (drywall) panels for residential and commercial construction are nominally 4 feet wide and 8-10 feet long. Standard thicknesses are generally in the range of about ⅜ to ⅝ inches. Gypsum board panels used in residential and commercial construction can be fabricated in various sizes from different materials. For example, water-resistant, fire-retardant and other special-purpose panels are commonly specified. The joint construction tool of the present invention is adjustable to accommodate a variety of panel thicknesses.
Factory panels are commonly fabricated with pre-compressed edges to accommodate joint compound and tape layers where the panels abut. Field-cut panels, on the other hand, have nominal-thickness cut edges, which the drywall joint tool of the present invention can compress for enabling smooth, flat, finished surfaces. Typical projects require field-cutting multiple drywall panels to cover the finished, interior surfaces. A drywall installer places the tool on the cut edges 6 requiring compression for finishing joints where adjacent panels abut. The operator-installer grasps the handle 14 with one hand and operates the drill 16 with the other while guiding the tool 2 along the length of the cut edge 6. Such compressed-edge panels can be finished using standard tape and finishing compound techniques and materials.
IV. Alternative Embodiment Drywall Joint Tool 52
It is to be understood that while certain embodiments and/or aspects of the invention have been shown and described, the invention is not limited thereto and encompasses various other embodiments and aspects. The preferred and alternative embodiments outlined herein are examples of two ways to practice the present invention, but are not intended to limit the practice of the present invention in any way.
This application is a nonprovisional of and claims priority in U.S. Provisional Patent Application No. 62/890,722, filed Aug. 23, 2019, which is incorporated herein by reference.
Number | Name | Date | Kind |
---|---|---|---|
2991824 | Loechl | Jul 1961 | A |
3180058 | Paulw | Apr 1965 | A |
3233301 | Paulw | Feb 1966 | A |
4208239 | Lass | Jun 1980 | A |
4584224 | Schneller | Apr 1986 | A |
4920651 | Schmidt | May 1990 | A |
5304276 | MacLeod | Apr 1994 | A |
6230469 | Santa Cruz | May 2001 | B1 |
7223311 | Conboy | May 2007 | B2 |
8572827 | Chou | Nov 2013 | B1 |
8814555 | Hensley, Sr. | Aug 2014 | B1 |
11424604 | Mon | Aug 2022 | B1 |
20020040561 | Henits | Apr 2002 | A1 |
20020062551 | Jacoby | May 2002 | A1 |
20020108342 | Henits | Aug 2002 | A1 |
20040081524 | Barnett | Apr 2004 | A1 |
20050056072 | Schmidt | Mar 2005 | A1 |
20050180826 | Barnett | Aug 2005 | A1 |
20060185151 | Barnett | Aug 2006 | A1 |
20150167312 | Morrone | Jun 2015 | A1 |
20190169862 | Resnick | Jun 2019 | A1 |
20190316366 | Thackery | Oct 2019 | A1 |
Number | Date | Country | |
---|---|---|---|
20210054635 A1 | Feb 2021 | US |
Number | Date | Country | |
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62890722 | Aug 2019 | US |