The present invention relates to building structures, and more particularly to a building structure comprising a floor structure and one or more studs where the one or more studs are retained with respect to the floor structure and wherein the floor structure is movable vertically with respect to the studs.
In many building applications, it is desirable for the studs of the building to be generally retained closely adjacent a floor structure and wherein the floor structure is movable vertically with respect to the studs. There are systems being used today that connect studs to a concrete floor for example. The more popular systems include a bracket that connects to the edge of a concrete floor, for example, and projects therefrom to where an outer portion connects to the stud. The problem with these designs is that it is difficult to connect the bracket to both the concrete floor and the stud. In many cases, a worker stationed on a concrete floor has to lean over the edge of the concrete floor in order to make the connection. Furthermore, the connecting structures of the prior art are not designed to facilitate the worker being able to easily grasp the studs and position the studs adjacent the concrete floor for easy attachment.
Therefore, there is and continues to be a need for a connecting structure that enables a construction worker to easily connect the studs to a floor or floor support structure such that the studs are generally retained but yet have the ability to move vertically with respect to the floor or the floor support structure.
The present invention relates to a clip for connecting a stud to a floor structure such as a floor or a floor support. The clip includes a base that connects to the floor structure and stud retainer. The stud retainer in one embodiment includes a channel that receives a flange of a stud. Fasteners project through the channel and connect to the flange of the stud in a manner that retains the stud but yet allows the channel to move vertically along the stud.
Further the present invention entails a building structure comprising a floor and a series of metal studs extending adjacent the floor structure. A clip is provided for connecting each stud to the floor structure such that the clip is permitted to move vertically with respect to the stud and wherein the clip generally retains the stud adjacent the floor structure. The clip includes a base and a stud retainer. The stud retainer includes a channel. The stud includes a web and a pair of flanges and wherein one of the flanges of the stud is disposed within the channel of the stud retainer such that the flange of the stud is generally retained in the channel but wherein the flange of the stud is movable vertically in the channel. One or more fasteners extend through the channel and connect to the flange of the stud in a manner that enables the flange of the stud to move vertically in the channel.
Other objects and advantages of the present invention will become apparent and obvious from a study of the following description and the accompanying drawings which are merely illustrative of such invention.
a is a fragmentary sectional view showing the flange of a stud confined within a stud retainer.
With further reference to the drawings, a building structure is shown therein. The building structure includes a plurality of studs, each stud being indicated generally by the number 16 and a floor structure indicated generally by the numeral 18. The term “stud” means an elongated vertical member that forms a part of a wall and which is enclosed in the wall by wall boarding, drywall, etc. Studs 16 are retained adjacent the floor structure 18 by a series of clips, each clip being indicated generally by the number 10. As will become apparent from subject portions of the disclosure, the clips 10 are designed to generally retain the studs 16 closely adjacent the floor structure 18 but at the same time permit the floor structure to move vertically with respect to the studs.
Each stud 16 includes a pair of flanges 16A, a web 16B and a pair of returns 16C. Note that each return 16C extends inwardly from the terminal edge of a flange 16A.
The term floor structure as used herein, means a floor proper or a floor support structure. In the drawings the floor proper is referred to by 18A. See
As seen in the drawings, each stud 16 is secured to the floor structure 18 by the clip 10. Viewing clip 10 in more detail, it is seen that the same includes a base member 12. In the particular embodiment illustrated herein, the base member 12 comprises a generally flat plate. The base member 12 includes a series of openings 12A. Openings 12A are designed to receive powder-activated fasteners 12B. Other types of fasteners can be utilized to secure the base member 12 to the floor structure 18. However, in one embodiment, the fasteners used are shot from a device and hence are called powder-activated fasteners.
Projecting from the base member 12 is a stud retainer indicated generally by the number 14. As seen in
Viewing the stud retainer 14 in more detail, it is seen that the same is formed into a structure that resembles a channel or at least a partial channel. The term channel as used herein, means a channel or even a partial channel such as the case with respect to the embodiment shown in
Also forming a part of the stud retainer 14, in the case of one embodiment, is a reinforcing plate 28. Reinforcing plate 28 is disposed adjacent the exterior surface of the web 20. In the case of the embodiment shown, the reinforcement plate 28 includes a pair of openings 30. A pair of step bushings 32 extends through the openings 30 in the reinforcing plate 28. A fastener 34 extends through each step bushing 32 and hence through the elongated slot 22 in the web 20 and connects to the flange 16A of the stud 16. The step bushing 32 enables the reinforcing plate 28 along with the fasteners 34 to move vertically with the stud 16. In other words, the stud 16 can move vertically within the channel defined by the stud retainer 14.
Note in
Also, in the case of the embodiment shown in
Note in the embodiment or design shown in
Note the
Again, in all cases, the flange 16A of the stud 16 is connected to a screw or fastener 34, but yet the stud 16 is able to move vertically up and down with respect to the stud retainer 14.
There are many advantages to this design. It is simple and easy to manufacture. Also, this design enables the clips 10 to be secured to the stud 16 by a worker standing on the floor or on the floor structure indicated generally by the numeral 18. To attach the clips 10 to both the floor structure 18 and the studs 16 does not require the worker to lean over the edge of the floor structure 18.
The clip 10 can also be used to retrieve a stud 16 and position the stud adjacent the floor structure 18 for attachment. That is, the flange 24 and return 26 of the stud retainer can be utilized as a hook. A worker with the clip 10 in his or her hand can extend the clip outwardly and cause the flange 24 and return 26 of the stud retainer to engage and hook around the flange 16A and return 16C of the stud 16. Once engaged with the stud, the worker then pulls the clip 10 towards the floor structure where the stud can be properly positioned for attachment.
The present invention may, of course, be carried out in other specific ways than those herein set forth without departing from the scope and the essential characteristics of the invention. The present embodiments are therefore to be construed in all aspects as illustrative and not restrictive and all changes coming within the meaning and equivalency range of the appended claims are intended to be embraced therein.
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Entry |
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QuickClip vertical slide clip allows for vertical building movement and provides up to 3″ of horizontal standoff, Dietrich Metalframing.com; http://www.dietrichindustries.com/products/pdf/clipexpress/ClipExp—36—37.pdf. |
Number | Date | Country | |
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20130139466 A1 | Jun 2013 | US |