The present invention relates to metal wall structures and metal wall structures having tensioning straps, and more particularly to a device for tensioning the metal straps of a wall structure.
Metal wall sections are commercially fabricated and delivered to construction sites for erection. Typically metal wall sections include upper and lower channel sections and a series of spaced apart metal studs extending between the upper and lower channel sections. In some cases, columns are provided about opposite end sections of the wall. Further, in some cases, the corner areas of the metal wall section are reinforced.
In many cases, it is advantageous to provide additional structure rigidity by incorporating one or more bridging members or by utilizing diagonal strapping. Diagonal straps provide rigidity to the wall section as a whole. When used in prefabricated modular wall sections these diagonal straps extend from opposed corners and cross about a center area of the wall section. Diagonal straps have applications in places other than in prefabricated wall sections. Diagonal straps are also used in conventional built-in-place modular walls.
One of the difficulties in providing prefabricated metal wall sections or conventional built-in-place metal walls with strapping is that it is difficult to effectively and efficiently tension the respective straps. First it is difficult to tension the straps manually using conventional tools. Even in cases where a great deal of care and patience is exercised, the straps are not typically fully tensioned, and accordingly, the metal wall, as a whole, lacks the desired rigidity.
Therefore, there has been and continues to be a need for an apparatus and method for efficiently and effectively tensioning and securing wall straps to sections of a metal wall.
The present invention relates to a tensioning device for tensioning a metal strap associated with the metal wall structure. The tensioning device includes a clamping apparatus having an elongated bar that includes opposed attaching structures that attach to the metal wall and to the strap to be tensioned. The tensioning device includes an actuator that causes the two attaching structures to be drawn together or closed and this results in the strapped being tensioned.
In one particular embodiment, the tensioning device includes an apparatus similar to a bar clamp where the bar clamp includes two opposed jaws or attaching structures. The jaws or attaching structures are connected to both the metal strap to be tensioned and the metal wall structure. The tensioning device is actuated causing the jaws or attaching structures to be closed, and in the process the metal strap is tensioned. After the metal strap has been tensioned, it is secured in place on the metal wall structure.
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.
With further reference to the drawings, the strap tensioning device 10 is shown therein. Strap tensioning device 10 is designed to tension the straps of a wall structure. A typical wall structure is shown in
For a more complete and unified understanding of wall structures wall sections, and strap tensioning devices one is referred to the disclosure found in U.S. patent application Ser. No. 10/988,032 filed Nov. 12, 2004 and entitled “A Wall Strap Tensioner for Tensioning a Wall Strap of a Metal Wall.” The disclosure and drawings of this application are expressly incorporated herein by reference.
With reference to
A first jaw 22 is secured to one end of the elongated bar 12. The term “jaw” as used herein means a structure that can be connected to, such as, for example, a block on a plate, bracket, etc. A second jaw 24 is associated with the handle and actuator assembly 14. Note in
The strap tensioning device 10 is designed to be connected between a wall strap 56 and an anchoring structure, such as a portion of the wall structure 50. In the example illustrated herein, the strap tensioning device 10 is interconnected between a strap 56 and a track 58 that forms a part of the wall structure 50. Therefore, the strap tensioning device 10 is provided with a strap connector 26. Strap connector 26 is connected to the second jaw 24. Strap connector 26 in this embodiment includes a generally angled or L-shaped bracket that comprises a first plate 26A that is attached to jaw 24 and a second plate 26B. Second plate 26B is configured to connect to strap 56. As seen in
In addition, the strap tensioning device 10 includes an anchoring connector or wall connector indicated generally by the numeral 28. The wall connector 28 is designed to anchor or hold the strap tensioning device 10 while the device is tensioning a metal strap 56. In the case of the embodiment illustrated herein, the wall connector 28 is designed to connect to a portion of the wall structure 50.
Viewing the wall connector 28 in more detail, the same includes a bracket 30 that is connected to the first jaw 22. Bracket 30 is in turn pivotally connected to a track connector 32. Note that track connector 32 is elongated and is basically an L-shaped piece of metal that includes a base and an upstanding flange. The upstanding flange includes one or more fastener openings for receiving fasteners such as screws and the like which are secured into a portion of a track 58. Note that the upstanding flange of the track connector 32 includes two spaced apart stops 32A that project from one side of the track connector. The stops 32A are particularly spaced apart so as to receive a portion of the wall structure 50. When a portion of the wall structure is confined within the stops 32A, it follows that the wall connector 28 or the track connector 32 cannot move laterally back and forth. In the case of one embodiment, the length of the strap track 60 and the space between the stops 32A are designed such that the strap track 60 fits between the stops and that the stops abut opposed end portions of the strap track. This prevents the track connector 32 from moving laterally back and forth during the tensioning process.
Turning to
The track connector is temporarily attached by screws to the adjacent lower track 58. This anchors the tensioning device 10 to the lower right hand portion of the wall section.
In
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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