Rebar rods and wire are notoriously cumbersome to manipulate, particularly by one or few individuals. In use, multiple rebar rods and/or wires are assembled together in an ordered lattice to provide support for a structure, such as a concrete wall. However, the length of rebar makes this assembly awkward and, as the lattice grows, quite strenuous and ungainly.
In an effort to stabilize the lattice during construction or pouring of the structure, clips and binders have been used to hold multiple rebar rods/wires together at one location while other portions of the lattice are constructed at another location. However, existing clips and binders are typically difficult to use, resulting in fumbling by and frustration for the user. Further, existing clips typically need to be sold in a plurality of sizes, because each clip can only hold one size of rebar. These clips also do little to prevent flow therethrough, which increases corrosion of the rebar and shortens operational lifetimes.
Aspects of the present disclosure include methods and systems for a clipping apparatus for holding rebar rods and/or wires. In some embodiments, the clipping apparatus includes a base having a first base portion with a first end and a second end, and a second base portion with a third end and a forth end. In some embodiments, a first extension is positioned on the first end and a second extension is positioned on the second end. In some embodiments, each of the extensions define a notch.
In some embodiments, the clipping apparatus includes a first clip positioned on the third end and a second clip positioned on the forth end. In some embodiments, the clips include overlapping protruding portions which define a recess. In some embodiments, platforms are positioned adjacent the first clip and the second clip to transmit an engaging force applied by a user substantially parallel to the clips.
In some embodiments, the clipping apparatus includes a chair positioned on the base. In some embodiments, the clipping apparatus includes a fluid-stop section connecting the first base portion and the second base portion along an outside edge, and extending from the first base portion, the second base portion, and an intersection of the first base portion and the second base portion. In some embodiments, the fluid-stop section includes a raised rim.
The drawings show embodiments of the present disclosure for the purpose of illustrating the invention. However, it should be understood that the present application is not limited to the precise arrangements and instrumentalities shown in the drawings, wherein:
Referring now to
Referring again to
In some embodiments, clips 126 are positioned on base 102. In some embodiments, clips 126 are positioned at ends of the base portions, such as at first end 108, second end 110, third end 112, or fourth end 114. In some embodiments, a plurality of clips 126 are positioned on the same base portion. In some embodiments, clips 126 are positioned on multiple base portions. In some embodiments, clips 126 include a first clip arm 128 and an opposing second clip arm 130. In some embodiments, additional clip arms may be provided to provide additional points of stabilizing contact between clipping apparatus 100 and a target rebar rod/wire. In some embodiments, first clip arm 128 and second clip arm 130 define a recess 132. In some embodiments, recess 132 includes a recess base 134. In some embodiments, recess base 134 and notch base 120 are non-co-planar.
In some embodiments, first clip arm 128 and/or second clip arm 130 include protruding portions 136. In some embodiments, protruding portions 136 define recess 132 between the protruding portions and base 102. In some embodiments, protruding portions 136 overlap. In some embodiments, protruding portions 136 include tapered portions 138. In some embodiments, tapered portions 138 are tapered ends 140.
In some embodiments, tapered ends 140 are configured to guide a rebar rod toward recess 132 upon application of an engaging force 142. In some embodiments, clipping apparatus 100 includes platforms 144 by clip 126. In some embodiments, platforms 144 are positioned and configured to transmit engaging force 142 to help engage a rebar rod. In some embodiments, engaging force 142 is transmitted substantially parallel to clip 126. In some embodiments, platforms 144 are adjacent clips 126. As the rebar rod is guided towards recess 132, clip arms 128 and 130 deflect. In some embodiments, the rebar rod is stabilized via interactions with the clip arms 128 and 130 and recess base 134. In some embodiments, the rebar rod is stabilized via interactions with protruding portions 136. In some embodiments, the rebar rod is stabilized via interactions with protruding portion faces 145. In some embodiments, the clipping of rebar into clipping apparatus 100 is reversible.
In some embodiments, a chair 146 is positioned on base 102. In some embodiments, chair 146 extends from first base portion 104. In some embodiments, chair 146 extends from second base portion 106. In some embodiments, chair 146 extends from both first base portion 104 and second base portion 106. In some embodiments, chair 146 extends in a direction opposite that of extensions 116 and/or clips 126.
In some embodiments, clipping apparatus 100 includes a fluid-stop section 148. Fluid-stop section 148 is configured to prevent fluid flow through clipping apparatus 100. In some embodiments, fluid-stop section 148 extends from first base portion 104. In some embodiments, fluid-stop section 148 extends from second base portion 106. In some embodiments, fluid-stop section 148 extends from the intersection of first base portion 104 and second base portion 106. In some embodiments, fluid-stop section 148 extends to first end 108. In some embodiments, fluid-stop section 148 extends to second end 110. In some embodiments, fluid-stop section 148 extends to third end 112. In some embodiments, fluid-stop section 148 extends to fourth end 114. In some embodiments, fluid-stop section 148 includes an outer edge 150 between first base portion 104 and second base portion 106. In some embodiments, fluid-stop section 148 includes a raised rim 152. Referring now to
The clipping apparatus of the present disclosure advantageously allows for easy binding of a plurality of rebar rods and/or wires. The orientation of the base portions and associated extensions and clips consistently orient and hold the rebar in the desired spatial relationship. The extensions stabilize a first rebar rod as a second rebar is applied to the clips. The placement of the clips, platforms, and tapered portions on the base portions make application of the clipping apparatus to rebar an easy process. The chair allows for consistent spacing relative to adjacent planes.
Although the invention has been described and illustrated with respect to exemplary embodiments thereof, it should be understood by those skilled in the art that the foregoing and various other changes, omissions and additions may be made therein and thereto, without parting from the spirit and scope of the present invention. Accordingly, other embodiments are within the scope of the following various embodiments.
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Number | Date | Country | |
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20190338524 A1 | Nov 2019 | US |