System and method for plugging core holes
09695607 ยท 2017-07-04
Assignee
Inventors
Cpc classification
E04G15/04
FIXED CONSTRUCTIONS
E04B5/16
FIXED CONSTRUCTIONS
E04C2/52
FIXED CONSTRUCTIONS
International classification
E04C2/52
FIXED CONSTRUCTIONS
E04G23/02
FIXED CONSTRUCTIONS
Abstract
A system, device, and method for plugging core holes. A core hole plug includes a top compression plate, a bottom compression plate, and a rubber expansion ring that separates the top and bottom compression plates. A beveled screw hole can be created on the top compression plate. The beveled screw hole matches the angle of the bottom surface of the head of a flat head bolt to ensure that the bolt remains flush with the top compression plate. The rubber expansion ring can be squeezed between the top and bottom compression plates as the flat head bolt is screwed into a threaded receiver nut formed on the bottom compression plate. An installation tool can be utilized to install the core hole plug so that the top compression plate remains flush with an existing floor surface.
Claims
1. A core hole plug installation system for installing core hole plugs into a surrounding flooring surface in a manner that the core hole plugs are flush with the surrounding flooring surface, comprising: an installation tool temporarily attachable to a top surface of a top compression plate of the core hole plug, said core hole plug including said top compression plate, a rubber expansion ring, a bottom compression plate, and at least one of lighting integrated within the top compression plate, at least one electrical connection plug integrated within the top compression plate, solar lighting integrated within the top compression plate, wherein said top compression plate and said bottom compression plate are attached by at least one flat head bolt and are separated by the rubber expansion ring, wherein said top compression plate, said bottom compression plate and said rubber expansion ring have a diameter smaller than a core hole formed in the flooring surface that said top compression plate, said bottom compression plate and said rubber expansion ring will be installed into, and wherein said rubber expansion ring expands and contacts side walls of the core hole as the bottom compression plate and said top compression plate are mechanically squeezed together by said at least one flat head bolt, wherein said installation tool extends across and past an outer perimeter of said top compression plate and wherein said installation tool comes in contact with the surrounding flooring surface when said core plug is inserted into the core hole to keep the top compression plate even with the surrounding flooring surface; and at least one screw for temporarily attaching said installation tool onto said top compression plate of said core hole plug.
2. The system of claim 1, wherein said at least one screw for temporarily attaching said installation tool onto said top compression plate of said core hole plug further comprises at least one thumb screw receiver.
3. The system of claim 1, wherein the outer perimeter define an outer diameter of the top compression plate and said installation tool extends across and past the outer diameter of said top compression plate.
4. The system of claim 1, wherein said at least one flat head bolt is tightened until said core plug is secured within the core hole.
5. The system of claim 1, wherein said core hole plug comprises at least one of the following shapes: rectangular, square, or circular.
6. A core hole plug installation system, comprising: a core hole plug including a top compression plate having a top surface, a bottom compression plate, a rubber expansion ring, and at least one of lighting integrated within the top compression plate, at least one electrical connection plug integrated within the top compression plate, solar lighting integrated within the top compression plate, wherein said top compression plate and said bottom compression plate are separated by a the rubber expansion ring, and wherein said top compression plate, said bottom compression plate and said rubber expansion ring have a diameter smaller than a core hole that said top compression plate, said bottom compression plate and said rubber expansion ring will be installed into; wherein said top compression plate has at least one beveled screw hole formed in the top surface of said top compression plate, wherein said at least one beveled screw hole matches an angle of a bottom surface of a head of at least one flat head holt to ensure that said at least one flat head bolt remains flush within said top compression plate; said at least one flat head bolt screwed into at least one threaded receiver nut through the at least one beveled screw hole wherein said at least one flat head bolt connects said top compression plate and said bottom compression plate of said core hole plug with said rubber expansion ring therebetween; and a flat installation tool having a top and a bottom surface, said bottom surface of the flat installation tool attachable to the top surface of said top compression plate with at least one screw, wherein said installation tool comes into contact with an existing floor surface when said core plug is inserted into the core hole formed in the existing floor surface for installation.
7. The system of claim 6, wherein said installation tool extends across and past an outer perimeter of said top compression plate.
8. The system of claim 6, wherein said at least one flat head bolt is tightened until said core plug is secured within the core hole.
9. The system of claim 6, wherein said core hole plug comprises at least one of the following shapes: rectangular, square, or circular.
10. The system of claim 6, further comprising: at least one screw receiver formed in said top compression plate for temporarily attaching said installation tool on said top compression plate of said core hole plug.
11. The system of claim 10, wherein said at least one screw receiver is configured to accept the at least one screw for temporarily attaching said installation tool on said top compression plate of said core hole plug with the at least one screw.
12. The system of claim 10, wherein said installation tool extends across and past an outer perimeter of said top compression plate.
13. A core hole plug installation method, comprising: providing a core hole plug including: a top compression plate having a top surface defined by an outer diameter and having a beveled screw receiver located at a center of said top surface, a bottom compression plate further including a threaded receiver nut at a center of said bottom plate, a rubber expansion ring separating said top compression plate and said bottom compression plate, at least one of lighting, electrical connections or a solar panel integrated within the top compression plate, and a flat head bolt, wherein at least one said beveled screw receiver matches an angle of a bottom surface of a head of said flat head bolt to ensure that said flat head bolt remains flush when inserted within said top compression plate, and said at least one flathead bolt is screwable into said threaded receiver nut through the at least one beveled screw receiver, wherein said at least one flat head bolt connects said top compression plate and said bottom compression plate of said core hole plug with said rubber expansion ring located therebetween; attaching a flat installation tool including a top and a bottom surface to the top surface of said top compression plate, wherein the bottom surface of the flat installation tool sits flush against the top surface of the top compression plate, the flat installation tool remains clear of the beveled screw receiver when attached to the top surface of said top compression plate, and the flat installation tool extends outside the outer diameter defining said top compression plate; inserting the core hole plug into a core hole having a larger diameter than the top compression plate, said rubber expansion ring when uncompressed, and said bottom compression plate until the bottom surface of the installation tool comes into contact with an existing floor surface surrounding the core hole when said core hole plug is inserted into the core hole; turning the flat head bolt causing the bottom compression plate to be drawn toward the top compression plate and installation tool as the installation tool lies flat against the existing floor surface, and said turning continues until said rubber expansion ring expands in diameter forcing an outside surface of the expansion ring into contact with a sidewall of the core hole located between the top and bottom compression plates, wherein the rubber expansion ring secures the core hole plug in place with the top surface of said top compression plate being level to the existing flooring surface and forms a seal between the outside surface of the expansion ring and the sidewall of the hole once compressed by the top and bottom compression plates; and removing the installation tool from the top compression plate thereby leaving the core hole plug installed in the core hole formed in the existing flooring surface with said top surface of said top compression plate flush with the existing floor surface.
14. The method of claim 13, wherein said installation tool is attached to said top compression plate by at least one thumb screw.
15. The method of claim 13, wherein said installation tool extends across and past an outer perimeter of said top compression plate.
16. The method of claim 13, wherein said at least one flat head bolt is tightened until said core plug is secured within the hole.
17. The method of claim 13, wherein said core hole plug comprises at least one of the following shapes: rectangular, square, or circular.
Description
BRIEF DESCRIPTION OF THE FIGURES
(1) The accompanying figures, in which like reference numerals refer to identical or functionally-similar elements throughout the separate views and which are incorporated in and form a part of the specification, further illustrate the present invention and, together with the detailed description of the invention, serve to explain the principles of the present invention.
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DETAILED DESCRIPTION
(11) The particular values and configurations discussed in these non-limiting examples can be varied and are cited merely to illustrate at least one embodiment and are not intended to limit the scope thereof.
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(13) The core hole plug 100 generally includes a top compression plate 110, a bottom compression plate 120, and a rubber expansion ring 130. The rubber expansion ring 130 separates the top compression plate 110 and the bottom compression plate 120. The rubber expansion ring 130 can be squeezed between the top compression plate 110 and the bottom compression plate 120 as a flat head bolt 140 is screwed into a threaded receiver nut 150 formed on the bottom compression plate 120. The rubber expansion ring 130 can be compatible with various wall or surface structures 160.
(14) The rubber expansion ring 130 can be cylindrical with a tubular sidewall. The rubber expansion ring 130 can be configured from a material such as, for example, deformable and resilient polymeric material. The properties of the deformable and resilient polymeric material enable the rubber expansion ring 130 to return to its original diameter and shape when the rubber expansion ring 130 is not under compression. Preferably, the material forming the expansion ring 130 can also be durable and chemical resistant. The threaded receiver nut 150 can be welded or otherwise affixed non-rotatably with the bottom compression plate 120.
(15) The rubber expansion ring 130 is compressed by tightening the flat head bolt 140 and drawing the bottom compression plate 120 towards the top compression plate 110. The rubber expansion ring 130 extends in diameter to force the outside surface of the expansion ring 130 into contact with the sidewall of a core hole 180. The extended rubber expansion ring 130 secures the core hole plug 100 in place and forms a seal between the outside surface of expansion ring 130 and the sidewall of the hole 180. Thereafter, the bolt 140 can be loosened and the rubber expansion ring 130 is allowed to return to its initial shape and diameter, Consequently, the outside surface of the expansion ring 130 draws away from the sidewall of the hole 180 and the core hole plug 100 can be easily removed as a unit without fear of losing compression plates 110 and 120.
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(23) It will be appreciated that variations of the above-disclosed and other features and functions, or alternatives thereof, may be desirably combined into many other different systems or applications. Also, that various presently unforeseen or unanticipated alternatives, modifications, variations or improvements therein may be subsequently made by those skilled in the art which are also intended to be encompassed by the following claims.