SUPPORT FOOTING AND ANCHORING SYSTEM AND METHOD OF USE
20230122756 ยท 2023-04-20
Inventors
Cpc classification
E02D5/285
FIXED CONSTRUCTIONS
International classification
Abstract
A support system and method to support structures in a substrate such as the ground. The system generally comprises a tubular hollow body with a conical head, and a number of smaller hollow tubes positioned inside. Each of the smaller tubes having a bend and an opening adapted to communicate with a corresponding opening in the hollow body head. In use, the assembly is driven into the substrate to the desired depth, and rods are driven down each of the smaller tubes so that they at least partially extend out from the head and into the surrounding substrate. The support system may also include a screw structure at the head to aid in driving the support system into the ground, and guards to protect the smaller tubes from damage during installation.
Claims
1. A support system comprising: an elongated hollow body having a longitudinal axis, a first body end having a body opening, and an oppositely disposed second end; at least one hollow tube, said at least one hollow tube being positioned inside the body and being parallel to said longitudinal axis; said at least one hollow tube including a straight section, and a bend between 0 degrees and 180 degrees measured from the longitudinal axis; a tube opening positioned after the bend; a head member attached to the second end of the elongated hollow body, including, a series of head openings corresponding to each of the number of individual hollow tubes and respectively positioned to interface with each of the tube openings, the head member further including a tip portion; and an array of rods comprising a number of individual rods positioned within at least some of the individual hollow tubes and protruding outward from each of the respective head openings.
2. The support system of claim 1, wherein the head further comprising a screw portion positioned at the tip portion.
3. The support system of claim 1, wherein the head member further includes a plurality of guards corresponding to each of the number of individual hollow tubes and respectively positioned toward the tip portion of each of the tube openings.
4. The support system of claim I further comprising a post adapter positioned at the first end of the elongated body.
5. A method for installing a support system including the steps of: providing a support system including an elongated hollow body having a longitudinal axis, a first end having body opening, an oppositely disposed second end; an array of interior hollow tubes positioned inside the body and running parallel to the longitudinal axis, the array including a predetermined number of individual hollow tubes, each individual hollow tube comprising a straight portion, and a bend portion, the bend portion having a predetermined bend of between 0 degrees and 180 degrees, measured from the longitudinal axis; a tube opening positioned after the bend portion; a head member attached to the second end of the elongated hollow body, the head member including a series of head openings corresponding to each of the number of individual hollow tubes and respectively positioned to interface with each of the tube openings; positioning the support system with the head pointed toward a selected substrate; driving the support system into the ground until it has reached a desired depth; forcing rods down at least some of the hollow tubes such that that they at least partially protrude from the tube opening and corresponding head opening into the substrate.
6. A support system comprising: an elongated, tubular hollow body, said hollow body having a longitudinal axis, a hollow body interior, a first end having an opening, and an oppositely disposed second end, said second end including a head member, said head member including at least one head opening; at least one interior hollow tube, said at least one hollow tube including a distal end, a proximal end, a relatively straight portion and a curved, bend portion, said bend portion being located at said distal end, said at least one interior hollow tube being relatively smaller than said tubular hollow body, and being positionable in said tubular body interior, and running parallel to said longitudinal axis; and at least one rod member positioned within said at least one hollow tube.
7. The support system of claim 6 wherein said bend portion deviates from said straight portion between 0 and 180 degrees.
9. The support system of claim 7 wherein said at least one hollow tube includes a tube opening at said proximal end and a tube opening at said distal end, and wherein said opening at said distal end is arranged for communication with said at least one head opening.
9. The support system of claim 9 wherein said head member includes a plurality of head openings.
10. The support system of claim 9 further including a plurality of hollow tubes, and a plurality of rod members, said each one of said plurality of rod members being positioned within a respective hollow tube, and being positioned to interface with each of the distal end tube openings.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DESCRIPTION OF THE PREFERRED EMBODIMENT
[0041] Although the disclosure hereof is detailed and exact to enable those skilled in the art to practice the invention, the physical embodiments herein disclosed merely exemplify the invention which may be embodied in other specific structures. While the preferred embodiment has been described, the details may be changed without departing from the invention, which is defined by the claims.
[0042] With reference to
[0043] With further reference co
[0044] With particular attention to
[0045] The support structure 100 further includes at least one rod member 134 positioned within a selected hollow tube 122, and arranged to protrude outwardly through the selected tube distal end opening 130B and corresponding head opening 118 upon installation. As previously mentioned, the head member 114 is preferably provided with series of head openings 118 corresponding to the number of individual hollow tubes 122, and respectively positioned to interface with each of the distal end tube openings 130B. As is shown, the support structure 100 preferably includes a plurality of individual rod members 134, with each individual rod member 134 being positioned within a respective hollow tube 122, extending through the respective hollow tube 122, and extending through the respective tube opening 130B.
[0046] In an embodiment, the elongated hollow body 102 takes the form of a tube having a wall 132. As may be seen particularly in
[0047] As previously mentioned, the support system 100 further includes an array 120 of individual hollow tubes 122. The hollow tubes 122 are preferably manufactured of a rigid material similar to that of the elongated hollow body 102, such as high carbon steel or other acceptable rigid metal alloy. As is shown in the Figures, the individual hollow tubes 122 are preferably arranged in a compact and space efficient manner, for example, they may be arranged in such a way as to allow the maximum number of individual hollow tubes 122 of a selected outer diameter within the elongated hollow body 102. The individual hollow tubes 122 may be arranged symmetrically, in an asymmetrical pattern, or the system 100 may include fewer individual hollow tubes 122. Another embodiment, such as that shown in
[0048] With particular attention to Figure it may be seen that each of the individual hollow tubes 122 primarily includes two portions. A first, substantially straight portion 124 is positioned generally parallel to the longitudinal axis 104 of the elongated hollow body 102. A second, curved bend portion 126 is located at a distal end 128 of the inner hollow tube 122. The curved bend portion 126 preferably deviates between zero and 180 degrees from the longitudinal axis 104. As mentioned, each tube 122 also includes two openings 130A, 130B located opposite each other, opening 130A being located at the proximal end 132, and opening 130B located after the bend portion 126 at an oppositely disposed distal end 128.
[0049] Again referring to
[0050] With attention to
[0051] With specific attention to
[0052] With attention now to
[0053] It is to be understood that the number of rod members 134 used and the distance they protrude outwardly from the tip portion 116 and into the surrounding substrate 136 depends on the specific application, but generally the support system 100 is more stable when the rod members 134 are driven further into the surrounding substrate 136 and when used in greater numbers. In this way, the support system 100 of the present invention is scalable for use in a variety of applications.
[0054] Although not shown in the Figures, the present invention may include the use of multiple rod members 134 within each individual hollow tube 120. Moreover, it is within the scope of the present invention to utilize hollow tubes 122 of varying diameter or material. Further, and as shown in
[0055] With attention now to
[0056] The present invention further includes a method of use. A method according to the present invention may be seen particularly in the views of
[0057] providing an elongated, tubular hollow body 102, the tubular hollow body 102 having a longitudinal axis 104 a first end 106, and an oppositely disposed second end 108. The first end 106 including an opening 110 for access to the hollow body interior 112. The elongated hollow body 102 including a head member 114 attached to the second end 108 wherein the head member 114 includes a tip portion 116 and at least one head opening 118;
[0058] providing at least one, preferably an array 120 of relatively smaller, hollow tubes 122, each one of the hollow tubes 122 being a through bore and having a proximal end 132, a distal end 128, a relatively straight portion 124 and a bend portion 126, the bend portion 126 located at the distal end 128, an opening 130A at the proximal end 132 and an opening 130B at the distal end 128;
[0059] providing at least one rod member 134;
[0060] positioning the at least one hollow tube 122 inside the hollow body interior 112
[0061] aligning the distal end 129 opening 130B with a selected head opening 118;
[0062] positioning the tubular body 102 with the head member 114 pointed toward a support substrate 136;
[0063] driving the tubular body 102 into a support substrate 136 in a longitudinal direction and in the direction of arrow A until it has reached a predetermined depth;
[0064] moving at least one rod member 134 into a hollow tube 122 in the direction of arrow B;
[0065] moving at least one rod member 134 into a hollow tube 122 in the direction of arrow C of such that the rod member 134 at least partially protrudes from the tube opening 130B and into the support substrate 136.
[0066] A method according to the present invention may include the further steps of providing the interior tube bend portion 126 with a predetermined bend of between 0 degrees and 180 degrees, measured as a deviation from the longitudinal axis 104, and positioning the tube opening 130B after the bend portion 126. The method may also include the step of providing a plurality of hollow tubes 122 and a plurality of rod members 134.
[0067] The foregoing is considered as illustrative only of the principles of the invention. Furthermore, since numerous modifications and changes will readily occur to those skilled in the art, it is not desired to limit the invention to the exact construction and operation shown and described. While the preferred embodiment has been described, the details may be changed without departing from the invention, which is defined by the claims.