Tilt tower and pipe auger anchor assembly
10590673 ยท 2020-03-17
Inventors
Cpc classification
International classification
Abstract
A tilt tower and pipe auger anchor assembly comprising a tilt tower having a mast and a swing tube and a coax cable engaging both the mast and the swing tube, the mast has a near end, the near end has a mast flange plate with fastener holes therethrough. A pipe auger anchor has walls defining a generally hollow elongated body having a near end and a removed end, the near end including a pipe auger anchor flange plate mateable with the mast flange plate. The pipe auger anchor flange plate has fastener openings therein and fixedly attached to the near end perpendicular to the longitudinal axis of the hollow elongated body and an auger at the removed end. The auger provides a penetration force when the body is rotated and the auger is engaged with the ground.
Claims
1. An earth penetrating anchor assembly for anchoring a mast having a near end with a mounting plate having fastener holes, the earth penetrating anchor comprising: a hollow elongated cylindrical body having an outer surface, a near end with an upper perimeter, a removed end with a helical member attached to the removed end, and a middle portion between the near and removed ends; and a flange plate having a top surface, a bottom surface, a thickness and walls defining a cutout for receiving the near end of the hollow elongated cylindrical body, the flange plate having fastener holes; wherein the flange plate engages the near end of the hollow elongated cylindrical body, such that the upper perimeter of the hollow elongated cylindrical body is adjacent the walls defining the cutout, below the top surface of the flange plate and above the bottom surface of the flange plate; further comprising a coupling between the flange plate and the hollow elongated cylindrical body comprising a first full fillet weld and a second full fillet weld; wherein the first full fillet weld contacts and secures the upper perimeter to the walls defining the cutout, the first full fillet weld located below the top surface of the flange plate, the first full fillet weld sized, when measured on its leg, so that it is smaller than the second full fillet weld; and wherein the second full fillet weld contacts and secures the outer surface of the hollow elongated cylindrical body to the bottom surface of the flange plate, the second full fillet weld sized, when measured on its leg, so that it is larger than the hollow elongated cylindrical body's wall thickness.
2. The earth penetrating anchor assembly of claim 1, wherein the hollow elongated cylindrical body has a cable access port.
3. The earth penetrating anchor assembly of claim 2, wherein the cable access port has reinforcement members.
4. The earth penetrating anchor assembly of claim 3, wherein the cable access port reinforcement members have an area at least equal to the area of the cable access port.
5. The earth penetrating anchor assembly of claim 2, wherein the cable access port is more than four times as long as it is wide.
6. The earth penetrating anchor assembly of claim 1, wherein the second weld is at least fifty percent larger than the wall thickness of the hollow cylindrical body.
7. The earth penetrating anchor assembly of claim 1, wherein the second weld is at least fifty percent larger than the first weld.
8. The earth penetrating anchor assembly of claim 1, wherein the first weld is not flush with the top surface of the flange plate.
9. The earth penetrating anchor assembly of claim 8, wherein the first weld terminates more than fifty percent of its size, when measured on its leg, from the top surface of the flange plate.
10. The earth penetrating anchor of claim 1, wherein the coupling between the flange plate and the hollow elongated cylindrical body consists essentially of the first fillet weld and the second fillet weld.
11. The earth penetrating anchor of claim 1, wherein the removed end of the hollow elongated cylindrical body is closed.
12. A tower comprising: a mast having a near end with a mounting plate having fastener holes and a mounting plate; and an earth anchor comprising: a hollow elongated cylindrical body having an outer surface, a near end with an upper perimeter, a removed end with a helical member attached to the removed end, and a middle portion between the near and removed ends; and a flange plate having a top surface, a bottom surface, a thickness and walls defining a cutout for receiving the near end of the hollow elongated cylindrical body, the flange plate having fastener holes; wherein the flange plate engages the near end of the hollow elongated cylindrical body, such that the upper perimeter of the hollow elongated cylindrical body is adjacent the walls defining the cutout, is below the top surface of the flange plate and above the bottom surface of the flange plate; and further comprising a weld attachment of the flange plate to the hollow elongated cylindrical body comprising a first full fillet weld and a second full fillet weld; wherein the first full fillet weld contacts and secures the upper perimeter to the walls defining the cutout, the first full fillet weld located below the top surface of the flange plate, the first full fillet weld sized, when measured on its leg, so that it is smaller than the second full fillet weld; and wherein the second full fillet weld contacts and secures the outer surface of the hollow elongated cylindrical body to the bottom surface of the flange plate, the second full fillet weld sized, when measured on its leg, so that it is larger than the hollow elongated cylindrical body's wall thickness.
13. The earth penetrating anchor assembly of claim 1, wherein the upper perimeter of the hollow elongated cylindrical body is inserted into the flange plate no more than half way between the top surface of the flange plate and the bottom surface of the flange plate.
14. The tower of claim 12, wherein the upper perimeter of the hollow elongated cylindrical body is inserted into the flange plate no more than half way between the top surface of the flange plate and the bottom surface of the flange plate.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
(15) Applicants disclose a tilt tower and pipe auger assembly 10. The tilt tower and pipe auger assembly 10 includes a tilt tower 12 as known in the art. A coax assembly 13 is engaged with the tilt tower and partly entrained within a mast tube 16, typically entering at a near end 16a thereof and exiting at a port 16c thereof. Removed end 16b of mast 16 includes an axle 20 for engagement of a swing tube 18 as known in the art. Swing tube 18a has a near end 18a from which coax assembly, when the swing tube is in a normal or use position, may extend thereinto and enter the low end of the mast tube as best seen in
(16) It is seen that mast 16 is typically longitudinal and may have a flange plate 22 rigidly attached as, for example, by weldment (see
(17) Pipe auger anchor 14 is seen, in one embodiment, to include an auger body 26 of a near end 26a and a removed end 26b. At the removed end 26b of auger body 26 is an auger 28. Auger 28 may be configured in a number of different ways and may include a helical member 30 and a longitudinal member 32. Auger 28 is configured such that, upon placement against the earth, typically soil, with the longitudinal axis of the auger body 26 generally perpendicular thereto, rotation thereof will provide a penetration force to the pipe auger anchor and it may penetrate the earth. Equipment, known in the art, will provide power to rotate augers into the earth. Rotation of pipe auger anchor into the earth is provided and a hole may be partially (a starter hole) or completely excavated as seen in
(18) For example, if the coax port is approximately 2.5 inches by 12 inches (about 30 sq. in.), then a total of about thirty square inches of port reinforcement member, typically plate steel, will be used to weld up the weld members around the port. Moreover, if the thickness of auger body is about inch, the wall members defining the port reinforcement members will be typically at least about inch thick.
(19) By providing port reinforcement members, including welded up plate steel about the coax port, a weakness in auger body 26 will be substantially alleviated. For example, auger body 26 may vibrate when a mast, stimulated by winds or other forces, begins to vibrate at a harmonic frequency defined by the geometry and materials of the tilt tower assembly. Such harmonic vibrations can be destructive and may cause failure at non-reinforced coax ports. Port reinforcement members, such as those illustrated or other suitable members, are helpful in providing reinforcement about the coax ports and avoiding destructive failure.
(20) It may be seen that near end 26a has a mating flange plate 42 attached by weldment 44 or other suitable means. Moreover, it is seen that mating flange plate 42 is perpendicular to the longitudinal axis of auger body 26 and may be dimensioned similarly to flange plate 22 of mast tube 16. Mating flange plate 42 may include a hold-down bolt access area, which may be multiple slots 46 as seen, for example, in
(21) As seen in the detail portion of
(22) Turning to
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(28) In summary, regarding reinforcements of the port, it is seen that the reinforcement members may be plate or cylindrical or other suitable steel, and may be fully inside the body, fully outside the body or partially inside or outside. Moreover, square, rectangular or cylindrical steel may be used or any other suitable shape.
(29) Although the invention has been described with reference to a specific embodiment, this description is not meant to be construed in a limiting sense. On the contrary, various modifications of the disclosed embodiments will become apparent to those skilled in the art upon reference to the description of the invention. It is therefore contemplated that the appended claims will cover such modifications, alternatives, and equivalents that fall within the true spirit and scope of the invention.