This application is a continuation of application Ser. No. 11/783,862 filed on Apr. 12, 2007.
The present invention relates to a breakaway utility pole, such as a highway light standard, which is embeddable, i.e., which can be embedded below ground.
There are numerous ways of mounting utility poles such as highway light standards. For example, the lower end of the pole can be bolted above ground to a foundation structure that is embedded in the ground.
Alternatively, the pole itself can be embedded. For example, U.S. Pat. No. 4,920,715 discloses a fiberglass pole whose lower end extends below ground and is attached by an adhesive bond within an embedded sleeve, which is embedded either directly within the soil or within embedded concrete. The pole is of the breakaway type in that the adhesive bond can be broken in response to the pole being subjected to a vehicular impact of predetermined magnitude, enabling the pole to be pulled from the sleeve by the impact.
One problem with fiberglass poles is that they are susceptible to deterioration by UV radiation and thus must be covered by a UV-resistant coating. However, if such a coating is damaged, e.g., when struck by lawnmowers or other objects, UV radiation can contact and cause deterioration of the epoxy component of the fiberglass.
It would be desirable to provide a novel breakaway utility pole of the embeddable type, especially a breakaway embeddable pole which avoids the above described shortcomings associated with fiberglass poles.
The objects and advantages of the invention will become apparent from the following detailed description of preferred embodiments thereof in connection with the accompanying drawing in which like numerals designate like elements.
Depicted in
First Embodiment
A first embodiment of an embeddable breakaway utility pole 20 is depicted in
A circumferential recess 24 is formed at the top end of an exterior face of the lower pole piece for defining therein an axial guide surface 26 and a radial support surface 25. The bottom end of the upper pole piece is seated in the recess and is axially guided by the axial guide surface, wherein exterior faces 27, 29 of the upper and lower pole pieces are substantially flush with one another. A weld 28 extends circumferentially around the exterior faces 27, 29 of the upper and lower pole pieces to form a breakaway joint between those pole pieces.
The bottom end of the upper pole piece is spaced slightly above the radial support surface 25 to form an axial gap therebetween, and the weld 28 preferably comprises a groove weld projecting radially through the gap to connect with the guide surface 26 of the recess 24. The groove weld is provided with a fillet reinforcement 28a.
The pole pieces are formed of suitable materials, preferably a suitable aluminum material, such as aluminum alloy 6063-T6.
In practice, the utility pole 20 would be mounted by embedding the lower pole piece 22L in the ground, e.g., directly within the soil or within embedded concrete as shown in
Second Embodiment
A second embodiment of an embeddable breakaway utility pole 30 is shown in
A weld 38 extends circumferentially around the exterior faces of the upper and lower pole pieces to form a breakaway joint between the upper and lower pole pieces. The bottom end of the upper pole piece is spaced slightly above the top end of the lower pole piece to form a gap therebetween through which the weld 38 extends and becomes joined to the backer ring 34.
The pole pieces 32U, 32L and the backer ring are formed of suitable materials, preferably a suitable aluminum material, such as aluminum alloy 6063-T6. The weld preferably comprises a groove weld with a fillet reinforcement 38a.
In practice, the utility pole 30 would be mounted by embedding the lower pole piece 32L in the ground, e.g., directly within the soil or within embedded concrete as shown in
Third Embodiment
A third embodiment of an embeddable breakaway utility pole 40 is shown in
The backer ring 44 includes an annular projection 44c extending radially outwardly from the cylindrical outer surface 44a of the backer ring at a location axially between top and bottom ends of the backer ring. The projection projects radially through an axial gap formed between the upper and lower pole pieces. The projection 44c includes upper and lower ends spaced from the bottom end of the upper pole piece and the top end of the lower pole piece, respectively.
The weld 48 comprises upper and lower annular weld portions 48U, 48L. The upper weld portion 48U extends radially through the gap between the upper end of the projection and the bottom end of the upper pole piece. The lower weld portion 48L extends radially through the gap between the top end of the lower pole piece and the lower end of the projection. The weld portions are thus joined to the projection 44c and to the cylindrical outer surface 44a of the backer plate.
The pole pieces 42U, 42L are formed of suitable materials, preferably a suitable aluminum material, such as aluminum alloy 6063-T6, and the backer ring are formed of suitable materials, preferably an aluminum casting (e.g., aluminum alloy 356-T6). Each weld portion preferably comprises a groove weld with a fillet reinforcement.
In practice, the utility pole 40 would be mounted by embedding the lower pole piece 42L in the ground, e.g., directly within the soil or within embedded concrete as shown in
Fourth Embodiment
A fourth embodiment of an embeddable breakaway utility pole 50 is depicted in
A method of making the embeddable utility pole 50 comprises forming a circumferential weld around an aluminum pole piece between top and bottom ends thereof at a first temper, e.g., T-4 temper, and then heating the pole at a second temper, e.g., T-6 temper, which is harder than the first temper. Such welding and heating of an aluminum pole piece serves to weaken the pole piece, e.g. by about 15%, thus defining a weakened circumferential breakaway zone therein which can be designed strong enough to withstand anticipated wind forces and to break in response to a vehicular impact of predetermined magnitude.
The pole 50 is formed of suitable materials, preferably aluminum alloy 6063-T6, and the welding forms a reinforcing bead 58a.
In practice, the utility pole 50 would be mounted by embedding the lower end thereof in the ground, e.g., directly within the soil or within embedded concrete as shown in
Fifth Embodiment
A fifth embodiment of an embeddable breakaway utility pole 60 is shown in
The outer diameter OD of the plate 64 is greater than respective outer diameters of the upper and lower pole pieces, and the inner diameter ID of the plate is less than respective inner diameters of the upper and lower pole pieces. The weld 68 comprises upper and lower weld portions 68U, 68L. The upper weld portion 68U is disposed between an upper end of the plate and an exterior face of the upper pole piece. The lower weld portion 68L is disposed between a lower end of the plate 64 and an exterior face of the lower pole piece.
The pole pieces 62U, 62L are formed of suitable materials, preferably a suitable aluminum material, such as aluminum alloy 6063-T6, and the plate 64 can also be formed of aluminum, e.g., aluminum alloy 6061-T6.
In practice, the utility pole 60 would be mounted by embedding the lower pole piece 62L in the ground, e.g., directly within the soil or within embedded concrete as shown in
Although the present invention has been described in connection with preferred embodiments thereof, it will be appreciated by those skilled in the art that additions, deletions, modifications, and substitutions not specifically described may be made without departing from the spirit and scope of the invention as defined in the appended claims.
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Number | Date | Country | |
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20100281786 A1 | Nov 2010 | US |
Number | Date | Country | |
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Parent | 11783862 | Apr 2007 | US |
Child | 12838258 | US |