ASSEMBLED UTILITY POLE, POLE BUILDING METHOD AND REBUILDING METHOD
20240151058 ยท 2024-05-09
Assignee
Inventors
- Tatsuya MOKI (Musashino-shi, Tokyo, JP)
- Kenji INOUE (Musashino-shi, Tokyo, JP)
- Hidenobu HIROTA (Musashino-shi, Tokyo, JP)
- Yoshiyasu SATO (Musashino-shi, Tokyo, JP)
Cpc classification
E04H12/34
FIXED CONSTRUCTIONS
International classification
Abstract
An object of the present invention is to provide a utility pole and a method for constructing the utility pole, which can simplify and improve efficiency of work at the time of new construction and replacement and can shorten a work period.
The anchor has a larger diameter than a body of a utility pole on the ground and has higher ground support force. Thus, the hole for building the assembly type utility pole on the ground can be made shallower than the hole for building the utility pole in related art on the ground. The depth of the hole is shallow, so that it is possible to reduce a period for digging, reduce a probability of hitting a buried object, and reduce work for confirming a buried object. In addition, the assembly type utility pole includes a plurality of parts, and thus, only a degraded portion needs to be replaced, so that it is possible to shorten replacement work. Further, the assembly type utility pole includes a plurality of parts, and thus, each part is smaller than that of the utility pole in related art, so that it is possible to simplify work.
Claims
1. An assembly type utility pole comprising: a pole; and an anchor that is a substantially cylindrical object having a diameter larger than a diameter of the pole and has a hole into which one end of the pole is fitted, wherein the pole and the anchor become coaxial when the one end of the pole is fitted into the hole of the anchor.
2. The assembly type utility pole according to claim 1, wherein the anchor has an earth auger on a surface thereof.
3. The assembly type utility pole according to claim 1, wherein the pole can be divided into at least two portions in a longitudinal direction.
4. The assembly type utility pole according to claim 1, further comprising: a lock member that fills a gap between the pole and the hole, the gap being generated when the one end of the pole is fitted into the hole of the anchor.
5. A method for constructing a utility pole, comprising: burying an anchor of a substantially cylindrical object having a diameter larger than a diameter of a pole in a ground such that one end of a bottom surface of the substantially cylindrical object substantially matches a ground surface; and fitting one end of the pole into a hole of the anchor in which the pole and the anchor are coaxial.
6. The method for constructing the utility pole according to claim 5, wherein when the anchor is buried in the ground, the anchor is rotated in an axial direction, and the ground is dug with an earth auger installed on a surface of the anchor.
7. The method for constructing the utility pole according to claim 5, wherein when the pole is divided into two or more portions in the longitudinal direction, stacking another divided pole on the other end of the pole after one end of the pole is fitted into the hole.
8. A method for replacing an assembly type utility pole that comprises: a pole that can be divided into two or more portions in a longitudinal direction; an anchor that is a substantially cylindrical object having a diameter larger than a diameter of the pole and is buried in a ground such that one end of a bottom surface of the substantially cylindrical object substantially matches a ground surface, in which one end of the pole is fitted into a hole of the anchor in which the pole and the anchor are coaxial, the method comprising: dividing the pole; lifting up an upper portion of the divided pole; removing a lower portion of the divided pole from the anchor; fitting one end of a lower portion of a new pole into the hole of the anchor; and connecting one end of an upper portion of the pole that is being lifted to the other end of the lower portion of the new pole.
Description
BRIEF DESCRIPTION OF DRAWINGS
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DESCRIPTION OF EMBODIMENTS
[0080] An embodiment of the present invention will be described with reference to the accompanying drawings. The embodiment described below is an example of the present invention, and the present invention is not limited to the following embodiment. Note that components having the same reference numerals in the present specification and the drawings indicate the same components.
[0081]
[0082] Here, the pole 11 can be divided into at least two portions in a longitudinal direction (portions 11-1 and 11-2). Further, the anchor 12 has an earth auger 12b on a surface thereof. The assembly type utility pole further includes a lock member 13 that fills a gap between the pole 11 and the hole 12a, which is generated when one end of the pole 11 is fitted into the hole 12a of the anchor 12.
[0083] As in the example of
[0084] The anchor 12 is a structure to be buried in the ground. The anchor 12 has a plurality of blades (earth augers) 12b on the surface.
[0085] Further, the anchor 12 is provided with a hole 12a in advance at the center. The hole 12a is a hole for accommodating the pole 11.
[0086] Then, as illustrated in
[0087] A convex portion 11a is provided at the other end (opposite anchor side) of the portion 11-2. In addition, a concave portion 11b to be fitted with the convex portion 11a is provided at one end (anchor side) of the portion 11-1. The portion 11-2 and the portion 11-1 are connected by fitting the convex portion 11a and the concave portion 11b. In this way, as illustrated in
[0088] [Expected Effects]
[0089] Solution of the above-described three problems by the above-described assembly type utility pole will be described.
[0090] (Solution to Problem 1)
[0091] The anchor 12 has a structure having a larger diameter in the lateral direction than a buried portion of a utility pole in related art. Thus, ground supporting force is high, and thus, there is an advantage that a distance (depth) for digging a hole is shorter than before. In other words, the depth of the hole is reduced. Even if an inspection is performed visually, the distance for digging is reduced, so that the work period of a step of confirming the buried object can be shortened in the present assembly type utility pole.
[0092] (Solution to Problem 2)
[0093] Concrete and steel are mainly used as materials of the utility pole. The main cause of degradation is corrosion due to reaction with moisture and oxygen, and thus, the most of sites where degradation occurs are at the ground, which is a boundary between the ground and the utility pole. However, in a case of a utility pole in related art, in a case where degradation occurs in the utility pole, the whole utility pole is replaced.
[0094] On the other hand, in the method for replacing the assembly type utility pole, only a portion that degrades can be replaced.
[0100] In
[0104] In the method in related art described with reference to
[0105] On the other hand, in the present replacement method, only the lower portion 11-2 of the utility pole and the lock member 13, which are expected to degrade, are replaced. The upper portion 11-1 of the utility pole and the lower portion 11-2 of the utility pole have a fitting structure. Thus, the upper portion 11-1 of the utility pole and the lower portion 11-2 of the utility pole can be separated from each other by lifting up the upper portion 11-1 of the utility pole and the cable attached thereto with a crane.
[0106] The anchor 12 and the lower portion 11-2 of the utility pole also have a fitting structure. Thus, while the upper portion 11-1 of the utility pole is lifted, the lower portion 11-2 of the utility pole can be replaced with the lower portion 11-2a of the new utility pole without excavating work. When the replacement of the lower portion 11-2 of the utility pole and the lock member 13 is completed, the upper portion 11-1 of the utility pole being lifted is fitted into the lower portion 11-2a of the new utility pole, whereby the replacement work is completed.
[0107] With this replacement method, the number of working days required for up to six days can be reduced to one day. In addition, cable work does not occur, and thus, work can be completed only by the utility pole work group. Further, it is not necessary to perform the excavation work in association with the replacement work. This can also reduce the work period. Furthermore, partial replacement is possible, so that an amount of building materials to be used can be reduced, which is efficient, and burden on the environment is also small.
[0108] (Solution to Problem 3)
[0109]
[0113] Here, in the present method for constructing the pole, in step S11 of burying the anchor 12 in the ground, the anchor 12 is rotated in the axial direction, and the ground is dug with an earth auger installed on the surface of the anchor 12.
[0114] In
[0118] The utility pole has a length of about 8.0 to 18 m and is built in a hole by heavy equipment and a human. In the method in related art of
[0119] In the present construction method, first, work of digging a hole (excavation step) is similar to the method in related art, but the anchor 12 has a structure that is larger (thicker), in the lateral direction, than the buried portion of the utility pole in related art, and the ground support force is high, so that the distance (depth) for digging a hole is shorter than that in the method in related art. This can shorten the work period. In particular, for a utility pole of about 8.0 to 9.0 m to which only a communication line is attached, about 1.5 m, which is ? of the length of the utility pole, is required to be placed in the ground in the method in related art. On the other hand, in the present construction method, the distance (depth) by which the hole is dug by the anchor 12 is shortened, so that the amount of digging work by hand can be reduced, which is efficient.
[0120] The anchor installation step is performed after the excavation is completed to the target depth. The anchor 12 is installed by being attached to the tip of a pole construction track and buried with rotation of the earth auger. In this event, the anchor 12 enters the ground by pushing and expanding a hole dug in advance in such a manner as to drive a screw into a tree, and thus, backfilling and compaction are unnecessary.
[0121] Thereafter, a lifting step of lifting the lower portion 11-2 of the utility pole and fitting the lower portion 11-2 into the anchor 12 is performed using a crane, or the like. The lower portion 11-2 of the utility pole is shorter than that of the utility pole in related art. For this reason, a risk of coming into contact with an obstacle is low, and handling is easy, so that it is possible to move to a target position through a relatively simple path.
[0122] In a step of building a utility pole on the ground in related art, delicate vertical adjustment is required because an excavated hole is not leveled. On the other hand, in the present construction method, the hole 12a of the anchor 12 has a structure for fitting the lower portion 11-2 of the utility pole, and thus, vertical adjustment is unnecessary when the lower portion 11-2 of the utility pole is fitted to the anchor 12.
[0123] In the subsequent step of attaching the upper portion of the utility pole, the construction work is completed only by fitting the end of the upper portion 11-1 of the utility pole into the upper end of the lower portion 11-2 of the utility pole.
[0124] Thus, in the present construction method, it is possible to reduce the amount of excavation work, reduce backfilling and compaction work, improve handling performance of the utility pole, and reduce the vertical adjustment work, and thus, the work is efficient.
REFERENCE SIGNS LIST
[0125] 11 utility pole [0126] 11-1 upper portion of utility pole [0127] 11-2 lower portion of utility pole [0128] 12 anchor [0129] 12a hole [0130] 13 lock member [0131] 13a hole [0132] 13b spacer