JP2016089494A - Wire member support, and seismic strengthening method for electrified pole using the same - Google Patents

Wire member support, and seismic strengthening method for electrified pole using the same Download PDF

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JP2016089494A
JP2016089494A JP2014225798A JP2014225798A JP2016089494A JP 2016089494 A JP2016089494 A JP 2016089494A JP 2014225798 A JP2014225798 A JP 2014225798A JP 2014225798 A JP2014225798 A JP 2014225798A JP 2016089494 A JP2016089494 A JP 2016089494A
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wire member
member support
inner diameter
diameter portion
fluid
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JP6369986B2 (en
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小林 薫
Kaoru Kobayashi
薫 小林
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East Japan Railway Co
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Abstract

PROBLEM TO BE SOLVED: To provide a wire member support that enables a proper tension to be simply introduced into a wire member during execution of work.SOLUTION: A wire member support 100 according to the present invention has a longitudinal direction, and the plurality of wire member supports are attached to an electrified pole 50. A wire member 500 is laid across the wire member support 100. Its tip has a loop part 330 over which the wire member 500 is looped. An extension rod 310 extended in the longitudinal direction is provided.SELECTED DRAWING: Figure 6

Description

本発明は、電車線等の支持に用いられる電化柱の地震時の折損を防止するために用いるワイヤ部材支持具及びワイヤ部材支持具を用いた耐震補強方法に関する。   The present invention relates to a wire member support used to prevent breakage of an electric pole used for supporting a train line or the like during an earthquake, and a seismic reinforcement method using the wire member support.

電化柱は主として電車に電力を供給する給電線の支持に用いられて線路に沿って所定間隔で建植される。このような電化柱は、PC鋼線を配置した型枠内にコンクリートを流し込み、その状態で型枠を回転させてコンクリートを締め固め、所定の養生を行って円筒状のコンクリート製品として製造される。このような方法で製作されたコンクリートの性質として、水分が少なく緻密で高強度である反面、強度の限界を超えた瞬間に粉砕化する、いわゆる爆裂と言われる破壊挙動を示す。つまり、高強度であるがねばりが小さい(脆性)という特性である。   Electric poles are mainly used to support power supply lines that supply power to trains and are erected at predetermined intervals along the tracks. Such an electric pole is manufactured as a cylindrical concrete product by pouring concrete into a formwork in which PC steel wires are arranged, rotating the formwork in that state, compacting the concrete, and performing predetermined curing. . The concrete produced by such a method shows a fracture behavior called so-called explosion, which is pulverized at the moment when the limit of strength is exceeded, while it is dense and has high strength with little moisture. That is, it is a characteristic of high strength but small stickiness (brittleness).

このため、電化柱が地震の影響を受けて振動すると、限界変位に達した瞬間にコンクリートの爆裂が発生してコンクリートが粉砕化して折損し、最近の大きな地震で電化柱の被害が多く発生している。   For this reason, if an electric pole vibrates due to an earthquake, the concrete explosion will occur at the moment the critical displacement is reached, and the concrete will be crushed and broken. ing.

そこで、発明者は特許文献1(特開2013−117088号公報)において、基礎部(10)に建植した電化柱(20)の耐震補強方法において、電化柱の上端から下方にわたって適宜間隔で変位抑制用補強材(40,50)の支持部材(30)を配置固定し、変位抑制用補強材を各支持部材を通して取り付けて下端を基礎部に固定することで電化柱各部の変位を拘束するようにした電化柱の耐震補強方法を提案した。
特開2013−117088号公報
Therefore, the inventor disclosed in Patent Document 1 (Japanese Patent Application Laid-Open No. 2013-117088), in the seismic reinforcement method for the electric column (20) built on the foundation (10), is displaced at an appropriate interval from the upper end to the lower side of the electric column. The support members (30) of the restraining reinforcing members (40, 50) are arranged and fixed, and the displacement restraining reinforcing members are attached through the supporting members, and the lower ends are fixed to the base portion to restrain the displacement of each part of the electrification column. A seismic retrofitting method for electrified poles was proposed.
JP 2013-117088 A

従来の耐震補強方法においては、2つの支持部材(30)の間にわたされている変位抑制用補強材(40,50)であるワイヤ部材に適切な張力を導入することが施工上重要となってくる。しかしながら、施工上緩んだ状態でワイヤ部材を設置しないように、ワイヤ部材に適切な張力を導入するために適切な支持具については、これまで提案されておらず、問題であった。   In the conventional seismic reinforcement method, it is important in construction to introduce an appropriate tension to the wire member which is the displacement suppressing reinforcement member (40, 50) passed between the two support members (30). Come. However, an appropriate support for introducing an appropriate tension to the wire member so as not to install the wire member in a loose state in construction has been a problem because it has not been proposed so far.

上記問題点を解決するために、本発明に係るワイヤ部材支持具は、長手方向を有し、電化柱に複数取り付けられると共に、ワイヤ部材が架けわたされるワイヤ部材支持具であって、前記ワイヤ部材が架けられるループ部を先端に有し、前記長手方向に延出する延出棹が設けられることを特徴とする。   In order to solve the above-described problems, a wire member support according to the present invention is a wire member support having a longitudinal direction and being attached to a plurality of electrification pillars and having a wire member bridged over the wire member support. It is characterized by having a loop portion on which the wire is hung at the tip, and an extending rod extending in the longitudinal direction.

また、本発明に係るワイヤ部材支持具は、前記長手方向における前記ループ部の他端側には、底面部が設けられており、前記底面部に塗布される接着材又は粘着材により、前記電化柱に取り付けられることを特徴とする。   Further, the wire member support according to the present invention has a bottom surface portion provided on the other end side of the loop portion in the longitudinal direction, and the electrification is performed by an adhesive or an adhesive applied to the bottom surface portion. It is attached to a pillar.

また、本発明に係るワイヤ部材支持具は、前記底面部に立設される外筒部を有し、前記外筒部には、第1の内径を有する第1内径部と、前記第1の内径より小さい第2の内径を有する第2内径部と、が設けられることを特徴とする。   Further, the wire member support according to the present invention has an outer cylinder portion standing on the bottom surface portion, and the outer cylinder portion includes a first inner diameter portion having a first inner diameter, and the first And a second inner diameter portion having a second inner diameter smaller than the inner diameter.

また、本発明に係るワイヤ部材支持具は、前記延出棹の前記ループ部が設けられていな
い端部には拡径部を有しており、前記第1内径部に、前記拡径部が内嵌されることを特徴とする。
Further, the wire member support according to the present invention has an enlarged diameter portion at an end portion of the extended rod where the loop portion is not provided, and the enlarged diameter portion is provided at the first inner diameter portion. It is fitted inside.

また、本発明に係るワイヤ部材支持具は、前記延出棹と前記第2内径部とには貫通孔が設けられ、それぞれの貫通孔に共通のピン部材が挿通されることを特徴とする。   The wire member support according to the present invention is characterized in that a through hole is provided in the extension rod and the second inner diameter portion, and a common pin member is inserted into each through hole.

また、本発明に係るワイヤ部材支持具は、前記第1内径部に、バネ部材が配されることを特徴とする。   The wire member support according to the present invention is characterized in that a spring member is disposed on the first inner diameter portion.

また、本発明に係るワイヤ部材支持具は、前記外筒部の内部に流体を導入する導入孔が、前記第1内径部に配されることを特徴とする。   The wire member support according to the present invention is characterized in that an introduction hole for introducing a fluid into the inside of the outer cylinder portion is arranged in the first inner diameter portion.

また、本発明に係るワイヤ部材支持具は、前記第1内径部に、バネ部材が配されると共に、前記外筒部の内部に流体を導入する導入孔が、前記第1内径部に配されることを特徴とする。   In the wire member support according to the present invention, a spring member is disposed in the first inner diameter portion, and an introduction hole for introducing a fluid into the outer cylinder portion is disposed in the first inner diameter portion. It is characterized by that.

また、本発明に係るワイヤ部材支持具は、前記外筒部の内部に導入する流体の流量制御を行うバルブ部が設けられることを特徴とする。   In addition, the wire member support according to the present invention is characterized in that a valve portion for controlling the flow rate of the fluid introduced into the outer cylinder portion is provided.

また、本発明に係るワイヤ部材支持具は、前記流体が、グラウトであることを特徴とする。   The wire member support according to the present invention is characterized in that the fluid is grout.

また、本発明に係るワイヤ部材支持具は、前記流体が、ガスであることを特徴とする。   In the wire member support according to the present invention, the fluid is a gas.

また、本発明に係るワイヤ部材支持具は、前記流体が、オイルであることを特徴とする。   The wire member support according to the present invention is characterized in that the fluid is oil.

また、本発明に係るワイヤ部材支持具は、円柱状の電化柱に複数取り付けられると共に、ワイヤ部材が架けわたされるワイヤ部材支持具であって、前記ワイヤ部材が架けられるループ部と、前記ループ部を、前記電化柱に対して、ネジの回転を利用した伸縮機構と、を有することを特徴とする。   Further, the wire member support according to the present invention is a wire member support that is attached to a plurality of cylindrical electric poles and on which a wire member is hung, and a loop portion on which the wire member is hung, and the loop portion And an expansion / contraction mechanism using rotation of a screw with respect to the electric pole.

また、本発明に係る耐震補強方法は、前記のいずれかに記載のワイヤ部材支持具を用いて、前記ワイヤ部材に張力をかけ、電化柱の耐震補強を行うことを特徴とする。   Moreover, the seismic reinforcement method according to the present invention is characterized in that the wire member support tool according to any one of the above is used to apply tension to the wire member to perform seismic reinforcement of the electrified column.

本発明に係るワイヤ部材支持具は、前記ワイヤ部材が架けられるループ部を先端に有し、前記長手方向に延出する延出棹が設けられており、このような本発明に係るワイヤ部材支持具によれば、施工時において、施工上緩んだ状態でワイヤ部材を設置しないように、ワイヤ部材に簡便に適切な張力を導入することが可能となる。   The wire member support according to the present invention has a loop portion around which the wire member is hung at the tip, and is provided with an extension rod extending in the longitudinal direction. Such a wire member support according to the present invention is provided. According to the tool, it is possible to easily introduce appropriate tension to the wire member so that the wire member is not installed in a loose state during construction.

また、本発明に係るワイヤ部材支持具を用いた耐震補強方法によれば、電化柱の耐震補強工事の施工を簡便かつ短時間で行うことが可能となる。   Moreover, according to the seismic reinforcement method using the wire member support according to the present invention, it is possible to perform the seismic reinforcement work for the electrified columns easily and in a short time.

本発明の実施形態に係るワイヤ部材支持具100を用いて耐震補強が行われた電化柱50の正面図である。It is a front view of the electrification pillar 50 by which the earthquake-proof reinforcement was performed using the wire member support tool 100 which concerns on embodiment of this invention. 本発明の実施形態に係るワイヤ部材支持具100を用いて耐震補強が行われた電化柱50の斜視図である。It is a perspective view of the electrification pillar 50 by which earthquake-proof reinforcement was performed using the wire member support tool 100 which concerns on embodiment of this invention. 本発明の実施形態に係るワイヤ部材支持具100を構成する主要部品を説明する図である。It is a figure explaining the main components which comprise the wire member support tool 100 which concerns on embodiment of this invention. 本発明の実施形態に係るワイヤ部材支持具100の基本構成を説明する図である。It is a figure explaining the basic composition of wire member support tool 100 concerning the embodiment of the present invention. 本発明の実施形態に係るワイヤ部材支持具100によってワイヤ部材500に張力を導入する過程を説明する図である。It is a figure explaining the process in which tension | tensile_strength is introduced into the wire member 500 with the wire member support tool 100 which concerns on embodiment of this invention. 本発明の実施形態に係るワイヤ部材支持具100によってワイヤ部材500に張力を導入する過程を説明する図である。It is a figure explaining the process in which tension | tensile_strength is introduced into the wire member 500 with the wire member support tool 100 which concerns on embodiment of this invention. 本発明の他の実施形態に係るワイヤ部材支持具100によってワイヤ部材500に張力を導入する過程を説明する図である。It is a figure explaining the process in which tension | tensile_strength is introduced into the wire member 500 with the wire member support tool 100 which concerns on other embodiment of this invention. 本発明の他の実施形態に係るワイヤ部材支持具100によってワイヤ部材500に張力を導入する過程を説明する図である。It is a figure explaining the process in which tension | tensile_strength is introduced into the wire member 500 with the wire member support tool 100 which concerns on other embodiment of this invention. 本発明の他の実施形態に係るワイヤ部材支持具100によってワイヤ部材500に張力を導入する過程を説明する図である。It is a figure explaining the process in which tension | tensile_strength is introduced into the wire member 500 with the wire member support tool 100 which concerns on other embodiment of this invention. 本発明の他の実施形態に係るワイヤ部材支持具100によってワイヤ部材500に張力を導入する過程を説明する図である。It is a figure explaining the process in which tension | tensile_strength is introduced into the wire member 500 with the wire member support tool 100 which concerns on other embodiment of this invention. 本発明の他の実施形態に係るワイヤ部材支持具100によってワイヤ部材500に張力を導入する過程を説明する図である。It is a figure explaining the process in which tension | tensile_strength is introduced into the wire member 500 with the wire member support tool 100 which concerns on other embodiment of this invention. 本発明の他の実施形態に係るワイヤ部材支持具100によってワイヤ部材500に張力を導入する過程を説明する図である。It is a figure explaining the process in which tension | tensile_strength is introduced into the wire member 500 with the wire member support tool 100 which concerns on other embodiment of this invention. 本発明の他の実施形態に係るワイヤ部材支持具100によってワイヤ部材500に張力を導入する過程を説明する図である。It is a figure explaining the process in which tension | tensile_strength is introduced into the wire member 500 with the wire member support tool 100 which concerns on other embodiment of this invention. 本発明の他の実施形態に係るワイヤ部材支持具100によってワイヤ部材500に張力を導入する過程を説明する図である。It is a figure explaining the process in which tension | tensile_strength is introduced into the wire member 500 with the wire member support tool 100 which concerns on other embodiment of this invention.

以下、本発明の実施の形態を図面を参照しつつ説明する。なお、本明細書においては、特許文献1(特開2013−117088号公報)に開示されている全ての技術的事項を参照して援用するものである。   Hereinafter, embodiments of the present invention will be described with reference to the drawings. In addition, in this specification, it refers to all the technical matters currently disclosed by patent document 1 (Unexamined-Japanese-Patent No. 2013-1117088), and uses it.

図1は本発明の実施形態に係るワイヤ部材支持具100を用いて耐震補強が行われた電化柱50の正面図であり、図2は本発明の実施形態に係るワイヤ部材支持具100を用いて耐震補強が行われた電化柱50の斜視図である。   FIG. 1 is a front view of an electric pole 50 subjected to seismic reinforcement using a wire member support 100 according to an embodiment of the present invention, and FIG. 2 uses the wire member support 100 according to an embodiment of the present invention. It is a perspective view of the electrification pillar 50 by which anti-seismic reinforcement was performed.

なお、図1及び図2には、図面が煩雑となることを避けるために、図示している耐震補強構造に対して、電化柱50の仮想的な中心軸を中心として対称関係にある耐震補強構造については図示していない。   In FIG. 1 and FIG. 2, in order to avoid complication of the drawings, the seismic reinforcement that is symmetrical with respect to the hypothetical center axis of the electrification column 50 with respect to the illustrated seismic reinforcement structure. The structure is not shown.

電化柱50は地震により揺れて変形したとき、限界変形量に達した瞬間に折損する。そこで、地震による電化柱50の折損を防止するためには、高架橋等の基礎部30が振動しても電化柱50自身の揺れを可能な限り止めて限界変位に達しないようにすればよい。そのために本実施形態では、基礎部30の地震時変形量を拘束するための耐震補強構造を配置する。   When the electric pole 50 is deformed by shaking due to an earthquake, it breaks at the moment when the limit deformation amount is reached. Therefore, in order to prevent the electric pole 50 from being broken due to an earthquake, even if the foundation 30 such as a viaduct vibrates, the electric pole 50 itself may be prevented from shaking as much as possible so as not to reach the limit displacement. Therefore, in this embodiment, the earthquake-proof reinforcement structure for restraining the deformation amount of the foundation part 30 at the time of an earthquake is arrange | positioned.

図1において、基礎部30に建植した電化柱50には上端部から下部に渡って適宜間隔で複数箇所にワイヤ部材支持具100を取り付ける。ワイヤ部材支持具100の設置間隔は、作用する加速度や変位の大きい下端部や上端部では狭く、中間部は広くするなど適宜設定する。   In FIG. 1, wire member support tools 100 are attached to a plurality of places at appropriate intervals from the upper end to the lower part of the electric pole 50 built on the foundation 30. The installation interval of the wire member support 100 is set as appropriate, such as narrowing at the lower end and upper end where the applied acceleration and displacement are large and widening the middle.

ワイヤ部材支持具100は、例えば、向かい合った一対の半円弧状バンドの一端同士が蝶番結合され、各半円弧状バンド自由端をボルト締めできる部材(不図示)を電化柱50
に固定して支持金具を取り付けるなどして構成する。或いは、ワイヤ部材支持具100の底面部に接着材又は粘着材を塗布して、これにより、電化柱50に取り付けられるようにしてもよい。
In the wire member support 100, for example, one end of a pair of semicircular arc bands facing each other is hinge-coupled, and a member (not shown) that can bolt each semicircular arc band free end is electrified column 50.
It is configured by fixing it to the support bracket and attaching it. Or you may make it attach to the electrification pillar 50 by apply | coating an adhesive material or an adhesive material to the bottom face part of the wire member support tool 100 by this.

電化柱50の上端部のワイヤ部材支持具100の支持金具に、変位抑制用としての鋼材、鋼線、合成繊維などからなるワイヤ部材500の一端を相互に対称な位置に取り付け、電化柱50を相互に対称的に螺旋状に巻回してワイヤ部材支持具100の支持金具に取り付けて電化柱50の下端まで巻回し、端部を基礎部30に設けられたアンカー部70に固定する。なお、図1、図2には、図示されている耐震補強構造と、電化柱50の仮想的な中心軸を中心として対称関係にある耐震補強構造については図示していない。   One end of a wire member 500 made of steel material, steel wire, synthetic fiber or the like for displacement suppression is attached to a support metal fitting of the wire member support 100 at the upper end of the electric pole 50 at a symmetrical position. They are wound symmetrically and spirally, attached to the support fitting of the wire member support tool 100 and wound to the lower end of the electrification column 50, and the end portion is fixed to the anchor portion 70 provided on the base portion 30. 1 and 2 do not show the seismic reinforcing structure shown in FIG. 1 and the seismic reinforcing structure that is symmetrical with respect to the virtual central axis of the electric pole 50.

このように螺旋状にワイヤ部材500を巻き付けることで、どのような方向から電化柱50に大きな加速度が作用しても、各ワイヤ部材支持具100間に張られたワイヤ部材500により電化柱50各部の変位が拘束されるため折損を生ずる限界変位以内に抑えることができる。   By winding the wire member 500 in a spiral manner in this way, no matter what direction the electric column 50 is subjected to a large acceleration, each portion of the electric column 50 is stretched by the wire member 500 stretched between the wire member supports 100. Therefore, the displacement can be suppressed within a limit displacement that causes breakage.

なお、ワイヤ部材500は必ずしも2本でなくて1本でもよい。また、さらに本数を増やして螺旋状に巻回してもよく、また、必ずしも螺旋状に巻回しなくても、例えば3本のワイヤ部材を120°間隔、或いは4本のワイヤ部材を90°間隔というように所定の角度間隔で複数本のワイヤ部材を電化柱50の上端から下端まで直線状に各ワイヤ部材支持具100に取り付けて基礎部30に固定することで、どのような方向から電化柱50に加速度が作用しても変位を拘束することが可能である。電化柱50の変位を拘束することで、電化柱50基礎への影響も軽減するので、電化柱50基礎の損傷防止にも有効となる。   Note that the number of wire members 500 is not necessarily two but may be one. Further, the number of wires may be further increased to be spirally wound, and for example, three wire members may be called 120 ° intervals or four wire members may be called 90 ° intervals without necessarily being spirally wound. Thus, by attaching a plurality of wire members to each wire member support tool 100 linearly from the upper end to the lower end of the electric pole 50 at a predetermined angular interval and fixing them to the base portion 30, the electric pole 50 from any direction It is possible to restrain the displacement even if acceleration acts on the. By constraining the displacement of the electric pole 50, the influence on the base of the electric pole 50 is also reduced, which is effective in preventing damage to the base of the electric pole 50.

以上のような耐震補強方法においては、2つのワイヤ部材支持具100の間にわたされている変位抑制用補強材であるワイヤ部材500に適切な張力を導入することが施工上重要となってくる。そこで、ワイヤ部材500に適切な張力を導入するために好適な、本発明に係るワイヤ部材支持具100について、以下説明する。   In the seismic reinforcement method as described above, it is important in terms of construction to introduce an appropriate tension to the wire member 500, which is a displacement suppression reinforcing material passed between the two wire member supports 100. . Therefore, the wire member support 100 according to the present invention, which is suitable for introducing an appropriate tension to the wire member 500, will be described below.

図3は本発明の実施形態に係るワイヤ部材支持具100を構成する主要部品を説明する図であり、図3(A)は外筒部材200を示す図であり、図3(B)は延出部材300を示す図である。また、図4は、外筒部材200と延出部材300と組み合わせた、本発明の実施形態に係るワイヤ部材支持具100の基本構成を説明する図である。   3A and 3B are views for explaining main parts constituting the wire member support 100 according to the embodiment of the present invention. FIG. 3A is a view showing the outer cylinder member 200, and FIG. FIG. Moreover, FIG. 4 is a figure explaining the basic composition of the wire member support tool 100 which concerns on embodiment of this invention combined with the outer cylinder member 200 and the extending member 300. FIG.

外筒部材200は、略円筒状の部材であり、例えば、ステンレス鋼材などにより構成することができる。略円筒状の外筒部材200の仮想の中心軸方向を、ワイヤ部材支持具100の長手方向として定義する。このようなワイヤ部材支持具100は、円柱状の電化柱50の中心軸に対して、垂直方向に前記長手方向が延在するようにして、電化柱50に取り付けられることとなる。   The outer cylinder member 200 is a substantially cylindrical member, and can be formed of, for example, a stainless steel material. The virtual central axis direction of the substantially cylindrical outer cylinder member 200 is defined as the longitudinal direction of the wire member support tool 100. Such a wire member support tool 100 is attached to the electric column 50 such that the longitudinal direction extends in a direction perpendicular to the central axis of the columnar electric column 50.

底面部205からは、円筒状の外筒部210が立設するようになっている。底面部205は、ワイヤ部材支持具100を電化柱50に取り付ける際の接着剤、粘着材の塗布部として利用することができる。なお、底面部205に塗布する接着剤としては、エポキシ樹脂系やアクリル樹脂系のものを用いることができるし、また、粘着剤としては、ゴム系、アクリル系、ホットメルト系、シリコーン系のものを用いることができる。   A cylindrical outer tube portion 210 is erected from the bottom surface portion 205. The bottom surface portion 205 can be used as an application portion for an adhesive or a pressure-sensitive adhesive when the wire member support tool 100 is attached to the electric pole 50. In addition, as an adhesive applied to the bottom face portion 205, an epoxy resin-based or acrylic resin-based adhesive can be used, and as an adhesive, a rubber-based, acrylic-based, hot-melt-based, or silicone-based adhesive is used. Can be used.

外筒部210には、第1の内径(φ1)を有する第1内径部211と、前記第1の内径
(φ1)より小さい第2の内径(φ2)を有する第2内径部212と、が設けられている。ワイヤ部材支持具100の完成時においては、図4に示すように、外筒部210の第1内径部211には、延出部材300の拡径部320が内嵌され、第2内径部212には、延
出部材300の延出棹310が挿通された状態とされる。
The outer tubular portion 210, a first inner diameter portion 211 having a first inner diameter (phi 1), second inner diameter portion 212 having a first inner diameter (phi 1) smaller than the first inner diameter (phi 2) And are provided. When the wire member support tool 100 is completed, as shown in FIG. 4, the first inner diameter portion 211 of the outer tube portion 210 is fitted with the enlarged diameter portion 320 of the extending member 300, and the second inner diameter portion 212. In this state, the extension rod 310 of the extension member 300 is inserted.

また、外筒部210の第2内径部212には、ピン部材400が挿通可能な貫通孔213が設けられている。   The second inner diameter portion 212 of the outer cylinder portion 210 is provided with a through hole 213 through which the pin member 400 can be inserted.

延出部材300は、延出棹310と、延出棹310の一方の端部に設けられているループ部330と、延出棹310の他方の端部に設けられている拡径部320とから構成されている。拡径部320は、第1の内径(φ1)より若干小さい外径を有しており、外筒部
210の第1内径部211を、紙面左右方向に動作可能とされている。これにより、延出棹310が、外筒部210が外筒部210に収納されたり、突出されたりすることが可能となる。
The extension member 300 includes an extension rod 310, a loop portion 330 provided at one end portion of the extension rod 310, and an enlarged diameter portion 320 provided at the other end portion of the extension rod 310. It is composed of The enlarged diameter portion 320 has an outer diameter slightly smaller than the first inner diameter (φ 1 ), and the first inner diameter portion 211 of the outer cylinder portion 210 can be operated in the left-right direction on the paper surface. As a result, the extension rod 310 allows the outer cylinder portion 210 to be accommodated in or protruded from the outer cylinder portion 210.

延出棹310の外径と第2内径部212の第2の内径(φ2)との関係は、延出棹31
0が摺動可能であり、かつ、延出棹310と第2内径部212との間が高いシール性を有するように設定する。なお、延出棹310と第2内径部212との間には、必要に応じてOリングなどを設けるようにしてもよい。
The relationship between the outer diameter of the extension rod 310 and the second inner diameter (φ 2 ) of the second inner diameter portion 212 is as follows.
It is set so that 0 is slidable and a high sealing property is provided between the extension rod 310 and the second inner diameter portion 212. In addition, you may make it provide an O-ring etc. between the extension rod 310 and the 2nd internal diameter part 212 as needed.

また、延出棹310には、ピン部材400が挿通可能な貫通孔313が設けられている。   Further, the extension rod 310 is provided with a through hole 313 into which the pin member 400 can be inserted.

延出部材300におけるループ部330には、ワイヤ部材500が巻きかけられたり、ワイヤ部材500が固着、取り付けされたりすることが想定されている。   It is assumed that the wire member 500 is wound around the loop portion 330 of the extending member 300 or the wire member 500 is fixed and attached.

次に、以上のような基本構成を有する本発明に係るワイヤ部材支持具100によって、ワイヤ部材500に張力を導入するための構成を説明する。   Next, a configuration for introducing tension to the wire member 500 by the wire member support 100 according to the present invention having the above basic configuration will be described.

図5及び図6は本発明の実施形態に係るワイヤ部材支持具100によってワイヤ部材500に張力を導入する過程を説明する図である。   5 and 6 are diagrams illustrating a process of introducing tension to the wire member 500 by the wire member support 100 according to the embodiment of the present invention.

本実施形態に係るワイヤ部材支持具100の初期状態においては、バネ部材250が圧縮された状態で、外筒部210の第1内径部211に収容されている。また、延出棹310の貫通孔313と、第2内径部212の貫通孔213とには、共通のピン部材400が挿通された状態とされている。   In the initial state of the wire member support tool 100 according to the present embodiment, the spring member 250 is stored in the first inner diameter portion 211 of the outer cylinder portion 210 in a compressed state. Further, the common pin member 400 is inserted into the through hole 313 of the extension rod 310 and the through hole 213 of the second inner diameter portion 212.

このような初期状態のワイヤ部材支持具100を、底面部205に接着剤、又は粘着剤を塗布して、図5に示すように電化柱50に取り付ける。   The wire member support 100 in such an initial state is attached to the electric pole 50 as shown in FIG.

続いて、不図示の他のワイヤ部材支持具100との間に、ワイヤ部材500をわたすようにする。このとき、ワイヤ部材500を、ループ部330に取り付けたり、巻きかけたりして、弛ませないようにする。   Subsequently, the wire member 500 is passed between another wire member support tool 100 (not shown). At this time, the wire member 500 is attached to or wrapped around the loop portion 330 so as not to be loosened.

次に、図6に示すように、第2内径部212の貫通孔213、及び、延出棹310の貫通孔313に挿通されているピン部材400を引き抜く。これにより、バネ部材250が、延出部材300の拡径部320を紙面右方に押し、延出棹310が外筒部材200から延出して、ワイヤ部材500が取り付けたり、巻きかけたりしているループ部330を、同じく紙面右方に変位させる。これにより、ワイヤ部材500に張力を導入することが可能となる。   Next, as shown in FIG. 6, the pin member 400 inserted through the through hole 213 of the second inner diameter portion 212 and the through hole 313 of the extension rod 310 is pulled out. As a result, the spring member 250 pushes the enlarged diameter portion 320 of the extension member 300 to the right in the drawing, the extension rod 310 extends from the outer cylinder member 200, and the wire member 500 is attached or wound. The loop portion 330 is also displaced rightward on the paper surface. Thereby, tension can be introduced into the wire member 500.

以上のように、本発明に係るワイヤ部材支持具100は、前記ワイヤ部材500が架けられるループ部330を先端に有し、前記長手方向に延出する延出棹310が設けられて
おり、このような本発明に係るワイヤ部材支持具100によれば、施工時において、施工上緩んだ状態でワイヤ部材500を設置しないように、ワイヤ部材500に簡便に適切な張力を導入することが可能となる。
As described above, the wire member support tool 100 according to the present invention has the loop portion 330 on which the wire member 500 is hung at the tip, and is provided with the extension rod 310 extending in the longitudinal direction. According to the wire member support tool 100 according to the present invention as described above, it is possible to easily introduce appropriate tension to the wire member 500 so that the wire member 500 is not installed in a loose state during the construction. Become.

また、本発明に係るワイヤ部材支持具100を用いた耐震補強方法によれば、電化柱50の耐震補強工事の施工を簡便かつ短時間で行うことが可能となる。   Moreover, according to the seismic reinforcement method using the wire member support tool 100 according to the present invention, it is possible to perform the seismic reinforcement work for the electrified column 50 simply and in a short time.

次に、本発明の他の実施形態について説明する。図7乃至図9は、本発明の他の実施形態に係るワイヤ部材支持具100によってワイヤ部材500に張力を導入する過程を説明する図である。   Next, another embodiment of the present invention will be described. 7 to 9 are diagrams illustrating a process of introducing tension to the wire member 500 by the wire member support 100 according to another embodiment of the present invention.

先の実施形態においては、延出部材300の拡径部320を紙面右方に押し出すためにバネ部材250が用いられていたのに対して、本実施形態においては、延出部材300の拡径部320を紙面右方に押し出すために流体を用いるようにする。   In the previous embodiment, the spring member 250 was used to push the expanded diameter portion 320 of the extending member 300 rightward in the drawing, whereas in the present embodiment, the expanded diameter of the extending member 300 was increased. A fluid is used to push the portion 320 to the right of the page.

このために、本実施形態においては、外筒部210の内部に流体を導入する導入孔220が、第1内径部211に設けられるようになっている。さらに、導入孔220の流体導入前段部には、外筒部210の内部に導入する流体の流量制御を行うバルブ部230が設けられている。   For this reason, in the present embodiment, the first inner diameter portion 211 is provided with an introduction hole 220 for introducing a fluid into the outer cylinder portion 210. Furthermore, a valve portion 230 that controls the flow rate of the fluid introduced into the outer cylinder portion 210 is provided at the fluid introduction pre-stage portion of the introduction hole 220.

バルブ部230には、流体の流路として、入口側流路231と出口側流路232と、入口側流路231と出口側流路232との間における弁口233とが設けられている。バルブ部230の出口側流路232と導入孔220とが連設されるようになっている。出口側流路232からの流体が、外筒部210の内部に導入されるようになっている。   The valve unit 230 is provided with an inlet-side channel 231 and an outlet-side channel 232 and a valve port 233 between the inlet-side channel 231 and the outlet-side channel 232 as fluid channels. The outlet-side flow path 232 of the valve unit 230 and the introduction hole 220 are connected to each other. The fluid from the outlet side channel 232 is introduced into the outer cylinder part 210.

弁口233を通過する流体量は、弁体235によって制御される。また、この弁体235は操作部237によって変位するようになっている。   The amount of fluid passing through the valve port 233 is controlled by the valve body 235. The valve body 235 is displaced by the operation unit 237.

次に、以上のように構成される他の実施形態に係るワイヤ部材支持具100によって、ワイヤ部材500に張力を導入する手順について説明する。   Next, a procedure for introducing tension to the wire member 500 by the wire member support 100 according to another embodiment configured as described above will be described.

本実施形態に係るワイヤ部材支持具100の初期状態においては、延出棹310の貫通孔313と、第2内径部212の貫通孔213とには、共通のピン部材400が挿通された状態とされている。   In the initial state of the wire member support tool 100 according to the present embodiment, the common pin member 400 is inserted into the through hole 313 of the extension rod 310 and the through hole 213 of the second inner diameter portion 212. Has been.

このような初期状態のワイヤ部材支持具100を、底面部205に接着剤、又は粘着剤を塗布して、図7に示すように電化柱50に取り付ける。   The wire member support 100 in such an initial state is attached to the electric pole 50 as shown in FIG.

続いて、不図示の他のワイヤ部材支持具100との間に、ワイヤ部材500をわたすようにする。このとき、ワイヤ部材500を、ループ部330に取り付けたり、巻きかけたりして、弛ませないようにする。   Subsequently, the wire member 500 is passed between another wire member support tool 100 (not shown). At this time, the wire member 500 is attached to or wrapped around the loop portion 330 so as not to be loosened.

次に、図8に示すように、第2内径部212の貫通孔213、及び、延出棹310の貫通孔313に挿通されているピン部材400を引き抜く。続いて、不図示の流体導入手段によって、バルブ部230の入口側流路231に流体を導入すると共に、操作部237を操作して、外筒部210の内部に流体を導入させる。   Next, as shown in FIG. 8, the pin member 400 inserted through the through hole 213 of the second inner diameter portion 212 and the through hole 313 of the extension rod 310 is pulled out. Subsequently, the fluid is introduced into the inlet-side channel 231 of the valve unit 230 by a fluid introduction unit (not shown) and the operation unit 237 is operated to introduce the fluid into the outer cylinder unit 210.

これにより、図8に示すように、流体が延出部材300の拡径部320を紙面右方に押し、延出棹310が外筒部材200から延出して、ワイヤ部材500が取り付けたり、巻きかけたりしているループ部330を、同じく紙面右方に変位させる。これにより、ワイ
ヤ部材500に張力を導入することが可能となる。
As a result, as shown in FIG. 8, the fluid pushes the enlarged diameter portion 320 of the extending member 300 to the right in the drawing, the extending rod 310 extends from the outer cylindrical member 200, and the wire member 500 is attached or wound. The loop portion 330 that is being hung is also displaced to the right in the drawing. Thereby, tension can be introduced into the wire member 500.

ワイヤ部材500に適切に張力が導入された後には、図9に示すように、バルブ部230の操作部237を操作し、流体の流入を遮断する。これにより、ワイヤ部材500の張力が適切に維持されることとなる。   After the tension is appropriately introduced into the wire member 500, the operation unit 237 of the valve unit 230 is operated to block the inflow of fluid, as shown in FIG. Thereby, the tension | tensile_strength of the wire member 500 will be maintained appropriately.

ここで、前記の流体としては、例えば、建築材料のグラウトを用いることができる。この場合、グラウトは固化して、安定的にワイヤ部材500の張力を維持することができる。なお、グラウトとしては、セメントミルクなどの無機系充填材やエポキシ樹脂、アクリル樹脂などの有機系充填材のいずれも用いることができる。   Here, as the fluid, for example, a grout of a building material can be used. In this case, the grout is solidified and the tension of the wire member 500 can be stably maintained. As the grout, any of inorganic fillers such as cement milk and organic fillers such as epoxy resins and acrylic resins can be used.

また、流体として、ガスや、作動油などのオイルなども用いることができる。この場合、ワイヤ部材支持具100はダンパーの役割を果たすこともできるし、また、ワイヤ部材500の張力が低減したような場合、バルブ部230を操作し、外筒部210の内部にガスやオイルなどを再充填することでメンテナンスを行うことも可能となる。   Further, as the fluid, gas, oil such as hydraulic oil, or the like can be used. In this case, the wire member support tool 100 can also serve as a damper, and when the tension of the wire member 500 is reduced, the valve portion 230 is operated and gas or oil is placed inside the outer tube portion 210. It becomes possible to perform maintenance by refilling.

なお、本実施形態においては、外筒部210の内部に導入させる流体として、グラウト、ガス、オイルなどを例に挙げたが、その他の流体も適宜使用可能である。   In the present embodiment, grout, gas, oil, and the like are given as examples of the fluid introduced into the outer cylinder portion 210, but other fluids can be used as appropriate.

また、本実施形態においては、外筒部210にバルブ部230を設ける構成としたが、流体を外筒部210の内部に導入した後に、導入孔220を塞ぐ構成を設けるようにすれば、バルブ部230は必ずしも必要ではない。   In the present embodiment, the valve portion 230 is provided in the outer cylinder portion 210. However, if a configuration is provided in which the introduction hole 220 is closed after the fluid is introduced into the outer cylinder portion 210, the valve is provided. The unit 230 is not always necessary.

以上のような、他の実施形態に係るワイヤ部材支持具100や、他の実施形態に係るワイヤ部材支持具100を用いた耐震補強方法によっても、先の実施形態と同様の効果を享受することができる。   Even with the above-described wire member support tool 100 according to another embodiment and the seismic reinforcement method using the wire member support tool 100 according to another embodiment, the same effects as those of the previous embodiment can be obtained. Can do.

次に、本発明の他の実施形態について説明する。図10乃至図12は、本発明の他の実施形態に係るワイヤ部材支持具100によってワイヤ部材500に張力を導入する過程を説明する図である。   Next, another embodiment of the present invention will be described. 10 to 12 are diagrams illustrating a process of introducing tension to the wire member 500 by the wire member support 100 according to another embodiment of the present invention.

第1の実施形態においては、延出部材300の拡径部320を紙面右方に押し出すためにバネ部材250が用いられ、第2の実施形態においては、延出部材300の拡径部320を紙面右方に押し出すために流体が用いられていたが、第3の実施形態においては、バネ部材250と流体の双方を用いるようにする。   In the first embodiment, the spring member 250 is used to push the enlarged diameter portion 320 of the extending member 300 rightward in the drawing, and in the second embodiment, the enlarged diameter portion 320 of the extending member 300 is changed. The fluid is used to push the paper rightward in the drawing, but in the third embodiment, both the spring member 250 and the fluid are used.

第3の実施形態に係るワイヤ部材支持具100の初期状態においては、バネ部材250が圧縮された状態で、外筒部210の第1内径部211に収容されている。また、延出棹310の貫通孔313と、第2内径部212の貫通孔213とには、共通のピン部材400が挿通された状態とされている。   In the initial state of the wire member support tool 100 according to the third embodiment, the spring member 250 is stored in the first inner diameter portion 211 of the outer tube portion 210 in a compressed state. Further, the common pin member 400 is inserted into the through hole 313 of the extension rod 310 and the through hole 213 of the second inner diameter portion 212.

上記のようなバネ部材250に係る構成に加え、本実施形態においては、外筒部210の内部に流体を導入する導入孔220が、第1内径部211に設けられるようになっている。さらに、導入孔220の流体導入前段部には、外筒部210の内部に導入する流体の流量制御を行うバルブ部230が設けられている。   In addition to the configuration relating to the spring member 250 as described above, in the present embodiment, the first inner diameter portion 211 is provided with an introduction hole 220 for introducing a fluid into the outer cylinder portion 210. Furthermore, a valve portion 230 that controls the flow rate of the fluid introduced into the outer cylinder portion 210 is provided at the fluid introduction pre-stage portion of the introduction hole 220.

バルブ部230には、流体の流路として、入口側流路231と出口側流路232と、入口側流路231と出口側流路232との間における弁口233とが設けられている。バルブ部230の出口側流路232と導入孔220とが連設されるようになっている。出口側流路232からの流体が、外筒部210の内部に導入されるようになっている。   The valve unit 230 is provided with an inlet-side channel 231 and an outlet-side channel 232 and a valve port 233 between the inlet-side channel 231 and the outlet-side channel 232 as fluid channels. The outlet-side flow path 232 of the valve unit 230 and the introduction hole 220 are connected to each other. The fluid from the outlet side channel 232 is introduced into the outer cylinder part 210.

弁口233を通過する流体量は、弁体235によって制御される。また、この弁体235は操作部237によって変位するようになっている。   The amount of fluid passing through the valve port 233 is controlled by the valve body 235. The valve body 235 is displaced by the operation unit 237.

次に、以上のように構成される他の実施形態に係るワイヤ部材支持具100によって、ワイヤ部材500に張力を導入する手順について説明する。   Next, a procedure for introducing tension to the wire member 500 by the wire member support 100 according to another embodiment configured as described above will be described.

先に説明したように、本実施形態に係るワイヤ部材支持具100の初期状態においては、バネ部材250が圧縮された状態で、外筒部210の第1内径部211に収容されている。また、延出棹310の貫通孔313と、第2内径部212の貫通孔213とには、共通のピン部材400が挿通された状態とされている。   As described above, in the initial state of the wire member support 100 according to the present embodiment, the spring member 250 is stored in the first inner diameter portion 211 of the outer cylinder portion 210 in a compressed state. Further, the common pin member 400 is inserted into the through hole 313 of the extension rod 310 and the through hole 213 of the second inner diameter portion 212.

このような初期状態のワイヤ部材支持具100を、底面部205に接着剤、又は粘着剤を塗布して、図10に示すように電化柱50に取り付ける。   The wire member support 100 in such an initial state is attached to the electric pole 50 as shown in FIG.

続いて、不図示の他のワイヤ部材支持具100との間に、ワイヤ部材500をわたすようにする。このとき、ワイヤ部材500を、ループ部330に取り付けたり、巻きかけたりして、弛ませないようにする。   Subsequently, the wire member 500 is passed between another wire member support tool 100 (not shown). At this time, the wire member 500 is attached to or wrapped around the loop portion 330 so as not to be loosened.

次に、図11に示すように、第2内径部212の貫通孔213、及び、延出棹310の貫通孔313に挿通されているピン部材400を引き抜く。これにより、バネ部材250が、延出部材300の拡径部320を紙面右方に押し、延出棹310が外筒部材200から延出して、ワイヤ部材500が取り付けたり、巻きかけたりしているループ部330を、同じく紙面右方に変位させる。これにより、ワイヤ部材500にある程度の張力を導入することが可能となる。   Next, as shown in FIG. 11, the pin member 400 inserted through the through hole 213 of the second inner diameter portion 212 and the through hole 313 of the extension rod 310 is pulled out. As a result, the spring member 250 pushes the enlarged diameter portion 320 of the extension member 300 to the right in the drawing, the extension rod 310 extends from the outer cylinder member 200, and the wire member 500 is attached or wound. The loop portion 330 is also displaced rightward on the paper surface. Thereby, a certain amount of tension can be introduced into the wire member 500.

続いて、不図示の流体導入手段によって、バルブ部230の入口側流路231に流体を導入すると共に、操作部237を操作して、外筒部210の内部に流体を導入させる。   Subsequently, the fluid is introduced into the inlet-side channel 231 of the valve unit 230 by a fluid introduction unit (not shown) and the operation unit 237 is operated to introduce the fluid into the outer cylinder unit 210.

これにより、バネ部材250の付勢力に加えて、流体が延出部材300の拡径部320を紙面右方にさらに押すことで、延出棹310を外筒部材200から延出させて、ワイヤ部材500が取り付けたり、巻きかけたりしているループ部330を、さらに紙面右方に変位させる。これにより、ワイヤ部材500により大きな張力を導入することが可能となる。   Thereby, in addition to the urging force of the spring member 250, the fluid further pushes the enlarged diameter portion 320 of the extending member 300 to the right side of the paper surface, thereby extending the extending rod 310 from the outer cylindrical member 200. The loop portion 330 to which the member 500 is attached or wound is further displaced to the right of the paper surface. As a result, a larger tension can be introduced into the wire member 500.

ワイヤ部材500に適切に張力が導入された後には、図12に示すように、バルブ部230の操作部237を操作し、流体の流入を遮断する。これにより、ワイヤ部材500の張力が適切に維持されることとなる。   After the tension is appropriately introduced into the wire member 500, the operation unit 237 of the valve unit 230 is operated to block the inflow of fluid, as shown in FIG. Thereby, the tension | tensile_strength of the wire member 500 will be maintained appropriately.

ここで、前記の流体としては、例えば、建築材料のグラウトを用いることができる。この場合、グラウトは固化して、安定的にワイヤ部材500の張力を維持することができる。なお、グラウトとしては、セメントミルクなどの無機系充填材やエポキシ樹脂、アクリル樹脂などの有機系充填材のいずれも用いることができる。   Here, as the fluid, for example, a grout of a building material can be used. In this case, the grout is solidified and the tension of the wire member 500 can be stably maintained. As the grout, any of inorganic fillers such as cement milk and organic fillers such as epoxy resins and acrylic resins can be used.

また、流体として、ガスや、作動油などのオイルなども用いることができる。この場合、ワイヤ部材支持具100はダンパーの役割を果たすこともできるし、また、ワイヤ部材500の張力が低減したような場合、バルブ部230を操作し、外筒部210の内部にガスやオイルなどを再充填することでメンテナンスを行うことも可能となる。   Further, as the fluid, gas, oil such as hydraulic oil, or the like can be used. In this case, the wire member support tool 100 can also serve as a damper, and when the tension of the wire member 500 is reduced, the valve portion 230 is operated and gas or oil is placed inside the outer tube portion 210. It becomes possible to perform maintenance by refilling.

なお、本実施形態においては、外筒部210の内部に導入させる流体として、グラウト
、ガス、オイルなどを例に挙げたが、その他の流体も適宜使用可能である。
In the present embodiment, grout, gas, oil, and the like are given as examples of the fluid introduced into the outer cylinder portion 210, but other fluids can be used as appropriate.

また、本実施形態においては、外筒部210にバルブ部230を設ける構成としたが、流体を外筒部210の内部に導入した後に、導入孔220を塞ぐ構成を設けるようにすれば、バルブ部230は必ずしも必要ではない。   In the present embodiment, the valve portion 230 is provided in the outer cylinder portion 210. However, if a configuration is provided in which the introduction hole 220 is closed after the fluid is introduced into the outer cylinder portion 210, the valve is provided. The unit 230 is not always necessary.

以上のような、他の実施形態に係るワイヤ部材支持具100や、他の実施形態に係るワイヤ部材支持具100を用いた耐震補強方法によっても、先の実施形態と同様の効果を享受することができる。   Even with the above-described wire member support tool 100 according to another embodiment and the seismic reinforcement method using the wire member support tool 100 according to another embodiment, the same effects as those of the previous embodiment can be obtained. Can do.

次に、本発明の他の実施形態について説明する。図13及び図14は、本発明の他の実施形態に係るワイヤ部材支持具100によってワイヤ部材500に張力を導入する過程を説明する図である。   Next, another embodiment of the present invention will be described. 13 and 14 are diagrams illustrating a process of introducing tension to the wire member 500 by the wire member support 100 according to another embodiment of the present invention.

本実施形態においては、ループ部330を紙面右方に変位させるための構成として、ジャッキ構造部600を用いるようにしている。ここで、ジャッキ構造部600としては、従来周知の、ネジの回転を利用した伸縮機構を用いることができる。   In the present embodiment, the jack structure portion 600 is used as a configuration for displacing the loop portion 330 to the right in the drawing. Here, as the jack structure portion 600, a conventionally known expansion / contraction mechanism using rotation of a screw can be used.

本実施形態のジャッキ構造部600は、ループ部330を支持するループ部支持部610と、右端部611a、612aそれぞれに形成された軸受孔にそれぞれ連結ピン619、620が通されループ部支持部610に右端部611a、612aが回動自在に支持された一対の第1アーム611、612と、第1アーム611、612の左端部611b、612bそれぞれに右端部613b、614bが2つの連結軸616、617を介し回動自在に連結された一対の第2アーム613、614と、第2アーム613、614の左端部613a、614aそれぞれに形成された軸受孔にそれぞれ連結ピン621、622が通され、第2アーム613、614それぞれを回動自在に支持する台座部615と、第1アーム611、612と第2アーム613、614とを回動自在に連結する2つの連結軸616、617間に挿通されるネジ部材618とを有する。なお、ネジ部材618には、ハンドル部618aが設けられている。   In the jack structure portion 600 of this embodiment, the connection pins 619 and 620 are passed through the bearing holes formed in the loop portion support portion 610 that supports the loop portion 330 and the right end portions 611a and 612a, respectively, and the loop portion support portion 610. The right ends 611a and 612a are rotatably supported by a pair of first arms 611 and 612, and the left ends 611b and 612b of the first arms 611 and 612 have two connecting shafts 616 and right ends 613b and 614b, respectively. Connection pins 621 and 622 are respectively passed through bearing holes formed in a pair of second arms 613 and 614 that are rotatably connected via 617 and left end portions 613a and 614a of the second arms 613 and 614, respectively. A pedestal 615 that rotatably supports each of the second arms 613 and 614, a first arm 611 and 612, and a second arm And a threaded member 618 that is inserted through the arm 613 and 614 between pivotally connected to two connecting shafts 616 and 617. The screw member 618 is provided with a handle portion 618a.

次に、以上のように構成される他の実施形態に係るワイヤ部材支持具100によって、ワイヤ部材500に張力を導入する手順について説明する。   Next, a procedure for introducing tension to the wire member 500 by the wire member support 100 according to another embodiment configured as described above will be described.

まず、ワイヤ部材支持具100を、台座部615に接着剤、又は粘着剤を塗布して、図13に示すように電化柱50に取り付ける。   First, the wire member support tool 100 is attached to the electrification column 50 as shown in FIG.

続いて、不図示の他のワイヤ部材支持具100との間に、ワイヤ部材500をわたすようにする。このとき、ワイヤ部材500を、ループ部330に取り付けたり、巻きかけたりして、弛ませないようにする。   Subsequently, the wire member 500 is passed between another wire member support tool 100 (not shown). At this time, the wire member 500 is attached to or wrapped around the loop portion 330 so as not to be loosened.

次に、本実施形態のジャッキ構造部600のネジ部材618を回転させて、第1アーム611、612と第2アーム613、614とを伸長させた状態とする。すると、ループ部330も紙面右方に変位し、図14に示すように、ジャッキ構造部600によって、ワイヤ部材500に適切な張力を導入することが可能となる。また、ネジ部材618の回転を調整することで、任意の張力をワイヤ部材500に導入することが可能となる。また、ネジ部材618をロックする機構(不図示)を設けることで、ワイヤ部材500の張力を安定的に維持することが可能となる。   Next, the screw member 618 of the jack structure part 600 of this embodiment is rotated, and the first arms 611 and 612 and the second arms 613 and 614 are extended. Then, the loop portion 330 is also displaced rightward in the drawing, and it is possible to introduce an appropriate tension to the wire member 500 by the jack structure portion 600 as shown in FIG. Further, by adjusting the rotation of the screw member 618, it is possible to introduce an arbitrary tension to the wire member 500. Further, by providing a mechanism (not shown) for locking the screw member 618, the tension of the wire member 500 can be stably maintained.

以上のような、ジャッキ構造部600を有するワイヤ部材支持具100や、ジャッキ構造部600を有するワイヤ部材支持具100を用いた耐震補強方法によっても、先の実施
形態と同様の効果を享受することができる。
The same effects as those of the previous embodiment can also be obtained by the above-described seismic reinforcement method using the wire member support 100 having the jack structure 600 and the wire member support 100 having the jack structure 600. Can do.

以上、本発明に係るワイヤ部材支持具は、前記ワイヤ部材が架けられるループ部を先端に有し、前記長手方向に延出する延出棹が設けられており、このような本発明に係るワイヤ部材支持具によれば、施工時において、施工上緩んだ状態でワイヤ部材を設置しないように、ワイヤ部材に簡便に適切な張力を導入することが可能となる。   As described above, the wire member support according to the present invention has a loop portion around which the wire member is hung and provided with an extending rod extending in the longitudinal direction. According to the member support tool, it is possible to easily introduce an appropriate tension to the wire member so that the wire member is not placed in a loose state during the construction.

また、本発明に係るワイヤ部材支持具を用いた耐震補強方法によれば、電化柱50の耐震補強工事の施工を簡便かつ短時間で行うことが可能となる。   Moreover, according to the seismic reinforcement method using the wire member support according to the present invention, it is possible to perform the seismic reinforcement work for the electrified column 50 simply and in a short time.

30・・・基礎部
50・・・電化柱
70・・・アンカー部
100・・・ワイヤ部材支持具
200・・・外筒部材
205・・・底面部
210・・・外筒部
211・・・第1内径部
212・・・第2内径部
213・・・貫通孔
220・・・導入孔
230・・・バルブ部
231・・・入口側流路
232・・・出口側流路
235・・・弁体
233・・・弁口
237・・・操作部
250・・・バネ部材
300・・・延出部材
310・・・延出棹
313・・・貫通孔
320・・・拡径部
330・・・ループ部
400・・・ピン部材
500・・・ワイヤ部材
600・・・ジャッキ構造部
610・・・ループ部支持部
611、612・・・第1アーム
611a、612a・・・右端部
611b、612b・・・左端部
613、614・・・第2アーム
613a、614a・・・左端部
613b、614b・・・右端部
615・・・台座部
616、617・・・連結軸
618・・・ネジ部材
618a・・・ハンドル部
619、620・・・連結ピン
621、622・・・連結ピン
30 ... Foundation part 50 ... Electric pole 70 ... Anchor part 100 ... Wire member support tool 200 ... Outer cylinder member 205 ... Bottom part 210 ... Outer cylinder part 211 ... 1st inside diameter part 212 ... 2nd inside diameter part 213 ... Through-hole 220 ... Introducing hole 230 ... Valve part 231 ... Inlet side channel 232 ... Outlet side channel 235 ... Valve body 233 ... Valve port 237 ... Operation part 250 ... Spring member 300 ... Extension member 310 ... Extension rod 313 ... Through hole 320 ... Diameter expansion part 330 ... -Loop part 400 ... Pin member 500 ... Wire member 600 ... Jack structure part 610 ... Loop part support part 611, 612 ... First arm 611a, 612a ... Right end part 611b, 612b ... Left end 613, 614 ... Second arm 613a 614a ... Left end portion 613b, 614b ... Right end portion 615 ... Pedestal portion 616,617 ... Connection shaft 618 ... Screw member 618a ... Handle portion 619,620 ... Connection pin 621, 622 ... Connecting pin

Claims (14)

長手方向を有し、電化柱に複数取り付けられると共に、ワイヤ部材が架けわたされるワイヤ部材支持具であって、
前記ワイヤ部材が架けられるループ部を先端に有し、前記長手方向に延出する延出棹が設けられることを特徴とするワイヤ部材支持具。
A wire member support that has a longitudinal direction and is attached to a plurality of electrification poles and on which a wire member is bridged,
A wire member support, comprising: a loop portion around which the wire member is hung, and an extension rod extending in the longitudinal direction.
前記長手方向における前記ループ部の他端側には、底面部が設けられており、
前記底面部に塗布される接着材又は粘着材により、前記電化柱に取り付けられることを特徴とする請求項1に記載のワイヤ部材支持具。
On the other end side of the loop portion in the longitudinal direction, a bottom surface portion is provided,
The wire member support according to claim 1, wherein the wire member support is attached to the electrification column by an adhesive or an adhesive applied to the bottom surface.
前記底面部に立設される外筒部を有し、
前記外筒部には、第1の内径を有する第1内径部と、前記第1の内径より小さい第2の内径を有する第2内径部と、が設けられることを特徴とする請求項2に記載のワイヤ部材支持具。
An outer cylinder portion standing on the bottom surface portion;
3. The outer cylinder portion is provided with a first inner diameter portion having a first inner diameter and a second inner diameter portion having a second inner diameter smaller than the first inner diameter. The wire member support according to the description.
前記延出棹の前記ループ部が設けられていない端部には拡径部を有しており、
前記第1内径部に、前記拡径部が内嵌されることを特徴とする請求項3に記載のワイヤ部材支持具。
The end of the extension rod where the loop portion is not provided has an enlarged diameter portion,
The wire member support according to claim 3, wherein the enlarged diameter portion is fitted into the first inner diameter portion.
前記延出棹と前記第2内径部とには貫通孔が設けられ、それぞれの貫通孔に共通のピン部材が挿通されることを特徴とする請求項3又は請求項4に記載のワイヤ部材支持具。 The wire member support according to claim 3 or 4, wherein a through hole is provided in the extension rod and the second inner diameter portion, and a common pin member is inserted into each through hole. Ingredients. 前記第1内径部に、バネ部材が配されることを特徴とする請求項3乃至請求項5のいずれか1項に記載のワイヤ部材支持具。 The wire member support according to any one of claims 3 to 5, wherein a spring member is disposed on the first inner diameter portion. 前記外筒部の内部に流体を導入する導入孔が、前記第1内径部に配されることを特徴とする請求項3乃至請求項5のいずれか1項に記載のワイヤ部材支持具。 The wire member support according to any one of claims 3 to 5, wherein an introduction hole for introducing a fluid into the outer cylindrical portion is arranged in the first inner diameter portion. 前記第1内径部に、バネ部材が配されると共に、
前記外筒部の内部に流体を導入する導入孔が、前記第1内径部に配されることを特徴とする請求項3乃至請求項5のいずれか1項に記載のワイヤ部材支持具。
A spring member is disposed on the first inner diameter portion,
The wire member support according to any one of claims 3 to 5, wherein an introduction hole for introducing a fluid into the outer cylindrical portion is arranged in the first inner diameter portion.
前記外筒部の内部に導入する流体の流量制御を行うバルブ部が設けられることを特徴とする請求項7又は請求項8に記載のワイヤ部材支持具。 The wire member support according to claim 7 or 8, wherein a valve portion for controlling a flow rate of a fluid introduced into the outer cylinder portion is provided. 前記流体が、グラウトであることを特徴とする請求項7乃至請求項9のいずれか1項に記載のワイヤ部材支持具。 The wire member support according to any one of claims 7 to 9, wherein the fluid is grout. 前記流体が、ガスであることを特徴とする請求項7乃至請求項9のいずれか1項に記載のワイヤ部材支持具。 The wire member support according to any one of claims 7 to 9, wherein the fluid is a gas. 前記流体が、オイルであることを特徴とする請求項7乃至請求項9のいずれか1項に記載のワイヤ部材支持具。 The wire member support according to any one of claims 7 to 9, wherein the fluid is oil. 円柱状の電化柱に複数取り付けられると共に、ワイヤ部材が架けわたされるワイヤ部材支持具であって、
前記ワイヤ部材が架けられるループ部と、
前記ループ部を、前記電化柱に対して、ネジの回転を利用した伸縮機構と、を有することを特徴とするワイヤ部材支持具。
A wire member support that is attached to a plurality of cylindrical electric poles and on which a wire member is bridged,
A loop portion on which the wire member is bridged;
A wire member support, comprising: an extension mechanism using a screw rotation with respect to the electric pole.
請求項1乃至請求項13のいずれか1項に記載のワイヤ部材支持具を用いて、前記ワイヤ部材に張力をかけ、電化柱の耐震補強を行うことを特徴とする耐震補強方法。 A seismic reinforcement method for applying seismic reinforcement to an electrified column by applying tension to the wire member using the wire member support tool according to any one of claims 1 to 13.
JP2014225798A 2014-11-06 2014-11-06 Wire member support and seismic reinforcement method for electric pole using wire member support Expired - Fee Related JP6369986B2 (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106193761A (en) * 2016-08-31 2016-12-07 国网山东省电力公司栖霞市供电公司 A kind of power high voltage transmission equipment
JP2018067884A (en) * 2016-10-21 2018-04-26 東 一夫 Strut

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5135040U (en) * 1974-09-07 1976-03-16
JPS55148204U (en) * 1979-04-12 1980-10-24
JP2001040934A (en) * 1999-07-29 2001-02-13 Sekisui Chem Co Ltd Reduction gear for fitting
JP2003301411A (en) * 2002-04-09 2003-10-24 Asahi Engineering Kk Method for introducing prestress to steel girder
JP2009150184A (en) * 2007-12-21 2009-07-09 Chunichi-Sougyo Corp Swinging prevention device of working gondola
JP2013117088A (en) * 2011-12-01 2013-06-13 East Japan Railway Co Earthquake strengthening method of electric pole

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5135040U (en) * 1974-09-07 1976-03-16
JPS55148204U (en) * 1979-04-12 1980-10-24
JP2001040934A (en) * 1999-07-29 2001-02-13 Sekisui Chem Co Ltd Reduction gear for fitting
JP2003301411A (en) * 2002-04-09 2003-10-24 Asahi Engineering Kk Method for introducing prestress to steel girder
JP2009150184A (en) * 2007-12-21 2009-07-09 Chunichi-Sougyo Corp Swinging prevention device of working gondola
JP2013117088A (en) * 2011-12-01 2013-06-13 East Japan Railway Co Earthquake strengthening method of electric pole

Cited By (3)

* Cited by examiner, † Cited by third party
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CN106193761A (en) * 2016-08-31 2016-12-07 国网山东省电力公司栖霞市供电公司 A kind of power high voltage transmission equipment
CN106193761B (en) * 2016-08-31 2018-10-16 国网山东省电力公司栖霞市供电公司 A kind of power high voltage transmission device
JP2018067884A (en) * 2016-10-21 2018-04-26 東 一夫 Strut

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