JP6376444B2 - Telescopic bridge - Google Patents

Telescopic bridge Download PDF

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JP6376444B2
JP6376444B2 JP2014117087A JP2014117087A JP6376444B2 JP 6376444 B2 JP6376444 B2 JP 6376444B2 JP 2014117087 A JP2014117087 A JP 2014117087A JP 2014117087 A JP2014117087 A JP 2014117087A JP 6376444 B2 JP6376444 B2 JP 6376444B2
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bridge
cylindrical
bridge body
passing direction
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JP2015229882A (en
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広茂 高野
広茂 高野
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Kochi Marutaka KK
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Description

本発明は運搬可能な伸縮式ブリッジに関する。   The present invention relates to a transportable telescopic bridge.

地震、大雨、地すべり又は津波等の災害により道路や橋が破損し、交通路が遮断されるような場合は、交通路を確保するための緊急措置が求められる。このような場合に、従来は通常施工される架設橋を緊急的な手法によりできるだけ早急に完成させるという程度の対策がなされているだけで適切な手段がなかった。   When roads and bridges are damaged by disasters such as earthquakes, heavy rains, landslides, or tsunamis, and traffic is blocked, emergency measures are required to secure the traffic. In such a case, conventionally, there has been no appropriate means just by taking measures to the extent that an erected method is used to complete an erected bridge as soon as possible.

そこで、横桁、床版などの種々の構造部材から構成される歩道橋のようにケーブルを支持用構造部材として用いてなる構造物において、構築の初期に張架したケーブルに沿って構造部材を単独に又は連結しながら搬送したり、仮設ロープを緊張した状態で構造部材を搬送後にケーブルを緊張して構造部材を移設したりすることによって、構造部材を容易かつ安全に搬送及び設置することができる構造物の架設工法が提案されている(特許文献1参照)。   Therefore, in a structure using a cable as a supporting structural member, such as a pedestrian bridge composed of various structural members such as cross girders and floor slabs, the structural member is separated along the cable stretched at the initial stage of construction. It is possible to transport and install the structural member easily and safely by transporting it while being connected to it, or by transporting the structural member after transporting the structural member in a state where the temporary rope is tensioned and by moving the structural member by tensioning the cable. A construction method of a structure has been proposed (see Patent Document 1).

しかしながら、特許文献1の架設橋においては、従来よりは短期間で設置されるが、ケーブルの設置や構造部材の取り付け等にまだまだ手間を要するという不具合があり、更に容易に設置できる架設橋が求められている。   However, although the installation bridge of Patent Document 1 is installed in a shorter period of time than before, there is a problem that it still takes time to install cables and structural members, and there is a need for an installation bridge that can be installed more easily. It has been.

特開2000−186310号公報JP 2000-186310 A

本発明は、上記したような従来技術の問題点を解決すべくなされたものであって、容易に設置できる伸縮式ブリッジを提供するものである。   The present invention has been made to solve the above-described problems of the prior art, and provides an extendable bridge that can be easily installed.

請求項1に係る発明は、運搬可能な伸縮式ブリッジであって、互いに平行で、該伸縮式ブリッジが渡設される渡設方向に延びた一対の筒状桟と、該一対の筒状桟の間を覆う床板と、前記筒状桟と平行であって該筒状桟の上方に設けられた互いに平行な一対の筒状手摺と、前記筒状桟と床板と筒状手摺とを前記渡設方向のそれぞれの端部で連結する連結部とを備え、前記一対の筒状桟の外径及び内径と、前記一対の筒状手摺の外径及び内径と、前記床板の高さとが順次異なるように形成された複数の橋体が、内径の大きい一対の筒状桟内にその内径よりも外径の小さい一対の筒状桟が筒軸線方向に入れ子式に嵌合され、内径の大きい一対の筒状手摺内にその内径よりも外径の小さい一対の筒状手摺が筒軸線方向に入れ子式に嵌合され、低い床板の上にその床板よりも高い床板が前記筒状桟の筒軸線方向に摺動自在に重なるように順次接合することにより、各橋体の前記連結部が接近する収縮状態と、前記連結部が離間する延伸状態とに変更自在に構成されていることを特徴とする伸縮式ブリッジに関する。
なお、前記筒状桟、床板及び筒状手摺は、連結部に直接に連結されていてもよいし、他の物を介して間接的に連結されていてもよい。
The invention according to claim 1 is a transportable telescopic bridge, which is parallel to each other and extends in a passing direction in which the telescopic bridge is extended, and the pair of cylindrical bars. A floor plate covering the space, a pair of cylindrical handrails parallel to the cylindrical rail and provided above the cylindrical rail, the cylindrical rail, the floor plate, and the cylindrical handrail A connecting portion connected at each end in the installation direction, and the outer diameter and inner diameter of the pair of cylindrical rails, the outer diameter and inner diameter of the pair of cylindrical handrails, and the height of the floor board are sequentially different. A plurality of bridge bodies formed in this manner are fitted into a pair of cylindrical bars having a large inner diameter, and a pair of cylindrical bars having an outer diameter smaller than the inner diameter are fitted in a nesting manner in the cylinder axis direction. A pair of cylindrical handrails whose outer diameter is smaller than the inner diameter are fitted into the cylindrical handrail in a nested manner in the direction of the cylinder axis, and a low floor board By sequentially joining the floor plate higher than the floor plate so as to be slidably overlapped in the cylinder axis direction of the cylindrical bar, the contracted state in which the connecting portions of the bridge bodies approach each other and the connecting portions are separated from each other. The present invention relates to a telescopic bridge characterized in that it can be freely changed to a stretched state.
In addition, the said cylindrical crosspiece, a floor board, and a cylindrical handrail may be directly connected with the connection part, and may be indirectly connected through another thing.

請求項2に係る発明は、隣接する2台の前記橋体で渡設方向の前方側の橋体の連結部が、渡設方向の後方側の橋体の連結部を超えて渡設方向の後方に突出した突出部を備え、渡設方向の前方側の橋体を渡設方向の後方側の橋体から延伸させる延伸用牽引部材の一端が該突出部に連結されており、渡設方向の後方側の橋体の連結部が、前記延伸用牽引部材が経由する経由部を備え、前記延伸用牽引部材の他端が前記経由部を経由して渡設方向の後方に延出しており、渡設方向の前方側の橋体の連結部に、該橋体を渡設方向の後方側の橋体に収縮させる収縮用牽引部材の一端が連結され、該収縮用牽引部材の他端が渡設方向の後方に延出しており、渡設方向の前方側の橋体を渡設方向の後方側の橋体から延伸する場合には、前記延伸用牽引部材が渡設方向の後方に引っ張られ、渡設方向の前方側の橋体を渡設方向の後方側の橋体に収縮する場合には、前記収縮用牽引部材が渡設方向の後方に引っ張られることを特徴とする請求項1に記載の伸縮式ブリッジに関する。
なお、延伸用牽引部材の一端が突出部に連結されていること、及び収縮用牽引部材の一端が連結部に連結されていることには、それぞれが他の物を介して間接的に連結されていることも含む。
In the invention according to claim 2, the connecting portion of the bridge body on the front side in the passing direction between the two adjacent bridge bodies extends beyond the connecting portion of the bridge body on the rear side in the passing direction. One end of a drawing traction member that includes a protruding portion that protrudes rearward and extends the bridge body on the front side in the passing direction from the bridge body on the rear side in the passing direction is connected to the protruding portion, The connecting portion of the bridge body on the rear side of the cable includes a via portion through which the drawing traction member passes, and the other end of the drawing traction member extends to the rear in the passing direction through the via portion. One end of a contracting traction member for contracting the bridge body to a bridge body on the rear side in the passing direction is connected to the connecting portion of the bridge body on the front side in the passing direction, and the other end of the contracting traction member is When extending the bridge body on the front side in the passing direction from the bridge body on the rear side in the passing direction, the extending traction member is In the case where the bridge body on the front side in the passing direction is contracted to the bridge body on the rear side in the passing direction, the contracting traction member is pulled rearward in the passing direction. 2. The telescopic bridge according to claim 1, wherein
It should be noted that the fact that one end of the pulling traction member is connected to the projecting portion and the one end of the contraction traction member is connected to the connecting portion are each indirectly connected via another object. Including that.

請求項3に係る発明は、前記橋体の内で他の橋体から延伸する橋体が、該橋体の筒状桟と筒状手摺とに前記筒状桟の筒軸線方向に摺動自在に取り付けられた間柱を備え、該間柱が、該橋体の連結部に牽引部材によって連結されていることを特徴とする請求項1又は請求項2に記載の伸縮式ブリッジに関する。
なお、間柱が橋体の連結部に牽引部材によって連結されていることには、間柱が、橋体の連結部に、他の物を介して牽引部材によって連結されていることを含む。
According to a third aspect of the present invention, a bridge body extending from another bridge body in the bridge body is slidable in the cylinder axis direction of the cylindrical beam to the cylindrical beam and the cylindrical handrail of the bridge body. The telescopic bridge according to claim 1, further comprising a stud attached to the bridge body, wherein the stud is connected to a connecting portion of the bridge body by a pulling member.
In addition, that the studs are connected to the connecting part of the bridge body by the pulling member includes that the studs are connected to the connecting part of the bridge body by the pulling member via another object.

請求項1に係る発明の伸縮式ブリッジによれば、各橋体が延伸、収縮するので、収縮状態で運搬することができる。このことにより伸縮式ブリッジを容易に運搬することができる。また、設置場所で各橋体を延伸させるだけでよいので、手間を必要とせずに容易に伸縮式ブリッジを設置することができる。   According to the telescopic bridge of the invention according to claim 1, since each bridge body is stretched and contracted, it can be transported in a contracted state. This allows the telescopic bridge to be easily transported. Moreover, since it is only necessary to extend each bridge body at the installation location, the telescopic bridge can be easily installed without requiring labor.

請求項2に係る発明の伸縮式ブリッジによれば、橋体の連結部が延伸用牽引部材及び収縮用牽引部材に連結されているので、延伸用牽引部材及び収縮用牽引部材を引っ張るだけで伸縮式ブリッジの延伸及び収縮を容易に行うことができる。   According to the telescopic bridge of the invention according to claim 2, since the connecting portion of the bridge body is connected to the drawing traction member and the contraction traction member, it can be expanded and contracted only by pulling the extension traction member and the contraction traction member. The formula bridge can be easily stretched and shrunk.

請求項3に係る発明の伸縮式ブリッジによれば、間柱が橋体の連結部に牽引部材によって連結されているので、伸縮式ブリッジを延伸させるだけで、間柱を所定の位置に配置することができる。このことにより、間柱を配置する手間が少なくなるので、伸縮式ブリッジの設置が容易になる。   According to the telescopic bridge of the invention according to claim 3, since the inter-column is connected to the connecting portion of the bridge body by the pulling member, the inter-column can be arranged at a predetermined position only by extending the telescopic bridge. it can. As a result, the labor for arranging the studs is reduced, so that the installation of the telescopic bridge is facilitated.

本発明に係る伸縮式ブリッジの概略斜視図である。1 is a schematic perspective view of a telescopic bridge according to the present invention. 同伸縮式ブリッジの概略図であり、(a)は延伸状態の側面図であり、(b)は収縮状態の側面図である。It is the schematic of the expansion-contraction type bridge | bridging, (a) is a side view of an extending | stretching state, (b) is a side view of a contracted state. 同伸縮式ブリッジの裏面の概略図であり、(a)は延伸状態の裏面の概略図であり、(b)は収縮状態の裏面の概略図である。It is the schematic of the back surface of the expansion-contraction bridge, (a) is the schematic diagram of the back surface of an extending | stretching state, (b) is the schematic diagram of the back surface of a contraction state. 間柱を備えた本発明に係る伸縮式ブリッジの概略斜視図である。It is a schematic perspective view of the expansion-contraction type bridge | bridging which concerns on this invention provided with the stud. 同伸縮式ブリッジの概略図であり(a)は延伸状態の側面図であり、(b)は収縮状態の側面図である。It is the schematic of the expansion-contraction type bridge | bridging, (a) is a side view of an extending | stretching state, (b) is a side view of a contracted state. 本発明に係る伸縮式ブリッジの設置方法を示す図であり、(a)は収縮状態で設置した状態の側面図であり、(b)は橋体を延伸させた状態の側面図であり、(c)はトラスを取り付けた状態の側面図である。It is a figure which shows the installation method of the expansion-contraction type bridge | bridging which concerns on this invention, (a) is a side view of the state installed in the contracted state, (b) is a side view of the state which extended the bridge body, c) is a side view of a state in which a truss is attached.

以下、本発明に係る伸縮式ブリッジの好適な実施形態について、図1及び図2を用いて説明する。なお、図1及び図2では、後述する間柱を簡略化のために記載していない。
伸縮式ブリッジ1は、運搬が可能なブリッジであり、互いに伸縮する第1橋体2a、第2橋体2b及び第3橋体2cを備えている(この第1橋体2a、第2橋体2b及び第3橋体2cを総称するときに、橋体2と記すことがある)。
伸縮式ブリッジ1を、例えば川に渡設する場合には、一方の岸に第1橋体2aを設置し、渡設方向である対岸に向けて、第2橋体2b及び第3橋体2cを延伸させる。
なお、本明細書において、図1に示す矢印Aのように第2橋体2b及び第3橋体2cが第1橋体2aから延伸する方向を延伸方向又は渡設方向と記し、矢印Bのように第2橋体2b及び第3橋体2cが第1橋体2aに収縮する方向を収縮方向又は渡設方向後方と記すことがある。
Hereinafter, a preferred embodiment of a telescopic bridge according to the present invention will be described with reference to FIGS. 1 and 2. In FIG. 1 and FIG. 2, the studs described later are not shown for the sake of simplicity.
The telescopic bridge 1 is a bridge that can be transported, and includes a first bridge body 2a, a second bridge body 2b, and a third bridge body 2c that extend and contract each other (the first bridge body 2a and the second bridge body). 2b and the third bridge 2c may be collectively referred to as the bridge 2).
When extending the telescopic bridge 1 to, for example, a river, the first bridge body 2a is installed on one bank, and the second bridge body 2b and the third bridge body 2c are directed toward the opposite bank in the passing direction. Is stretched.
In the present specification, the direction in which the second bridge body 2b and the third bridge body 2c extend from the first bridge body 2a as indicated by the arrow A shown in FIG. As described above, the direction in which the second bridge body 2b and the third bridge body 2c contract to the first bridge body 2a may be referred to as the contraction direction or the rearward direction.

第1橋体2aは、互いに平行で、伸縮式ブリッジ1が渡設される渡設方向に延びた一対の第1筒状桟3a(この第1筒状桟3aと、後述する第2筒状桟3b及び第3筒状桟3cとを総称するときに筒状桟3と記すことがある)と、この一対の第1筒状桟3aの間を覆う第1床板4a(この第1床板4aと、後述する第2床板4b及び第3床板4cとを総称するときに床板4と記すことがある)を備えている。
第1筒状桟3aの筒内部にその内径よりも外径が小さい後述する一対の第2筒状桟3bが筒軸線方向に入れ子式に嵌合され、第2筒状桟3bが第1筒状桟3aから伸縮する。
第1床板4aは、平坦な板であり、この上を人が歩行する。この第1床板4aの上面を後述する第2床板4bが第1筒状桟3aの筒軸線方向に摺動自在に重なる。
また第1橋体2aは、第1筒状桟3aと平行であって第1筒状桟3aの上方に設けられた互いに平行な一対の第1筒状手摺5a(この第1筒状手摺5aと、後述する第2筒状手摺5b及び第3筒状手摺5cとを総称するときに筒状手摺5と記すことがある)を備えている。
第1筒状手摺5aの筒内部にその内径よりも外径が小さい後述する一対の第2筒状手摺5bが筒軸線方向に入れ子式に嵌合され、第2筒状手摺5bが第1筒状手摺5aから伸縮する。
The first bridge body 2a is a pair of first cylindrical bars 3a (in parallel to each other, extending in the direction in which the telescopic bridge 1 is extended) (this first cylindrical bar 3a and a second cylindrical bar described later). The crosspiece 3b and the third cylindrical crosspiece 3c may be collectively referred to as a cylindrical crosspiece 3), and a first floor plate 4a covering the pair of first cylindrical crosspieces 3a (the first floor plate 4a). And a second floor plate 4b and a third floor plate 4c, which will be described later, may be referred to as a floor plate 4).
A pair of second cylindrical bars 3b, which will be described later, whose outer diameter is smaller than the inner diameter of the first cylindrical bars 3a are fitted in a nested manner in the cylinder axis direction, and the second cylindrical bars 3b are the first cylinders. It expands and contracts from the bar 3a.
The 1st floor board 4a is a flat board, and a person walks on this. A second floor plate 4b, which will be described later, overlaps the upper surface of the first floor plate 4a so as to be slidable in the direction of the cylinder axis of the first cylindrical bar 3a.
The first bridge 2a is parallel to the first cylindrical bar 3a and is provided above the first cylindrical bar 3a and is parallel to each other, and is a pair of first cylindrical handrails 5a (this first cylindrical handrail 5a). And a second handrail 5b and a third handrail 5c, which will be described later, may be referred to as a tubular handrail 5).
A pair of second cylindrical handrails 5b, which will be described later, have an outer diameter smaller than the inner diameter of the first cylindrical handrail 5a and are nested in the cylinder axis direction, and the second cylindrical handrail 5b is the first cylinder. It expands and contracts from the handrail 5a.

一対の第1筒状桟3aは、渡設方向の端部で第1連結部6a(この第1連結部6aと、後述する第2連結部6b及び第3連結部6cとを総称するときに連結部6と記すことがある)に連結されており、渡設方向後方の端部で後端部8に連結されている。
第1連結部6aには、第1床板4aの渡設方向の端部も連結されている。また、第1連結部6aには、第1筒状手摺5aの渡設方向の端部も第1支柱7a(この第1支柱7aと、後述する第2支柱7b及び第3支柱7cとを総称するときに支柱7と記すことがある)を介して連結されている。
また後端部8には、第1床板4aの渡設方向後方の端部も連結されている。また、後端部8には、第1筒状手摺5aの渡設方向後方の端部も支柱を介して連結されている。
The pair of first cylindrical bars 3a are arranged at the end in the extending direction when the first connecting portion 6a (this first connecting portion 6a, and the second connecting portion 6b and the third connecting portion 6c described later are collectively referred to). It is connected to the rear end 8 at the rear end in the passing direction.
An end of the first floor plate 4a in the extending direction is also connected to the first connecting portion 6a. Further, the first connecting portion 6a has a first column 7a (the first column 7a, and a second column 7b and a third column 7c, which will be described later) as a generic term. Are connected to each other through a column 7).
Further, the rear end portion 8 is also connected to the rear end portion of the first floor plate 4a in the extending direction. Further, the rear end portion 8 is also connected to the rear end portion of the first tubular handrail 5a in the passing direction via a support column.

第2橋体2bは、互いに平行で、伸縮式ブリッジ1が渡設される渡設方向に延びた一対の第2筒状桟3bと、この一対の第2筒状桟3bの間を覆う第2床板4bを備えている。この第2筒状桟3bの収縮方向側の端部が第1筒状桟3aに挿入されている。
第2筒状桟3bの筒内部にその内径よりも外径が小さい後述する一対の第3筒状桟3cが筒軸線方向に入れ子式に嵌合され、第3筒状桟3cが第2筒状桟3bから伸縮する。
第2床板4bは、平坦な板であり、この上を人が歩行する。この第2床板4bの上面を後述する第3床板4cが第2筒状桟3bの筒軸線方向に摺動自在に重なる。
また第2橋体2bは、第2筒状桟3bと平行であって第2筒状桟3bの上方に設けられた互いに平行な一対の第2筒状手摺5bを備えている。
第2筒状手摺5bの筒内部にその内径よりも外径が小さい後述する一対の第3筒状手摺5cが筒軸線方向に入れ子式に嵌合され、第3筒状手摺5cが第2筒状手摺5bから伸縮する。
一対の第2筒状桟3bは、渡設方向の端部で第2連結部6bに連結されている。第2連結部6bには、第2床板4bの渡設方向の端部も連結されている。また、第2連結部6bには、第2筒状手摺5bの渡設方向の端部も第2支柱7bを介して連結されている。
The second bridge 2b is parallel to each other and extends between the pair of second cylindrical bars 3b extending in the direction in which the telescopic bridge 1 is extended, and the second bridge 2b covers the space between the pair of second cylindrical bars 3b. Two floor boards 4b are provided. The end of the second cylindrical bar 3b on the contraction direction side is inserted into the first cylindrical bar 3a.
A pair of third cylindrical bars 3c, which will be described later, having a smaller outer diameter than the inner diameter are fitted inside the second cylindrical bar 3b in a nested manner in the cylinder axis direction, and the third cylindrical bar 3c is the second cylinder. It expands and contracts from the bar 3b.
The 2nd floor board 4b is a flat board, and a person walks on this. A third floor plate 4c, which will be described later, overlaps the upper surface of the second floor plate 4b so as to be slidable in the cylinder axis direction of the second cylindrical bar 3b.
The second bridge body 2b includes a pair of second cylindrical handrails 5b that are parallel to the second cylindrical bar 3b and provided above the second cylindrical bar 3b.
A pair of third cylindrical handrails 5c described later having a smaller outer diameter than the inner diameter are fitted into the second cylindrical handrail 5b in a nested manner in the cylinder axis direction, and the third cylindrical handrail 5c is the second cylinder. It expands and contracts from the handrail 5b.
The pair of second cylindrical bars 3b is connected to the second connecting part 6b at the end in the extending direction. An end of the second floor plate 4b in the extending direction is also connected to the second connecting portion 6b. Moreover, the edge part of the handing direction of the 2nd cylindrical handrail 5b is connected with the 2nd connection part 6b via the 2nd support | pillar 7b.

第3橋体2cは、第2橋体2bと同様に、第3筒状桟3c、第3床板4c、第3筒状手摺5c、第3連結部6c、第3支柱7cを備えている。   The 3rd bridge body 2c is provided with the 3rd cylindrical crosspiece 3c, the 3rd floor board 4c, the 3rd cylindrical handrail 5c, the 3rd connection part 6c, and the 3rd support | pillar 7c similarly to the 2nd bridge body 2b.

第1橋体2a、第2橋体2b、第3橋体2cは、上述したように一対の筒状桟3の外径及び内径と、一対の筒状手摺5の外径及び内径と、床板4の高さとが順次異なるように形成されており、各橋体2の連結部6が接近する収縮状態と、連結部6が離間する延伸状態とに変更自在に構成されている。   As described above, the first bridge body 2a, the second bridge body 2b, and the third bridge body 2c are the outer diameter and inner diameter of the pair of cylindrical rails 3, the outer diameter and inner diameter of the pair of cylindrical handrails 5, and the floor plate. 4 are formed so as to be sequentially different from each other, and are configured to be freely changeable between a contracted state in which the connecting portions 6 of the bridge bodies 2 approach each other and an extended state in which the connecting portions 6 are separated from each other.

筒状桟3、床板4、筒状手摺5、連結部6及び支柱7の材質としては特に限定されないが、軽量で強度の高い材質が好ましく、アルミニウムやカーボングラファイト等を好適に用いることが出来る。特に筒状桟3及び筒状手摺5にアルミニウム管を用いれば伸縮式ブリッジを安価にすることができる。   Although the material of the cylindrical crosspiece 3, the floor board 4, the cylindrical handrail 5, the connection part 6, and the support | pillar 7 is not specifically limited, A lightweight and high intensity | strength material is preferable and aluminum, carbon graphite, etc. can be used conveniently. In particular, if an aluminum tube is used for the cylindrical bar 3 and the cylindrical handrail 5, the telescopic bridge can be made inexpensive.

上述したように各橋体2が延伸、収縮するので、収縮状態で運搬することができる。このことにより伸縮式ブリッジ1を容易に運搬することができる。また、設置場所で各橋体2を延伸させるだけでよいので、容易に伸縮式ブリッジ1を設置することができる。   Since each bridge body 2 extends and contracts as described above, it can be transported in a contracted state. As a result, the telescopic bridge 1 can be easily transported. Moreover, since it is only necessary to extend each bridge body 2 at the installation location, the telescopic bridge 1 can be easily installed.

次に、第2橋体2b、第3橋体2cの延伸、及び収縮を行うための構成について図3を用いて説明する。図3は伸縮式ブリッジ1の裏面の概略図であり、(a)は延伸状態の裏面の概略図であり、(b)は収縮状態の裏面の概略図である。
隣接する橋体である第1橋体2a、第2橋体2bにおいて、渡設方向の前方側の橋体である第2橋体2bの第2連結部6bが、渡設方向後方側の橋体である第1橋体2aの第1連結部6aを超えて後方に突出した突出部9aを備えている。突出部9aは第1連結部6aに開けられた穴を通って後方に突出している。
突出部9aには、第2橋体2bを第1橋体2aから延伸させる延伸用牽引部材10aの一端が連結されている。第1連結部6aの後方面には延伸用牽引部材10aが経由する第1経由部11aが設けられている。第1経由部11aは滑車であるが、延伸用牽引部材10aが経由できるならば滑車に限られない。延伸用牽引部材10aが滑動状態で係回できればよく、例えば延伸用牽引部材10aを引っかける丸棒のようなものでもよい。
延伸用牽引部材10aの他端は、第1経由部11aを経由し、後端部8に開けられた穴を通って後端部8の後方に延出している。
また、第2橋体2bを第1橋体2aに収縮させる収縮用牽引部材12aの一端が突出部9aを介して第2連結部6bに連結されており、収縮用牽引部材12aの他端が後端部8に開けられた穴を通って後端部8の後方に延出している。なお、収縮用牽引部材12aの一端は、突出部9aを介さずに直接第2連結部6bに連結されてもよい。
第2橋体2bが第1橋体2aから延伸する場合には延伸用牽引部材10aが後端部8側に引っ張られ、第2橋体2bが第1橋体2aに収縮する場合には収縮用牽引部材12aが後端部8側に引っ張られる。
なお、突出部9aには、第2橋体2bが第1橋体2aから抜け出すことを防止するストッパー13aが設けられている。
Next, the structure for extending and contracting the second bridge body 2b and the third bridge body 2c will be described with reference to FIG. FIG. 3 is a schematic diagram of the back surface of the telescopic bridge 1, (a) is a schematic diagram of the back surface in the stretched state, and (b) is a schematic diagram of the back surface in the contracted state.
In the first bridge body 2a and the second bridge body 2b which are adjacent bridge bodies, the second connecting portion 6b of the second bridge body 2b which is the bridge body on the front side in the passing direction is connected to the bridge on the rear side in the passing direction. It has a protruding portion 9a protruding rearward beyond the first connecting portion 6a of the first bridge body 2a which is a body. The protruding portion 9a protrudes rearward through a hole formed in the first connecting portion 6a.
One end of an extension traction member 10a that extends the second bridge 2b from the first bridge 2a is connected to the protrusion 9a. A first via portion 11a through which the drawing pulling member 10a passes is provided on the rear surface of the first connecting portion 6a. Although the 1st passage part 11a is a pulley, if the extending | stretching pulling member 10a can pass, it will not be restricted to a pulley. It is only necessary that the drawing traction member 10a can be engaged in a sliding state. For example, the drawing traction member 10a may be a round bar that hooks the drawing traction member 10a.
The other end of the drawing pulling member 10a extends to the rear of the rear end portion 8 through a hole formed in the rear end portion 8 via the first via portion 11a.
Further, one end of the contracting traction member 12a for contracting the second bridge body 2b to the first bridge body 2a is connected to the second connecting portion 6b via the protruding portion 9a, and the other end of the contracting traction member 12a is connected to the other end of the contracting traction member 12a. It extends rearward of the rear end portion 8 through a hole formed in the rear end portion 8. Note that one end of the contraction pulling member 12a may be directly connected to the second connecting portion 6b without the protruding portion 9a.
When the second bridge body 2b extends from the first bridge body 2a, the pulling traction member 10a is pulled toward the rear end 8 side, and when the second bridge body 2b contracts to the first bridge body 2a, it contracts. The traction member 12a is pulled toward the rear end 8 side.
The protruding portion 9a is provided with a stopper 13a that prevents the second bridge body 2b from slipping out of the first bridge body 2a.

延伸用牽引部材10a及び収縮用牽引部材10bの材質としては金属製ワイヤー、チェーン、天然繊維ロープ及び合成繊維ロープ等が用いられる。   As materials for the drawing traction member 10a and the contraction traction member 10b, metal wires, chains, natural fiber ropes, synthetic fiber ropes, and the like are used.

隣接する橋体である第2橋体2b、第3橋体2cにおいても、同様にして突出部9b、延伸用牽引部材10b、第2経由部11b、収縮用牽引部材12b、ストッパー13bが設けられている。   Similarly, the second bridge body 2b and the third bridge body 2c, which are adjacent bridge bodies, are also provided with a protruding portion 9b, an extension traction member 10b, a second via portion 11b, a contraction traction member 12b, and a stopper 13b. ing.

上述したように第2橋体2b及び第3橋体2cが延伸用牽引部材10a、10b及び収縮用牽引部材12a、12bに連結されているので、第1橋体2aの後端部8でそれぞれの牽引部材を引っ張るだけで、容易に第2橋体2b及び第3橋体2cを延伸、収縮させることができる。   As described above, since the second bridge body 2b and the third bridge body 2c are connected to the stretching traction members 10a and 10b and the contraction traction members 12a and 12b, respectively, at the rear end portion 8 of the first bridge body 2a. The second bridge body 2b and the third bridge body 2c can be easily extended and contracted simply by pulling the pulling member.

次に、支柱間に設けられる間柱について、図4及び図5を用いて説明する。
前記橋体の内で他の橋体(第1橋体2a)から延伸する橋体である第2橋体2bは、第2筒状桟3bと第2筒状手摺5bとに筒軸線方向に摺動自在に取り付けられた間柱14aを備えている。
間柱14aは上部と下部とがリング形状になっており、上部で第2筒状手摺5bに嵌合し、下部で第2筒状桟3bに嵌合している。間柱14aは第2橋体2bが第1橋体2aに収縮している収縮状態のときには、収縮した第2連結部6bと第1連結部6aとの間に位置している。間柱14aは、第2連結部6bと連結している第2支柱7bに牽引部材15aで繋がれており、第2橋体2bが第1橋体2aから延伸するときに、牽引部材15aに引っ張られて引き出される。牽引部材15aの長さを調整することにより、引き出されたときの間柱14aの位置を調整することができる。牽引部材15aの材質としては金属製ワイヤー、チェーン、天然繊維ロープ及び合成繊維ロープ等が用いられる。
Next, the studs provided between the columns will be described with reference to FIGS. 4 and 5.
Among the bridge bodies, the second bridge body 2b, which is a bridge body extending from another bridge body (first bridge body 2a), extends in the cylinder axis direction to the second cylindrical rail 3b and the second cylindrical handrail 5b. A spacer 14a is provided that is slidably attached.
The upper portion and the lower portion of the spacer 14a are ring-shaped, and the upper portion is fitted to the second cylindrical handrail 5b and the lower portion is fitted to the second cylindrical bar 3b. When the second bridge body 2b is contracted to the first bridge body 2a, the inter-column 14a is located between the contracted second connecting portion 6b and the first connecting portion 6a. The intermediate column 14a is connected to the second support column 7b connected to the second connecting portion 6b by the pulling member 15a, and is pulled by the pulling member 15a when the second bridge body 2b extends from the first bridge body 2a. And pulled out. By adjusting the length of the pulling member 15a, it is possible to adjust the position of the column 14a when it is pulled out. As a material of the pulling member 15a, a metal wire, a chain, a natural fiber rope, a synthetic fiber rope, or the like is used.

第2橋体2bから延伸する第3橋体2cも、第2橋体2bと同様に、間柱14b及び牽引部材15bを備えている。
このように間柱14a、14bを筒軸線方向に摺動自在にし、第2支柱7b、第3支柱7cと牽引部材15a、15bで繋ぐことにより、延伸と同時に間柱14a、14bを適切な位置に容易に配置することができる。このことにより、間柱14a、14bを配置する手間が少なくなるので、伸縮式ブリッジ1の設置が容易になる。
なお、第1橋体2aも第1支柱7aと、第1橋体2aの渡設方向後方に設けた支柱7dの間に間柱を有している。
Similarly to the second bridge body 2b, the third bridge body 2c extending from the second bridge body 2b also includes a stud 14b and a pulling member 15b.
In this way, the spacers 14a and 14b are slidable in the cylinder axis direction, and are connected to the pulling members 15a and 15b by the second support column 7b and the third support column 7c. Can be arranged. As a result, the labor for arranging the studs 14a and 14b is reduced, and the installation of the telescopic bridge 1 is facilitated.
The first bridge body 2a also has a stud between the first support pillar 7a and the support pillar 7d provided at the rear of the first bridge body 2a in the passing direction.

本実施形態の伸縮式ブリッジ1を設置する方法を、伸縮式ブリッジ1を川に渡す例を用いて説明する。
(第1ステップ)図6(a)参照。伸縮式ブリッジ1の第1橋体2aの底に底板Hを取り付け、伸縮式ブリッジ1を川の岸W1に設置する。底板Hは、第1橋体2aの底から渡設方向後方に延出している。また、底板Hの中央付近にポールPが立っており、ポールPに第1橋体2aの支柱7dを固定する。ポールPの上端には牽引部材を経由させる滑車(図示せず)が設けられており、一端を第1連結部6aに連結された牽引部材LをポールPの上端の滑車を経由させて底板Hの端部に他端を固定する。また、底板Hの延出した箇所に重りMを積載する。このようにして、伸縮式ブリッジ1を岸W1に固定する。
なお、牽引部材Lの材質としては金属製ワイヤー、チェーン、天然繊維ロープ及び合成繊維ロープ等が用いられる。
(第2ステップ)図6(b)参照。延伸用牽引部材10a(図示せず)及び延伸用牽引部材10b(図示せず)を渡設方向後方に引っ張って、第2橋体2b及び第3橋体2cを渡設方向に延伸させ、伸縮式ブリッジ1を対岸W2に渡す。このとき、間柱14a及び14bが牽引部材15a及び15bによって引き出され、所定の位置に配置される。
(第3ステップ)図6(c)参照。支柱及び間柱の間に、筒状桟3と筒状手摺5とを斜めに連結するトラスTを取り付ける。このトラスTによって筒状手摺5の強度が高くなり、また、人の伸縮式ブリッジ1からの転落が防止される。
このように、本発明に係る伸縮式ブリッジ1は、設置現場で組み立てる必要がなく、設置現場に運搬して岸W1に固定し、延伸用牽引部材を引っ張るだけなので、容易に設置することができる。
A method of installing the telescopic bridge 1 of the present embodiment will be described using an example in which the telescopic bridge 1 is passed to a river.
(First Step) See FIG. 6 (a). A bottom plate H is attached to the bottom of the first bridge body 2a of the telescopic bridge 1, and the telescopic bridge 1 is installed on the river bank W1. The bottom plate H extends rearward from the bottom of the first bridge body 2a. A pole P stands near the center of the bottom plate H, and the column 7d of the first bridge body 2a is fixed to the pole P. A pulley (not shown) is provided at the upper end of the pole P through a traction member, and the traction member L, one end of which is connected to the first connecting portion 6a, is passed through the pulley at the upper end of the pole P, and the bottom plate H The other end is fixed to the end portion. Further, a weight M is loaded on the extended portion of the bottom plate H. In this way, the telescopic bridge 1 is fixed to the shore W1.
In addition, as a material of the pulling member L, a metal wire, a chain, a natural fiber rope, a synthetic fiber rope, or the like is used.
(Second Step) See FIG. 6 (b). The stretching traction member 10a (not shown) and the stretching traction member 10b (not shown) are pulled rearward in the passing direction, and the second bridge body 2b and the third bridge body 2c are extended in the passing direction to expand and contract. Pass the formula bridge 1 to the opposite shore W2. At this time, the spacers 14a and 14b are pulled out by the pulling members 15a and 15b and arranged at predetermined positions.
(Third Step) See FIG. 6 (c). A truss T for connecting the cylindrical bar 3 and the cylindrical handrail 5 at an angle is attached between the column and the interpost. The truss T increases the strength of the cylindrical handrail 5 and prevents the person from falling from the telescopic bridge 1.
Thus, the telescopic bridge 1 according to the present invention does not need to be assembled at the installation site, is simply transported to the installation site and fixed to the shore W1, and the pulling traction member is pulled, so that it can be easily installed. .

伸縮式ブリッジ1を撤去する場合には、トラスTを取り外した後に収縮用牽引部材12a、12bを引っ張って各橋体2を収縮させて撤去する。   When the telescopic bridge 1 is removed, after the truss T is removed, the traction members 12a and 12b for contraction are pulled to contract each bridge body 2 and remove it.

なお、上記実施形態においては、伸縮を延伸用牽引部材10a、10b及び収縮用牽引部材12a、12bによって行ったが、伸縮方法はこの方法に限られず、例えば第3橋体2cの先端をクレーンによって引っ張って伸縮させてもよい。
また、上記実施形態においては、間柱14a、14bを連結部6b、6cに連結された牽引部材15a、15bによって引き出し出して配置したが、この方法に限られず、例えば手動によって配置してもよい。
また、上記実施形態においては橋体を3台としたが、橋体の数は3台に限られず、複数なら何台でもよい。
また、床板4には、厳密に平坦な板だけでなく、人の歩行の障害のならない程度の凹凸を有した実質的に平坦な板も含む。
In the above embodiment, the expansion and contraction is performed by the stretching traction members 10a and 10b and the contraction traction members 12a and 12b. However, the expansion / contraction method is not limited to this method, and for example, the tip of the third bridge body 2c is formed by a crane. It may be stretched by pulling.
In the above embodiment, the spacers 14a and 14b are drawn out by the pulling members 15a and 15b connected to the connecting portions 6b and 6c. However, the present invention is not limited to this method.
In the above embodiment, three bridge bodies are used. However, the number of bridge bodies is not limited to three, and any number of bridge bodies may be used.
Further, the floor board 4 includes not only a strictly flat board but also a substantially flat board having irregularities that do not hinder human walking.

本発明は、例えば災害時等の緊急用の橋に好適に使用される。   The present invention is suitably used for an emergency bridge, for example, at the time of a disaster.

1 伸縮式ブリッジ
2 橋体
3 筒状桟
4 床板
5 筒状手摺
6 連結部
9a、9b 突出部
10a、10b 延伸用牽引部材
12a、12b 収縮用牽引部材
14a、14b 間柱
DESCRIPTION OF SYMBOLS 1 Telescopic bridge 2 Bridge body 3 Cylindrical crosspiece 4 Floor board 5 Cylindrical handrail 6 Connection part 9a, 9b Protrusion part 10a, 10b Extension traction member 12a, 12b Contraction traction member 14a, 14b

Claims (3)

運搬可能な伸縮式ブリッジであって、
互いに平行で、該伸縮式ブリッジが渡設される渡設方向に延びた一対の筒状桟と、
該一対の筒状桟の間を覆う床板と、
前記筒状桟と平行であって該筒状桟の上方に設けられた互いに平行な一対の筒状手摺と、
前記筒状桟と床板と筒状手摺とを前記渡設方向のそれぞれの端部で連結する連結部とを備え、
前記一対の筒状桟の外径及び内径と、前記一対の筒状手摺の外径及び内径と、前記床板の高さとが順次異なるように形成された複数の橋体が、
内径の大きい一対の筒状桟内にその内径よりも外径の小さい一対の筒状桟が筒軸線方向に入れ子式に嵌合され、
内径の大きい一対の筒状手摺内にその内径よりも外径の小さい一対の筒状手摺が筒軸線方向に入れ子式に嵌合され、
低い床板の上にその床板よりも高い床板が前記筒状桟の筒軸線方向に摺動自在に重なるように順次接合することにより、
各橋体の前記連結部が接近する収縮状態と、前記連結部が離間する延伸状態とに変更自在に構成されており、
隣接する2台の前記橋体で
渡設方向の前方側の橋体の連結部が、渡設方向の後方側の橋体の連結部を超えて渡設方向の後方に突出した突出部を備え、渡設方向の前方側の橋体を渡設方向の後方側の橋体から延伸させる延伸用牽引部材の一端が該突出部に連結されており、
渡設方向の後方側の橋体の連結部が、前記延伸用牽引部材が経由する経由部を備え、
前記延伸用牽引部材の他端が前記経由部を経由して渡設方向の後方に延出しており、
渡設方向の前方側の橋体の連結部に、該橋体を渡設方向の後方側の橋体に収縮させる収縮用牽引部材の一端が連結され、該収縮用牽引部材の他端が渡設方向の後方に延出しており、
渡設方向の前方側の橋体を渡設方向の後方側の橋体から延伸する場合には、前記延伸用牽引部材が渡設方向の後方に引っ張られ、
渡設方向の前方側の橋体を渡設方向の後方側の橋体に収縮する場合には、前記収縮用牽引部材が渡設方向の後方に引っ張られることを特徴とする伸縮式ブリッジ。
A telescopic bridge that can be transported,
A pair of cylindrical bars extending parallel to each other and extending in the direction in which the telescopic bridge is passed;
A floor board covering between the pair of cylindrical bars;
A pair of cylindrical handrails parallel to each other and provided above the cylindrical bars,
A connecting portion for connecting the cylindrical bar, the floor plate, and the cylindrical handrail at each end in the handing direction;
A plurality of bridge bodies formed such that the outer diameter and inner diameter of the pair of cylindrical rails, the outer diameter and inner diameter of the pair of cylindrical handrails, and the height of the floor board are sequentially different from each other,
In a pair of cylindrical bars with a large inner diameter, a pair of cylindrical bars with an outer diameter smaller than the inner diameter is fitted in a nested manner in the cylinder axis direction,
In a pair of cylindrical handrails having a large inner diameter, a pair of cylindrical handrails having an outer diameter smaller than the inner diameter are fitted in a nested manner in the cylinder axis direction,
By sequentially joining on the lower floor plate so that the floor plate higher than the floor plate overlaps slidably in the cylinder axis direction of the cylindrical bar,
Each bridge body is configured to be freely changeable between a contracted state in which the connecting portions approach and an extended state in which the connecting portions are separated from each other,
The connecting part of the bridge body on the front side in the passing direction of the two adjacent bridge bodies includes a projecting portion protruding rearward in the passing direction beyond the connecting part of the bridge body on the rear side in the passing direction. , One end of a drawing traction member for extending the bridge body on the front side in the passing direction from the bridge body on the rear side in the passing direction is connected to the protruding portion,
The connecting portion of the bridge body on the rear side in the handing direction includes a via portion through which the drawing traction member passes,
The other end of the drawing traction member extends rearward in the passing direction via the transit portion,
One end of a contracting traction member for contracting the bridge body to a bridge body on the rear side in the passing direction is connected to the connecting portion of the bridge body on the front side in the passing direction, and the other end of the contracting traction member is connected to the connecting part. Extending backward in the direction of installation,
When extending the bridge body on the front side in the passing direction from the bridge body on the rear side in the passing direction, the pulling traction member is pulled rearward in the passing direction,
A telescopic bridge, wherein when the bridge on the front side in the passing direction is contracted to the bridge on the rear side in the passing direction, the contracting traction member is pulled rearward in the passing direction.
前記橋体の内で他の橋体から延伸する橋体が、該橋体の筒状桟と筒状手摺とに前記筒状桟の筒軸線方向に摺動自在に取り付けられた間柱を備え、該間柱が、該橋体の連結部に牽引部材によって連結されていることを特徴とする請求項1に記載の伸縮式ブリッジ。   The bridge body extending from the other bridge body in the bridge body includes a stud that is slidably attached to the tubular rail and the tubular handrail of the bridge body in the cylinder axis direction of the cylindrical rail, The telescopic bridge according to claim 1, wherein the stud is connected to a connecting portion of the bridge body by a pulling member. 伸びた状態の伸縮式ブリッジの使用時において、支柱及び間柱の間に、筒状桟と筒状手摺とを斜めに連結するトラスを取り付けたことを特徴とする請求項1又は請求項2に記載の伸縮式ブリッジ。 3. A truss for obliquely connecting a cylindrical bar and a cylindrical handrail is attached between the support column and the stud when the stretchable bridge in the extended state is used. Telescopic bridge.
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