JP6950108B1 - How to check under the bridge deck - Google Patents

How to check under the bridge deck Download PDF

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JP6950108B1
JP6950108B1 JP2021050985A JP2021050985A JP6950108B1 JP 6950108 B1 JP6950108 B1 JP 6950108B1 JP 2021050985 A JP2021050985 A JP 2021050985A JP 2021050985 A JP2021050985 A JP 2021050985A JP 6950108 B1 JP6950108 B1 JP 6950108B1
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bridge
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直也 西田
直也 西田
中村 尚武
尚武 中村
博邦 藤岡
博邦 藤岡
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中日本ハイウェイ・エンジニアリング東京株式会社
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Abstract

【課題】橋梁の床版下構造部材について、点検技術者が行う近接目視による健全性の診断を代替し得る橋梁床版下点検方法を提供する。【解決手段】橋梁の橋脚1間に、床版下構造部材に囲われた空間を通る先行ケーブルを架け渡し、前記先行ケーブルを使用して、撮像装置5を移動させるための線条路4を架け渡し、前記撮像装置5により前記床版下構造部材の画像を取得した後、前記線条路4を撤去する。【選択図】図1PROBLEM TO BE SOLVED: To provide a bridge underdeck inspection method capable of substituting a diagnosis of soundness by close visual inspection performed by an inspection engineer for a bridge underfloor structural member. SOLUTION: A leading cable passing through a space surrounded by a floor block copy structural member is laid between piers 1 of a bridge, and a linear path 4 for moving an image pickup device 5 is provided by using the leading cable. After bridging and acquiring an image of the floor block copy structural member by the imaging device 5, the linear path 4 is removed. [Selection diagram] Fig. 1

Description

本発明は、橋梁の床版下において構造部材の点検を行う橋梁床版下点検方法に関するものである。 The present invention relates to a bridge block copy inspection method for inspecting structural members under a bridge deck.

構造部材の点検では、目視検査や打音検査が広く一般的に実施されている。しかしながら、橋梁の床版下の構造部材は高所に存在するため、打音検査を実施するためには、点検者が点検対象となる構造部材の近づくための検査通路を設ける必要がある。そして、検査通路を設けるための様々な技術が提案されている。 In the inspection of structural members, visual inspection and tapping sound inspection are widely and generally performed. However, since the structural members under the deck of the bridge are located at a high place, it is necessary for the inspector to provide an inspection passage for the structural members to be inspected to approach in order to carry out the tapping sound inspection. Then, various techniques for providing an inspection passage have been proposed.

例えば、特開平1−125404号公報には、設置現場において容易に組み立てることができ、対傾構やラテラルプレーシングとの干渉が生じる場所への設置を可能とする橋梁用常設点検通路装置が提案されている。 For example, Japanese Patent Application Laid-Open No. 1-125404 proposes a permanent inspection passage device for bridges that can be easily assembled at an installation site and can be installed in a place where interference with an anti-tilt structure or lateral bracing occurs. ing.

一方、近年では、道路施設の定期点検の支援を目的とする新技術(以下、「点検支援技術」とする)を活用した効率的な点検の実施に対するニーズが高まっており、平成30年度の定期点検要領の改定では、定期点検を行う知識と技能を有する者(以下、「点検技術者」とする)の判断により点検支援技術を活用した効率的な点検を実施することが可能とされた。そして、平成31年2月の橋梁定期点検要領では、「定期点検を行う者が近接目視によるときと同等の健全性の診断を行うことができると定期点検を行う者が判断した場合には、その他の方法についても、近接目視を基本とする範囲と考えてよい」とされている。 On the other hand, in recent years, there has been an increasing need for efficient inspections utilizing new technology (hereinafter referred to as "inspection support technology") aimed at supporting regular inspections of road facilities. In the revision of the inspection procedure, it has become possible to carry out efficient inspections utilizing inspection support technology at the discretion of a person who has the knowledge and skills to perform regular inspections (hereinafter referred to as "inspection technician"). Then, in the bridge periodic inspection procedure in February 2019, "If the person performing the periodic inspection determines that the person performing the periodic inspection can perform the same soundness diagnosis as the case of close visual inspection, the person performing the periodic inspection will be able to perform the diagnosis. Other methods can also be considered as a range based on close-up visual inspection. "

また、令和元年度からの二巡目点検の中で道路管理者が点検支援技術を円滑に活用できるように、橋梁定期点検要領とあわせて活用できる参考資料として、国土交通省では、「点検支援技術性能カタログ(案)」(以下、「性能カタログ」する)を作成した。この性能カタログには小型無線操作飛行体(通称「ドローン」)や車両に取り付けたカメラで施設の近接写真を撮影する技術や、赤外線によりコンクリートのうき・剥離を非破壊検査する技術など、全16技術が掲載され、技術の活用が開始されている。 In addition, as a reference material that can be used together with the bridge periodic inspection procedure so that road managers can smoothly utilize the inspection support technology in the second round inspection from the first year of Reiwa, the Ministry of Land, Infrastructure, Transport and Tourism has announced that "Inspection" Assistive technology performance catalog (draft) ”(hereinafter referred to as“ performance catalog ”) was created. This performance catalog includes a total of 16 technologies, including a technology for taking close-up photos of facilities with a small wirelessly operated vehicle (commonly known as a "drone") and a camera attached to the vehicle, and a technology for non-destructive inspection of concrete swelling and peeling with infrared rays. The technology has been posted and the use of the technology has started.

特開平1−125404号公報Japanese Unexamined Patent Publication No. 1-125404

橋梁定期点検要領 国土交通省Bridge periodic inspection procedure Ministry of Land, Infrastructure, Transport and Tourism 点検支援技術性能カタログ(案) 国土交通省Inspection support technology performance catalog (draft) Ministry of Land, Infrastructure, Transport and Tourism

点検技術者が道路施設の健全性の診断を行う際には、近接目視を基本とした状態の把握を必要とするものの、定期点検のさらなる合理化を進めるためには近接目視によらない新しい点検方法の開発が求められる。例えば、ドローン等により撮影した画像からAI技術等を活用して自動診断を行ったり、計測・モニタリング技術により道路施設を構成する部材等の耐荷力を直接計測・評価することにより健全性の診断を行ったりする手法が考えられる。そして、これらの技術・手法を積極的に活用することで、点検技術者が行う近接目視による健全性の診断を代替し、近接目視による作業量を低減し合理化することが考えられる。 When an inspection technician diagnoses the soundness of road facilities, it is necessary to grasp the condition based on close visual inspection, but in order to further rationalize regular inspection, a new inspection method that does not rely on close visual inspection Development is required. For example, automatic diagnosis is performed from images taken by drones using AI technology, etc., and soundness is diagnosed by directly measuring and evaluating the load bearing capacity of members that make up road facilities using measurement / monitoring technology. A method of doing it can be considered. Then, by positively utilizing these techniques / methods, it is conceivable to replace the diagnosis of soundness by close visual inspection performed by an inspection engineer and reduce and rationalize the amount of work by close visual inspection.

そこで、本発明は、橋梁の床版下構造部材について、点検技術者が行う近接目視による健全性の診断を代替し得る橋梁床版下点検方法を提供することを目的とする。 Therefore, an object of the present invention is to provide a bridge block copy inspection method that can replace the diagnosis of soundness by close visual inspection performed by an inspection engineer for a bridge block copy structural member.

本発明に係る橋梁床版下点検方法では、橋梁の橋脚間に、床版下構造部材に囲われた空間を通る先行ケーブルを架け渡し、前記先行ケーブルを使用して、撮像装置を移動させるための線条路を、前記床版下構造部材に囲われた空間に架け渡し、前記撮像装置により前記床版下構造部材の画像を取得した後、前記線条路を撤去する。 In the bridge deck inspection method according to the present invention, a leading cable passing through a space surrounded by a floor slab structural member is laid between bridge pedestals of a bridge, and the preceding cable is used to move an imaging device. Is bridged over a space surrounded by the underfloor structural member, an image of the underfloor structural member is acquired by the imaging device, and then the streak is removed.

前記先行ケーブルを、飛行体を使用して架け渡してもよい。 The leading cable may be bridged using an air vehicle.

前記線条路は一組の並行ケーブルで構成され、前記撮像装置は前記並行ケーブル上を走行するものであってもよい。 The streak may be composed of a set of parallel cables, and the image pickup device may run on the parallel cables.

前記撮像装置は、撮像手段を載置する基台と、前記並行ケーブルに係合し前記線条路上で前記基台を支持する複数の車輪を備え、前記複数の車輪の各々は独立して駆動するものであってもよい。 The image pickup apparatus includes a base on which an image pickup means is placed and a plurality of wheels that engage with the parallel cable and support the base on the linear road, and each of the plurality of wheels is independently driven. It may be something to do.

本発明に係る橋梁床版下点検方法によれば、橋梁の橋脚間に、床版下構造部材に囲われた空間を通る、撮像装置を移動させるための線条路を架け渡し、撮像装置により取得した画像を通して、床版下構造部材の目視検査を行うことができる。しかも、線条路は、検査が終了した後に撤去されるため、線条路を維持するための点検も不要となる。従って、橋梁の床版下構造部材について、点検技術者が行う近接目視による健全性の診断によることなく点検することが可能となる。 According to the bridge block copy inspection method according to the present invention, a linear path for moving the image pickup device, which passes through the space surrounded by the floor block copy structural member, is laid between the piers of the bridge, and the image pickup device is used. Through the acquired image, a visual inspection of the floor block copy structural member can be performed. Moreover, since the streak is removed after the inspection is completed, the inspection for maintaining the streak becomes unnecessary. Therefore, it is possible to inspect the underfloor structural member of the bridge without the diagnosis of soundness by close visual inspection performed by an inspection engineer.

また、先行ケーブルを使用して線条路を架け渡すため、床版下構造部材に囲われ狭小な空間であっても、先行ケーブルを細く軽量なものとすることにより、架け渡すことが可能となる。なお、先行ケーブルを、飛行体を使用して架け渡すこととすれば、足場設置工事などの付随工事を要することなく、必要に応じて短時間で簡単に架け渡すことが可能となる。ただし、先行ケーブルを架け渡す手法に制限はなく、状況に応じて適切な手法を採用すればよい。 In addition, since the lead cable is used to bridge the line, even in a narrow space surrounded by the floor block copy structural members, the leading cable can be bridged by making it thin and lightweight. Become. If the leading cable is bridged using an air vehicle, it can be easily bridged in a short time as needed without requiring ancillary work such as scaffolding installation work. However, there is no limitation on the method of connecting the leading cable, and an appropriate method may be adopted depending on the situation.

更に、線条路が一組の並行ケーブルで構成され、撮像装置が並行ケーブル上を走行するものであれば、橋梁の下側から目視点検できない、床版下構造物の床版直下部分の点検も可能となる。 Furthermore, if the streak is composed of a set of parallel cables and the imaging device runs on the parallel cables, inspection of the part directly under the floor slab of the underfloor structure that cannot be visually inspected from the underside of the bridge. Is also possible.

更にまた、撮像装置が、撮像手段を載置する基台と、並行ケーブルに係合し線条路上で基台を支持する複数の車輪を備え、複数の車輪の各々が独立して駆動するものであれば、線条路がたるんだ状態となってもその上を走行することが可能となり、ケーブルから一部の車輪が脱輪した場合であっても他の車輪がケーブルに掛かっていれば、走行が可能となる。すなわち、走行時の事故発生による停止を防ぐことにより、橋梁の下側から目視点検できない部位を、点検技術者が行う近接目視による健全性の診断によることなく時間や手間を要することなく点検することが可能となる。 Furthermore, the imaging device includes a base on which the imaging means is placed and a plurality of wheels that engage with a parallel cable and support the base on a linear road, and each of the plurality of wheels is independently driven. If so, it is possible to drive on the slack road even if it is in a slack state, and even if some wheels are removed from the cable, if other wheels are hung on the cable. , It becomes possible to run. In other words, by preventing a stop due to an accident while driving, a part that cannot be visually inspected from under the bridge should be inspected without taking time and effort without having to perform a close-up visual soundness diagnosis performed by an inspection technician. Is possible.

本発明に係る橋梁床版下点検方法が実施される床版下構造部材を示す斜視図である。It is a perspective view which shows the floor block copy structural member which carries out the bridge block copy inspection method which concerns on this invention. 撮像装置の実施形態を示す斜視図である。It is a perspective view which shows the embodiment of the image pickup apparatus.

図1、2を参照しながら、本発明に係る橋梁床版下点検方法の実施形態を説明する。この実施形態では、橋脚1に架設された複数のI型鋼2と、I型鋼の間に設けられた対傾構3の点検が想定されている。すなわち、この実施形態では、I型鋼2と対傾構3が、点検対象の床版下構造部材となる。なお、図1において、実施形態の理解を容易にするため、I型鋼の上方に構築されている床版の他、I型鋼を載置する支承などの細部の図示は省略されている。また、各部材の寸法比率も正確ではない。 An embodiment of the bridge deck block copy inspection method according to the present invention will be described with reference to FIGS. 1 and 2. In this embodiment, it is assumed that a plurality of I-shaped steels 2 erected on the pier 1 and an anti-tilt structure 3 provided between the I-shaped steels are inspected. That is, in this embodiment, the I-shaped steel 2 and the anti-tilt structure 3 are the floor block copy structural members to be inspected. In addition, in FIG. 1, in order to facilitate understanding of the embodiment, details such as a floor slab constructed above the I-shaped steel and a bearing on which the I-shaped steel is placed are omitted. Also, the dimensional ratio of each member is not accurate.

橋脚1の間には、I型鋼2と対傾構3に囲われた空間を通る線条路4が架け渡されている。そして、線条路4に沿って撮像装置5を移動させ、撮像装置5によって取得した画像を通して、I型鋼2と対傾構3の目視検査を行うものとなっている。 Between the piers 1, a linear road 4 passing through a space surrounded by the I-shaped steel 2 and the anti-tilt structure 3 is bridged. Then, the image pickup apparatus 5 is moved along the linear path 4, and the I-shaped steel 2 and the anti-tilt structure 3 are visually inspected through the image acquired by the image pickup apparatus 5.

線条路4は、図示しない飛行体を使用して橋脚1の間に架け渡された図示しない先行ケーブルを使用して架け渡されている。先行ケーブルは、状況に応じて適切な手法で架け渡せばよい。この実施形態では、ドローンと称される公知の無線操作飛行体を使用して架け渡すことが想定されているが、床版下構造部材に囲われ空間が、人の移動できるものであれば、人の手により架け渡すこととしてもよい。 The streak 4 is bridged using a leading cable (not shown) bridged between the piers 1 using an air vehicle (not shown). The leading cable may be laid by an appropriate method depending on the situation. In this embodiment, it is assumed that a known wirelessly operated flying object called a drone is used for bridging, but if the space is surrounded by the floor block copy structural member and a person can move, it is assumed. It may be handed over by human hands.

先行ケーブルには、高分子量ポリエチレンの極細の原糸を複数本編み込み、或いは、束ねて、一本のケーブルに仕立てたもの(PEライン)を使用することが好ましい。ただし、先行ケーブルは、床版下構造部材に囲われ空間の中で運搬できる重量であって、線条路4の架け渡し作業に必要な強度を有するものであればよく、作業現場の状況等に適した公知のケーブルを使用すればよい。例えば、ポリアミド素材のナイロンライン、ポリフッ化ビニリデン素材のフロロカーボンライン、或いは、ポリエステルを素材に用いたモノフィラメント等のエステルラインを使用してもよい。 As the leading cable, it is preferable to use a cable (PE line) in which a plurality of ultra-fine raw yarns of high molecular weight polyethylene are woven or bundled to form a single cable. However, the preceding cable may be of a weight that is surrounded by the structural members under the floor block and can be transported in the space, and may have the strength required for the bridging work of the line road 4, and the situation at the work site, etc. A known cable suitable for the above may be used. For example, a nylon line made of a polyamide material, a fluorocarbon line made of a polyvinylidene fluoride material, or an ester line such as a monofilament using a polyester material may be used.

線条路4は、一組の並行ケーブルで構成されている。線条路4の両端は、橋脚1の上に仮設された図示しない支柱に固定され、両端において生じる張力により全体が張られた状態とされている。そして、撮像装置5を搭載した車両が、その上を走行できるものとされている。線条路4を構成する並行ケーブルは、伸び率の小さいものが好ましく、例えば、救助活動や高所作業等で使用する目的で作られているスタティックロープを使用することができる。 The line road 4 is composed of a set of parallel cables. Both ends of the streak road 4 are fixed to columns (not shown) temporarily provided on the pier 1, and the whole is stretched by the tension generated at both ends. Then, the vehicle equipped with the image pickup device 5 is supposed to be able to travel on the vehicle. The parallel cable constituting the linear path 4 preferably has a low elongation rate, and for example, a static rope made for the purpose of being used for rescue activities, aerial work, or the like can be used.

線条路4の両端は、その上を撮像装置5が移動できる程度に張ることができるとともに、線条路4の撤去作業の妨げとならない状態で固定されればよく、その固定方法に制限はない。業現場の状況等に適した公知の固定手法を採用すればよいが、例えば、ラチェット式ベルトを併用することにより、線条路4より強く張ることができる。 Both ends of the linear path 4 may be stretched to such an extent that the imaging device 5 can move on the linear path 4, and may be fixed in a state that does not interfere with the removal work of the linear path 4, and the fixing method is limited. No. A known fixing method suitable for the situation at the business site may be adopted, but for example, by using a ratchet type belt in combination, the tension can be stronger than that of the line road 4.

撮像装置5は、撮像手段6を載置する基台7と、線条路4を構成する並行ケーブルに係合し線条路4上で基台7を支持する4個の車輪8を備えている。 The image pickup apparatus 5 includes a base 7 on which the image pickup means 6 is placed, and four wheels 8 that engage with the parallel cables constituting the line 4 and support the base 7 on the line 4. There is.

撮像手段6は、公知の高解像度カメラとズームレンズ実装し、遠隔操作を行うための制御機構が付加されたものとなっている。 The imaging means 6 is equipped with a known high-resolution camera and a zoom lens, and is provided with a control mechanism for remote control.

この実施形態の高解像度カメラは、解像度2400万画素を有し、18mm〜105mmの範囲でレンズを遠隔操作にて調整可能とされ、鋼材の疲労亀裂の発見につながる、微細な塗膜割れを撮影することができるものとなっている。 The high-resolution camera of this embodiment has a resolution of 24 million pixels, the lens can be adjusted remotely in the range of 18 mm to 105 mm, and fine coating film cracks that lead to the discovery of fatigue cracks in steel materials are photographed. It has become something that can be done.

この実施形態の高解像度カメラの制御機構は、遠隔操作による、撮影画面確認、カメラの360度旋回、及び、下向45度から上向き90度の鉛直方向への傾斜(チルト)が可能な状態で取り付けられている。 The control mechanism of the high-resolution camera of this embodiment is capable of checking the shooting screen, turning the camera 360 degrees, and tilting the camera from 45 degrees downward to 90 degrees upward in the vertical direction by remote control. It is attached.

更に、撮像手段6には、LED照明が実装されており、光の差込にくい橋梁下でも点検対象部位を照らすことにより、点検部位に焦点のあった画像の取得ができるものとなっている。なお、撮像装置5に、高解像度用のストロボ(フラッシュライト)を更に搭載させ、撮影手段6と連動させることで、構造部際の影ができる部分において撮影照度を確保するものとしてもよい。 Further, the image pickup means 6 is equipped with LED lighting, and by illuminating the inspection target portion even under a bridge where light is difficult to be inserted, an image focusing on the inspection portion can be acquired. The image pickup apparatus 5 may be further equipped with a high-resolution strobe (flashlight) and linked with the photographing means 6 to secure the photographing illuminance in a portion where a shadow is formed near the structural portion.

基台7は、金属製の矩形枠9と、矩形枠9の中央部に配置される載置板10で構成されている。そして、載置板10の上面には、撮像手段6を着脱自在に固定するための固定部11が設けられている。また、載置板10の下面には、車輪8を駆動させるための電池12が配置されている。 The base 7 is composed of a metal rectangular frame 9 and a mounting plate 10 arranged at the center of the rectangular frame 9. A fixing portion 11 for detachably fixing the image pickup means 6 is provided on the upper surface of the mounting plate 10. Further, a battery 12 for driving the wheel 8 is arranged on the lower surface of the mounting plate 10.

矩形枠9の四隅には、モータ13が取り付けられている。そして、4個の車輪8の各々が、各モータ13に取り付けられ、独立して駆動するものとなっている。 Motors 13 are attached to the four corners of the rectangular frame 9. Each of the four wheels 8 is attached to each motor 13 and is driven independently.

この撮像装置5は、線条路4上を移動するため、飛行体のように、天候に左右され撮影ができない状況となることは無い。また、線条路4上で止まることができるので、飛行体により移動しながら撮影する場合よりも、より安定した撮影が可能となる。更に、線条路4上を移動するため、飛行体よりも、より重量の大きい装置機器を装備することができる。 Since the image pickup device 5 moves on the linear path 4, the image pickup device 5 does not be in a situation where it cannot be photographed due to the weather, unlike a flying object. In addition, since it is possible to stop on the line road 4, more stable shooting becomes possible as compared with the case of shooting while moving by the flying object. Further, since it moves on the line road 4, it can be equipped with a device that is heavier than the flying object.

撮像装置5の構成に制限はなく、移動中に、搭載された撮像手段の撮影方向を任意に調整し、取得した画像を記憶できる機能を備えるものであればよい。公知の装置機器を適宜組み合わせたものとすればよいが、線条路4上での撮像装置5の円滑な移動を可能とするために、撮像手段6の重心は、可能な限り基台7に近づけることが好ましい。 The configuration of the image pickup device 5 is not limited as long as it has a function of arbitrarily adjusting the shooting direction of the mounted image pickup means and storing the acquired image while moving. A known device and device may be appropriately combined, but in order to enable smooth movement of the image pickup device 5 on the linear path 4, the center of gravity of the image pickup means 6 is set to the base 7 as much as possible. It is preferable to bring them closer.

1 橋脚
2 I型鋼
3 対傾構
4 線条路
5 撮像装置
6 撮像手段
7 基台
8 車輪
9 矩形枠
10 載置板
11 固定部
12 電池
13 モータ
1 Pier 2 I-shaped steel 3 Anti-tilt structure 4 Lines 5 Imaging device 6 Imaging means 7 Base 8 Wheels 9 Rectangular frame 10 Mounting plate 11 Fixed part 12 Battery 13 Motor

Claims (4)

橋梁の橋脚間に、床版下構造部材に囲われた空間を通る先行ケーブルを架け渡し、前記先行ケーブルを使用して、撮像装置を移動させるための線条路を、前記床版下構造部材に囲われた空間に架け渡し、前記撮像装置により前記床版下構造部材の画像を取得した後、前記線条路を撤去することを特徴とする橋梁床版下点検方法。 A leading cable that passes through a space surrounded by the underfloor structural member is laid between the bridge pedestals of the bridge, and the leading cable is used to provide a linear path for moving the image pickup apparatus to the underfloor structural member. A bridge deck inspection method, characterized in that the bridge is bridged over a space surrounded by a bridge, an image of the floor slab structural member is acquired by the imaging device, and then the streak is removed. 前記先行ケーブルを、飛行体を使用して架け渡す請求項1に記載の橋梁床版下点検方法。 The bridge deck inspection method according to claim 1, wherein the preceding cable is bridged using an air vehicle. 前記線条路は一組の並行ケーブルで構成され、前記撮像装置は前記並行ケーブル上を走行する請求項1又は2に記載の橋梁床版下点検方法。 The bridge deck block copy inspection method according to claim 1 or 2, wherein the line road is composed of a set of parallel cables, and the image pickup device travels on the parallel cables. 前記撮像装置は、撮像手段を載置する基台と、前記並行ケーブルに係合し前記線条路上で前記基台を支持する複数の車輪を備え、前記複数の車輪の各々は独立して駆動する請求項3に記載の橋梁床版下点検方法。
The image pickup apparatus includes a base on which an image pickup means is placed and a plurality of wheels that engage with the parallel cable and support the base on the linear road, and each of the plurality of wheels is independently driven. The bridge deck block copy inspection method according to claim 3.
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Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH06146223A (en) * 1992-11-12 1994-05-27 Taisei Corp Method of erecting suspended scaffold
JP2008236953A (en) * 2007-03-22 2008-10-02 Chugoku Electric Power Co Inc:The Method of stretching extension rope using autonomous control flying object
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JP2015218531A (en) * 2014-05-20 2015-12-07 有限会社嵯峨 Bridge girder inspection device
JP2016160697A (en) * 2015-03-04 2016-09-05 株式会社ハイボット Bridge inspection device and bridge inspection method
JP2017223087A (en) * 2016-06-17 2017-12-21 東日本高速道路株式会社 Imaging device and imaging system
JP6527218B1 (en) * 2017-12-18 2019-06-05 平野電業株式会社 Barbed construction unmanned aerial vehicle

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH06146223A (en) * 1992-11-12 1994-05-27 Taisei Corp Method of erecting suspended scaffold
JP2008236953A (en) * 2007-03-22 2008-10-02 Chugoku Electric Power Co Inc:The Method of stretching extension rope using autonomous control flying object
US20110106313A1 (en) * 2008-04-23 2011-05-05 Expressay & Transportation Research Institute, Korea Expressway Corporation Bridge inspection robot capable of climbing obstacle
JP2015218531A (en) * 2014-05-20 2015-12-07 有限会社嵯峨 Bridge girder inspection device
JP2016160697A (en) * 2015-03-04 2016-09-05 株式会社ハイボット Bridge inspection device and bridge inspection method
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