JP2007240386A - Nondestructive inspection apparatus - Google Patents

Nondestructive inspection apparatus Download PDF

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JP2007240386A
JP2007240386A JP2006064723A JP2006064723A JP2007240386A JP 2007240386 A JP2007240386 A JP 2007240386A JP 2006064723 A JP2006064723 A JP 2006064723A JP 2006064723 A JP2006064723 A JP 2006064723A JP 2007240386 A JP2007240386 A JP 2007240386A
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flaw
flaw detection
detection probe
inspection object
thinning
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Masahiko Kuroki
雅彦 黒木
Takatoshi Nishizawa
孝壽 西沢
Takumi Yamamoto
拓未 山本
Takahiro Endo
崇宏 遠藤
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Tokyo Electric Power Company Holdings Inc
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Tokyo Electric Power Co Inc
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a nondestructive inspection apparatus capable of exactly specifying a detection portion of a flaw or a reduced thickness area, easily carrying out a flaw inspection operation and precisely acquiring a flaw inspection waveform. <P>SOLUTION: An operator has a flaw inspection probe 11 in his/her hand, and slides and scans it along the surface of an object to be inspected. A measuring device 12 measures a detection signal of the flaw inspection probe 11 being slid and scanned along the surface of the object to be inspected, and judges the flaw inspection probe 11 to be positioned on the detection portion of the flaw or the reduced thickness area of the object to be inspected, based on the detection signal of the flaw inspection probe 11. When the flaw inspection probe 11 is positioned on the detection portion of the flaw or the reduced thickness area of the object to be inspected, a stopping device 13 stops the sliding and scanning operation of the flaw inspection probe 11 in accordance with a stop command issued from the measuring device 12. <P>COPYRIGHT: (C)2007,JPO&INPIT

Description

本発明は、検査対象物の表面を探傷プローブを摺動走査させて検査対象物を非破壊検査する非破壊検査装置に関する。   The present invention relates to a nondestructive inspection apparatus that non-destructively inspects an inspection object by sliding and scanning a flaw detection probe on the surface of the inspection object.

一般に、配管等の検査対象物の非破壊検査は作業員による手作業により行われている。例えば、大径配管の非破壊検査においては、大径配管の表面に形成されている探傷用走査線を頼りに探傷プローブを配管に接触させ、測定器の表示装置に表示された画面上の探傷波形を確認しながら探傷する。そして、検査対象物にきずや減肉部があった場合には、その箇所で詳細な探傷波形を記録し、記録した探傷波形に基づききずや減肉部の定量的及び定性的な評価を行う。   In general, nondestructive inspection of inspection objects such as piping is performed manually by an operator. For example, in non-destructive inspection of large-diameter piping, the flaw detection probe formed on the surface of the large-diameter piping is contacted with the flaw detection scanning line, and flaw detection is performed on the screen displayed on the display device of the measuring instrument. Detect flaws while checking the waveform. If there is a flaw or a thinned portion in the inspection object, a detailed flaw detection waveform is recorded at that location, and a quantitative and qualitative evaluation of the flaw or the thinned portion is performed based on the recorded flaw detection waveform. .

ここで、検査対象物の探傷を自動的に行うようにしたものがある(例えば、特許文献1参照)。これは、継手溶接部の探傷が板端を含む溶接線方向の全範囲に亘って完全自動的に、しかも高能率・高精度で行え、かつ構成がコンパクトで取扱いが容易であり、大形被検体等の作業能率向上に大きく寄与できる自動超音波探傷装置であり、溶接線方向に沿う板端を検出して板端位置で台車の走行を停止させる停止手段を有している。
特開平6−160358号公報
Here, there is one in which flaw detection is automatically performed on an inspection object (see, for example, Patent Document 1). This is because the flaw detection of the joint welds can be performed fully automatically over the entire range in the weld line direction including the plate end, with high efficiency and high accuracy, and the configuration is compact and easy to handle. This is an automatic ultrasonic flaw detector that can greatly contribute to improving the work efficiency of a specimen or the like, and has stop means for detecting the plate end along the weld line direction and stopping the carriage at the plate end position.
JP-A-6-160358

しかし、従来の手作業による検査対象物の非破壊検査では、探傷プローブを検査対象物の表面上で移動させながら探傷を行い、その操作と同時に測定器の表示装置に表示された画面上の探傷波形も確認することが必要となる。従って、作業員は探傷プローブ側と表示画面側との双方を視認しなければならず、作業員の視線は複数方向となってしまう。そのため、探傷波形の見落としや迅速かつ正確なきずや減肉の位置の同定が困難になることがある。   However, in conventional non-destructive inspection of inspection objects by hand, flaw detection is performed while moving the flaw detection probe on the surface of the inspection object, and at the same time, flaw detection on the screen displayed on the display device of the measuring instrument is performed. It is also necessary to check the waveform. Therefore, the worker must visually recognize both the flaw detection probe side and the display screen side, and the operator's line of sight is in a plurality of directions. For this reason, it may be difficult to overlook the flaw detection waveform and to quickly and accurately identify the position of a flaw or thinning.

また、きずや減肉が検出されたことを視認した場合、そのきずや減肉の検出部位の近傍で探傷プローブの位置、探傷プローブの姿勢、接触媒質の量などを微妙に調整しながら最適な探傷波形が記録できるまで、その近傍を探傷することが必要となるので探傷作業に時間がかかる。   In addition, when it is visually confirmed that a flaw or thinning has been detected, it is optimal to adjust the position of the flaw detection probe, the flaw detection probe posture, the amount of contact medium, etc. in the vicinity of the flaw or thinning detection site. Until the flaw detection waveform can be recorded, it is necessary to flaw the vicinity thereof, so that flaw detection work takes time.

一方、特許文献1のものでは、溶接線方向に沿う板端を検出して板端位置で走行を停止させ、台車の停止位置で板端の溶接部を探傷する走査範囲を設定し、自動的に検査対象物の超音波探傷を行うものであり、きずや減肉を検出したとき、そのきずや減肉の検出部位の近傍で詳細に探傷するというものではない。   On the other hand, in Patent Document 1, a plate end along the weld line direction is detected, travel is stopped at the plate end position, a scanning range is set for detecting the welded portion of the plate end at the stop position of the carriage, and automatically In addition, ultrasonic inspection is performed on an inspection object, and when a flaw or thinning is detected, a flaw detection is not performed in the vicinity of the detected part of the flaw or thinning.

本発明の目的は、きずや減肉の検出部位を的確に特定でき探傷作業が容易に行え精度のよい探傷波形を得ることができる非破壊検査装置を提供することである。   An object of the present invention is to provide a nondestructive inspection apparatus capable of accurately identifying a detection site of a flaw or thinning, easily performing a flaw detection operation, and obtaining an accurate flaw detection waveform.

請求項1の発明に係わる非破壊検査装置は、作業員により検査対象物の表面を摺動走査する探傷プローブと、前記探傷プローブの検出信号を測定するとともに前記探傷プローブの検出信号に基づいて前記探傷プローブが前記検査対象物のきずや減肉の検出部位に位置したことを判定する測定器と、前記探傷プローブが前記検査対象物のきずや減肉の検出部位に位置したとき前記探傷プローブの摺動走査の動作を停止させる停止装置とを備えたことを特徴とする。   According to a first aspect of the present invention, there is provided a nondestructive inspection apparatus that includes a flaw detection probe that slides and scans the surface of an inspection object by an operator, a detection signal of the flaw detection probe, and a detection signal of the flaw detection probe. A measuring instrument for determining that a flaw detection probe is located at a detection site for a flaw or thinning of the inspection object; and when the flaw detection probe is located at a flaw detection or a thinning detection site of the inspection target, And a stop device for stopping the sliding scanning operation.

請求項2の発明に係わる非破壊検査装置は、請求項1の発明において、前記停止装置は、前記探傷プローブに設けられ、前記探傷プローブが前記検査対象物のきずや減肉の検出部位に位置したときに前記検査対象物に電磁力で張り付く電磁石であることを特徴とする。   A nondestructive inspection apparatus according to a second aspect of the present invention is the nondestructive inspection apparatus according to the first aspect, wherein the stop device is provided in the flaw detection probe, and the flaw detection probe is located at a detection site of a flaw or a thinning of the inspection object. And an electromagnet that sticks to the inspection object by electromagnetic force.

請求項3の発明に係わる非破壊検査装置は、請求項1の発明において、前記停止装置は、前記探傷プローブに設けられ、前記探傷プローブが前記検査対象物のきずや減肉の検出部位に位置したときに前記検査対象物に吸引力で張り付く吸盤であることを特徴とする。   A nondestructive inspection apparatus according to a third aspect of the present invention is the nondestructive inspection apparatus according to the first aspect of the present invention, wherein the stop device is provided in the flaw detection probe, and the flaw detection probe is located at a detection site of a flaw or thinning of the inspection object. In this case, the suction cup sticks to the inspection object with a suction force.

請求項4の発明に係わる非破壊検査装置は、請求項1の発明において、前記停止装置は、前記探傷プローブに設けられ、前記探傷プローブが前記検査対象物のきずや減肉の検出部位に位置したときに前記検査対象物との間に摩擦力を発生させる摩擦力発生装置であることを特徴とする。   A nondestructive inspection apparatus according to a fourth aspect of the present invention is the nondestructive inspection apparatus according to the first aspect of the present invention, wherein the stop device is provided in the flaw detection probe, and the flaw detection probe is located at a detection site of a flaw or thinning of the inspection object. And a frictional force generator that generates a frictional force with the inspection object.

請求項5の発明に係わる非破壊検査装置は、請求項1ないし4のいずれか1項の発明において、前記探傷プローブが前記検査対象物のきずや減肉の検出部位に位置したときその旨を作業員に対し体感報知する体感報知装置を備えたことを特徴とする。   The nondestructive inspection apparatus according to the invention of claim 5 is the fact that, in the invention of any one of claims 1 to 4, when the flaw detection probe is located at a detection site of a flaw or thinning of the inspection object. A sensation notifying device for notifying an operator of sensation is provided.

請求項6の発明に係わる非破壊検査装置は、作業員により検査対象物の表面を摺動走査する探傷プローブと、前記探傷プローブの検出信号を測定するとともに前記探傷プローブの検出信号に基づいて前記探傷プローブが前記検査対象物のきずや減肉の検出部位に位置したことを判定する測定器と、前記探傷プローブが前記検査対象物のきずや減肉の検出部位に位置したときその旨を作業員に対し体感報知する体感報知装置とを備えたことを特徴とする。   According to a sixth aspect of the present invention, there is provided a nondestructive inspection apparatus according to the present invention, wherein a flaw detection probe slidingly scans the surface of an inspection object by an operator, a detection signal of the flaw detection probe is measured, and the detection signal of the flaw detection probe is used. A measuring device that determines that a flaw detection probe is located at a detection site of a flaw or thinning of the inspection object, and a work to that effect when the flaw detection probe is located at a flaw or thinning detection site of the inspection object. It is characterized by having a sensation notification device that provides sensation notification to a member.

請求項7の発明に係わる非破壊検査装置は、請求項5または6の発明において、前記体感報知装置は、前記探傷プローブが前記検査対象物のきずや減肉の検出部位に位置したことを作業員の視覚に訴える視覚報知装置であることを特徴とする。   A nondestructive inspection apparatus according to a seventh aspect of the present invention is the non-destructive inspection apparatus according to the fifth or sixth aspect, wherein the sensation notification apparatus operates that the flaw detection probe is located at a detection site of a flaw or thinning of the inspection object. It is a visual notification device that appeals to the visual sense of employees.

請求項8の発明に係わる非破壊検査装置は、請求項5または6の発明において、前記体感報知装置は、前記探傷プローブが前記検査対象物のきずや減肉の検出部位に位置したことを作業員の聴覚に訴える聴覚報知装置であることを特徴とする。   The nondestructive inspection device according to the invention of claim 8 is the non-destructive inspection device according to claim 5 or 6, wherein the sensation notification device is operated in such a way that the flaw detection probe is positioned at a detection site of a flaw or a thinning of the inspection object. It is a hearing notification device that appeals to the hearing of a member.

請求項9の発明に係わる非破壊検査装置は、請求項5または6の発明において、前記体感報知装置は、前記探傷プローブが前記検査対象物のきずや減肉の検出部位に位置したことを作業員の触覚に訴える触覚報知装置であることを特徴とする。   A nondestructive inspection apparatus according to a ninth aspect of the present invention is the non-destructive inspection apparatus according to the fifth or sixth aspect of the invention, wherein the sensation notification apparatus operates that the flaw detection probe is located at a detection site of a flaw or a thinning of the inspection object. It is a tactile alerting device that appeals to the tactile sense of a member.

本発明によれば、探傷プローブが検査対象物のきずや減肉の検出部位に位置したとき探傷プローブの摺動走査を停止させたり、または作業員に体感で報知するので、探傷プローブまたは探傷する手が一時的にロックされる。このため、きずや減肉の検出部位の位置を的確に特定できる。従って、きずや減肉の検出部位の見落としやきずや減肉の検出部位の位置を同定する時間が短縮され、探傷作業が容易に行え精度のよい探傷波形を得ることができる   According to the present invention, when the flaw detection probe is positioned at a detection site for a flaw or thinning of the inspection object, the scanning scan of the flaw detection probe is stopped, or the operator is notified with a bodily sensation. The hand is temporarily locked. For this reason, the position of the detection part of a crack and thinning can be pinpointed correctly. Therefore, oversight of the detection part of the flaw and thinning and the time for identifying the position of the detection part of the flaw and thinning are shortened, and the flaw detection operation can be performed easily and a high-precision flaw detection waveform can be obtained.

(第1の実施の形態)
図1は本発明の第1の実施の形態に係わる非破壊検査装置の構成図である。探傷プローブ11には、探傷プローブ11の摺動走査の動作を停止させる停止装置13が設けられている。この停止装置13は、探傷プローブ11が検査対象物のきずや減肉の検出部位に位置したとき探傷プローブ11の摺動走査の動作を停止させるものである。
(First embodiment)
FIG. 1 is a block diagram of a nondestructive inspection apparatus according to the first embodiment of the present invention. The flaw detection probe 11 is provided with a stop device 13 that stops the sliding scanning operation of the flaw detection probe 11. The stopping device 13 stops the sliding scanning operation of the flaw detection probe 11 when the flaw detection probe 11 is positioned at a detection site of a flaw or thinning of the inspection object.

作業員は停止装置13が設けられた探傷プローブ11を手に持って検査対象物の表面に接触させる。そして、検査対象物の表面への接触を維持しつつ摺動走査し探傷プローブ11で探傷波形を検出する。例えば、探傷プローブ11が超音波探触子である場合には、図2に示すような探傷波形信号が検出され、検出された探傷波形信号は測定器12に入力され記憶される。   The worker holds the flaw detection probe 11 provided with the stop device 13 in his / her hand and brings it into contact with the surface of the inspection object. Then, sliding scanning is performed while maintaining contact with the surface of the inspection object, and the flaw detection probe 11 detects a flaw detection waveform. For example, when the flaw detection probe 11 is an ultrasonic probe, a flaw detection waveform signal as shown in FIG. 2 is detected, and the detected flaw detection waveform signal is input to the measuring device 12 and stored.

図2に示すように、測定器12は予め探傷波形信号の閾値Lを記憶しており、探傷プローブ11で検出された探傷波形信号がその閾値Lを超えたか否かを判定している。探傷プローブ11は検査対象物のきずや減肉の検出部位ではレベルが大きな探傷波形信号を検出するので、閾値Lはきずや減肉の検出部位であると判定するレベルに設定される。   As shown in FIG. 2, the measuring instrument 12 stores a threshold value L of the flaw detection waveform signal in advance, and determines whether or not the flaw detection waveform signal detected by the flaw detection probe 11 exceeds the threshold value L. Since the flaw detection probe 11 detects a flaw detection waveform signal having a large level at a detection site of a flaw or thinning of the inspection object, the threshold value L is set to a level for determining that it is a detection site of a flaw or thinning.

一方、測定器12は探傷波形信号が閾値Lを超えたときは、停止装置13に対して探傷プローブ11の摺動走査の動作を停止させる停止指令信号を出力する。これにより、停止装置13は探傷プローブ11の摺動走査の動作を停止させる。すなわち、探傷プローブ11が検査対象物のきずや減肉の検出部位に位置したときは、探傷波形信号が閾値Lを超えるので、測定器12はこれを検出して停止装置13に対して探傷プローブ11の摺動走査の動作を停止させる停止指令信号を出力する。停止装置13は、測定器12から停止指令信号を受信すると、作業員が手に持っている探傷プローブ11の検査対象物の表面での摺動走査の動作を阻止するように動作する。   On the other hand, when the flaw detection waveform signal exceeds the threshold value L, the measuring instrument 12 outputs a stop command signal for stopping the sliding scanning operation of the flaw detection probe 11 to the stop device 13. Thereby, the stop device 13 stops the sliding scanning operation of the flaw detection probe 11. That is, when the flaw detection probe 11 is positioned at a detection site of a flaw or thinning of the inspection object, the flaw detection waveform signal exceeds the threshold value L, and the measuring instrument 12 detects this and detects the flaw detection probe with respect to the stop device 13. A stop command signal for stopping the sliding scanning operation is output. When the stop device 13 receives the stop command signal from the measuring instrument 12, the stop device 13 operates so as to prevent the sliding scanning operation on the surface of the inspection object of the flaw detection probe 11 held by the worker.

図1では停止装置13として電磁石を用いた場合を示しており、探傷波形信号が閾値Lを超えたときは、測定器12は電磁石のコイルを励磁して検査対象物に電磁力で張り付かせる。これにより、探傷プローブ11を手に持って探傷走査を行っていた作業員の探傷走査が阻止されるので、探傷プローブ11が検査対象物のきずや減肉の検出部位に位置したことを認識できる。そして、きずや減肉の検出部位が認識できた後にそのきずや減肉の検出部位の同定作業を行うことになるが、その同定作業の際は停止装置13の動作を解除しておく。これにより、作業員はそのきずや減肉の検出部位で探傷プローブ11による同定作業が容易に行え、正確なきずや減肉の位置の同定が行える。   FIG. 1 shows a case where an electromagnet is used as the stopping device 13, and when the flaw detection waveform signal exceeds the threshold value L, the measuring instrument 12 excites the coil of the electromagnet and attaches it to the inspection object with electromagnetic force. . Thereby, since the flaw detection scan of the worker who has carried out the flaw detection scan with the flaw detection probe 11 in his / her hand is blocked, it can be recognized that the flaw detection probe 11 is located at the detection site of the flaw or thinning of the inspection object. . Then, after the flaw and thinning detection part can be recognized, the identification work of the flaw and thinning detection part is performed. In the identification work, the operation of the stop device 13 is canceled. Thereby, the worker can easily perform the identification work by the flaw detection probe 11 at the detection site of the flaw and the thinning, and can accurately identify the position of the flaw and the thinning.

図1では停止装置13である電磁石を探傷プローブ11の外部に取り付けた場合を示したが探傷プローブ11の内部に組み込むようにしてもよい。また、複数個の電磁石を用いてもよい。   Although FIG. 1 shows the case where the electromagnet as the stopping device 13 is attached to the outside of the flaw detection probe 11, it may be incorporated inside the flaw detection probe 11. A plurality of electromagnets may be used.

第1の実施の形態によれば、探傷プローブ11が検査対象物のきずや減肉の検出部位に位置したとき探傷プローブ11の摺動走査を停止させるので、探傷プローブ11の探傷走査の動作が一時的に停止する。このため、きずや減肉の検出部位の位置を的確に特定でき、きずや減肉の検出部位の見落としやきずや減肉の検出部位の位置を同定する時間が短縮される。   According to the first embodiment, since the flaw detection probe 11 is stopped when the flaw detection probe 11 is positioned at a detection site for a flaw or thinning of the inspection object, the flaw detection scan operation of the flaw detection probe 11 is stopped. Stop temporarily. For this reason, the position of the detection site | part of a crack and thinning can be pinpointed correctly, and the time which identifies the location of the detection site | part of a detection site | part of a crack and thinning is reduced.

(第2の実施の形態)
図3は本発明の第2の実施の形態に係わる非破壊検査装置の構成図である。この第2の実施の形態は、図1に示した第1の実施の形態に対し、停止装置13としての電磁石に代えて、検査対象物に吸引力で張り付く吸盤14としたものである。図1と同一要素には同一符号を付し重複する説明は省略する。
(Second Embodiment)
FIG. 3 is a configuration diagram of a nondestructive inspection apparatus according to the second embodiment of the present invention. In the second embodiment, in place of the electromagnet as the stopping device 13 in the first embodiment shown in FIG. 1, a suction cup 14 that sticks to an inspection object with a suction force is used. The same elements as those in FIG. 1 are denoted by the same reference numerals, and redundant description is omitted.

図3に示すように、探傷プローブ11には、探傷プローブ11が検査対象物の表面に接触する側に停止装置13としての吸盤14が設けられ、また、測定器12からの停止装置13の停止指令信号により吸盤14内部の空気を真空引きする吸引ポンプ15が設けられている。   As shown in FIG. 3, the flaw detection probe 11 is provided with a suction cup 14 as a stop device 13 on the side where the flaw detection probe 11 comes into contact with the surface of the inspection object, and the stop device 13 is stopped from the measuring instrument 12. A suction pump 15 is provided for evacuating the air inside the suction cup 14 by a command signal.

検査対象物の探傷作業を行う際には、作業員は探傷プローブ11を手に持って、探傷プローブ11を検査対象物の表面に接触させながら摺動走査させる。この状態では吸引ポンプ15は駆動していないので、吸盤14には吸引力は発生しない。従って、探傷プローブ11は作業員の探傷走査の動作に従って移動し、探傷プローブ11は検査対象物の探傷波形を順次検出し、測定器12にその探傷波形の検出信号を出力する。測定器12は、探傷プローブ11で検出された探傷波形信号を順次入力し記憶する。   When performing a flaw detection operation on the inspection object, the worker holds the flaw detection probe 11 in his / her hand and slides the flaw detection probe 11 in contact with the surface of the inspection object. In this state, since the suction pump 15 is not driven, no suction force is generated in the suction cup 14. Therefore, the flaw detection probe 11 moves in accordance with the flaw detection scanning operation of the worker, and the flaw detection probe 11 sequentially detects the flaw detection waveform of the inspection object and outputs a detection signal of the flaw detection waveform to the measuring instrument 12. The measuring instrument 12 sequentially inputs and stores the flaw detection waveform signals detected by the flaw detection probe 11.

そして、計測装置13は探傷プローブ11で検出された探傷波形信号が閾値Lを超えたときは、吸引ポンプ15を駆動して吸盤14の内部の空気を真空引きする。これにより、吸盤14が吸引力で検査対象物に張り付き、探傷プローブ11を手に持って探傷走査を行っていた作業員の探傷走査が阻止される。これにより、探傷プローブ11が検査対象物のきずや減肉の検出部位に位置したことを認識できる。   When the flaw detection waveform signal detected by the flaw detection probe 11 exceeds the threshold value L, the measuring device 13 drives the suction pump 15 to evacuate the air inside the suction cup 14. As a result, the suction cup 14 sticks to the object to be inspected with the suction force, and the flaw detection scanning of the worker who has performed the flaw detection scanning with the flaw detection probe 11 in hand is prevented. Thereby, it can be recognized that the flaw detection probe 11 is positioned at a detection site of a flaw or thinning of the inspection object.

きずや減肉の検出部位が認識できた後に停止装置13の動作を解除し、そのきずや減肉の検出部位の同定作業を行う。これにより、作業員はそのきずや減肉の検出部位で探傷プローブ11による同定作業が容易に行え、正確なきずや減肉の位置の同定が行える。   After the detection site of the flaw or thinning is recognized, the operation of the stop device 13 is canceled, and the identification operation of the detection site of the flaw or thinning is performed. Thereby, the worker can easily perform the identification work by the flaw detection probe 11 at the detection site of the flaw and the thinning, and can accurately identify the position of the flaw and the thinning.

第2の実施の形態によれば、第1の実施の形態と同様な効果が得られる。また、電磁石の電磁力ではなく、吸盤の吸引力で探傷プローブ11の摺動走査を停止させるので、検査対象物が強磁性体でない場合にも適用できる。   According to the second embodiment, the same effect as in the first embodiment can be obtained. Further, since the sliding scanning of the flaw detection probe 11 is stopped not by the electromagnetic force of the electromagnet but by the suction force of the suction cup, it can be applied even when the inspection object is not a ferromagnetic material.

(第3の実施の形態)
図4は本発明の第3の実施の形態に係わる非破壊検査装置の構成図である。この第3の実施の形態は、図1に示した第1の実施の形態に対し、停止装置13としての電磁石に代えて、検査対象物との間に摩擦力を発生させる摩擦力発生装置16としたものである。図1と同一要素には同一符号を付し重複する説明は省略する。
(Third embodiment)
FIG. 4 is a configuration diagram of a nondestructive inspection apparatus according to the third embodiment of the present invention. This third embodiment is different from the first embodiment shown in FIG. 1 in that a frictional force generator 16 that generates a frictional force with an object to be inspected is used instead of the electromagnet as the stop device 13. It is what. The same elements as those in FIG. 1 are denoted by the same reference numerals, and redundant description is omitted.

図4に示すように、探傷プローブ11には、探傷プローブ11が検査対象物の表面に接触する側に停止装置13としての摩擦力発生装置16が設けられている。摩擦力発生装置16は摩擦部材17を内蔵し、測定器12からの停止装置13の停止指令信号により摩擦部材17を検査対象物の表面に突出させて摩擦力を発生させる。   As shown in FIG. 4, the flaw detection probe 11 is provided with a frictional force generator 16 as a stop device 13 on the side where the flaw detection probe 11 contacts the surface of the inspection object. The frictional force generator 16 includes a frictional member 17, and generates a frictional force by causing the frictional member 17 to protrude from the surface of the inspection object in response to a stop command signal from the measuring device 12.

検査対象物の探傷作業を行う際には、作業員は探傷プローブ11を手に持って、探傷プローブ11を検査対象物の表面に接触させながら摺動走査させる。これにより、探傷プローブ11は検査対象物の探傷波形を検出し、測定器12にその探傷波形の検出信号を出力する。   When performing a flaw detection operation on the inspection object, the worker holds the flaw detection probe 11 in his / her hand and slides the flaw detection probe 11 in contact with the surface of the inspection object. As a result, the flaw detection probe 11 detects a flaw detection waveform of the inspection object and outputs a detection signal of the flaw detection waveform to the measuring instrument 12.

そして、測定器12は、探傷プローブ11で検出された探傷波形信号が閾値Lを超えたときは、摩擦力発生装置16を駆動し摩擦部材17を突出させる。これにより、摩擦部材17が検査対象物の表面と接触して摩擦力を発生させるので、探傷プローブ11を手に持って探傷走査を行っていた作業員の探傷走査が阻止される。これにより、作業員は探傷プローブが検査対象物のきずや減肉の検出部位に位置したことを認識できる。   When the flaw detection waveform signal detected by the flaw detection probe 11 exceeds the threshold value L, the measuring instrument 12 drives the frictional force generator 16 to cause the friction member 17 to protrude. As a result, the friction member 17 comes into contact with the surface of the object to be inspected and generates a frictional force, so that the flaw detection scan of the worker who has performed the flaw detection scan with the flaw detection probe 11 in hand is blocked. As a result, the worker can recognize that the flaw detection probe is located at a detection site for a flaw or thinning of the inspection object.

きずや減肉の検出部位が認識できた後には停止装置13の動作を解除し、そのきずや減肉の検出部位の同定作業を行う。これにより、作業員はそのきずや減肉の検出部位で探傷プローブ11による同定作業が容易に行え、正確なきずや減肉の位置の同定が行える。   After the detection part of the flaw and the thinning is recognized, the operation of the stop device 13 is canceled, and the identification work of the detection part of the flaw and the thinning is performed. Thereby, the worker can easily perform the identification work by the flaw detection probe 11 at the detection site of the flaw and the thinning, and can accurately identify the position of the flaw and the thinning.

第3の実施の形態によれば、第1の実施の形態と同様な効果が得られる。また、電磁石の電磁力ではなく、摩擦力発生装置16の摩擦部材17と検査対象物との摩擦力で探傷プローブ11の摺動走査を停止させるので、検査対象物が強磁性体でない場合にも適用できる。   According to the third embodiment, the same effect as in the first embodiment can be obtained. Further, since the sliding scanning of the flaw detection probe 11 is stopped not by the electromagnetic force of the electromagnet but by the frictional force between the frictional member 17 of the frictional force generating device 16 and the inspection object, even when the inspection object is not a ferromagnetic material. Applicable.

(第4の実施の形態)
図5は本発明の第4の実施の形態に係わる非破壊検査装置の構成図である。この第4の実施の形態は、図1に示した第1の実施の形態に対し、停止装置13に加え、作業員に対し体感報知する体感報知装置18を設けたものである。図1と同一要素には同一符号を付し重複する説明は省略する。
(Fourth embodiment)
FIG. 5 is a block diagram of a nondestructive inspection apparatus according to the fourth embodiment of the present invention. In the fourth embodiment, in addition to the stop device 13, a sensation notification device 18 for notifying the operator of the sensation is provided in addition to the first embodiment shown in FIG. 1. The same elements as those in FIG. 1 are denoted by the same reference numerals, and redundant description is omitted.

体感報知装置18は、探傷プローブ11が検査対象物のきずや減肉の検出部位に位置したとき、計測器13から体感出力指令信号により動作し、作業員に探傷プローブ11が検査対象物のきずや減肉の検出部位に位置したことを体感報知するものである。人間の体感には、視覚、聴覚、触覚、嗅覚、味覚があるが、第4の実施の形態では、視覚により感知させる視覚報知装置、聴覚により感知させる聴覚報知装置、触覚により感知させる触覚報知装置を用いる。   The bodily sensation notification device 18 operates in response to a bodily sensation output command signal from the measuring instrument 13 when the flaw detection probe 11 is positioned at a detection site of a flaw or thinning of the inspection object, and the flaw detection probe 11 is flawed by the operator. It is a notification of bodily sensation that it is located at the detection site for thinning. Human senses include visual, auditory, tactile, olfactory, and gustatory sensations. In the fourth embodiment, a visual notification device that is sensed by vision, a hearing notification device that is sensed by hearing, and a tactile notification device that is sensed by touch Is used.

視覚報知装置としては、例えばヘッドマウントディスプレイやLED等を用意し、ヘッドマウントディスプレイ上に探傷波形を表示したり、ヘッドマウントディスプレイやヘルメットにLEDを設け、探傷プローブ11が検査対象物のきずや減肉の検出部位に位置したときにLEDを点灯させたりして作業員の視覚に訴える。   As a visual notification device, for example, a head-mounted display or LED is prepared, and a flaw detection waveform is displayed on the head-mounted display, or an LED is provided on the head-mounted display or helmet, and the flaw detection probe 11 reduces or reduces the number of inspection objects. When positioned at the meat detection site, the LED is turned on to appeal to the operator's vision.

聴覚報知装置としては、例えばイヤホンや骨伝導装置を用意し、これらを身体に装着し、探傷プローブ11が検査対象物のきずや減肉の検出部位に位置したときにイヤホンや骨伝導装置から音情報を出力して作業員の聴覚に訴える。   As an audio notification device, for example, an earphone or a bone conduction device is prepared, and these are attached to the body. When the flaw detection probe 11 is located at a detection site of a flaw or a thinning of an inspection object, a sound is emitted from the earphone or the bone conduction device. Output information and appeal to the hearing of workers.

また、触覚報知装置としては、例えば電圧発生装置やベルト締付装置を用意し、これらを身体に装着し、探傷プローブ11が検査対象物のきずや減肉の検出部位に位置したときに電圧発生装置から作業員に筋電位を与えたり、ベルト締付装置により機械的に筋肉を締め付けたりして作業員の触覚に訴える。   Further, as a tactile sensation notification device, for example, a voltage generation device or a belt tightening device is prepared, and these are attached to the body, and voltage generation occurs when the flaw detection probe 11 is positioned at a detection site of a flaw or thinning of an inspection object. The device gives a myoelectric potential to the worker or mechanically tightens the muscle with the belt tightening device to appeal to the tactile sense of the worker.

以上の説明では、第1の実施の形態に対し、体感報知装置18を追加して設けた場合について説明したが、第2の実施の形態や第3の実施の形態に対して、体感報知装置18を追加して設けるようにしてもよい。また、第1の実施の形態ないし第3の実施の形態の停止装置13を省略し、体感報知装置18だけを設けるようにしてもよい。   In the above description, the case where the sensation notification device 18 is additionally provided with respect to the first embodiment has been described, but the sensation notification device is provided for the second embodiment and the third embodiment. 18 may be additionally provided. Further, the stop device 13 of the first embodiment to the third embodiment may be omitted, and only the sensation notification device 18 may be provided.

図6は、作業員による探傷作業現場の斜視図である。図6では、体感報知装置18として、視覚報知装置(ヘッドマウントディスプレイ)19と聴覚報知装置(イヤホン)20とを装着し、小型化された測定器12を作業服のポケットに入れて携帯して、検査対象物21である大型配管の探傷作業を行う場合を示している。また、探傷プローブ11には停止装置13が設けられている場合を示している。   FIG. 6 is a perspective view of a flaw detection work site by an operator. In FIG. 6, a visual notification device (head-mounted display) 19 and an auditory notification device (earphone) 20 are mounted as the bodily sensation notification device 18, and the miniaturized measuring instrument 12 is carried in a pocket of work clothes. This shows a case where a flaw detection operation is performed on a large-sized pipe that is an inspection object 21. Moreover, the case where the flaw detection probe 11 is provided with the stop device 13 is shown.

検査対象物21の表面には探傷用の基準線22が設けられており、この基準線22に沿って探傷プローブ11を摺動走査して探傷波形を検出する。探傷プローブ11で検出された探傷波形は、測定器12に入力され記憶されるとともに、視覚報知装置19に表示出力される。作業員は検査対象物21の基準線22の位置及び視覚報知装置19に表示された探傷波形23を見ながら探傷プローブ11を摺動走査することになる。   A flaw detection reference line 22 is provided on the surface of the inspection object 21, and the flaw detection probe 11 is slid along the reference line 22 to detect a flaw detection waveform. The flaw detection waveform detected by the flaw detection probe 11 is input to and stored in the measuring instrument 12 and is displayed and output to the visual notification device 19. The operator slides and scans the flaw detection probe 11 while looking at the position of the reference line 22 of the inspection object 21 and the flaw detection waveform 23 displayed on the visual notification device 19.

そして、探傷プローブ11が検査対象物のきずや減肉の検出部位に位置したときには、停止装置13が動作するだけでなく体感報知装置18も動作する。すなわち、探傷波形23が急峻に立ち上がるので、視覚報知装置19により探傷プローブ11が検査対象物のきずや減肉の検出部位に位置したことを容易に識別できる。また、聴覚報知装置20には音情報が出力されるので、それによっても探傷プローブ11が検査対象物のきずや減肉の検出部位に位置したことを容易に識別できる。これにより、探傷波形の見落としを軽減でき、またきずや減肉の位置の同定を容易に行える。   And when the flaw detection probe 11 is located in the detection site | part of the crack of a test target object or thinning, not only the stop apparatus 13 but the sensation notification apparatus 18 also operate | moves. That is, since the flaw detection waveform 23 rises sharply, the visual alarm device 19 can easily identify that the flaw detection probe 11 is positioned at a detection site of a flaw or thinning of the inspection object. In addition, since sound information is output to the auditory alarm device 20, it can be easily identified that the flaw detection probe 11 is located at a flaw or a thinning detection site of the inspection object. Thereby, the oversight of the flaw detection waveform can be reduced, and the position of the flaw or the thinning can be easily identified.

小型化された測定器12は、例えば、パルサーレシーバーなどを小型化して作業員のポケットに入るサイズまで装置をコンパクトにする。これにより、探傷プローブ11と測定器12との間の配線引き回しを少なくできる。なお、既存の測定器12を用いる場合は、測定器12を作業現場の平らな部分に設置することになるが、その場合であっても体感報知装置18により、探傷プローブ11が検査対象物のきずや減肉の検出部位に位置したことを作業員に報知するので、作業員の視線は測定器12の表示画面側に向ける必要はなく、探傷プローブ11側の方向だけでよいので、探傷波形の見落としを防止できる。   The miniaturized measuring instrument 12 makes the apparatus compact to a size that fits into a worker's pocket by miniaturizing a pulsar receiver or the like, for example. Thereby, wiring routing between the flaw detection probe 11 and the measuring instrument 12 can be reduced. In addition, when using the existing measuring device 12, the measuring device 12 is installed in the flat part of a work site, but even in that case, the flaw detection probe 11 is detected by the sensation notification device 18 as the inspection object. Since the operator is informed that it is located at the detection site of a flaw or thinning, it is not necessary for the operator's line of sight to be directed to the display screen side of the measuring instrument 12, and only the direction on the flaw detection probe 11 side. Can be overlooked.

第4の実施の形態によれば、探傷プローブ11が検査対象物のきずや減肉の検出部位に位置したとき、その旨を作業員に体感で報知するので、探傷する作業員の手が一時的にロックされる。このため、きずや減肉の検出部位の位置を的確に特定でき、きずや減肉の検出部位の見落としやきずや減肉の検出部位の位置を同定する時間が短縮される。   According to the fourth embodiment, when the flaw detection probe 11 is positioned at a detection site for a flaw or a thinning of the inspection object, the operator is informed of that fact, so that the operator's hand that performs flaw detection temporarily Locked. For this reason, the position of the detection site | part of a crack and thinning can be pinpointed correctly, and the time which identifies the location of the detection site | part of a detection site | part of a crack and thinning is reduced.

また、体感報知装置として、視覚報知装置(ヘッドマウントディスプレイ)だけでなく、聴覚報知装置や触覚報知装置を併用することで、きずや減肉の部位の検出を見落とすことを軽減できる。また、骨伝導の聴覚報知装置の場合は、ヘッドホンでは音が聞こえない環境でも確実に報知できる。   Further, not only the visual notification device (head mounted display) but also the auditory notification device or the tactile notification device can be used together as the bodily sensation notification device, so that it is possible to reduce detection of flaws and thinning parts. In the case of a bone conduction auditory alarm device, it is possible to reliably report even in an environment where no sound can be heard with headphones.

本発明の第1の実施の形態に係わる非破壊検査装置の構成図。The block diagram of the nondestructive inspection apparatus concerning the 1st Embodiment of this invention. 探傷プローブで検出された探傷波形の検出信号の一例を示す探傷波形図。The flaw detection waveform figure which shows an example of the detection signal of the flaw detection waveform detected with the flaw detection probe. 本発明の第2の実施の形態に係わる非破壊検査装置の構成図。The block diagram of the nondestructive inspection apparatus concerning the 2nd Embodiment of this invention. 本発明の第3の実施の形態に係わる非破壊検査装置の構成図。The block diagram of the nondestructive inspection apparatus concerning the 3rd Embodiment of this invention. 本発明の第4の実施の形態に係わる非破壊検査装置の構成図。The block diagram of the nondestructive inspection apparatus concerning the 4th Embodiment of this invention. 本発明の第4の実施の形態に係わる非破壊検査装置を用いた作業員による探傷作業現場の斜視図。The perspective view of the flaw detection work site by the worker using the nondestructive inspection device concerning a 4th embodiment of the present invention.

符号の説明Explanation of symbols

11…探傷プローブ、12…測定器、13…停止装置、14…吸盤、15…吸引ポンプ、16…摩擦力発生装置、17…摩擦部材、18…体感報知装置、19…視覚報知装置、20…聴覚報知装置、21…検査対象物、22…基準線、23…探傷波形 DESCRIPTION OF SYMBOLS 11 ... Flaw detection probe, 12 ... Measuring device, 13 ... Stop device, 14 ... Suction cup, 15 ... Suction pump, 16 ... Friction force generator, 17 ... Friction member, 18 ... Sensory notification device, 19 ... Visual notification device, 20 ... Auditory alarm device, 21 ... inspection object, 22 ... reference line, 23 ... flaw detection waveform

Claims (9)

作業員により検査対象物の表面を摺動走査する探傷プローブと、前記探傷プローブの検出信号を測定するとともに前記探傷プローブの検出信号に基づいて前記探傷プローブが前記検査対象物のきずや減肉の検出部位に位置したことを判定する測定器と、前記探傷プローブが前記検査対象物のきずや減肉の検出部位に位置したとき前記探傷プローブの摺動走査の動作を停止させる停止装置とを備えたことを特徴とする非破壊検査装置。   A flaw detection probe that slides and scans the surface of the inspection object by an operator, and the detection signal of the flaw detection probe is measured, and the flaw detection probe detects flaws and thinning of the inspection object based on the detection signal of the flaw detection probe. A measuring device for determining that the probe is located at a detection site; and a stop device that stops the sliding scanning operation of the flaw detection probe when the flaw detection probe is located at a detection site of a flaw or thinning of the inspection object. Non-destructive inspection device characterized by that. 前記停止装置は、前記探傷プローブに設けられ、前記探傷プローブが前記検査対象物のきずや減肉の検出部位に位置したときに前記検査対象物に電磁力で張り付く電磁石であることを特徴とする請求項1記載の非破壊検査装置。   The stop device is an electromagnet that is provided on the flaw detection probe, and that sticks to the inspection object by electromagnetic force when the flaw detection probe is located at a detection site of a flaw or thinning of the inspection object. The nondestructive inspection apparatus according to claim 1. 前記停止装置は、前記探傷プローブに設けられ、前記探傷プローブが前記検査対象物のきずや減肉の検出部位に位置したときに前記検査対象物に吸引力で張り付く吸盤であることを特徴とする請求項1記載の非破壊検査装置。   The stop device is a suction cup that is provided on the flaw detection probe and sticks to the inspection object with a suction force when the flaw detection probe is located at a detection site of a flaw or thinning of the inspection object. The nondestructive inspection apparatus according to claim 1. 前記停止装置は、前記探傷プローブに設けられ、前記探傷プローブが前記検査対象物のきずや減肉の検出部位に位置したときに前記検査対象物との間に摩擦力を発生させる摩擦力発生装置であることを特徴とする請求項1記載の非破壊検査装置。   The stop device is provided on the flaw detection probe, and generates a frictional force between the flaw detection probe and the inspection object when the flaw detection probe is positioned at a detection site of a flaw or thinning of the inspection object. The nondestructive inspection apparatus according to claim 1, wherein 前記探傷プローブが前記検査対象物のきずや減肉の検出部位に位置したときその旨を作業員に対し体感報知する体感報知装置を備えたことを特徴とする請求項1ないし4のいずれか1項記載の非破壊検査装置。   5. The sensation notification device according to claim 1, further comprising a sensation notification device for notifying an operator of the fact when the flaw detection probe is positioned at a detection site of a flaw or thinning of the inspection object. The non-destructive inspection device described in the section. 作業員により検査対象物の表面を摺動走査する探傷プローブと、前記探傷プローブの検出信号を測定するとともに前記探傷プローブの検出信号に基づいて前記探傷プローブが前記検査対象物のきずや減肉の検出部位に位置したことを判定する測定器と、前記探傷プローブが前記検査対象物のきずや減肉の検出部位に位置したときその旨を作業員に対し体感報知する体感報知装置とを備えたことを特徴とする非破壊検査装置。   A flaw detection probe that slides and scans the surface of the inspection object by an operator, and the detection signal of the flaw detection probe is measured, and the flaw detection probe detects flaws and thinning of the inspection object based on the detection signal of the flaw detection probe. A measuring instrument for determining that the probe is located at a detection site, and a bodily sensation notification device for notifying an operator of the fact when the flaw detection probe is positioned at a detection site for a flaw or thinning of the inspection object. A nondestructive inspection device characterized by that. 前記体感報知装置は、前記探傷プローブが前記検査対象物のきずや減肉の検出部位に位置したことを作業員の視覚に訴える視覚報知装置であることを特徴とする請求項5または6記載の非破壊検査装置。   The said bodily sensation notification device is a visual notification device that appeals to the visual sense of an operator that the flaw detection probe is located at a detection site of a flaw or a thinning of the inspection object. Nondestructive inspection equipment. 前記体感報知装置は、前記探傷プローブが前記検査対象物のきずや減肉の検出部位に位置したことを作業員の聴覚に訴える聴覚報知装置であることを特徴とする請求項5または6記載の非破壊検査装置。   The said bodily sensation alerting device is an auditory alerting device that appeals to the hearing of an operator that the flaw detection probe is located at a detection site of a flaw or thinning of the inspection object. Nondestructive inspection equipment. 前記体感報知装置は、前記探傷プローブが前記検査対象物のきずや減肉の検出部位に位置したことを作業員の触覚に訴える触覚報知装置であることを特徴とする請求項5または6記載の非破壊検査装置。   The tactile sensation notification device is a tactile sensation notification device that appeals to the tactile sensation of an operator that the flaw detection probe is located at a detection site of a flaw or thinning of the inspection object. Nondestructive inspection equipment.
JP2006064723A 2006-03-09 2006-03-09 Nondestructive inspection apparatus Pending JP2007240386A (en)

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Cited By (1)

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Publication number Priority date Publication date Assignee Title
JP2010078511A (en) * 2008-09-26 2010-04-08 Chugoku Electric Power Co Inc:The Mounting jig and method

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JPS5728366A (en) * 1980-07-28 1982-02-16 Fujitsu Ltd Semiconductor device
JPH01110256A (en) * 1987-10-23 1989-04-26 Babcock Hitachi Kk Ultrasonic flaw detection probe
JPH0926417A (en) * 1995-07-12 1997-01-28 Ishikawajima Harima Heavy Ind Co Ltd Ultrasonic flaw detector

Patent Citations (3)

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Publication number Priority date Publication date Assignee Title
JPS5728366A (en) * 1980-07-28 1982-02-16 Fujitsu Ltd Semiconductor device
JPH01110256A (en) * 1987-10-23 1989-04-26 Babcock Hitachi Kk Ultrasonic flaw detection probe
JPH0926417A (en) * 1995-07-12 1997-01-28 Ishikawajima Harima Heavy Ind Co Ltd Ultrasonic flaw detector

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2010078511A (en) * 2008-09-26 2010-04-08 Chugoku Electric Power Co Inc:The Mounting jig and method

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