第5回
ガイド波による配管減肉検査システム
著者:
小平 小治郎,Kojirou KODAIRA,永島 良昭,Yoshiaki NAGASHIMA,三木 将裕,Masahiro MIKI,遠藤 正男,Masao ENDOU
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キーワードタグ:
A pipe inspection system using ultrasonic guided wave with inter-digital transducer was developed. In this system, for uni-directional transmission, a pair of transducer is set axially on the pipe with a separation of one-quarter of the wavelength, and a one-quarter period delayed anti-phased waveforms are applied to the pair. By this method, the amplitude of the syn thetic traveling wave in the minus direction can be completely decreased to zero in theory. For 50A pipe specimen, artificial discontinuities...
英字タイトル:
A Pipe Inspection System Using Ultrasonic Guided Wave
第6回
ガイド波を用いた大口径配管の減肉検査技術
著者:
三木 将裕,Masahiro MIKI,永島 良昭,Yoshiaki NAGASHIMA,遠藤 正男,Masao ENDOU,小平 小治郎,Kojiro KODAIRA
発刊日:
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真庭 一彦 Kazuhiko MANIWA Guided wave inspection technique is effective for detecting defects like corrosion in piping, because it can perform long range inspection. It is possible to expect this inspection as a metho d that leads to the decrease of the inspection process and its cost, because the incidental work can be reduced. Especially, the contraction effect of the inspection work is extensive in larg e-diameter piping inspection. In this paper, we introduce the guided wave inspection system to large-d...
英字タイトル:
Wall Thinning Inspection Technique for Large-Diameter Piping using Guided Wave
第14回
超音波フェーズドアレイ法による 一方向凝固材検査技術の開発
著者:
溝田 裕久,Hirohisa MIZOTA,永島 良昭,Yoshiaki NAGASHIMA,中畑 和之,Kazuyuki NAKAHATA
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An ultrasonic measurement method has been developed to determine the crystal growth angle of a unidirectional solidification material by using an ultrasonic array probe. The crystal growth direction of a unidirectional solidified nickel based superalloy are derived within an error of ±5 degrees by evaluating wave height levels of echoes measured with focal laws of each assumed crystal growth angle. Moreover, high precision ultrasonic testing is realized based on the focal laws considering the acoustic anis...
英字タイトル:
Development of Ultrasonic Phased Array Testing Method for Unidirectional Solidification Materials