High-temperature ultrasonic thickness monitoring for pipe thinning in a flow-accelerated corrosion proof test facility

In order to monitor the pipe thinning caused by flow-accelerated corrosion (FAC) that occurs in coolant piping systems, a shear horizontal ultrasonic pitch-catch waveguide technique was developed for accurate pipe wall thickness monitoring. A clamping device for dry coupling contact between the end...

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Published inNuclear engineering and technology Vol. 49; no. 7; pp. 1463 - 1471
Main Authors Cheong, Yong-Moo, Kim, Kyung-Mo, Kim, Dong-Jin
Format Journal Article
LanguageEnglish
Published Elsevier B.V 01.10.2017
Elsevier
한국원자력학회
Subjects
Online AccessGet full text
ISSN1738-5733
2234-358X
2234-358X
DOI10.1016/j.net.2017.05.002

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Abstract In order to monitor the pipe thinning caused by flow-accelerated corrosion (FAC) that occurs in coolant piping systems, a shear horizontal ultrasonic pitch-catch waveguide technique was developed for accurate pipe wall thickness monitoring. A clamping device for dry coupling contact between the end of the waveguide and pipe surface was designed and fabricated. A computer program for multi-channel on-line monitoring of the pipe thickness at high temperature was also developed. Both a four-channel buffer rod pulse-echo type and a shear horizontal ultrasonic waveguide type for high-temperature thickness monitoring system were successfully installed to the test section of the FAC proof test facility. The overall measurement error can be estimated as ± 10 μm during a cycle from room temperature to 200°C.
AbstractList In order to monitor the pipe thinning caused by flow-accelerated corrosion (FAC) that occurs in coolant piping systems, a shear horizontal ultrasonic pitch-catch waveguide technique was developed for accurate pipe wall thickness monitoring. A clamping device for dry coupling contact between the end of the waveguide and pipe surface was designed and fabricated. A computer program for multi-channel on-line monitoring of the pipe thickness at high temperature was also developed. Both a four-channel buffer rod pulse-echo type and a shear horizontal ultrasonic waveguide type for high-temperature thickness monitoring system were successfully installed to the test section of the FAC proof test facility. The overall measurement error can be estimated as ± 10 μm during a cycle from room temperature to 200°C.
In order to monitor the pipe thinning caused by flow-accelerated corrosion (FAC) that occurs in coolant piping systems, a shear horizontal ultrasonic pitch-catch waveguide technique was developed for accurate pipe wall thickness monitoring. A clamping device for dry coupling contact between the end of the waveguide and pipe surface was designed and fabricated. A computer program for multichannel on-line monitoring of the pipe thickness at high temperature was also developed. Both a fourchannel buffer rod pulse-echo type and a shear horizontal ultrasonic waveguide type for hightemperature thickness monitoring system were successfully installed to the test section of the FAC proof test facility. The overall measurement error can be estimated as ± 10 μm during a cycle from room temperature to 200℃. KCI Citation Count: 5
Author Kim, Kyung-Mo
Cheong, Yong-Moo
Kim, Dong-Jin
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Issue 7
Keywords Ultrasonic Thickness Monitoring
Structural Health Monitoring
High Temperature Pipe Thinning
FAC (Flow Accelerated Corrosion)
Ultrasonic Waveguide
Language English
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한국원자력학회
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Snippet In order to monitor the pipe thinning caused by flow-accelerated corrosion (FAC) that occurs in coolant piping systems, a shear horizontal ultrasonic...
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SubjectTerms FAC (Flow Accelerated Corrosion)
High Temperature Pipe Thinning
Structural Health Monitoring
Ultrasonic Thickness Monitoring
Ultrasonic Waveguide
원자력공학
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Title High-temperature ultrasonic thickness monitoring for pipe thinning in a flow-accelerated corrosion proof test facility
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