Acoustic resonance technique has been applied to monitor the fatigue damage process of steel pipes exposed to rotating bending fatigue. The technique incorporates a superheterodyne spectrometer and an electromagnetic acoustic transducer (EMAT). The EMAT was newly developed for this purpose, and uses the magnetostrictive mechanism of ferromagnetic metals and excites and detects axial shear waves traveling around the sample pipe with axial polarization. Noncontact ultrasonic spectroscopy permits the accurate determination of the resonant frequency and the attenuation coefficient throughout the fatigue life. The attenuation coefficient shows a sharp peak around 80-90% of the life. The evolution is interpreted as reflecting dislocation multipli...
AbstractNDT on-line monitoring methodology was applied at the servo-hydraulic machine to monitor the...
NDT on-line monitoring methodology was applied at the servo-hydraulic machine to monitor the propaga...
The primary objective of nondestructive testing and evaluation in metallic structural members is to ...
Using electromagnetic acoustic resonance (EMAR), we studied the evolution of the surface-shear-wave ...
The phenomenon of the reduction in the propagation speed of an ultrasonic wave when it travels throu...
A nonlinear acoustic measurement is studied for fatigue damage monitoring. An electromagnetic acoust...
This study is devoted to clarifying the mechanism of the surface-shear-wave attenuation peak observe...
Austenitic pipes and other safety-relevant components of primary circuits in pressurized water react...
Fatigue would often cause serious damage in materials and fracture all of sudden[1]. In many studies...
Electromagnetic acoustic resonance is applied for determining the frequency dependence of the ultras...
Fatigue damage induced in engineering applications are inevitable, as such without proper monitoring...
Any system consisting of structural material often undergoes fatigue, which is caused by dynamic loa...
Any system consisting of structural material often undergoes fatigue, which is caused by dynamic loa...
AbstractThis paper considers nondestructive evaluation techniques for integrity ofaustenite stainles...
This research is focused on LEVEL 1 detection and LEVEL 2 localization of damage which could be used...
AbstractNDT on-line monitoring methodology was applied at the servo-hydraulic machine to monitor the...
NDT on-line monitoring methodology was applied at the servo-hydraulic machine to monitor the propaga...
The primary objective of nondestructive testing and evaluation in metallic structural members is to ...
Using electromagnetic acoustic resonance (EMAR), we studied the evolution of the surface-shear-wave ...
The phenomenon of the reduction in the propagation speed of an ultrasonic wave when it travels throu...
A nonlinear acoustic measurement is studied for fatigue damage monitoring. An electromagnetic acoust...
This study is devoted to clarifying the mechanism of the surface-shear-wave attenuation peak observe...
Austenitic pipes and other safety-relevant components of primary circuits in pressurized water react...
Fatigue would often cause serious damage in materials and fracture all of sudden[1]. In many studies...
Electromagnetic acoustic resonance is applied for determining the frequency dependence of the ultras...
Fatigue damage induced in engineering applications are inevitable, as such without proper monitoring...
Any system consisting of structural material often undergoes fatigue, which is caused by dynamic loa...
Any system consisting of structural material often undergoes fatigue, which is caused by dynamic loa...
AbstractThis paper considers nondestructive evaluation techniques for integrity ofaustenite stainles...
This research is focused on LEVEL 1 detection and LEVEL 2 localization of damage which could be used...
AbstractNDT on-line monitoring methodology was applied at the servo-hydraulic machine to monitor the...
NDT on-line monitoring methodology was applied at the servo-hydraulic machine to monitor the propaga...
The primary objective of nondestructive testing and evaluation in metallic structural members is to ...