Novel Approaches for Nondestructive Testing and Evaluation

Nondestructive testing and evaluation (NDT&E) is one of the most important techniques for determining the quality and safety of materials, components, devices, and structures. NDT&E technologies include ultrasonic testing (UT), magnetic particle testing (MT), magnetic flux leakage testing (M...

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Other Authors: Lee, Jinyi (Editor), Lee, Hoyong (Editor), Berkache, Azouaou (Editor)
Format: Electronic Book Chapter
Language:English
Published: Basel MDPI - Multidisciplinary Digital Publishing Institute 2022
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Online Access:DOAB: download the publication
DOAB: description of the publication
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520 |a Nondestructive testing and evaluation (NDT&E) is one of the most important techniques for determining the quality and safety of materials, components, devices, and structures. NDT&E technologies include ultrasonic testing (UT), magnetic particle testing (MT), magnetic flux leakage testing (MFLT), eddy current testing (ECT), radiation testing (RT), penetrant testing (PT), and visual testing (VT), and these are widely used throughout the modern industry. However, some NDT processes, such as those for cleaning specimens and removing paint, cause environmental pollution and must only be considered in limited environments (time, space, and sensor selection). Thus, NDT&E is classified as a typical 3D (dirty, dangerous, and difficult) job. In addition, NDT operators judge the presence of damage based on experience and subjective judgment, so in some cases, a flaw may not be detected during the test. Therefore, to obtain clearer test results, a means for the operator to determine flaws more easily should be provided. In addition, the test results should be organized systemically in order to identify the cause of the abnormality in the test specimen and to identify the progress of the damage quantitatively. 
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650 7 |a History of engineering & technology  |2 bicssc 
653 |a composites 
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653 |a non-destructive testing 
653 |a photoacoustic 
653 |a ultrasonic representation 
653 |a terahertz 
653 |a coded-aperture imaging 
653 |a convolution neural network (CNN) 
653 |a fast image reconstruction 
653 |a nondestructive evaluation 
653 |a acoustic nonlinearity parameter 
653 |a indirect method 
653 |a laser ultrasound 
653 |a fully non-contact 
653 |a surface acoustic wave 
653 |a UWB-PPM 
653 |a UWB-OOK 
653 |a buried objects 
653 |a nondestructive environment 
653 |a Levenberg-Marquardt method 
653 |a textured surface anomaly detection 
653 |a computer vision 
653 |a deep learning 
653 |a attention mechanism 
653 |a adaptive fusion 
653 |a power quality disturbances 
653 |a long short term memory 
653 |a convolutional neural network 
653 |a short time Fourier transform 
653 |a leaky Lamb wave 
653 |a semi-analytical finite element (SAFE) 
653 |a waveguide sensor 
653 |a finite-width plate 
653 |a waveguide plate 
653 |a width modes 
653 |a spatial beating 
653 |a Rayleigh-Sommerfeld integral (RSI) 
653 |a weld cracks 
653 |a eddy current nondestructive testing 
653 |a gradiently relative magnetic permeability 
653 |a heat affected zone 
653 |a austenitic stainless steel 
653 |a circulating fluidized bed combustion boiler 
653 |a water-cooled wall tube 
653 |a magnetic sensor array 
653 |a magnetic flux density 
653 |a flexible ultrasonic probe 
653 |a neutron irradiation embrittlement 
653 |a reactor pressure vessel 
653 |a magnetic nondestructive evaluation 
653 |a micromagnetic multiparameter microstructure and stress analysis 3MA 
653 |a magnetic adaptive testing 
653 |a 3D imaging of metal grains 
653 |a non-destructive testing methods 
653 |a stacking images 
653 |a SA106 carbon steel 
653 |a terahertz waves 
653 |a refractive index 
653 |a thickness measurement 
653 |a Shim stock films 
653 |a composite materials 
653 |a reflection mode 
653 |a neutron radiography 
653 |a Bragg-edge imaging 
653 |a gas tungsten arc welding (GTAW) 
653 |a low transformation temperature (LTT) steel 
653 |a austenite-to-martensite transformation 
653 |a Debye-Waller factor 
653 |a n/a 
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