Nondestructive Testing in Composite Materials

In this era of technological progress and given the need for welfare and safety, everything that is manufactured and maintained must comply with such needs. We would all like to live in a safe house that will not collapse on us. We would all like to walk on a safe road and never see a chasm open in...

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Bibliographic Details
Other Authors: Meola, Carosena (Editor)
Format: Electronic Book Chapter
Language:English
Published: Basel, Switzerland MDPI - Multidisciplinary Digital Publishing Institute 2020
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DOAB: description of the publication
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520 |a In this era of technological progress and given the need for welfare and safety, everything that is manufactured and maintained must comply with such needs. We would all like to live in a safe house that will not collapse on us. We would all like to walk on a safe road and never see a chasm open in front of us. We would all like to cross a bridge and reach the other side safely. We all would like to feel safe and secure when taking a plane, ship, train, or using any equipment. All this may be possible with the adoption of adequate manufacturing processes, with non-destructive inspection of final parts and monitoring during the in-service life of components. Above all, maintenance should be imperative. This requires effective non-destructive testing techniques and procedures. This Special Issue is a collection of some of the latest research in these areas, aiming to highlight new ideas and ways to deal with challenging issues worldwide. Different types of materials and structures are considered, different non-destructive testing techniques are employed with new approaches for data treatment proposed as well as numerical simulations. This can serve as food for thought for the community involved in the inspection of materials and structures as well as condition monitoring. 
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650 7 |a History of engineering & technology  |2 bicssc 
653 |a reinforce concrete 
653 |a rebar 
653 |a defect 
653 |a self-magnetic behavior 
653 |a magnetic flux density 
653 |a probability paper method 
653 |a Passive Magnetic Inspection (PMI) 
653 |a aluminum alloy wheel 
653 |a X-ray 
653 |a nondestructive testing 
653 |a defect detection 
653 |a adaptive threshold 
653 |a morphological reconstruction 
653 |a non-destructive inspection 
653 |a laser ultrasonic imaging 
653 |a Lamb wave 
653 |a delamination 
653 |a composite laminate 
653 |a frescoed surfaces 
653 |a non-destructive test 
653 |a plaster detachment 
653 |a impact hammer test 
653 |a historical masonry building 
653 |a thick multilayer composites 
653 |a discrete defects 
653 |a ultrasonic pulse echo 
653 |a nondestructive testing (NDT) 
653 |a recurrence plot (RP) 
653 |a recurrence quantification analysis (RQA) 
653 |a statistical results 
653 |a chaotic behavior 
653 |a phased array ultrasonic 
653 |a composites 
653 |a signal sensitivity 
653 |a diffuse ultrasonic waves 
653 |a cross-ply fiber reinforced composite 
653 |a defect localization 
653 |a non-destructive tests 
653 |a damage assessment 
653 |a residual properties 
653 |a Finite Element Method 
653 |a Damage Index 
653 |a non-destructive damage detection 
653 |a steel wire ropes 
653 |a review 
653 |a electromagnetic detection 
653 |a optical detection 
653 |a ultrasonic guided wave 
653 |a basalt fibers 
653 |a polyamide 
653 |a polypropylene 
653 |a impact damage 
653 |a lock-in thermography 
653 |a ultrasonic testing 
653 |a debonding 
653 |a composite damage 
653 |a electromechanical impedance 
653 |a piezoelectric 
653 |a FEM simulation 
653 |a non-destructive testing evaluation 
653 |a infrared thermography testing 
653 |a image enhancement 
653 |a n/a 
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