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Fundamentals of Ultrasonic Nondestructive Evaluation: A Modeling Approach: Springer Series in Measurement Science and Technology

Autor Lester W. Schmerr Jr.
en Limba Engleză Hardback – 11 mai 2016
This extensively revised and updated second edition of a widely read classic presents the use of ultrasound in nondestructive evaluation (NDE) inspections. Retaining the first edition's use of wave propagation /scattering theory and linear system theory, this volume also adds significant new material including:
  • the introduction of MATLAB® functions and scripts that evaluate key results involving beam propagation and scattering, flaw sizing, and the modeling of ultrasonic systems.
  • elements of Gaussian beam theory and a multi-Gaussian ultrasonic beam model for  bulk wave transducers.
  • a new chapter on the connection between ultrasonic modeling and probability of detection (POD) and reliability models.
  • new and improved derivations of ultrasonic measurement models.
  • updated coverage of ultrasonic simulators that have been developed around the world.
Students, engineers, and researchers workingin the ultrasonic NDE field will find a wealth of information on the modeling of ultrasonic inspections and the fundamental ultrasonic experiments that support those models in this new edition.
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Specificații

ISBN-13: 9783319304618
ISBN-10: 3319304615
Pagini: 600
Ilustrații: XVIII, 758 p. 370 illus., 62 illus. in color.
Dimensiuni: 155 x 235 x 41 mm
Greutate: 1.26 kg
Ediția:2nd ed. 2016
Editura: Springer International Publishing
Colecția Springer
Seria Springer Series in Measurement Science and Technology

Locul publicării:Cham, Switzerland

Cuprins

An Ultrasonic System.- Linear Systems and the Fourier Transform.- Wave Motion Fundamentals.- Propagation of Bulk Waves.- The Reciprocal Theorem and Other Integral Relations.- Reflection and Transmission of Bulk Waves.- Propagation of Plate and Surface Waves.- Ultrasonic Transducer Radiation.- Material Properties and  System Function  Determination.- Flaw Scattering.- The Transducer Reception Process.- Ultrasonic Measurement Models.- Near Field Measurement Models.- Quantitative Ultrasonic NDE With Models.- Model-Based Flaw Sizing.- Probability of Detection and Reliability.- Appendix A.  The Fourier Transform.- Appendix B. The Dirac Delta Function.- Appendix C.  Basic Notations and Concepts.- Appendix D. The Hilbert Transform.- Appendix E. The Method of Stationary Phase.- Appendix F. Properties of Ellipsoids.- Appendix G. MATLAB Functions and Scripts.

Textul de pe ultima copertă

This extensively revised and updated second edition of a widely read classic presents the use of ultrasound in nondestructive evaluation (NDE) inspections. Retaining the first edition's use of wave propagation /scattering theory and linear system theory, this volume also adds significant new material including:
  • the introduction of MATLAB® functions and scripts that evaluate key results involving beam propagation and scattering, flaw sizing, and the modeling of ultrasonic systems.
  • elements of Gaussian beam theory and a multi-Gaussian ultrasonic beam model for  bulk wave transducers.
  • a new chapter on the connection between ultrasonic modeling and probability of detection (POD) and reliability models.
  • new and improved derivations of ultrasonic measurement models.
  • updated coverage of ultrasonic simulators that have been developed around the world.
Students, engineers, and researchers workingin the ultrasonic NDE field will find a wealth of information on the modeling of ultrasonic inspections and the fundamental ultrasonic experiments that support those models in this new edition.

Caracteristici

Describes the fundamentals of wave propagation needed to simulate the propagation and scattering of ultrasonic waves An updated and revised edition of a well-received classic New edition includes MATLAB functions and scripts that make the use of models more accessible to the reader End-of-chapter problems provide a deeper understanding of the material Includes supplementary material: sn.pub/extras