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Fundamentals of Ultrasonic Nondestructive Evaluation: A Modeling Approach

✍ Scribed by Lester W. Schmerr Jr. (auth.)


Publisher
Springer US
Year
1998
Tongue
English
Leaves
563
Edition
1
Category
Library

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✦ Synopsis


Ultrasound is currently used in a wide spectrum of applications ranging from medical imaging to metal cutting. This book is about using ultrasound in nondestructive evaluation (NDE) inspections. Ultrasonic NDE uses high-frequency acoustic/elastic waves to evaluate components without affecting their integrity or performance. This technique is commonly used in industry (particularly in aerospace and nuclear power) to inspect safety-critical parts for flaws during in-service use. Other important uses of ultrasonic NDE involve process control functions during manufacturing and fundamental materials characterization studies. It is not difficult to set up an ultrasonic NDE measurement system to launch waves into a component and monitor the waves received from defects, such as cracks, even when those defects are deep within the component. It is difficult however to interpret quantitatively the signals received in such an ultrasonic NDE measurement process. For example based on the ultrasonic signal received from a crack, what is the size, shape, and orientation of the crack producing the signal? Answering such questions requires evaluation procedures based on a detailed knowledge of the physics of the entire ultrasonic measurement process. One approach to obtaining such knowledge is to couple quantitative experiments closely with detailed models of the entire ultrasonic measurement system itself. We refer to such models here as ultrasonic NDE measurement models. In other areas of engineering, models have revolutionized how engineering is practiced. A classic example is the impact of the finite-element method on elastic stress analysis.

✦ Table of Contents


Front Matter....Pages i-xiii
An Ultrasonic System....Pages 1-13
Linear Systems and the Fourier Transform....Pages 15-28
Fundamentals....Pages 29-48
Propagation of Bulk Waves....Pages 49-68
Reciprocal Theorem and Other Integral Relations....Pages 69-89
Reflection and Refraction of Bulk Waves....Pages 91-140
Propagation of Surface and Plate Waves....Pages 141-155
Ultrasonic Transducer Radiation....Pages 157-282
Material Attenuation and Efficiency Factors....Pages 283-304
Flaw Scattering....Pages 305-384
Transducer Reception Process....Pages 385-397
Ultrasonic Measurement Models....Pages 399-433
Near-Field Measurement Models....Pages 435-456
Quantitative Ultrasonic NDE with Models....Pages 457-489
Model-Based Flaw Sizing....Pages 491-516
Back Matter....Pages 517-559

✦ Subjects


Mechanical Engineering; Astronomy, Observations and Techniques


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