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Fundamentals and Applications of Ultrasonic Waves


Edition: 1st
Author(s): Cheeke; J. David N.
ISBN10:  0849301300
ISBN13:  9780849301308
Format:  Hardcover
Pub. Date:  4/18/2002
Publisher(s): CRC

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SummaryTable of Contents
Provides a full and rigorous treatment of the fundamentals of acoustical waves. Offers a broad, up to date survey of acoustic sensors, trends in scanning acoustic microscopy, and major developments in multi-bubble single-bubble sonoluminescence.
Ultrasonics: An Overview
1(14)
Introduction
1(7)
Physical Acoustics
8(1)
Low-Frequency Bulk Acoustic Wave (BAW) Applications
9(1)
Surface Acoustic Waves (SAW)
10(1)
Piezoelectric Materials
11(1)
High-Power Ultrasonics
11(1)
Medical Ultrasonics
12(1)
Acousto-Optics
12(1)
Underwater Acoustics and Seismology
13(2)
Introduction to Vibrations and Waves
15(24)
Vibrations
15(14)
Vibrational Energy
18(1)
Exponential Solutions: Phasors
18(1)
Damped Oscillations
19(1)
Forced Oscillations
20(4)
Phasors and Linear Superposition of Simple Harmonic Motion
24(2)
Fourier Analysis
26(1)
Nonperiodic Waves: Fourier Integral
27(2)
Wave Motion
29(10)
Harmonic Waves
32(2)
Plane Waves in Three Dimensions
34(1)
Dispersion, Group Velocity, and Wave Packets
35(1)
Summary
36(1)
Questions
37(2)
Bulk Waves in Fluids
39(20)
One-Dimensional Theory of Fluids
39(9)
Sound Velocity
42(3)
Acoustic Impedance
45(1)
Energy Density
46(2)
Acoustic Intensity
48(1)
Three-Dimensional Model
48(11)
Acoustic Poynting Vector
50(1)
Attenuation
51(6)
Summary
57(1)
Questions
58(1)
Introduction to the Theory of Elasticity
59(18)
A Short Introduction to Tensors
59(2)
Strain Tensor
61(3)
Stress Tensor
64(2)
Thermodynamics of Deformation
66(1)
Hooke's Law
67(4)
Other Elastic Constants
71(6)
Summary
74(1)
Questions
74(3)
Bulk Acoustic Waves in Solids
77(14)
One-Dimensional Model of Solids
78(1)
Wave Equation in Three Dimensions
79(5)
Material Properties
84(7)
Summary
89(1)
Questions
90(1)
Finite Beams, Radiation, Diffraction, and Scattering
91(24)
Radiation
91(13)
Point Source
91(4)
Radiation from a Circular Piston
95(9)
Scattering
104(3)
The Cylinder
104(2)
The Sphere
106(1)
Focused Acoustic Waves
107(3)
Radiation Pressure
110(1)
Doppler Effect
111(4)
Summary
113(1)
Questions
114(1)
Reflection and Transmission of Ultrasonic Waves at Interfaces
115(28)
Introduction
115(2)
Reflection and Transmission at Normal Incidence
117(7)
Standing Waves
120(2)
Reflection from a Layer
122(2)
Oblique Incidence: Fluid-Fluid Interface
124(4)
Symmetry Considerations
128(1)
Fluid-Solid Interface
128(10)
Solid-Solid Interface
138(5)
Solid-Solid Interface: SH Modes
139(1)
Reflection at a Free Solid Boundary
140(1)
Summary
141(1)
Questions
141(2)
Rayleigh Waves
143(18)
Introduction
143(1)
Rayleigh Wave Propagation
144(5)
Fluid Loaded Surface
149(12)
Beam Displacement
154(3)
Lateral Waves: Summary of Leaky Rayleigh Waves
157(1)
Stoneley Waves at a Liquid-Solid Interface
158(1)
Summary
159(1)
Questions
160(1)
Lamb Waves
161(14)
Potential Method for Lamb Waves
162(6)
Fluid Loading Effects
168(7)
Fluid-Loaded Plate: One Side
168(1)
Fluid-Loaded Plate: Same Fluid Both Sides
169(1)
Fluid-Loaded Plate: Different Fluids
169(1)
Fluid-Loaded Solid Cylinder
170(1)
Fluid-Loaded Tubes
171(1)
Summary
172(1)
Questions
172(3)
Acoustic Waveguides
175(28)
Introduction: Partial Wave Analysis
175(1)
Waveguide Equation: SH Modes
176(4)
Lamb Waves
180(2)
Rayleigh Waves
182(1)
Layered Substrates
183(11)
Love Waves
184(3)
Generalized Lamb Waves
187(4)
Stoneley Waves
191(3)
Multilayer Structures
194(3)
Free Isotropic Cylinder
197(1)
Waveguide Configurations
197(6)
Overlay Waveguides
198(2)
Topographic Waveguides
200(1)
Circular Fiber Waveguides
200(1)
Summary
201(1)
Questions
201(2)
Crystal Acoustics
203(14)
Introduction
203(3)
Cubic System
205(1)
Group Velocity and Characteristic Surfaces
206(4)
Piezoelectricity
210(7)
Introduction
210(1)
Piezoelectric Constitutive Relations
211(3)
Piezoelectric Coupling Factor
214(3)
Piezoelectric Transducers, Delay Lines, and Analog Signal Processing
217(26)
Bulk Acoustic Wave Transducers
217(7)
Unloaded Transducer
220(2)
Loaded Transducer
222(2)
Bulk Acoustic Wave Delay Lines
224(6)
Pulse Echo Mode
224(3)
Buffer Rod Materials
227(1)
Acoustic Losses in Buffer Rods
228(1)
BAW Buffer Rod Applications
229(1)
Surface Acoustic Wave Transducers
230(3)
Introduction
230(1)
Interdigital Transducers (IDT)
231(1)
Simple Model of SAW Transducer
231(2)
Signal Processing
233(10)
SAW Filters
233(2)
Delay Lines
235(1)
SAW Resonators
236(1)
Oscillators
236(1)
Coded Time Domain Structures
237(1)
Convolvers
238(1)
Multistrip Couplers (MSC)
239(4)
Acoustic Sensors
243(44)
Thickness-Shear Mode (TSM) Resonators
244(6)
TSM Resonator in Liquid
249(1)
TSM Resonator with a Viscoelastic Film
250(1)
SAW Sensors
250(6)
SAW Interactions
251(1)
Acoustoelectric Interaction
252(3)
Elastic and Viscoelastic Films on SAW Substrates
255(1)
Shear Horizontal (SH) Type Sensors
256(5)
Acoustic Plate Mode (APM) Sensors
256(3)
SH-SAW Sensor
259(1)
Love Mode Sensors
260(1)
Slow Transverse Wave (STW) Sensors
261(1)
Flexural Plate Wave (FPW) Sensors
261(4)
Thin Rod Acoustic Sensors
265(4)
Gravimetric Sensitivity Analysis and Comparison
269(4)
Physical Sensing of Liquids
273(7)
Density Sensing
273(2)
Viscosity Sensing
275(1)
Temperature Sensing
276(2)
Flow Sensing
278(1)
Level Sensing
279(1)
Chemical Gas Sensors
280(5)
Introduction
280(1)
Chemical Interfaces for Sensing
281(2)
Sensor Arrays
283(1)
Gas Chromatography with Acoustic Sensor Detection
283(2)
Biosensing
285(2)
Acoustic Microscopy
287(32)
Introduction
287(6)
Resolution
293(6)
Acoustic Lens Design
299(5)
Contrast Mechanisms and Quantitative Measurements
304(5)
V(z) Theory
304(1)
Reflectance Function from Fourier Inversion
305(1)
Line Focus Beam
306(2)
Subsurface (Interior) Imaging
308(1)
Applications of Acoustic Microscopy
309(6)
Biological Samples
309(2)
Films and Substrates
311(1)
NDE of Materials
312(2)
NDE of Devices
314(1)
Perspectives
315(4)
Nondestructive Evaluation (NDE) of Materials
319(32)
Introduction
319(4)
Surfaces
323(5)
Principles of Rayleigh Wave NDE
324(1)
Generation of Rayleigh Waves for NDE
325(1)
Critical Angle Reflectivity (CAR)
326(2)
Plates
328(3)
Leaky Lamb Waves: Dispersion Curves
328(2)
NDE Using Leaky Lamb Waves (LLW)
330(1)
Layered Structures
331(9)
Inversion Procedures
331(1)
Modal Frequency Spacing (MFS) Method
332(4)
Modified Modal Frequency Spacing (MMFS) Method
336(4)
Adhesion
340(3)
Thickness Gauging
343(6)
Mode-Cutoff-Based Approaches
346(3)
Clad Buffer Rods
349(2)
Special Topics
351(18)
Multiple Scattering
351(3)
Time Reversal Mirrors (TRM)
354(3)
Picosecond Ultrasonics
357(4)
Air-Coupled Ultrasonics
361(4)
Resonant Ultrasound Spectroscopy
365(4)
Cavitation and Sonoluminescence
369(28)
Bubble Dynamics
369(7)
Quasistatic Bubble Description
369(1)
Bubble Dynamics
370(4)
Acoustic Emission
374(1)
Acoustic Response of Bubbly Liquids
375(1)
Multibubble Sonoluminescence (MBSL)
376(4)
Summary of Experimental Results
378(2)
Single Bubble Sonoluminescence (SBSL)
380(17)
Introduction
380(2)
Experimental Setup
382(3)
Bubble Dynamics
385(4)
Key Experimental Results
389(5)
Successful Models
394(3)
References 397(12)
Appendices 409(36)
A. Bessel Functions
409(2)
B. Acoustic Properties of Materials
411(26)
C. Complementary Laboratory Experiments
437(8)
Index 445

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