Ultrasonic Investigation of Mechanical Properties |
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Results 1-3 of 18
Page 44
... 2.070 2.060 V1 = LONGITUDINAL WAVE 2.050 2.040 V3 = FAST SHEAR WAVE 2.030 2.020 2.010 2.000 1.995 1.990 1.985 1.980 1.975 1.970 1.965 1.960 1.955 1.950 1.948 2.138 2.185 2.190 2.195 2.197 1.993 V2 = SLOW SHEAR WAVE V3 = FAST SHEAR WAVE.
... 2.070 2.060 V1 = LONGITUDINAL WAVE 2.050 2.040 V3 = FAST SHEAR WAVE 2.030 2.020 2.010 2.000 1.995 1.990 1.985 1.980 1.975 1.970 1.965 1.960 1.955 1.950 1.948 2.138 2.185 2.190 2.195 2.197 1.993 V2 = SLOW SHEAR WAVE V3 = FAST SHEAR WAVE.
Page 53
... shear wave velocity for propagation transverse to the forging direction was measured when the particle displacement was per- pendicular to the forging direction . For shear waves propagated in the forging direction , the wave speeds ...
... shear wave velocity for propagation transverse to the forging direction was measured when the particle displacement was per- pendicular to the forging direction . For shear waves propagated in the forging direction , the wave speeds ...
Page 69
... wave shear and longitudinal velocities in the direction normal to the rolling plane . Papadakis obtained the experimental results shown in Figs . 32 , 33 , and 34. Based on these results he made the following conclusions . The ...
... wave shear and longitudinal velocities in the direction normal to the rolling plane . Papadakis obtained the experimental results shown in Figs . 32 , 33 , and 34. Based on these results he made the following conclusions . The ...
Contents
Introduction | 1 |
Nonlinear Elastic Waves | 73 |
On the Energetics Kinetics and Topography of Interfaces | 78 |
Copyright | |
4 other sections not shown
Common terms and phrases
Alers aluminum Andreatch anisotropic Appl axis Breazeale calculated compressive stress crystallographic orientation cubic crystals determine direction cosines displacement gradients displacements along 001 displacements along 110 elastic moduli elastic wave propagation energy-flux vector equation of motion experimental germanium given by Eq hydrostatic pressure hydrostatic pressure transverse ideal orientation interaction isotropic solid linear elastic wave longitudinal wave longitudinal wave propagating materials mode transverse wave nonlinear elastic wave obtain Papadakis particle displacements phonons Phys Physical Acoustics plane wave pressure transverse wave pure mode longitudinal pure mode transverse pv² quasilongitudinal quasitransverse wave rolling direction second harmonic second-order elastic constants shear wave single crystals six third-order elastic stress along 001 symmetry test specimen texture third-order elastic constants Thurston and Brugger transducer transverse wave ultrasonic beam ultrasonic pulse uniaxial stress v₁ v₂ values wave along 100 wave normal wave speeds wave velocity Young's modulus