Ultrasonic S0 waves (fundamental symmetric Lamb modes) are being considered in several laboratories for the nondestructive characterization of the texture (preferred grain orientation) and formability of metal sheets and plates. In a typical experimental setup, the velocities of the S0 waves are measured as a function of wave propagation angle with respect to the rolling direction of the plate. However, the S0 waves are known to be dispersive, and that dispersion must be considered in order to isolate the small, texture‐induced shifts in the S0 wave velocity. Currently, there are two approximate dispersion correction methods, one proposed by Thompson et al.9 and the other introduced by Hirao and Fukuoka.20 In this paper, these two methods w...
Many cold-working processes for polycrystalline metals cause alignment of the grains with a single s...
A new developed self-calibrating ultrasonic technique for the thickness measurement of high alloyed ...
Texture causes direction dependencies of the elastic properties. Hence, the ultrasonic wave velociti...
In polycrystals ultrasonic waves are scattered at grain boundaries. This causes attenuation of the w...
We present work on the development of an ultrasonic texture measurement system for sheet metals usin...
The texture (preferred grain orientation) of rolled metal plates influences a number of important me...
We present a comparison of two techniques for the ultrasonic evaluation of the crystallographic text...
We report on the further development of an automated PC-based system for determination of the crysta...
Texture (preferred grain orientation) of polycrystalline metal sheets is an important material prope...
A laser-ultrasonic approach based on the propagation of surface skimming longitudinal wave (P-wave) ...
A method for measuring texture of metal plates or sheets using non-destructive ultrasonic investigat...
A laser-ultrasonic approach based on the propagation of surface skimming longitudinal wave (P-wave) ...
This report copes with the examination of dispersive shear-horizontal (SH) wave propagation in the p...
The use of ultrasonic velocity measurements to determine the texture (preferred grain orientation) o...
Texture information derived by non-destructive means has been used with limited success to determine...
Many cold-working processes for polycrystalline metals cause alignment of the grains with a single s...
A new developed self-calibrating ultrasonic technique for the thickness measurement of high alloyed ...
Texture causes direction dependencies of the elastic properties. Hence, the ultrasonic wave velociti...
In polycrystals ultrasonic waves are scattered at grain boundaries. This causes attenuation of the w...
We present work on the development of an ultrasonic texture measurement system for sheet metals usin...
The texture (preferred grain orientation) of rolled metal plates influences a number of important me...
We present a comparison of two techniques for the ultrasonic evaluation of the crystallographic text...
We report on the further development of an automated PC-based system for determination of the crysta...
Texture (preferred grain orientation) of polycrystalline metal sheets is an important material prope...
A laser-ultrasonic approach based on the propagation of surface skimming longitudinal wave (P-wave) ...
A method for measuring texture of metal plates or sheets using non-destructive ultrasonic investigat...
A laser-ultrasonic approach based on the propagation of surface skimming longitudinal wave (P-wave) ...
This report copes with the examination of dispersive shear-horizontal (SH) wave propagation in the p...
The use of ultrasonic velocity measurements to determine the texture (preferred grain orientation) o...
Texture information derived by non-destructive means has been used with limited success to determine...
Many cold-working processes for polycrystalline metals cause alignment of the grains with a single s...
A new developed self-calibrating ultrasonic technique for the thickness measurement of high alloyed ...
Texture causes direction dependencies of the elastic properties. Hence, the ultrasonic wave velociti...