A number of applications, for instance ultrasonic imaging and nondestructive testing, involve the transmission of acoustic energy across fluid–solid interfaces into dissipative solids. However, such transmission is generally hindered by the large impedance mismatch at the interface. In order to address this problem, inhomogeneous plane waves were investigated in this work for the purpose of improving the acoustic energy transmission. To this end, under the assumption of linear hysteretic damping, models for fluid–structure interaction were developed that allow for both homogeneous and inhomogeneous incident waves. For low-loss solids, the results reveal that, at the Rayleigh angle, a unique value of the wave inhomogeneity can be found which...
Technological developments in composite materials, non-destructive testing, and signal processing as...
International audienceThe predicted properties of the Stoneley- Scholte wave, deduced from a previou...
The control of vibrational energy within solids is a fundamental engineering challenge with numerous...
A number of applications, for instance ultrasonic imaging and nondestructive testing, involve the tr...
The transmission of airborne sound into high-impedance media is of interest in several applications....
The transmission of acoustic energy into solid materials is of interest in a wide range of applicati...
The acoustic excitation of energetic materials has been demonstrated to be useful in detection and d...
The characteristics of sound transmission into real, or dissipative, media differ from those of tran...
It is well known that layered solids can support dispersive, layer guided waves whose propagation ch...
A number of applications, for instance ultrasonic imaging and nondestructive testing, involve the tr...
In immersion ultrasonic testing, a beam of sound must pass through a liquid-solid interface before i...
It is well known that when a bounded beam of acoustic waves is incident on a fluid-solid interface a...
Examination of the backscattering of ultrasonic waves has been suggested as a possible technique for...
This paper presents theoretical and experimental results on the problem of bounded acoustic beam ref...
The large impedance difference between air and most solids prevents significant energy transfer from...
Technological developments in composite materials, non-destructive testing, and signal processing as...
International audienceThe predicted properties of the Stoneley- Scholte wave, deduced from a previou...
The control of vibrational energy within solids is a fundamental engineering challenge with numerous...
A number of applications, for instance ultrasonic imaging and nondestructive testing, involve the tr...
The transmission of airborne sound into high-impedance media is of interest in several applications....
The transmission of acoustic energy into solid materials is of interest in a wide range of applicati...
The acoustic excitation of energetic materials has been demonstrated to be useful in detection and d...
The characteristics of sound transmission into real, or dissipative, media differ from those of tran...
It is well known that layered solids can support dispersive, layer guided waves whose propagation ch...
A number of applications, for instance ultrasonic imaging and nondestructive testing, involve the tr...
In immersion ultrasonic testing, a beam of sound must pass through a liquid-solid interface before i...
It is well known that when a bounded beam of acoustic waves is incident on a fluid-solid interface a...
Examination of the backscattering of ultrasonic waves has been suggested as a possible technique for...
This paper presents theoretical and experimental results on the problem of bounded acoustic beam ref...
The large impedance difference between air and most solids prevents significant energy transfer from...
Technological developments in composite materials, non-destructive testing, and signal processing as...
International audienceThe predicted properties of the Stoneley- Scholte wave, deduced from a previou...
The control of vibrational energy within solids is a fundamental engineering challenge with numerous...