In the present paper, an efficient method of damping structural vibrations using the acoustic black hole effect is further investigated experimentally. This method is based on some specific properties of flexural wave propagation in tapered plates (wedges) of power-law profile that have to be partially covered by narrow thin strips of absorbing layers. Ideally, if the power-law exponent of the profile is equal or larger than two, the flexural wave never reaches the sharp edge and therefore never reflects back, which constitutes the acoustic black hole effect. It has been previously established theoretically and confirmed experimentally that this method of damping structural vibrations is very efficient even in the presence of edge truncatio...
Flexural waves in beams and plates slow down if their thickness decreases. Such property was success...
Experimental investigations into the acoustic black hole effect and its applications for reduction o...
This thesis describes the results of the experimental investigations into some new geometrical confi...
The reduction of flexural vibration in plate structures has been investigated using the recently rep...
A new method of damping flexural vibrations in plate-like structures based on the ‘acoustic black ho...
One of the possible ways of damping resonant flexural vibrations of engineering structures or their ...
An efficient method of reducing edge reflections of flexural waves in plates or bars based on the 'a...
AbstractA new method of damping flexural vibrations in plate-like structures based on the ‘acoustic ...
A new efficient method of reducing edge reflections of flexural waves in plates or bars based on the...
It has been shown in our previous publications that the addition of power-law profiled wedges to edg...
The reduction of flexural vibration in thin plates is examined using the acoustic black hole effect ...
In this paper we present some recent experimental results on new lightweight and broad-band damping ...
In this work, we report experimental results on damping flexural vibrations in rectangular plates co...
One of the well-known ways of damping resonant flexural vibrations of different engineering structur...
Flexural waves in beams and plates slow down if their thickness decreases. Such property was success...
Experimental investigations into the acoustic black hole effect and its applications for reduction o...
This thesis describes the results of the experimental investigations into some new geometrical confi...
The reduction of flexural vibration in plate structures has been investigated using the recently rep...
A new method of damping flexural vibrations in plate-like structures based on the ‘acoustic black ho...
One of the possible ways of damping resonant flexural vibrations of engineering structures or their ...
An efficient method of reducing edge reflections of flexural waves in plates or bars based on the 'a...
AbstractA new method of damping flexural vibrations in plate-like structures based on the ‘acoustic ...
A new efficient method of reducing edge reflections of flexural waves in plates or bars based on the...
It has been shown in our previous publications that the addition of power-law profiled wedges to edg...
The reduction of flexural vibration in thin plates is examined using the acoustic black hole effect ...
In this paper we present some recent experimental results on new lightweight and broad-band damping ...
In this work, we report experimental results on damping flexural vibrations in rectangular plates co...
One of the well-known ways of damping resonant flexural vibrations of different engineering structur...
Flexural waves in beams and plates slow down if their thickness decreases. Such property was success...
Experimental investigations into the acoustic black hole effect and its applications for reduction o...
This thesis describes the results of the experimental investigations into some new geometrical confi...