AbstractIn this paper, it is proposed to use a combination of mechanical resonance and nonlinearity of defects to enhance substantially the efficiency of input-output frequency conversion in nonlinear NDT. The concept of a defect as a nonlinear oscillator brings about new dynamic and frequency scenarios characteristic of nonlinear and parametric oscillations. The experiments confirm transition to resonant modes of nonlinear vibrations in simulated and realistic defects. All resonant nonlinear modes are strongly localised in the defect area that provides a background for high-contrast highly-sensitive defect- and frequency-selective imaging
A drastic enhancement of efficiency for nonlinear and thermosonic NDT and imaging is observed via lo...
An efficient wave-defect interaction is the key to a high thermal response of flaws in ultrasonic th...
An efficient wave-defect interaction is the key to a high thermal response of flaws in ultrasonic th...
In this paper, it is proposed to use a combination of mechanical resonance and nonlinearity of defec...
The bottleneck problem of nonlinear NDT is a low efficiency of conversion from fundamental frequency...
The effect of local defect resonance (LDR) on the nonlinear ultrasonic response of defects is studie...
The bottleneck problem of nonlinear NDT is a low efficiency of conversion from fundamental frequency...
The presence of a defect leads to a local decrease in rigidity for a certain mass of the material an...
Nonlinear ultrasonic techniques have proven to be extremely sensitive to early damage evaluation in ...
In this paper, the effect of vibration resonance on nonlinear ultrasonic response of defects is stud...
The effect of local defect resonance (LDR) on the nonlinear ultrasonic response of defects is studie...
A highly efficient activation of defects is crucial for nonlinear, ultrasonic, Non-Destructive Testi...
It is experimentally shown that in order to provide maximum acoustic wave-defect interaction the con...
In this paper, a consistent way to enhance acoustic, optical and thermal defect responses is suggest...
This paper is aimed at developing a theoretical model able to predict the generation of nonlinear el...
A drastic enhancement of efficiency for nonlinear and thermosonic NDT and imaging is observed via lo...
An efficient wave-defect interaction is the key to a high thermal response of flaws in ultrasonic th...
An efficient wave-defect interaction is the key to a high thermal response of flaws in ultrasonic th...
In this paper, it is proposed to use a combination of mechanical resonance and nonlinearity of defec...
The bottleneck problem of nonlinear NDT is a low efficiency of conversion from fundamental frequency...
The effect of local defect resonance (LDR) on the nonlinear ultrasonic response of defects is studie...
The bottleneck problem of nonlinear NDT is a low efficiency of conversion from fundamental frequency...
The presence of a defect leads to a local decrease in rigidity for a certain mass of the material an...
Nonlinear ultrasonic techniques have proven to be extremely sensitive to early damage evaluation in ...
In this paper, the effect of vibration resonance on nonlinear ultrasonic response of defects is stud...
The effect of local defect resonance (LDR) on the nonlinear ultrasonic response of defects is studie...
A highly efficient activation of defects is crucial for nonlinear, ultrasonic, Non-Destructive Testi...
It is experimentally shown that in order to provide maximum acoustic wave-defect interaction the con...
In this paper, a consistent way to enhance acoustic, optical and thermal defect responses is suggest...
This paper is aimed at developing a theoretical model able to predict the generation of nonlinear el...
A drastic enhancement of efficiency for nonlinear and thermosonic NDT and imaging is observed via lo...
An efficient wave-defect interaction is the key to a high thermal response of flaws in ultrasonic th...
An efficient wave-defect interaction is the key to a high thermal response of flaws in ultrasonic th...