This work presents the design and the latest experimental results on the surface strain measurements during an impact event obtained with the EXTREME high-speed shearography instrument. The shearography technique is used in this project to provide a quantitative measurement of the surface strain development at the first moments of the impact event (μs time scale) which may reveal the initiation of the failure mechanisms in composite materials. Experimentally measured surface strain components over the field of view will be used as input and validation data for new numerical and analytical models of the impact response of composites. The new configuration of the shearography instrument realises measurements of the in- and out-of-plane surfac...
Advanced composites are increasingly used in aerospace, naval, and automotive vehicles due to their ...
The aim of this paper is to investigate the ability of two different interferometric NDT techniques ...
Current methods for testing the high strain...
This work presents the design and preliminary results of a high-speed shearography instrument in dev...
Monitoring of extreme dynamic loadings on composite materials with high temporal and spatial resolut...
In the last decades, new materials and solutions were studied in the field of aerospace industry in ...
The use of thick composites and sandwich structures is increasing rapidly in marine, aerospace, and ...
In this work a novel image-based inertial ...
This paper investigates the use of shearography and waveform- based acoustic emission (AE) technique...
Shearography is a non-destructive testing technique that provides full-field surface strain characte...
Composite materials have seen widespread use in the aerospace industry and are becoming increasingly...
Reliable measurement of interlaminar properties at high strain rates (∼ 103 s−1) is very challenging...
The high specific strength and tailorable properties have made advanced composites structures to fin...
Shearography is a full-field speckle interferometric technique used to determine surface displacemen...
Testing fibre composites off-axis has been used extensively to explore shear/tension coupling effect...
Advanced composites are increasingly used in aerospace, naval, and automotive vehicles due to their ...
The aim of this paper is to investigate the ability of two different interferometric NDT techniques ...
Current methods for testing the high strain...
This work presents the design and preliminary results of a high-speed shearography instrument in dev...
Monitoring of extreme dynamic loadings on composite materials with high temporal and spatial resolut...
In the last decades, new materials and solutions were studied in the field of aerospace industry in ...
The use of thick composites and sandwich structures is increasing rapidly in marine, aerospace, and ...
In this work a novel image-based inertial ...
This paper investigates the use of shearography and waveform- based acoustic emission (AE) technique...
Shearography is a non-destructive testing technique that provides full-field surface strain characte...
Composite materials have seen widespread use in the aerospace industry and are becoming increasingly...
Reliable measurement of interlaminar properties at high strain rates (∼ 103 s−1) is very challenging...
The high specific strength and tailorable properties have made advanced composites structures to fin...
Shearography is a full-field speckle interferometric technique used to determine surface displacemen...
Testing fibre composites off-axis has been used extensively to explore shear/tension coupling effect...
Advanced composites are increasingly used in aerospace, naval, and automotive vehicles due to their ...
The aim of this paper is to investigate the ability of two different interferometric NDT techniques ...
Current methods for testing the high strain...