Full 3D Strain Measurement by Digital Volume Correlation From X-Ray Computed and Optical Scanning Tomographic Images

Author(s):  
A. Germaneau ◽  
P. Doumalin ◽  
J. C. Dupré
1990 ◽  
Author(s):  
Christophe Odet ◽  
Gilles Jacquemod ◽  
Francoise Peyrin ◽  
Robert Goutte

Strain ◽  
2013 ◽  
Vol 49 (6) ◽  
pp. 467-482 ◽  
Author(s):  
F. Pierron ◽  
S. A. McDonald ◽  
D. Hollis ◽  
J. Fu ◽  
P. J. Withers ◽  
...  

2019 ◽  
Vol 92 ◽  
pp. 12009
Author(s):  
Daniel Bull ◽  
Ian Sinclair ◽  
Fabrice Pierron ◽  
Tiina Roose ◽  
Joel Smethurst

Soil containing plant roots may be expected to exhibit a greater shearing resistance compared with the same ‘unreinforced’ soil, providing enhanced stability and effective erosion control, particularly for earth slopes. To be able to rely on the improved shearing resistance and stiffness of root-reinforced soils, it is important to understand and quantify the effectiveness of root reinforcement. This requires sophisticated multiscale models, building understanding at different length scales, from individual soil-root interaction through to full soil-profile or slope scale. One of the challenges with multiscale models is ensuring that they are representative of real behaviour, and this requires calibration to detailed high-quality experiments. The focus of the work presented was to capture and quantify root-reinforcement behaviour and associated soil and root deformation mechanisms during direct shear at the macroscopic to millimetre length scales. A novel shear box was developed to operate within a large-scale X-ray computed tomography (CT) scanner. Tests were interrupted to be scanned at a series of shear displacements from 0-20 mm to capture the chronology of behaviour in three-dimensions. Digital volume correlation (DVC) was applied to the CT dataset to obtain full-field 3D displacement and strain component information. The study demonstrates feasibility of the technique and presents preliminary DVC results.


2021 ◽  
pp. 105-113
Author(s):  
A.A. Demidov ◽  
◽  
O.A. Krupnina ◽  
N.A. Mikhaylova ◽  
E.I. Kosarina ◽  
...  

The question of the quality of samples made of polymer composite materials and its verification by x-ray computed tomography is considered. The capabilities of North Star Imaging X5000 tomograph were studied and the samples from PCM were examined for detection and evaluation of the porosity volume fraction. The factors influencing the accuracy of the estimation of the porosity volume fraction are investigated. Namely the size voxel, a filter material, quantity of projections. On the other hand, the size вокселя defines resolution of the digital image, the relation depends on a material of the applied filter a signal/noise, productivity of control worsens with growth of quantity of projections. The choice of optimum values of the listed parametres is necessary for satisfactory quality received tomographic images.


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