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Overlay deformed body undeformed abaqus 6.14
Overlay deformed body undeformed abaqus 6.14











overlay deformed body undeformed abaqus 6.14
  1. #Overlay deformed body undeformed abaqus 6.14 registration#
  2. #Overlay deformed body undeformed abaqus 6.14 series#

Khadka A, Fick B, Afshar A et al (2020) Non-contact vibration monitoring of rotating wind turbines using a semi-autonomous UAV. Sakanashi Y, Gungor S, Forsey AN, Bouchard PJ (2016) Measurement of creep deformation across welds in 316H stainless steel using digital image correlation. Gencturk B, Hossain K, Kapadia A et al (2014) Use of digital image correlation technique in full-scale testing of prestressed concrete structures. Springer Science+Business Media, New Yorkĭong YL, Pan B (2017) A review of speckle pattern fabrication and assessment for digital image correlation. Sutton MA, Orteu JJ, Schreier HW (2009) Image correlation for shape, motion and deformation measurements. This concludes that the proposed 2D MFree-based digital image correlation technique is greatly applicable and is recommended for use in determining the planar material engineering properties. Furthermore, the full-field deformations computed from the ABAQUS model have been well captured by the proposed technique.

#Overlay deformed body undeformed abaqus 6.14 series#

A series of tensile tests on pure epoxy samples has then been carried out to verify the applicability of the proposed 2D MFree-based digital image correlation technique, from which a good agreement of the strain and displacement description is found when compared with that obtained by the conventional strain gauge method. The element-free Galerkin approach that specifically employs the moving least-square approximation has been adopted as the meshfree method for the strain and displacement determination.

overlay deformed body undeformed abaqus 6.14

In the present method, the speckle pattern in the form of circular adhesive markers is first detected and tracked by employing the Circular-Hough-Transform and Kanade-Lucas-Tomasi algorithms. This paper presents the development of an efficient two-dimensional (2D) MFree-based digital image correlation technique to obtain the strain and displacement of a planar object. Also, a comparative investigation against the more well-known finite element-based digital image correlation is absent. However, there exists very little study in advancing the method for better computational efficiency in engineering measurement applications. These techniques include the meshfree-based (MFree-based) digital image correlation.

#Overlay deformed body undeformed abaqus 6.14 registration#

At present, there are various image registration algorithms under active development for digital image correlation techniques.













Overlay deformed body undeformed abaqus 6.14