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Journal ArticleDOI

Two-dimensional digital image correlation for in-plane displacement and strain measurement: a review

TLDR
In this article, a review of the 2D digital image correlation (2D DIC) technique for displacement field measurement and strain field estimation is presented, and detailed analyses of the measurement accuracy considering the influences of both experimental conditions and algorithm details are provided.
Abstract
As a practical and effective tool for quantitative in-plane deformation measurement of a planar object surface, two-dimensional digital image correlation (2D DIC) is now widely accepted and commonly used in the field of experimental mechanics. It directly provides full-field displacements to sub-pixel accuracy and full-field strains by comparing the digital images of a test object surface acquired before and after deformation. In this review, methodologies of the 2D DIC technique for displacement field measurement and strain field estimation are systematically reviewed and discussed. Detailed analyses of the measurement accuracy considering the influences of both experimental conditions and algorithm details are provided. Measures for achieving high accuracy deformation measurement using the 2D DIC technique are also recommended. Since microscale and nanoscale deformation measurement can easily be realized by combining the 2D DIC technique with high-spatial-resolution microscopes, the 2D DIC technique should find more applications in broad areas.

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Citations
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Journal ArticleDOI

Experimental analysis of image noise and interpolation bias in digital image correlation

TL;DR: A novel, simple and convenient method is proposed to measure the interpolation bias and results indicate that the fluctuations of the image noise are not only proportional to the image gray value, but also dependent on the type of the employed camera.
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Microscopic strain localisation in Ti-6Al-4V during uniaxial tensile loading

TL;DR: In this article, the effect of macrozones within the microstructure of Ti-6Al-4V was investigated through cross correlation of local strain measurements and microstructures, using digital image correlation and electron backscatter diffraction (EBSD) techniques.
Journal ArticleDOI

In-situ monitoring and deformation characterization by optical techniques; part I: Laser-aided direct metal deposition for additive manufacturing

TL;DR: This paper describes ongoing work on the in-situ monitoring and characterization during processes of powder-fed laser-aided direct metal deposition (DMD), a form of metal AM, and the state-of-the-art with respect to an emerging field-the full-field deformation monitoring of part and/or substrate by digital image correlation (DIC).
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A study of the back stress and the friction stress behaviors of Ti-6Al-4V alloy during low cycle fatigue at room temperature

TL;DR: In this paper, the DIC technique was also introduced to characterize quantitatively the cyclic deformation heterogeneity of the Ti-alloy at the grain scale and the micro-mechanisms associated with the back and friction stress behaviors were further discussed with the help of OM and TEM observations of fatigue failure specimens at representative strain amplitudes.
Journal ArticleDOI

An autonomous surface discontinuity detection and quantification method by digital image correlation and phase congruency

TL;DR: The novel application of Phase Congruency to detect and quantify cracks and their opening is introduced and its application is demonstrated to experimental data for cracks in quasi-brittle (Granitic rock), ductile (Aluminium alloy) materials.
References
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Journal ArticleDOI

Surfaces generated by moving least squares methods

TL;DR: In this article, an analysis of moving least squares (m.l.s.) methods for smoothing and interpolating scattered data is presented, in particular theorems concerning the smoothness of interpolants and the description of m. l.s. processes as projection methods.
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Digital Particle Image Velocimetry

TL;DR: In this article, the directional ambiguity associated with PIV and LSV is resolved by implementing local spatial cross-correlations between two sequential single-exposed particle images, and the recovered velocity data are used to compute the spatial and temporal vorticity distribution and the circulation of the vortex ring.
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Digital Imaging Techniques In Experimental Stress Analysis

TL;DR: In this paper, the surface displacement components in laser speckle metrology were measured using a digital image scanner interfaced to a computer. Butt et al. used a boundary integral equation method to calculate surface traction in the contour.
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Digital image correlation using Newton-Raphson method of partial differential correction

TL;DR: In this paper, the authors developed and limited experimental verification of a method which can determine displacements and gradients using the Newton-Raphson method of partial corrections, which was shown to be accurate in determining displacement and certain gradients, while using significantly less CPU time than the current coarse-fine search method.
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