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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

Combined particle image velocimetry/digital image correlation for load estimation

TL;DR: The feasibility of a combined PIV/DIC technique for the investigation of fluid-structure interactions associated with a flexible cantilever plate immersed in a steady unidirectional flow is explored.
Journal ArticleDOI

The effect of loading direction on strain localisation in wire arc additively manufactured Ti–6Al–4V

TL;DR: In this paper, the effect of heterogeneity on the local strain distribution has been investigated using Digital Image Correlation (DIC) in samples loaded in tension; parallel (WD), perpendicular (ND) and at 45° (45ND) to the deposited layers.
Journal ArticleDOI

A Review of Computer Microvision-Based Precision Motion Measurement: Principles, Characteristics, and Applications

TL;DR: A survey of microvision-based motion measurement from the collective experience is presented in this paper, where the hardware configuration, model calibration, and motion measurement algorithms are systematically summarized, and the characteristics and performances of different microvisionbased methods are analyzed and discussed in terms of measurement resolution, range, degree of freedom, efficiency, and error sources.
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In-situ microscale visualization experiments on microcracking and microdeformation behaviour around a pre-crack tip in a three-point bending sandstone

TL;DR: In this article, a microscale visualization experimental system is proposed for in-situ measurement of microcracking and microdeformation behavior of macroscopic specimens during real-time loading.
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A global digital volume correlation algorithm based on higher-order finite elements : Implementation and evaluation

TL;DR: A DVC technique that is based on higher-order finite-element discretization of the displacement field and a global optimization procedure and uses curvature penalization to suppress non-predictive errors is proposed.
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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