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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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Advances in Computer Vision-Based Civil Infrastructure Inspection and Monitoring

TL;DR: An overview of recent advances in computer vision techniques as they apply to the problem of civil infrastructure condition assessment and some of the key challenges that persist toward the goal of automated vision-based civil infrastructure and monitoring are presented.
Journal ArticleDOI

Mean intensity gradient: An effective global parameter for quality assessment of the speckle patterns used in digital image correlation

TL;DR: In this article, a simple and easy-to-calculate yet effective global parameter, called mean intensity gradient, is proposed for quality assessment of the speckle patterns used in DIC.
Journal ArticleDOI

Fast, Robust and Accurate Digital Image Correlation Calculation Without Redundant Computations

TL;DR: In this article, a Gauss-Newton-based digital image correlation (DIC) method was proposed to eliminate the redundant computations involved in conventional DIC method using forward additive matching strategy and classic Newton-Raphson (FA-NR) algorithm without sacrificing its sub-pixel registration accuracy.
Journal ArticleDOI

Computer vision for SHM of civil infrastructure: From dynamic response measurement to damage detection – A review

TL;DR: This review paper is intended to summarize the collective experience that the research community has gained from the recent development and validation of the vision-based sensors for structural dynamic response measurement and SHM.
References
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Journal ArticleDOI

Accurate Measurement of Satellite Antenna Surface Using 3D Digital Image Correlation Technique

TL;DR: In this paper, the 3D digital image correlation technique (3D DIC) was applied to the accurate measurement of full-field surface profile of a 730 mm-diameter carbon fiber composite satellite antenna.
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AFM image reconstruction for deformation measurements by digital image correlation.

TL;DR: This paper has addressed the image distortion induced by the scanner drifts and developed a method to reconstruct AFM images for the successful use of AFM image correlation, that is to generate a corrected image from two correlatedAFM images scanned at the angle of 0° and 90° respectively.
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In-Plane Displacement Measurement Using Digital Image Correlation with Lens Distortion Correction

TL;DR: In this paper, a single cross-grating is used as a calibration reference for two-dimensional displacement measurement using digital image correlation with lens distortion correction and the results show that the proposed distortion correction method removes the effect of lens distortion from the measured displacements.
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Submicron deformation field measurements: Part 1. Developing a digital scanning tunneling microscope

TL;DR: In this article, a special digital scanning tunneling microscope (STM) was designed to be coupled to a mechanically deforming specimen to study deformations of micromechanical material systems at the submicron scale.
Journal ArticleDOI

Digital image correlation of nanoscale deformation fields for local stress measurement in thin films

TL;DR: In this paper, the displacement field originated when a slot is milled into the material under study was measured by digital correlation analysis of scanning electron microscope (SEM) images, whereas milling is performed by ion milling in focused ion-beam equipment, and the displacement value determined with this new method is in good agreement with values obtained by a classical method like the wafer bending test.
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