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Application of Imaging Techniques to Mechanics of Materials and Structures, Volume 4

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Cover of 'Application of Imaging Techniques to Mechanics of Materials and Structures, Volume 4'

Table of Contents

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    Book Overview
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    Chapter 1 Identification from full-field measurements: a promising perspective in experimental mechanics
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    Chapter 2 Identification of Cohesive-Zone Laws from Crack-tip Deformation Fields
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    Chapter 3 Recovery of 3D stress intensity factors from surface full-field measurements
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    Chapter 4 Characterization of aluminum alloys using a 3D full field measurement
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    Chapter 5 Low Strain Rate Measurements on Explosives Using DIC
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    Chapter 6 Investigation on failure mechanisms of composite structures subjected to 3D state of stresses
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    Chapter 7 Structural damage assessment in fiber reinforced composites using image decomposition
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    Chapter 8 Finite Element Model Matching Based on Optical Measurement Fields on Single Shear Lap Joint
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    Chapter 9 Interaction between a dynamically growing crack with stiff and compliant inclusions using DIC and high-speed photography
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    Chapter 10 Electron Micrographic Digital Image Correlation: Method Optimization and Microstructural banding Case Study
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    Chapter 11 Development of Multi-scale Deformation Measurement System for Solid Materials
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    Chapter 12 An Integrated Tool for Estimation of Material Model Parameters
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    Chapter 13 Extended DIC to Measure Stress Intensity Factors from AFM-images
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    Chapter 14 Characterization of a structural adhesive by Digital Image Correlation
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    Chapter 15 Measurement of Brain Biomechanics in vivo by Magnetic Resonance Imaging
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    Chapter 16 Magnetic Resonance Elastography of the Mouse Vitreous Humor In Vivo
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    Chapter 17 Application of the Virtual Fields Method to Magnetic Resonance Elastography data
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    Chapter 18 Comparison of Dynamic Mechanical Testing and MR Elastography of Biomaterials
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    Chapter 19 Back-directional Gated Spectroscopic Imaging for Nanoscale Deformation Analysis in Bone
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    Chapter 20 Instruments to measure human feet using Reverse Engineering techniques
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    Chapter 21 Characterization of Mechanochemically Active Polymers Using Combined Photoelasticity and Fluorescence Measurements
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    Chapter 22 ESPI Measurements In the Presence of Large Lateral Displacements
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    Chapter 23 Micron-scale Residual Stress Measurement using Micro-hole Drilling and Digital Image Correlation
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    Chapter 24 Studying the Effect of Residual Stresses on Fatigue Cracks through Full-field Methods
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    Chapter 25 Rapid Imaging Tool for Residual Stress and Defect Quantification in MEMS and PV Applications
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    Chapter 26 Surface Decoration for Improving the Accuracy of Displacement Measurements by Digital Image Correlation in SEM
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    Chapter 27 Heat source estimations to study the localized behaviour of superelastic NiTi shape memory alloys
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    Chapter 28 On The Martensitic Transformation In SMA Under High Strain Rates
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    Chapter 29 Pseudoelastic Shape Memory Alloy Cables
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    Chapter 30 Investigating an aluminum multi-crystal with full-field measurement techniques
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    Chapter 31 One-shot thermal and kinematic field measurements: Infra-Red Image Correlation
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    Chapter 32 Investigating the thermo-mechanical behavior of clutch facing materials using image processing techniques
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    Chapter 33 Vibration Excitation Methods Applied to Digital Shearography and ESPI
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    Chapter 34 Experimental Studies of Phase Transformation in Shape Memory Alloys
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    Chapter 35 Sources of systematic errors in the determination of heterogeneous strain fields obtained via DIC
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    Chapter 36 Dynamic Response of Curved Beams Using 3D Digital Image Correlation
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    Chapter 37 Application of High Speed Digital Image Correlation for Vibration Mode Shape Analysis
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    Chapter 38 Experimental validation of equations for 2D DIC uncertainty quantification
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    Chapter 39 High Performance Digital Volume Correlation
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    Chapter 40 Digital X-ray tomography Volume Correlation of Rock Wool During Compression
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    Chapter 41 Recent progress in digital image correlation
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    Chapter 42 Analysis of Fractured Samples with Digital Volume Correlation
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    Chapter 43 Long term condition monitoring of tapestries using image correlation
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    Chapter 44 An Inverse Method for Analyzing Defects in Heterogeneous Materials
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    Chapter 45 Variation of Paper Curl due to Fiber Orientation
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    Chapter 46 A Moiré-deflectometry Based Bulge/Contact Test for Transparent Thin Films
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    Chapter 47 OOF3D: An Image-Based Finite Element Solver for Materials Science
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    Chapter 48 Prediction of Landslide by Displacement Measurement using Sampling Moiré Method
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    Chapter 49 Investigation of the Coating Parameters for the Luminescent Photoelastic Coating Technique
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    Chapter 50 Highly Compact and Robust 3D Imaging and Shape Measurement System
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    Chapter 51 Experimental Limitations of Phase Shifting Interferometry
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    Chapter 52 Mechanical Characterization and Modeling of X- and K-cor Composites
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    Chapter 53 Novel Insert Design for Thick Single Lap Bolted Composite Joints
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    Chapter 54 Smoothing Measured Displacements and Computing Strains Utilizing Finite Element Method
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    Chapter 55 Diagnostic Use of Digital Image Correlation in High-Speed, Explosive Experiments
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    Chapter 56 Dynamic Deformation of Copper-Jacketed Lead Bullets Captured By High Speed Digital Image Correlation
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    Chapter 57 High Speed Imaging in Dynamic Tensile Testing of Fabric-Cement Composites
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    Chapter 58 Ultra high speed DIC on a three point bending test mounted on a Hopkinson bar
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Title
Application of Imaging Techniques to Mechanics of Materials and Structures, Volume 4
Published by
Springer New York, August 2012
DOI 10.1007/978-1-4419-9796-8
ISBNs
978-1-4419-9528-5, 978-1-4419-9796-8
Editors

Proulx, Tom

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Mendeley readers

The data shown below were compiled from readership statistics for 63 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
United States 3 5%
Czechia 1 2%
Unknown 59 94%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 23 37%
Researcher 10 16%
Student > Master 8 13%
Professor > Associate Professor 4 6%
Student > Doctoral Student 3 5%
Other 8 13%
Unknown 7 11%
Readers by discipline Count As %
Engineering 33 52%
Materials Science 9 14%
Chemistry 2 3%
Agricultural and Biological Sciences 2 3%
Medicine and Dentistry 2 3%
Other 6 10%
Unknown 9 14%