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E-raamat: Advancements in Optical Methods, Digital Image Correlation & Micro-and Nanomechanics, Volume 4: Proceedings of the 2022 Annual Conference on Experimental and Applied Mechanics

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Advancements in Optical Methods, Digital Image Correlation & Micro-and Nanomechanics, Volume 4 of the Proceedings of the 2022 SEM Annual Conference & Exposition on Experimental and Applied Mechanics, the fourth volume of six from the Conference, brings together contributions to this important area of research and engineering.  The collection presents early findings and case studies on a wide range of optical methods ranging from traditional photoelasticity and interferometry to more recent DIC and DVC techniques, and includes papers in the following general technical research areas:





 









DIC Methods & Its Applications





Photoelsticity and Interferometry Applications





Micro-Optics and Microscopic Systems





Multiscale and New Developments in Optical Methods





Extreme Nanomechanics





In-Situ Nanomechanics





Expanding Boundaries in Metrology





Micro and Nanoscale Deformation





MEMS for Actuation, Sensing and Characterization





1D & 2D Materials
1) Innovations in Super Resolution Microscopy
2) Measuring Strain Distribution Around Inclusions and Matrix Interface Using Global Digital Image Correlation
3) Evaluation of Stress State and Fracture Strain of High-Strength Steel Using Stereo Image Correction
4) Bistability and Irregular Oscillations in Pairs of Opto-thermal Micro-oscillators
5) Noninvasive Shape Measurements by MEMS-based Fringe Projection with Application to Middle-ear Mechanics
6) High-Speed Optical Extensometer for Uniaxial Kolsky Bar Experiments
7) On the Miura Ori Modal Response: A Look Throughout the Experimental Side
8) Using Digital Image Correlation to Characterize the Static and Dynamic Behavior of Structures: Industrial Applications and Lessons Learned
9) Enabling?Digital Image Correlation with?High-Resolution?Microscopic Optics?via?Working Distance?Automation:?Advancing?Resolution?and Accuracy Limits
10) Characterization of Bioengineered Tissues by Digital Holographic Vibrometry and 3D Shape Deep Learning
11) Coordinated Twinning Bands in Magnesium at the Existence of Stress Raisers via in situ Microscopic Image Correlation
12) Determining the Onset of Transverse Cracking in a Woven Composite using Digital Image Correlation
Ming-Tzer Lin - National Chung Hsing University, Taiwan; Cosme Furlong - Worcester Polytechnic Institute, USA; Chi-Hung Hwang-Instrument Technology Research Center, Taiwan; Mohammad Naraghi, Texas A&M University, USA; Frank DelRio, National Institutes of Standards and Technology, Boulder, CO, USA