By Helena Jin, Sanichiro Yoshida, Luciano Lamberti, Ming-Tzer Lin

ISBN-10: 331922445X

ISBN-13: 9783319224459

ISBN-10: 3319224468

ISBN-13: 9783319224466

Advancement of Optical equipment in Experimental Mechanics, quantity three of the lawsuits of the 2015SEM Annual Conference& Exposition on Experimental and utilized Mechanics, the 3rd quantity of 9 from the convention, brings jointly contributions to this significant region of study and engineering. the gathering provides early findings and case experiences on a variety of optical tools starting from conventional photoelasticity and interferometry to newer DIC and DVC innovations, and contains papers within the following normal technical learn parts:

Advanced optical interferometry

Developments in snapshot correlation (Digital &Volumetric )

Full box Methods

Novel Optical equipment for Stress/Strain Analysis

Advances in Optical equipment

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Extra info for Advancement of Optical Methods in Experimental Mechanics, Volume 3: Proceedings of the 2015 Annual Conference on Experimental and Applied Mechanics

Example text

L. Clavette, Probabilistic characterization of elastic properties of composites using digital image correlation technique, Society for Experimental Mechanics (SEM) XII Congress, June 11–14, 2012, Costa Mesa, CA, 2012 10. R. L. Clavette, S. Costiner, Probabilistic test/model integrated analysis of composite materials and structures, Proceedings of PACAM XIV, 14th Pan-American Congress of Applied Mechanics, March 24–28, 2014, Santiago, Chile, 2014 11. T. R. Gurvich, Statistical simulation of fiber fragmentation in a single-fiber composite.

A. Cooper et al. Acknowledgements These experiments would not have been possible without the contributions of Michael Oliver for the shock tube design, construction and test execution. The authors gratefully acknowledge the contributions from Ryan Marinis at Sandia’s Rapid Prototype Facility for guidance on the rupture disc design and welding operations. Sandia is a multi-program laboratory operated by Sandia Corporation, a Lockheed Martin Company, for the United States Department of Energy’s National Nuclear Security Administration under contract No.

Clavette Abstract This study is focused on development of experimental capabilities to (a) understand and (b) quantify progressive damage processes (PDP) in thick composite structures, as well as (c) generate outputs sufficient for confident validation of corresponding existing or future modeling solutions. It is proposed to apply quasi-2D statements of analysis to monitor detailed through-thickness PDP of considered materials and/or structural elements, especially, with thick lay-ups and relatively complex patterns of inter- and cross-laminar damage.

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Advancement of Optical Methods in Experimental Mechanics, Volume 3: Proceedings of the 2015 Annual Conference on Experimental and Applied Mechanics by Helena Jin, Sanichiro Yoshida, Luciano Lamberti, Ming-Tzer Lin


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