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Download Optical Measurements, Modeling, and Metrology, Volume 5: by Kazuhisa Sato, Kenta Aoyagi (auth.), Tom Proulx (eds.) PDF

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By Kazuhisa Sato, Kenta Aoyagi (auth.), Tom Proulx (eds.)

Optical Measurements, Modeling and, Metrology represents one among 8 volumes of technical papers offered on the Society for Experimental Mechanics Annual convention & Exposition on Experimental and utilized Mechanics, held at Uncasville, Connecticut, June 13-16, 2011. the complete set of court cases additionally contains volumes on Dynamic habit of fabrics, Mechanics of organic platforms and fabrics, Mechanics of Time-Dependent fabrics and tactics in traditional and Multifunctional fabrics; MEMS and Nanotechnology; Experimental and utilized Mechanics, Thermomechanics and Infra-Red Imaging, and Engineering functions of Residual Stress.

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Extra info for Optical Measurements, Modeling, and Metrology, Volume 5: Proceedings of the 2011 Annual Conference on Experimental and Applied Mechanics

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An initial attempt to perform digital volume correlation on the laminography data led to qualitatively successful measurements of the displacement field, which encourages further strain analyses. References [1] Bron F, Besson J, Pineau A. Ductile rupture in thin sheets of two grades of 2024 aluminum alloy, Mater Sci Eng A 2004;A 380:356–64. , Experimental and numerical analysis of toughness anisotropy in AA2139 Al-alloy sheet, Acta Mater. 2009;57:3902–3915. 25 [4] Morgeneyer TF, Starink MJ, Sinclair I.

Introduction High manganese austenitic steels are promising candidates in automotive industry due to their excellent mechanical properties. In effect, they exhibit at the same time very high strength (higher than 1000 MPa in tension) and high ductility (about 50% at room temperature). Thus they can absorb a lot of plastic energy before failure due to their unusual work-hardening capacity. This comes from the fact that their stacking fault energy is low enough to permit at the same time deformation by twining and by dislocation gliding without any martensitic transformation that could be detrimental for the ductility.

7. (a) (b) Fig. 2 : Stress/Strain compression behavior of the foam. (a) Compression test done on a foam with relative density of 14 % and a cell size of 60 PPi, densified with PyC. (b) Scheme reporting the different domains of the curve. Adapted from [1]. To model the ceramic foams Gibson and Ashby [3] have proposed cell models based on elementary cells. They have derived analytical expressions of the Young’s modulus and of the plateau stress. None of these models gives the values measured by [1].

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