Advanced Computational Materials Modeling by Vaz M.Jr., de Souza Neto E.A., Munoz-Rojas P.A. (eds.)

By Vaz M.Jr., de Souza Neto E.A., Munoz-Rojas P.A. (eds.)

With its dialogue of concepts for modeling advanced fabrics utilizing new numerical ideas, almost always these in accordance with the finite aspect procedure, this monograph covers quite a number subject matters together with computational plasticity, multi-scale formulations, optimization and parameter id, harm mechanics and nonlinear finite parts.

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385–417. H. (2009) Optimal design of periodic functionally graded composites with prescribed properties. Structural and Multidisciplinary Optimization, 38, 469–489. A. (2009) Sensitivity of the macroscopic elasticity tensor to topological microstructural changes. Journal of the Mechanics and Physics of Solids, 57, 555–570. A. (2010) Sensitivity of the macroscopic response of elastic microstructures to the insertion of inclusions. Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences, 466, 1703–1723.

International Journal of Mechanical Sciences, 52, 183–197. , and Peri´c, D. (2009) A sub-stepping scheme for multi-scale analysis of solids. Computer Methods in Applied Mechanics and Engineering, 198, 1006–1016. 1 Introduction The gradual internal deterioration at the microscopic level which may eventually lead to the occurrence of macroscopic failure in ductile metals undergoing plastic deformations, has been subjected to a detail study over the last decades. As experimentally verified for many ductile polycrystalline metals, initially throughout metallographic observations [1–3], the nucleation and growth of voids and microcracks that accompany plastic flow causes considerable reduction of stiffness and strength, and is highly influenced by the triaxiality of the stress state [4].

J. F. (1997) Cellular Solids – Structure and Properties, 2nd edn, Cambridge University Press, Cambridge. Banhart, J. (2001) Manufacture, characterisation and application of cellular metals and metal foams. Progress in Materials Science, 46, 559–632. A. (2006) Thermal analysis on metal-foam filled heat exchangers. Part II: Tube heat exchangers. International Journal of Heat and Mass Transfer, 49 (15-16), 2762–2770. Scheffler, M. and Colombo, P. (2005) Cellular Ceramics: Structure, Manufacturing, Properties and Applications, Wiley-VCH Verlag GmbH, Weinheim.

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