By Vaz M.Jr., de Souza Neto E.A., Munoz-Rojas P.A. (eds.)
With its dialogue of thoughts for modeling advanced fabrics utilizing new numerical strategies, mostly these in line with the finite point process, this monograph covers more than a few themes together with computational plasticity, multi-scale formulations, optimization and parameter identity, harm mechanics and nonlinear finite components.
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Additional resources for Advanced Computational Materials Modeling
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. G. (2006) Forced convection in metallic honeycomb structures. International Journal of Heat and Mass Transfer, 49 (19-20), 3313–3324. L. (2004) Multifunctional design of prismatic cellular materials.
Their approach consists in modifying the damage energy release rate, −Y, of the original Lemaitre ductile damage model by including the tensile/compressive split of the stress tensor.
Mechanics Research Communications, 36, 755–761. M. (2009) Consistent tangent stiffness for local-nonlocal damage modelling of metals. Procedia Engineering, 1, 177–180. Marotti de Sciarra, F. (2009) A nonlocal model with strain-based damage. International Journal of Solids and Structures. 009. 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.