Advances in material forming : Esaform 10 Years on by Francisco Chinesta, Elias Cueto

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By Francisco Chinesta, Elias Cueto

This ebook teams the most advances in fabric forming, contemplating assorted strategies, either traditional and non-conventional. It focuses

on polymers, composites and metals, that are analyzed from the cutting-edge. particular emphasis is dedicated to the contributions of the ecu clinical organization for fabric Forming (ESAFORM) over the past decade and particularly those coming from its annual foreign conference.

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The increasing computation power allows better analyzing dislocation densities associated to different mechanisms, it allows for instance to study the induced microstructure during not only monotonic strain path but also two-stage strain paths[71]. The current evolution of multiscale models concerns the modelling of multiple phase materials (while single phase models were initially developed). Body centred cubic (bcc) and face centred cubic (fcc) material were first investigated because of their rather continuous behaviour.

It allows to describe complex hardening behaviours induced by strainpath changes. The model is described by 13 material parameters and depends on four state variables: P , S , X , R . The variable P is a second order-tensor that depicts the polarity of the persistent dislocation structures (PDS) and S is a fourth-order tensor that describes the directional strength of the PDS’s. The scalar R represents the isotropic 136 Advances in Material Forming – Esaform 10 years on hardening due to the randomly distributed dislocations and the second-order tensor X is the back stress.

Proceedings of ICOTOM 6, vol. 1. The Iron and Steel Institute of Japan, Tokyo (1981) 347–355 8. : Slip geometry in partially constrained deformation. Acta Metall. 30 (1982) 695 9. : On the equivalence of the relaxed Taylor theory and the Bishop–Hill theory for partially constrained plastic deformation of crystals. Mater. Sci. Eng. 55 (1982) 69–77 10. : Generalisation of the relaxed constraints models for the prediction of deformation textures. Revue de Métallurgie-CIT/Science et Génie des matériaux (1997) 1483-1494 11.

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