English

Modelling Localisation and Spatial Scaling of Constitutive Behaviour: a Kinematically Enriched Continuum Approach

Materials Science 2014-10-02 v1

Abstract

It is well known that classical constitutive models fail to capture the post-peak material behaviour, due to localisation of deformation. In such cases the concept of Representative Volume Element (RVE) on which classical continuum models rest ceases to exist and hence the smearing out of local inhomogeneities over the whole RVE is no longer correct. This paper presents a new approach to capturing localised failure in quasi-brittle materials, focusing on the kinematic enrichment of the constitutive model to describe correctly the behaviour of a volume element with an embedded localisation band. The resulting models possess an intrinsic length scale which in this case is the width of the embedded localisation band. The behaviour therefore scales with both the width of the localisation band and the size of the volume on which the model is defined. As a consequence, size effects are automatically captured in addition to the model capability in capturing behaviour at the scale of the localisation zone.

Keywords

Cite

@article{arxiv.1410.0032,
  title  = {Modelling Localisation and Spatial Scaling of Constitutive Behaviour: a Kinematically Enriched Continuum Approach},
  author = {Giang Dinh Nguyen and Chi Thanh Nguyen and Vinh Phu Nguyen},
  journal= {arXiv preprint arXiv:1410.0032},
  year   = {2014}
}

Comments

Proceedings of Asian-Pacific Conference on Fracture and Strength 2014 and the International Conference on Structural Integrity and Failure, 9-12 December, Sydney, Australia

R2 v1 2026-06-22T06:09:59.041Z