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A hemivariational damageable elastoplastic vertex-spring model for masonry analysis

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Date
2024
Author(s)
Tran, C.A.
León Trujillo, Francisco James
Salvatori, A.
Solci, M.
Causin, A.
Placidi, L.
Barchiesi, E.
Metadata
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Abstract
This work is an intermediate step towards the extension of a recently proposed block-based model for masonry structures, which was based on a hemivariational approach and inspired from granular micromechanics. Here, contrarily to the previous model, plastic effects will also be taken into account along with damage and elastic behaviours, and the full hemivariational derivation of the strong-form (in)equations will be detailed for the case of a lone vertex spring. The resulting model and methods shall then be used in future works to enrich the behaviours modelled by the previously mentioned masonry model. © The Author(s) 2024.
URI
https://hdl.handle.net/20.500.12724/20104
DOI
https://doi.org/10.1177/10812865241233008
How to cite
Tran, C.A., Leòn Trujillo, F.J., Salvatori, A., Solci, M., Causin, A., Placidi, L., & Barchiesi, E. (2024). A hemivariational damageable elastoplastic vertex-spring model for masonry analysis. Mathematics and Mechanics of Solids. https://doi.org/10.1177/10812865241233008
Publisher
SAGE Publications Inc.
Subject
Masonry
Elasticity
Elastoplasticity
Fracture mechanics
Mechanical engineering
Continuum mechanics
Mathematical models
Structural analysis (Engineering)
Journal
Mathematics and Mechanics of Solids
ISSN
1081-2865
Collections
  • Ingeniería Civil [46]


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