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Explicit finite‐element analysis for the in‐plane cyclic behavior of unreinforced masonry structures
Authors:Lucia Karapitta  Harris Mouzakis  Panayotis Carydis
Institution:School of Civil Engineering, Laboratory for Earthquake Engineering, National Technical University of Athens, Polytechnic Campus, Zografos 15700, Athens, Greece
Abstract:A simple constitutive model is proposed for an in‐plane numerical analysis of unreinforced masonry structures, which are subject to cyclic loading, by using explicit dynamic procedures. The proposed model is implemented by using two‐dimensional plane‐stress finite elements. Three different constitutive relations that are based on the total strain in the global material system are used. Cracking and crushing are controlled through normal strains, whereas shear is controlled through shear strain. Separate hysteretic rules are adopted for each mode of damage. A numerical analysis of masonry walls that are subject to cyclic loading has demonstrated that the use of explicit procedures in conjunction with the proposed model results in an acceptable accuracy when compared with the experimental results. Copyright © 2010 John Wiley & Sons, Ltd.
Keywords:unreinforced masonry wall  explicit dynamic  smeared‐crack model  hysteretic response
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