Digital image correlation analyses of masonry infilled frame: Uncertainty-based mesh refinement and damage quantification

Author:

Sciuti Vinicius Fiocco1ORCID,Vargas Rafael2ORCID,Guerrero Néstor3,Marante María Eugenia4,Hild François5ORCID

Affiliation:

1. Department of Materials Engineering (DEMa), Federal University of São Carlos (UFSCar), São Carlos, Brazil

2. Graduate Program in Materials Science and Engineering (PPGCEM) and Department of Materials Engineering (DEMa), Federal University of São Carlos, São Carlos, Brazil; LMPS - Laboratoire de Mécanique Paris-Saclay, Université Paris-Saclay, CentraleSupélec, ENS Paris-Saclay, CNRS, Gif-sur-Yvette, France

3. Department of Civil Engineering, University of Ibagué, Ibagué, Colombia

4. Construction and Sustainable Development Department, Universidad Metropolitana, Caracas, Venezuela

5. Université Paris-Saclay, CentraleSupélec, ENS Paris-Saclay, CNRS, LMPS - Laboratoire de Mécanique Paris-Saclay, Gif-sur-Yvette, France

Abstract

Masonry walls are subjected to cyclic lateral loads to study damage caused by earthquakes. Imaging techniques are useful to quantify crack networks in such tests, where preferential locations for their initiation are not present. However, detecting small cracks in large structures is challenging. It is shown that finite element (FE)-based digital image correlation (DIC) can detect and quantify cracks by combining optical and mechanical information of a cyclic shear experiment performed on a full-size masonry wall. Pixel-wise gray-level residuals and elementary crack opening displacement fields are the key quantities of the proposed framework. Detection criteria based on standard uncertainties guided the application of new DIC strategies (i.e., mechanical regularization, mesh adaption, and damage). Two damage regimes were quantified. Zigzagged cracks were first formed, for which their opening displacements were on average less than 0.5 mm with very limited damage. They were followed by sliding shear cracks, whose mean opening displacements varied between 1 and 3 mm, and damage developed in a more gradual and extended way. Such rich full-field data set may be used for validating damage models up to full-scale simulations.

Funder

Fundação de Amparo à Pesquisa do Estado de São Paulo

FONACIT-ECOS NORD

Coordenação de Aperfeiçoamento de Pessoal de Nível Superior

CDCHT-UCLA

Publisher

SAGE Publications

Subject

Mechanics of Materials,General Materials Science,General Mathematics

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