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In-plane shear strength and damage fragility functions for partially-grouted reinforced masonry walls with bond-beam reinforcement

  • Zhiming Zhang*
  • , Juan Murcia-Delso
  • , Cristián Sandoval
  • , Gerardo Araya-Letelier
  • , Fenglai Wang
  • *Autor correspondiente de este trabajo
  • School of Civil Engineering, Harbin Institute of Technology
  • Polytechnic University of Catalonia
  • Pontificia Universidad Católica de Chile
  • Harbin Institute of Technology

Producción científica: Contribución a una revistaArtículorevisión exhaustiva

17 Citas (Scopus)
1 Descargas (Pure)

Resumen

This paper presents a study on the in-plane shear response of partially-grouted reinforced masonry walls with bond-beam reinforcement. A database of 95 tests on partially-grouted walls made of concrete hollow blocks was compiled from experimental studies reported in the literature to characterize the capacity and damageability of walls subjected to in-plane lateral loading. The database has been used to evaluate the accuracy of existing design shear strength equations for partially-grouted walls. It is concluded that the shear strength expressions in the Masonry Standards Joint Committee (MSJC) code and Canadian standard are unconservative for partially-grouted walls. A modified equation based on the MSJC expression is proposed which better estimates the shear strength of this type of walls. Seismic fragility functions are also derived based on the experimental database to calculate the probability of experiencing moderate and severe damage in a partially-grouted wall for a given story-drift ratio deformation or normalized shear force demand. The resulting fragility functions show that the normalized shear demand is better correlated with the level of damage than the story-drift ratio.

Idioma originalInglés
Número de artículo112569
PublicaciónEngineering Structures
Volumen242
DOI
EstadoPublicada - 1 sept 2021
Publicado de forma externa

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