Journal Article

·2016

In-Plane Shear Behavior of Traditional Masonry Walls

Bilge Doran YTU , Hasan Orhun Köksal YTU , Selen Aktan YTU , Serhan Ulukaya YTU , Didem Oktay YTU , Nabi Yüzer YTU

International Journal of Architectural Heritage

Abstract

The evaluation of the material properties of masonry built with traditional lime mortar remains largely unclear to what extent the complex mechanical behavior of its constituents and sampling difficulties. This article presents the experimental results of a research project carried out on the four unreinforced masonry (URM) walls with four different types of lime mortars used in the Roman and Byzantine periods under shear-compression. Besides, an elasto-plastic damage (EPD) approach is adapted calibrating the parameters of Oliver’s damage model and the modified von-Mises yield criterion for the masonry constituents. For the modeling purposes, a new fictitious joint material approach is introduced to describe the constitutive behavior of both mortar and mortar-brick interface. The proposed approach can be useful to describe the behavior of mortar and mortar-unit interface in existing masonry structures.

Keywords

Masonry Mortar Lime mortar Structural engineering Geotechnical engineering Unreinforced masonry building Materials science Shear (geology) Engineering Geology Composite material

Subject Areas

Masonry and Concrete Structural Analysis ·Civil and Structural Engineering ·Physical Sciences
Building materials and conservation ·Earth-Surface Processes ·Physical Sciences
Hygrothermal properties of building materials ·Building and Construction ·Physical Sciences

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