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With this in mind, the usage of fibre reinforced polymers (FRP) to enhance the structural performance of masonry structures is a promising technique because of its high specific strength, high stiffness and small thickness compared to the conventional materials [3].
Various studies have been done over a number of years to develop strengthening techniques which will improve the performance of masonry structures.
Assessing the long-term performance of masonry structures and their response to increased loading conditions are critical to safety and maintenance.
In this chapter, the masonry construction is analyzed at different scale levels: compositional and mechanical characterizations of materials, descriptions of wall types, mechanical performance of masonry structures, environmental performance of masonry constructions, and innovative applications in modern architecture.
Based on previous failure characteristics of masonry structures under earthquakes, and due to the fact that a considerable number of masonry structures have been built around the world, a strengthening strategy for improving seismic performance of masonry structures is adopted and justified in this paper, namely, the external prestressing technique.
Mortar is the material responsible for the dividing of stresses in building structures; therefore studying the properties of mortar is significant to ensure a good performance of masonry structures [7].
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Flexural bond strength is an important performance characteristic of masonry structures yet there is no guidance for lime-mortared stonework in design codes of practice.
This study focuses on the structural failures and weaknesses of masonry structures with JAS.
Eurocode 6: Design of masonry structures – Part 1 – Common rules for reinforced and unreinforced masonry structures.
The compressive strength of masonry is a relevant mechanical parameter playing a central role in the assessment of masonry structures.
The prediction of crack propagation during fracture is fundamental to the design of masonry structures.
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