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Mechanical characterization of Glass Fibre-Reinforced Air Lime-Based Mortars
The basic issue in determining the deformational properties of masonry is to conduct a comprehensive experimental characterization of the masonry components' materials, including their mechanical properties. This characterization process is even more important for new sustainable mortar solutions, especially in the context of strengthening and renovating existing masonry buildings, including historic structures. The work presents and discusses the mechanical tests carried out on a mixed cement-lime mortar based on air lime and reinforced with the addition of industrial glass fibres. Mechanical testing on prisms (40 × 40 × 160 mm) and cylinders (60 diameter × 120 mm height) demonstrated the beneficial impact of fibres in the mortar mixture analysed specifically in terms of improved compressive, flexural and splitting post-peak behaviour.
Mechanical characterization of Glass Fibre-Reinforced Air Lime-Based Mortars
The basic issue in determining the deformational properties of masonry is to conduct a comprehensive experimental characterization of the masonry components' materials, including their mechanical properties. This characterization process is even more important for new sustainable mortar solutions, especially in the context of strengthening and renovating existing masonry buildings, including historic structures. The work presents and discusses the mechanical tests carried out on a mixed cement-lime mortar based on air lime and reinforced with the addition of industrial glass fibres. Mechanical testing on prisms (40 × 40 × 160 mm) and cylinders (60 diameter × 120 mm height) demonstrated the beneficial impact of fibres in the mortar mixture analysed specifically in terms of improved compressive, flexural and splitting post-peak behaviour.
Mechanical characterization of Glass Fibre-Reinforced Air Lime-Based Mortars
Zagaroli Armando (Autor:in) / Kubica Jan (Autor:in)
2024
Aufsatz (Zeitschrift)
Elektronische Ressource
Unbekannt
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