The fiber contribution to the ultimate limit state capacity of precast and cast-in situ tunnel linings is analytically investigated. By means of a numerical model, capable of computing the interaction curves of reinforced concrete cross sections subjected to combined compressive and bending actions, the mechanical performances of plain and fiber-reinforced concrete are compared. As a result, a new index is introduced to quantify the effectiveness of fiber addition. The higher the efficiency index, the higher the amount of steel reinforcing bar that can be removed from a plain concrete cross section. The application to real concrete linings, where shear resistance is ensured without shear reinforcement, shows that a large volume of rebar can be saved by the presence of steel fibers. This gives significant advantages in terms of durability and rapidity of tunnel construction.

Efficiency index for fiber-reinforced concrete lining at ultimate limit state / Fantilli, ALESSANDRO PASQUALE; Nemati, ; Chiaia, Bernardino. - In: SUSTAINABLE AND RESILIENT INFRASTRUCTURE. - ISSN 2378-9689. - STAMPA. - 1:1-2(2016), pp. 84-91. [10.1080/23789689.2016.1178558]

Efficiency index for fiber-reinforced concrete lining at ultimate limit state

FANTILLI, ALESSANDRO PASQUALE;CHIAIA, Bernardino
2016

Abstract

The fiber contribution to the ultimate limit state capacity of precast and cast-in situ tunnel linings is analytically investigated. By means of a numerical model, capable of computing the interaction curves of reinforced concrete cross sections subjected to combined compressive and bending actions, the mechanical performances of plain and fiber-reinforced concrete are compared. As a result, a new index is introduced to quantify the effectiveness of fiber addition. The higher the efficiency index, the higher the amount of steel reinforcing bar that can be removed from a plain concrete cross section. The application to real concrete linings, where shear resistance is ensured without shear reinforcement, shows that a large volume of rebar can be saved by the presence of steel fibers. This gives significant advantages in terms of durability and rapidity of tunnel construction.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11583/2656816
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