Polymer concretes represent challenging materials in the Civil Engineering field, with them being characterized by a high value of the compressive strength and ultimate compressive strain, as well as by a good chemical resistance when compared to that of traditional concretes. These innovative materials exhibit a limited value of the strength in tension and therefore need to be reinforced with either steel or FRP pultruded internal bars. Moreover, their structural performance is strongly affected by the rheological behavior of the resin as well as the internal bars, if made of FRP. In this paper, a mechanical model capable of analytically evaluating the long term behavior of reinforced polymer concrete beams is presented, which accounts for the linear viscoelastic behavior of the constituent materials.

A mechanical model for predicting the long term behavior of reinforced polymer concretes

BERARDI, Valentino Paolo;MANCUSI, Geminiano
2013-01-01

Abstract

Polymer concretes represent challenging materials in the Civil Engineering field, with them being characterized by a high value of the compressive strength and ultimate compressive strain, as well as by a good chemical resistance when compared to that of traditional concretes. These innovative materials exhibit a limited value of the strength in tension and therefore need to be reinforced with either steel or FRP pultruded internal bars. Moreover, their structural performance is strongly affected by the rheological behavior of the resin as well as the internal bars, if made of FRP. In this paper, a mechanical model capable of analytically evaluating the long term behavior of reinforced polymer concrete beams is presented, which accounts for the linear viscoelastic behavior of the constituent materials.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11386/3934400
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