The cohesive/overlapping crack model represents an effective tool in the study of failure transition phenomena occurring in plain or reinforced concrete structures. In the present paper, this non-linear fracture mechanics model is applied to study the global structural behavior of prestressed concrete beams casted by means of pre-tensioning technique or, more generally, having a straight steel strand layout. In this context, a thorough analysis of scale effects is presented to investigate local mechanical instabilities such as snap-back and snap-through phenomena due to concrete cracking or crushing, highlighting the crucial role of the ductile-to-brittle transition in the design of prestressed concrete structural elements.

Cracking and crushing in prestressed concrete beams / Accornero, F.; Cafarelli, R.; Carpinteri, A.. - In: ACI STRUCTURAL JOURNAL. - ISSN 0889-3241. - STAMPA. - 118:2(2021), pp. 101-109. [10.14359/51728184]

Cracking and crushing in prestressed concrete beams

Accornero F.;Cafarelli R.;Carpinteri A.
2021

Abstract

The cohesive/overlapping crack model represents an effective tool in the study of failure transition phenomena occurring in plain or reinforced concrete structures. In the present paper, this non-linear fracture mechanics model is applied to study the global structural behavior of prestressed concrete beams casted by means of pre-tensioning technique or, more generally, having a straight steel strand layout. In this context, a thorough analysis of scale effects is presented to investigate local mechanical instabilities such as snap-back and snap-through phenomena due to concrete cracking or crushing, highlighting the crucial role of the ductile-to-brittle transition in the design of prestressed concrete structural elements.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11583/2897572