Passive confinement of reinforced concrete members revisited

Author:

Morger Fabian1ORCID,Kenel Albin2,Kaufmann Walter1ORCID

Affiliation:

1. Institute of Structural Engineering (IBK), ETH Zurich Zurich Switzerland

2. Institute of Civil Engineering (IBI) Lucerne University of Applied Science and Arts Horw Switzerland

Abstract

AbstractPassive confinement provided by transverse reinforcement is taken into account in the design of reinforced concrete structures subjected to high compressive loading such as columns, piers, or tunnel lining segments. In current guidelines, several models exist to account for this beneficial effect. However, these approaches lack mechanical consistency regarding the three‐dimensional load dispersion of the confining forces. The article addresses this knowledge gap by introducing a new model based on a lower‐bound solution according to the theory of plasticity, along with a simplification regarding the governing confined concrete area. The proposed model and its simplified version are compared to the design approaches proposed by current guidelines, and both are successfully validated against experimental data. The simplified new model is a valuable alternative to existing models in current guidelines, as (i) it is mechanically more consistent, (ii) its application is more straightforward, and (iii) it allows the comprehensive treatment of rectangular and circular cross‐sections using the same equations.

Publisher

Wiley

Reference35 articles.

1. ConsidèreA.Étude expérimentale de la résistance à la compression du béton fretté. Comptes rendus des séances de l'académie des sciences Paris: 1902 p. 415–9.

2. ConsidèreA.Étude théorique de la résistance à la compression du béton fretté. Comptes rendus des séances de l'académie des sciences Paris: 1902 p. 365–8.

3. Versuche zur Klarstellung der Wirkungsweise der Umschnürung bei Eisenbetonsäulen;Bach C;Z Ver Dtsch Ing,1915

4. RichartFE BrandtzaegA BrownRL.A study of the failure of concrete under combined compressive stresses. University of Illinois Engineering Experimental Station; 1928.

5. RichartFE BrandtzaegA BrownRL.The failure of plain and spirally reinforced concrete in compression. University of Illinois Engineering Experimental Station; 1929.

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