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Physical Modelling of Reinforced Concrete at a 1:40-Scale Using Additively Manufactured Reinforcement Cages (2021-11)

10.1002/eqe.3578

 del Giudice Lorenzo,  Wróbel Rafał,  Katsamakas Antonios,  Leinenbach Christian,  Vassiliou Michalis
Journal Article - Earthquake Engineering & Structural Dynamics, Vol. 51, Iss. 3, pp. 537-551

Abstract

Global level assumptions of numerical models have received relatively less attention, but have been indicated to be a major source of error in numerical modeling of Reinforced Concrete (RC) structures. In parallel, it has been stated that a statistical approach involving many virgin specimens and ground motions is necessary for model validation. Such an approach would require very small-scale testing. Then, the reinforcement fabrication becomes a major issue. This paper proposes using additive manufacturing to fabricate the reinforcement cage. It presents the results from cyclic tests on 1:40 RC cantilever members. The cages were manufactured using an SLM 3D printer able to print rebars with submillimeter diameters. Different longitudinal and transverse reinforcement configurations were tested. A numerical model using existing Opensees elements was built and its parameters were calibrated against material level small-scale tests. It captured the cyclic response of the RC members with a reasonable accuracy. The cyclic behavior of the RC members resembles the behavior of full-scale RC members indicating that such small-scale specimens can be used for the statistical validation of the global level assumptions of numerical models.

BibTeX
@article{giud_wrob_kats_lein.2022.PMoRCaa14SUAMRC,
  author            = "Lorenzo del Giudice and Rafał Wróbel and Antonios A. Katsamakas and Christian Leinenbach and Michalis F. Vassiliou",
  title             = "Physical Modelling of Reinforced Concrete at a 1:40-Scale Using Additively Manufactured Reinforcement Cages",
  doi               = "10.1002/eqe.3578",
  year              = "2022",
  journal           = "Earthquake Engineering & Structural Dynamics",
  volume            = "51",
  number            = "3",
  pages             = "537--551",
}
Formatted Citation

L. del Giudice, R. Wróbel, A. A. Katsamakas, C. Leinenbach and M. F. Vassiliou, “Physical Modelling of Reinforced Concrete at a 1:40-Scale Using Additively Manufactured Reinforcement Cages”, Earthquake Engineering & Structural Dynamics, vol. 51, no. 3, pp. 537–551, 2022, doi: 10.1002/eqe.3578.

Giudice, Lorenzo del, Rafał Wróbel, Antonios A. Katsamakas, Christian Leinenbach, and Michalis F. Vassiliou. “Physical Modelling of Reinforced Concrete at a 1:40-Scale Using Additively Manufactured Reinforcement Cages”. Earthquake Engineering & Structural Dynamics 51, no. 3 (2022): 537–51. https://doi.org/10.1002/eqe.3578.