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Statistical analysis of an experimental database on residual flexural strengths of fiber reinforced concretes: Performance-based equations

Identificadores
URI: http://hdl.handle.net/20.500.12251/2929
Ver/Abrir: https://www.scopus.com/inward/record.uri?eid=2-s2.0-85127598021&doi=10.1002%2fsuco.202100416&partnerID=40&md5=1e7526bc6c9cc3443905ec3e273c775e
ISSN: 1464-4177
DOI: 10.1002/suco.202100416
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Autor
Galeote, E.; Picazo Iranzo, Álvaro; Alberti, M. G.; de la Fuente, A.; Enfedaque, A.; [et al.]
Fecha
2022
Materia/s

Hormigón armado

Fibra de refuerzo

Fisuración

Patologías - Construcción

Resistencia a flexión

Cálculo estructural

Material compuesto

Propiedades mecánicas

Materia/s Unesco

3305.05 Tecnología del Hormigón

2211.02 Materiales Compuestos

3313.04 Material de Construcción

3312.08 Propiedades de Los Materiales

3312.09 Resistencia de Materiales

3312.12 Ensayo de Materiales

3305.32 Ingeniería de Estructuras

Resumen

The postcracking capacity of fiber reinforced concrete (FRC) mainly depends on the content, material, and geometry of the fibers considered. Even though the general influence of these factors on FRC behavior has been extensively addressed, the uncertainty of the FRC performance prediction along with the variability of the results still poses a challenging issue that needs to be solved to encourage the use of FRC for design and construction purposes. In this line, a database including the results of the flexural residual strength obtained from different experimental programs combined with the results of previous studies has been gathered and analyzed herein to obtain general correlations and trends providing additional information about the influence of the fibers in FRC behavior, these meant to serve for initial design stages (e.g., make decisions on the type and amount of fibers based on technical and economical requirements). The results are analyzed distinguishing between the fiber material, the fiber shape, the aspect ratio and tensile strength. The results presented herein may provide valuable information on the initial prediction of the residual strength of FRC to fully take advantage of the mechanical properties of the material. © 2022 The Authors. Structural Concrete published by John Wiley & Sons Ltd on behalf of International Federation for Structural Concrete.

The postcracking capacity of fiber reinforced concrete (FRC) mainly depends on the content, material, and geometry of the fibers considered. Even though the general influence of these factors on FRC behavior has been extensively addressed, the uncertainty of the FRC performance prediction along with the variability of the results still poses a challenging issue that needs to be solved to encourage the use of FRC for design and construction purposes. In this line, a database including the results of the flexural residual strength obtained from different experimental programs combined with the results of previous studies has been gathered and analyzed herein to obtain general correlations and trends providing additional information about the influence of the fibers in FRC behavior, these meant to serve for initial design stages (e.g., make decisions on the type and amount of fibers based on technical and economical requirements). The results are analyzed distinguishing between the fiber material, the fiber shape, the aspect ratio and tensile strength. The results presented herein may provide valuable information on the initial prediction of the residual strength of FRC to fully take advantage of the mechanical properties of the material. © 2022 The Authors. Structural Concrete published by John Wiley & Sons Ltd on behalf of International Federation for Structural Concrete.

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