Mechanical Characterization of SRG Composites According to AC434

Author:

Campanini Davide1,Hadad Houman A.1,Carloni Christian2,Mazzotti Claudio3,Nanni Antonio1

Affiliation:

1. University of Miami

2. Case Western Reserve University

3. University of Bologna

Abstract

In the last decades, technologies and materials such as fiber reinforced polymer (FRP) have been used to strengthen different types of existing structures. More recently, composites have been developed consisting of reinforcement fabrics embedded in an inorganic mortar. These composites are known as fabric reinforced cementitious matrix (FRCM), when the fabric is made of aramid, glass, basalt, polyparaphenylene benzo-bisoxazole (PBO) or carbon fibers, and steel reinforced grout (SRG), when the fabric is made of twisted high-strength steel cords. In the United States, the characterization of FRCM/SRG systems is conducted in accordance to Acceptance Criteria AC434. According to AC434, the tensile properties of FRCM/SRG are obtained through a direct tensile test on coupons using clevis grips.The objective of this research is to discuss the applicability of the AC434 test method to determine the mechanical properties of SRG as a function of the length of the anchoring plates. SRG panels were cast and stored in a humidity chamber. After a 28-day curing period, they were cut to size and metal plates of different lengths adhered to their extremities. Results show that not all the assumptions currently made in AC434 are applicable to this type of composite. The experimental response was characterized by a trilinear stress-strain behavior. Furthermore, the cracked modulus calculated based on stress values between 60 and 90% of the ultimate stress does not accurately represent reality. Re-evaluation of this provision is of importance since the cracked modulus is used in design.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference8 articles.

1. ACI Committee 434, (ACI434-2016) Acceptance criteria for masonry and concrete strengthening using fabric-reinforced cementitious matrix (FRCM) and steel reinforced grout (SRG) composite system,, no. 800, (2017).

2. ACI Committee 549, ACI 549. 4R-13 Guide to Design and Construction of Externally Bonded Fabric-Reinforced Cementitious Matrix (FRCM) Systems for Repair and Strengthening Concrete and Masonry Structures. American Concrete Institute, (2014).

3. D. Arboleda, Fabric Reinforced Cementitious Matrix (FRCM) Composites for Infrastructure Strengthening and Rehabilitation : Characterization Methods,, PhD Thesis, p.1–131, (2014).

4. S. De Santis, H. A. Hadad, F. De Caso y Basalo, G. de Felice, and A. Nanni, Acceptance Criteria for Tensile Characterization of Fabric-Reinforced Cementitious Matrix Systems for Concrete and Masonry Repair,, J. Compos. Constr., vol. 22, no. 6, p.4018048, Dec. (2018).

5. H. Akbari Hadad, Cement-Based Composites for Rehabilitation of Concrete Structures,, (2018).

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