Tensile Performance Test Research of Hybrid Steel Fiber—Reinforced Self-Compacting Concrete

Author:

Gong Chenjie1ORCID,Kang Lei1ORCID,Zhou Wenhan1,Liu Linghui1ORCID,Lei Mingfeng1ORCID

Affiliation:

1. School of Civil Engineering, Central South University, Changsha 410075, China

Abstract

Notched beam specimens were loaded by the three-point bending test device, and the effects of different volume contents and combinations of steel fibers on the tensile properties of hybrid steel fiber–reinforced self-compacting concrete (HSFRSCC) were studied. The failure law and strain field distribution of the specimens were studied by digital image correlation (DIC) technology. Moreover, the curves between the load and crack mouth opening displacement (CMOD) of 18 groups of hybrid steel fiber–reinforced concrete specimens were obtained, and the stress–strain curves of 18 groups of specimens were derived from the load–CMOD curves. The results show that both single and hybrid steel fibers can improve the crack deformation resistance and tensile properties of concrete, but hybrid steel fibers have a more significant improvement effect. Only when the content of steel fiber is more than 0.6% can it have a more obvious postpeak descending section, and hybrid steel fiber has higher postpeak deformation capacity and flexural toughness. The fundamental reason why concrete with hybrid steel fibers has better tensile properties is that micro and macro steel fibers cooperate with each other to resist cracks, improving the toughness of concrete after cracking. Finally, the mechanism of different size and volume content of steel fiber was analyzed from the micro level, which can be used as a reference for the engineering design of HSFRSCC in the future.

Funder

National Natural Science Foundation of China

Central South University Innovation-Driven Research Programme

Publisher

MDPI AG

Subject

General Materials Science

Reference36 articles.

1. Nano Silica and Metakaolin Effects on the Behavior of Concrete Containing Rubber Crumbs;Chalangaran;CivilEng,2020

2. Experimental investigation of sound transmission loss in concrete containing recycled rubber crumbs;Chalangaran;Adv. Concr. Constr.,2021

3. Investigation of steel fiber effects on concrete abrasion resistance;Mansouri;Adv. Concr. Constr.,2020

4. Farzampour, A. (2019). Compressive Strength of Concrete, IntechOpen.

5. Biaxial mechanical behaviour of polypropylene fibres reinforced self-compacting concrete;Karimipour;Constr. Build. Mater.,2021

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