This paper presents and discusses the results of experimental tests performed on concrete specimens internally reinforced with polypropylene and steel fibers. Specifically, samples of five mixtures (plus a reference plain concrete), characterized by the same total volume of fibers, but different fractions of polypropylene and steel fibers, were tested under compression and in bending. This study was aimed to clarify the influence of different combinations of these fibers on the resulting fracture behavior of Hybrid Fiber-Reinforced Concrete (HyFRC). As expected, the results obtained from compression tests highlighted a negligible influence of fibers in terms of strength and, hence, FRC specimens exhibited a post-peak response more ductile t...
The interest about the fiber reinforced concrete, to be adopted for structural issues, is witnessed ...
Introducing fibres into concrete not only enhances the requisite properties of reinforced ...
Abstract:The concept of hybridization can offer more attractive mechanical engineering properties by...
This paper presents and discusses the results of experimental tests performed on concrete specimens ...
This paper presents and discusses the results of experimental tests performed on concrete specimens ...
This study deals with the analytical modeling of hybrid fiber-reinforced concretes (HyFRCs) made wit...
The fracture behavior of concrete with steel and macropolypropylene hybrid fiber blends (HyFRC) is e...
Fibres in concrete provide a means of arresting crack growth. Short discontinuous fibres have the ad...
The post-cracking tensile behavior of Polypropylene Fiber Reinforced Concrete (PFRC) was investigate...
Using of polymeric fibers for reinforced concrete structures has significantly developed in recent y...
This paper discusses the experimental results on the mechanical properties of hybrid fibre reinforce...
The fracture response and resistance to chloride penetration of concrete reinforced with discrete st...
This paper presents an experimental investigation on the stress-strain behavior and damage evolution...
The interest about the fiber reinforced concrete, to be adopted for structural issues, is witnessed ...
Introducing fibres into concrete not only enhances the requisite properties of reinforced ...
Abstract:The concept of hybridization can offer more attractive mechanical engineering properties by...
This paper presents and discusses the results of experimental tests performed on concrete specimens ...
This paper presents and discusses the results of experimental tests performed on concrete specimens ...
This study deals with the analytical modeling of hybrid fiber-reinforced concretes (HyFRCs) made wit...
The fracture behavior of concrete with steel and macropolypropylene hybrid fiber blends (HyFRC) is e...
Fibres in concrete provide a means of arresting crack growth. Short discontinuous fibres have the ad...
The post-cracking tensile behavior of Polypropylene Fiber Reinforced Concrete (PFRC) was investigate...
Using of polymeric fibers for reinforced concrete structures has significantly developed in recent y...
This paper discusses the experimental results on the mechanical properties of hybrid fibre reinforce...
The fracture response and resistance to chloride penetration of concrete reinforced with discrete st...
This paper presents an experimental investigation on the stress-strain behavior and damage evolution...
The interest about the fiber reinforced concrete, to be adopted for structural issues, is witnessed ...
Introducing fibres into concrete not only enhances the requisite properties of reinforced ...
Abstract:The concept of hybridization can offer more attractive mechanical engineering properties by...