Most codes for the design of fiber reinforced concrete (FRC) structures are based on the experience achieved throughout the years with steel fibers. Recent codes include the possibility of applying the same considerations for FRC structures with plastic fiber. However, the consequences of assuming identical design considerations regardless of the type of fiber is scarcely known in terms of the structural behavior of full-scale elements. The main goal of this paper is to assess the influence of the type of fiber on the performance of full-scale concrete slabs, emphasizing on the consequences of using a common design approach. For that, a comparative experimental study was conducted in order to expose differences regarding the crack pattern a...
The paper presents a synthesis of an extensive experimental campaign on linear and two-dimensional s...
Abstract: Reinforced concrete structure is inevitable from cracking. The material properties of the ...
his paper investigates the potential effect of steel fiber added into reinforced concrete slabs. Fou...
Most codes for the design of fiber-reinforced concrete (FRC) structures are based on experience gain...
For decades, fiber reinforced concrete (FRC) has been primarily used in elements for which the conse...
The combination of fibers with traditional reinforcementmay be a very interesting design solution to...
Fibre reinforcement technology has advanced significantly in recent years and, as a result, expanded...
Fibre reinforced concrete (FRC) presents objectively proven advantages in terms of post-cracking str...
Abstract: Steel fiber reinforced concrete (SFRC) has proven to be an attractive material for a wide ...
Steel fiber reinforced concrete (SFRC) has proven to be an attractive material for a wide range of ...
After several decades of research studies, design rules for fiber reinforced concrete (FRC) are now ...
The postcracking capacity of fiber reinforced concrete (FRC) mainly depends on the content, material...
The total substitution of traditional reinforcement in the form of steel bars by fibres can be mainl...
High-performance and fiber-reinforced concretes are receiving growing attention because of their phy...
The paper presents a synthesis of an extensive experimental campaign on linear and two-dimensional s...
Abstract: Reinforced concrete structure is inevitable from cracking. The material properties of the ...
his paper investigates the potential effect of steel fiber added into reinforced concrete slabs. Fou...
Most codes for the design of fiber-reinforced concrete (FRC) structures are based on experience gain...
For decades, fiber reinforced concrete (FRC) has been primarily used in elements for which the conse...
The combination of fibers with traditional reinforcementmay be a very interesting design solution to...
Fibre reinforcement technology has advanced significantly in recent years and, as a result, expanded...
Fibre reinforced concrete (FRC) presents objectively proven advantages in terms of post-cracking str...
Abstract: Steel fiber reinforced concrete (SFRC) has proven to be an attractive material for a wide ...
Steel fiber reinforced concrete (SFRC) has proven to be an attractive material for a wide range of ...
After several decades of research studies, design rules for fiber reinforced concrete (FRC) are now ...
The postcracking capacity of fiber reinforced concrete (FRC) mainly depends on the content, material...
The total substitution of traditional reinforcement in the form of steel bars by fibres can be mainl...
High-performance and fiber-reinforced concretes are receiving growing attention because of their phy...
The paper presents a synthesis of an extensive experimental campaign on linear and two-dimensional s...
Abstract: Reinforced concrete structure is inevitable from cracking. The material properties of the ...
his paper investigates the potential effect of steel fiber added into reinforced concrete slabs. Fou...