Abstract:
Cement concrete is the most utilized construction material globally. Its extensive
use can be attributed to its ability to take any shape. Cement-based concrete is
prone to microcracking, exhibits minimal tensile strength, possesses low
ductility, and exhibits limited crack resistance. These factors combine to cause
brittle concrete failure. Modern civil engineering projects must meet certain
durability and structural requirements. Every structure has a specific function
and conventional cement concrete must be adapted to these requirements.
According to research, adding different types of fibers to concrete in a certain
amount can improve the mechanical properties, serviceability and longevity of
structures. Currently, a significant characteristic of steel fiber concrete (SFRC) is
its exceptional resistance to crack initiation and propagation. The main goal of
the research is to predict how an SFRC beam will behave in terms of flexural
strength. Steel fibers mixed into concrete were used to cast 180 prisms (100 x 100
x 500 mm) and 360 cubes (100 x 100 x 100 mm). This study modifies the fiber
content of 1%, 1.5% and 2% with different aspect ratios (50, 60 and 70) in concrete
to investigate the influence of steel fibers on the strength of M30 grade concrete.
To examine the impact of steel fibers, tests for compressive strength, flexural
strength, and splitting tensile strength were conducted. The overall results
indicate that mechanical strength development can be effectively achieved with
steel fiber concrete with 1 mm diameter, aspect ratio of 70 and 1.5% steel fibers.