Javascript must be enabled to continue!
Influence of Fibers on Fresh and Mechanical Properties of (FRC) Fiber Reinforced Concrete, A Step Towards Sustainability
View through CrossRef
Abstract
Mostly used material is concrete which has versatile quality for construction works. Fibrous concrete have significant factor that improve the scale and value to concrete for humid environments with significant role. Day by day abundant demand and use of concrete is increasing. It is considered as a 2
nd
largest building material due to the major productivity. By the use of fibrous concrete, some bonding and environmental issues have been addressed. Keeping in this view, an experimental based study is conducted to evaluate the strength of fiber reinforced concrete at different percentages 0%, 0.5%, 1.0%, 1.5% and 2.0%. All percentages are added by the weight of concrete with all fibers. In this connection, one hundred and fifty-three cylinders of five mixes are prepared. Workability checked of fresh concrete during the pouring of concrete cylinders. Poured cylinders’ samples are left for different curing ages at 7 and 28 days. One hundred and two cylinders for compression at 7 and 28days but fifty-one cylinders for split tensile test at 28days with all fibers i.e. glass fiber, steel fiber, coconut fiber and polypropylene fiber. After curing, compression and split tensile tests are performed to check the strength of hardened concrete. Workability of five mixes lies between 40-90mm.Fibrous concrete is suitable for humid environment where high strength and voids less concrete are required. Addition of fibers in concrete may improves the strength parameters as well as to increase the bonding and tensile properties of concrete. It reduces the quantity of water to be used in concrete. Also the use of different types of fibers has been proved to be economical and is considered as environmental friendly construction material.
Title: Influence of Fibers on Fresh and Mechanical Properties of (FRC) Fiber Reinforced Concrete, A Step Towards Sustainability
Description:
Abstract
Mostly used material is concrete which has versatile quality for construction works.
Fibrous concrete have significant factor that improve the scale and value to concrete for humid environments with significant role.
Day by day abundant demand and use of concrete is increasing.
It is considered as a 2
nd
largest building material due to the major productivity.
By the use of fibrous concrete, some bonding and environmental issues have been addressed.
Keeping in this view, an experimental based study is conducted to evaluate the strength of fiber reinforced concrete at different percentages 0%, 0.
5%, 1.
0%, 1.
5% and 2.
0%.
All percentages are added by the weight of concrete with all fibers.
In this connection, one hundred and fifty-three cylinders of five mixes are prepared.
Workability checked of fresh concrete during the pouring of concrete cylinders.
Poured cylinders’ samples are left for different curing ages at 7 and 28 days.
One hundred and two cylinders for compression at 7 and 28days but fifty-one cylinders for split tensile test at 28days with all fibers i.
e.
glass fiber, steel fiber, coconut fiber and polypropylene fiber.
After curing, compression and split tensile tests are performed to check the strength of hardened concrete.
Workability of five mixes lies between 40-90mm.
Fibrous concrete is suitable for humid environment where high strength and voids less concrete are required.
Addition of fibers in concrete may improves the strength parameters as well as to increase the bonding and tensile properties of concrete.
It reduces the quantity of water to be used in concrete.
Also the use of different types of fibers has been proved to be economical and is considered as environmental friendly construction material.
Related Results
Study on the effect of seawater on making and curing of unreinforced concrete applications
Study on the effect of seawater on making and curing of unreinforced concrete applications
Concrete, an essential component of worldwide infrastructure, depends significantly on fresh water for its manufacturing, contributing to freshwater scarcity in many regions. As co...
Mechanical Properties of Fiber Reinforced Concrete
Mechanical Properties of Fiber Reinforced Concrete
This study presents results of an experimental investigation conducted to investigate the mechanical properties of sisal and glass fiber reinforced concrete. Four basic concrete mi...
Experimental Investigation of Compound Effect of Flexural and Torsion on Fiber-Reinforced Concrete Beams
Experimental Investigation of Compound Effect of Flexural and Torsion on Fiber-Reinforced Concrete Beams
Fiber-reinforced concrete is widely acknowledged for its ability to resist cracking effectively and limit its propagation. By preventing cracks from spreading, the addition of fibe...
He found use for reinforced concrete where, it would seem, this material has no place
He found use for reinforced concrete where, it would seem, this material has no place
Introduction. The article is devoted to an employee of the Research Institute of Reinforced Concrete, Doctor of Technical Sciences, Professor I.G. Ludkovsky, a specialist in the fi...
SCOPE OF IMPROVING MECHANICAL CHARACTERISTICS OF CONCRETE USING NATURAL FIBER AS A REINFORCING MATERIAL
SCOPE OF IMPROVING MECHANICAL CHARACTERISTICS OF CONCRETE USING NATURAL FIBER AS A REINFORCING MATERIAL
Using natural (Jute) fiber in concrete as a reinforcing material can not only augment the concrete strength but also restrict the use of synthetic fiber which is environmentally de...
Strength and Durability of Kenaf Fiber Reinforced Concrete for Marine Structures
Strength and Durability of Kenaf Fiber Reinforced Concrete for Marine Structures
Nowadays, Kenaf fiber is sustainably useful in marine structures and has become one of the materials that may be high in demand as it is light, biodegradable and environmental frie...
Mechanical and Durability Performance of Coconut Fiber Reinforced Concrete: A State-of-the-Art Review
Mechanical and Durability Performance of Coconut Fiber Reinforced Concrete: A State-of-the-Art Review
The push for sustainability in the construction sector has demanded the use of increasingly renewable resources. These natural fibers are biodegradable and non-toxic, and their mec...

