Javascript must be enabled to continue!
Effect of Sisal and Steel Fibers on the Properties of Lightweight Concrete
View through CrossRef
The research examined how sisal natural fibers combined with steel fibers with hooked ends influence the mechanical and physical properties of lightweight concrete. The lightweight quality of pumice made it a suitable alternative to regular aggregates, which supported environmental initiatives through insulation applications and partition panels. 70% of natural sand grains were substituted with fine and coarse pumice stock. The testing process separated the pumice into two fractions: the coarse elements stayed on the 12.5 mm screen while the fine pumice material fit through a 4.75 mm screen. Tensile and compressive strength evaluations were performed as well as flexural strength, modulus of elasticity, and dry density testing. The experimental samples included various volume combinations of sisal fibers at 0.25%, 0.5%, and 0.75% together with steel fibers at 1%, 1.25%, and 1.5% levels. The combination of sisal at 0.5% content delivered elevated tensile and flexural strength results, and performance declined due to increased porosity levels. 1.5% steel fibers exhibited the best performance in terms of compressive and flexural strength, which demonstrates their powerful reinforcement properties. Compressive strength decreased because sisal fibers did not bond well with the cement matrix and created additional holes inside the material. When 0.5% sisal particles were added to concrete instead of the standard mix, the tensile strength went up by 5.1% and the flexural strength went up by 7.8%. Concrete reinforced with 1.5% steel fibers showed strength gains of 10.5% and 26.9%, with minor decreases in workability and density. The experimental outcomes identified the best fiber-to-concrete ratio, offering an ideal combination of strength improvement and environmentally friendly practices in lightweight concrete.
Northern Technical University
Title: Effect of Sisal and Steel Fibers on the Properties of Lightweight Concrete
Description:
The research examined how sisal natural fibers combined with steel fibers with hooked ends influence the mechanical and physical properties of lightweight concrete.
The lightweight quality of pumice made it a suitable alternative to regular aggregates, which supported environmental initiatives through insulation applications and partition panels.
70% of natural sand grains were substituted with fine and coarse pumice stock.
The testing process separated the pumice into two fractions: the coarse elements stayed on the 12.
5 mm screen while the fine pumice material fit through a 4.
75 mm screen.
Tensile and compressive strength evaluations were performed as well as flexural strength, modulus of elasticity, and dry density testing.
The experimental samples included various volume combinations of sisal fibers at 0.
25%, 0.
5%, and 0.
75% together with steel fibers at 1%, 1.
25%, and 1.
5% levels.
The combination of sisal at 0.
5% content delivered elevated tensile and flexural strength results, and performance declined due to increased porosity levels.
1.
5% steel fibers exhibited the best performance in terms of compressive and flexural strength, which demonstrates their powerful reinforcement properties.
Compressive strength decreased because sisal fibers did not bond well with the cement matrix and created additional holes inside the material.
When 0.
5% sisal particles were added to concrete instead of the standard mix, the tensile strength went up by 5.
1% and the flexural strength went up by 7.
8%.
Concrete reinforced with 1.
5% steel fibers showed strength gains of 10.
5% and 26.
9%, with minor decreases in workability and density.
The experimental outcomes identified the best fiber-to-concrete ratio, offering an ideal combination of strength improvement and environmentally friendly practices in lightweight concrete.
.
Related Results
EFFECT OF NATURAL AND SYNTHETIC FIBERS ON THE PROPERTIES OF ORDINARY CONCRETE
EFFECT OF NATURAL AND SYNTHETIC FIBERS ON THE PROPERTIES OF ORDINARY CONCRETE
This research investigates the effect of natural and synthetic fibers on the properties of ordinary concrete, focusing on sisal fibers as a natural option and hooked-end steel fibe...
Sisal fiber reinforced polyethylene terephthalate composites; Fabrication, characterization and possible application
Sisal fiber reinforced polyethylene terephthalate composites; Fabrication, characterization and possible application
The use of thermoplastics (TPs) for natural fiber composites is restricted to commodity ones like polypropylene and polyethylene However, using engineered TPs such as polyethylene ...
Assessment of farmer’s awareness on occurrence, prevalence and management of sisal bole rot disease in Muheza district
Assessment of farmer’s awareness on occurrence, prevalence and management of sisal bole rot disease in Muheza district
In Tanzania, sisal is a good source of income and employment to many rural residents whose livelihoods depend on agriculture. For many years, Tanzania has been promoting sisal indu...
Enhancement of Confinement in Scaled RC Columns using Steel Fibers Extracted from Scrap Tyres
Enhancement of Confinement in Scaled RC Columns using Steel Fibers Extracted from Scrap Tyres
Steel fibers are widely extracted from scrap tyres, causing environmental concerns. This paper presents the use of steel fibers in variable proportions extracted from scrap tyres. ...
Experimental Investigation of Hybrid Glass-Sisal Fiber Reinforced Polyester Composites
Experimental Investigation of Hybrid Glass-Sisal Fiber Reinforced Polyester Composites
Abstract
In this study, the experimental testing of hybrid fiber composite material was conducted to characterize the mechanical properties such as tensile, compressive, an...
Sisal Fiber as Steel Bar Replacement of Lightweight Concrete under Flexural Loading
Sisal Fiber as Steel Bar Replacement of Lightweight Concrete under Flexural Loading
The potential of natural resources such as pumice and sisal fiber for simple housing structural components is investigated in this research. Behavior of sisal fiber reinforcement o...
Renewable Resources and a Recycled Polymer as Raw Materials: Mats from Electrospinning of Lignocellulosic Biomass and PET Solutions
Renewable Resources and a Recycled Polymer as Raw Materials: Mats from Electrospinning of Lignocellulosic Biomass and PET Solutions
Interest in the use of renewable raw materials in the preparation of materials has been growing uninterruptedly in recent decades. The aim of this strategy is to offer alternatives...

