Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Influences of high temperature on mechanical properties of fly ash based geopolymer mortars reinforced with PVA fiber

View through CrossRef
In this study, a geopolymer composite containing PVA fiber was produced to recycle waste fly ash and obtain an eco-friendly binder. Mechanical properties of geopolymer mortars, produced by using F class fly ash which was activated with NaOH (sodium hydroxide), and reinforced by PVA (polyvinyl alcohol) fiber were investigated after high temperature effect. Geopolymer mortar samples produced by mixing with fly ash, sand, water and NaOH were placed in standard molds of 40×40×160 mm3. PVA fibers were used at percentages of 0,5%, 1% and 1,5% by volume in the experiment. Tests were performed on mortars exposed to high temperatures of 200°C, 400°C, 600°C and 800°C for physical and mechanical properties. For the specimens not subjected to high temperatures, an increase in the compressive strength of mortars containing PVA fibers was observed in comparison to mortar without PVA fiber. On the other hand, it was concluded that losses in compressive strength were less for mortar without PVA fiber when compared with the mortars containing PVA fibers. As a result of the modeling, the PVA ratio, which gives the optimum flexural and compressive strength, was determined as 1,47%. As a result of melting of PVA fibers under the effect of high temperature, 83,58% loss of compressive strength was determined in samples containing 1,5% PVA after 800ºC temperature.
Pontificia Universidad Catolica de Chile
Title: Influences of high temperature on mechanical properties of fly ash based geopolymer mortars reinforced with PVA fiber
Description:
In this study, a geopolymer composite containing PVA fiber was produced to recycle waste fly ash and obtain an eco-friendly binder.
Mechanical properties of geopolymer mortars, produced by using F class fly ash which was activated with NaOH (sodium hydroxide), and reinforced by PVA (polyvinyl alcohol) fiber were investigated after high temperature effect.
Geopolymer mortar samples produced by mixing with fly ash, sand, water and NaOH were placed in standard molds of 40×40×160 mm3.
PVA fibers were used at percentages of 0,5%, 1% and 1,5% by volume in the experiment.
Tests were performed on mortars exposed to high temperatures of 200°C, 400°C, 600°C and 800°C for physical and mechanical properties.
For the specimens not subjected to high temperatures, an increase in the compressive strength of mortars containing PVA fibers was observed in comparison to mortar without PVA fiber.
On the other hand, it was concluded that losses in compressive strength were less for mortar without PVA fiber when compared with the mortars containing PVA fibers.
As a result of the modeling, the PVA ratio, which gives the optimum flexural and compressive strength, was determined as 1,47%.
As a result of melting of PVA fibers under the effect of high temperature, 83,58% loss of compressive strength was determined in samples containing 1,5% PVA after 800ºC temperature.

Related Results

STUDY ON MECHANICAL AND DURABILITY PROPERTIES OF MIXTURES WITH FLY ASH FROM HONGSA POWER PLANT
STUDY ON MECHANICAL AND DURABILITY PROPERTIES OF MIXTURES WITH FLY ASH FROM HONGSA POWER PLANT
The use of fly ash in concrete improves several characteristics of conventional cement-based pastes, mortars, and concrete such as reduces heat of hydration, increases strength in ...
Investigating the Effects of Fly Ash on the Microstructure and Properties of Aluminium Composites using Taguchi Method
Investigating the Effects of Fly Ash on the Microstructure and Properties of Aluminium Composites using Taguchi Method
Abstract This study aims to investigate the effect of fly ash addition on the mechanical and tribological properties of Al 1100 alloy. Fly ash, a waste by-product from auto...
Influence of CFBC Fly Ash Chemical Composition and Mechanical Activation on the Properties of Geopolymer
Influence of CFBC Fly Ash Chemical Composition and Mechanical Activation on the Properties of Geopolymer
Circulating fluidized bed combustion (CFBC) fly ash has the potential as a precursor to making geopolymer concrete because of its rich silica and alumina content. However, there is...
Physical and Mechanical Performance of Coir Fiber-Reinforced Rendering Mortars
Physical and Mechanical Performance of Coir Fiber-Reinforced Rendering Mortars
Coir fiber is a by-product waste generated in large scale. Considering that most of these wastes do not have a proper disposal, several applications to coir fibers in engineering h...
Mechanical Properties of Fly Ash, Gravel, and Epoxy Resin Minerals Composite
Mechanical Properties of Fly Ash, Gravel, and Epoxy Resin Minerals Composite
This study aims to develop mineral composites for machine tool beds. This study utilizes fly ash from coal power plants with gravel rocks. The gravel size was reduced in the ball m...
Research on Mechanical Characteristics and Crack Resistance of Fly Ash Sandstone Tunnel Slag Cement Stabilized Material
Research on Mechanical Characteristics and Crack Resistance of Fly Ash Sandstone Tunnel Slag Cement Stabilized Material
Abstract To investigate the influence of fly ash on the mechanical and crack resistance properties of cement stabilized materials, the aggregate gradation was determined ba...
EFFECTS OF FLY ASH CONTAMINATION ON THE ELECTRICAL PROPERTIES OF CERAMIC INSULATOR SURFACES
EFFECTS OF FLY ASH CONTAMINATION ON THE ELECTRICAL PROPERTIES OF CERAMIC INSULATOR SURFACES
The decrease in insulator performance due to environmental pollution, especially by fly ash produced from Steam Power Plants (PLTU). Fly ash contains conductive elements that have ...

Back to Top