Javascript must be enabled to continue!
Transport Properties of Internally Cured Self Compacting Concrete with Fly Ash
View through CrossRef
Proper curing of concrete has a major beneficial effect on the transport properties of concrete which in turn influences its durability. This paper attempts to study the effect of fly ash on the transport properties of internally cured Self-Compacting Concrete specimens under ambient conditions. Two internal curing materials, Lightweight Expanded Clay Aggregates [LECA] and Superabsorbent Polymer [SAP] were chosen for the study. Properties such as sorptivity, resistance to chloride ion penetration and chloride ion migration specimens with varying percentages of fly ash replacement from 30% to 50% are presented under different curing conditions namely conventional curing, sealed curing with internal curing materials and ambient curing with internal curing materials. The results showed that the impermeability of concrete improved with an increasing percentage of fly ash replacements owing to the presence of internal curing water to improve hydration along with fly ash that moderates the heat of hydration and drying. The internal curing efficiency also improved with the increase in the percentage of fly ash replacement. Under ambient conditions, the mixes with fly ash above 45% replacement have shown very good mechanical and durability properties indicating a refined pore structure leading to enhanced transport properties.
Title: Transport Properties of Internally Cured Self Compacting Concrete with Fly Ash
Description:
Proper curing of concrete has a major beneficial effect on the transport properties of concrete which in turn influences its durability.
This paper attempts to study the effect of fly ash on the transport properties of internally cured Self-Compacting Concrete specimens under ambient conditions.
Two internal curing materials, Lightweight Expanded Clay Aggregates [LECA] and Superabsorbent Polymer [SAP] were chosen for the study.
Properties such as sorptivity, resistance to chloride ion penetration and chloride ion migration specimens with varying percentages of fly ash replacement from 30% to 50% are presented under different curing conditions namely conventional curing, sealed curing with internal curing materials and ambient curing with internal curing materials.
The results showed that the impermeability of concrete improved with an increasing percentage of fly ash replacements owing to the presence of internal curing water to improve hydration along with fly ash that moderates the heat of hydration and drying.
The internal curing efficiency also improved with the increase in the percentage of fly ash replacement.
Under ambient conditions, the mixes with fly ash above 45% replacement have shown very good mechanical and durability properties indicating a refined pore structure leading to enhanced transport properties.
Related Results
Kajian Kuat Lekat Pada Beton Self Compacting Concrete, Fly Ash Concrete Dengan Kadar Fly Ash 15%, High Volume Fly Ash Concrete Dengan Kadar Fly Ash 50% Dan High Volume Fly Ash-Self Compacting Concrete Dengan Kadar Fly Ash 50% Dari Berat Binder
Kajian Kuat Lekat Pada Beton Self Compacting Concrete, Fly Ash Concrete Dengan Kadar Fly Ash 15%, High Volume Fly Ash Concrete Dengan Kadar Fly Ash 50% Dan High Volume Fly Ash-Self Compacting Concrete Dengan Kadar Fly Ash 50% Dari Berat Binder
<p>Perkembangan infrastruktur yang pesat memunculkan sebuah inovasi beton baru yaitu <em>Self Compacting Concrete </em>yang dapat memadat dan menggalir secara man...
Performance Evaluation of Hybrid Fibre Reinforced High Volume Fly Ash based Self Compacting Concrete
Performance Evaluation of Hybrid Fibre Reinforced High Volume Fly Ash based Self Compacting Concrete
Self-compacting concrete has become increasingly popular lately for usage in crowded concrete-reinforced buildings having challenging casting circumstances. New cement needs to hav...
Strengths of Geo Polymer Concrete by Adding Metakaoline
Strengths of Geo Polymer Concrete by Adding Metakaoline
Based0on the results obtained from this study0,the following Conclusions seems to be valid. The increase0in percentage replacement of Fly Ash with Metakaoline from 0% to 10.00% cau...
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...
Influence of fly ash and basalt fibers on the properties of recycled pervious concrete
Influence of fly ash and basalt fibers on the properties of recycled pervious concrete
As an environmentally friendly building material, recycled pervious
concrete can not only alleviate the increasingly severe urban flooding
and heat island effect, but also realize ...
Study of the Design and Mechanical Properties of the Mix Proportion for Desulfurization Gypsum–Fly Ash Flowable Lightweight Soil
Study of the Design and Mechanical Properties of the Mix Proportion for Desulfurization Gypsum–Fly Ash Flowable Lightweight Soil
In order to solve the global problem of bridge head jumping caused by the insufficient compaction of the roadbed in the transition section of highways and bridges, a desulfurizatio...
Influence of the characteristic of input materials on formation and properties of sintered fly ash body
Influence of the characteristic of input materials on formation and properties of sintered fly ash body
Artificial aggregate from sintered fly ash is an example of material, which can be used solely on the basis of fly ash without any additions. However, to ensure optimal progress of...
Quaternary volcanic ash of Kharkiv region
Quaternary volcanic ash of Kharkiv region
Formulation of the problem. The article is devoted to detail geological and mineralogical description of quaternary volcanic ash in Kharkiv region.
The purpose of the article is t...

