Javascript must be enabled to continue!
Study of Mechanical Properties of Pervious Concrete as a Pavement Material by Partial Replacement of Ggbs in Cement with Addition of Cellulose Fibers
View through CrossRef
Among all the transportation systems roadways is most commonly used transportation system. But in present scenario roads faces a lot of problems like potholes, cracks and many other distresses. Not even these but water is also the main enemy to the pavement which causes deformations and changes the texture of subgrade soil resulting in large variation in performance.The total Impervious Surface Change (ISC) in India for the decade 2000 to 2010 is 2274.62 km2. This is one of the most considerable problems due to rapid urbanization where there is a tremendous increase in construction of black topped and different types of impervious pavements. This has an adverse effect on the environment as the storm water becomes stagnant over the surface of the pavement due to inadequate drainage conditions.The necessity for reducing stagnation and the surface runoff has given the inception of pervious pavement surface. Pervious concrete pavement is a special type of its kind with high perviousness with no or minimal fines which allow water to percolate through it and thus the water which is accumulated over the surface can be collected and used for various purposes.The present work studied the mechanical properties and also the permeability of pervious concrete of mix 3:1 aggregate cement ratio. The control mix is altered by partially replacing 30% of cement with Ground Granulated Blast furnace Slag (GGBS), included Cellulose fibers of 5% of weight of the cementitious material and combination of both in one mix and compared the results obtained.The properties such as compressive strength, split tensile strength, flexural strength and permeability are assessed by performing tests. It was observed that there is an increase in Compressive Strength, Split Tensile Strength, Flexure Strength and decrease in the permeability in the altered pervious concrete mixes when compared to the Pervious concrete with no additives.
Science Publishing Corporation
Title: Study of Mechanical Properties of Pervious Concrete as a Pavement Material by Partial Replacement of Ggbs in Cement with Addition of Cellulose Fibers
Description:
Among all the transportation systems roadways is most commonly used transportation system.
But in present scenario roads faces a lot of problems like potholes, cracks and many other distresses.
Not even these but water is also the main enemy to the pavement which causes deformations and changes the texture of subgrade soil resulting in large variation in performance.
The total Impervious Surface Change (ISC) in India for the decade 2000 to 2010 is 2274.
62 km2.
This is one of the most considerable problems due to rapid urbanization where there is a tremendous increase in construction of black topped and different types of impervious pavements.
This has an adverse effect on the environment as the storm water becomes stagnant over the surface of the pavement due to inadequate drainage conditions.
The necessity for reducing stagnation and the surface runoff has given the inception of pervious pavement surface.
Pervious concrete pavement is a special type of its kind with high perviousness with no or minimal fines which allow water to percolate through it and thus the water which is accumulated over the surface can be collected and used for various purposes.
The present work studied the mechanical properties and also the permeability of pervious concrete of mix 3:1 aggregate cement ratio.
The control mix is altered by partially replacing 30% of cement with Ground Granulated Blast furnace Slag (GGBS), included Cellulose fibers of 5% of weight of the cementitious material and combination of both in one mix and compared the results obtained.
The properties such as compressive strength, split tensile strength, flexural strength and permeability are assessed by performing tests.
It was observed that there is an increase in Compressive Strength, Split Tensile Strength, Flexure Strength and decrease in the permeability in the altered pervious concrete mixes when compared to the Pervious concrete with no additives.
.
Related Results
A Comprehensive Review on the Ground Granulated Blast Furnace Slag (GGBS) in Concrete Production
A Comprehensive Review on the Ground Granulated Blast Furnace Slag (GGBS) in Concrete Production
In the last few decades, the concrete industry has been massively expanded with the adoption of various kinds of binding materials. As a substitute to cement and in an effort to re...
Characterization and modelling of previous concrete
Characterization and modelling of previous concrete
Pervious concrete is a special material with high permeability usually obtained by reducing the amount of fine aggregates in the composition of concrete. The properties of pervious...
INVESTIGATION ON HYDROLOGIC PERFORMANCE OF PERVIOUS CONCRETE PAVEMENT BY FINITE ELEMENT ANALYSIS
INVESTIGATION ON HYDROLOGIC PERFORMANCE OF PERVIOUS CONCRETE PAVEMENT BY FINITE ELEMENT ANALYSIS
Pervious concrete pavement has been used widely as an effective practice for water management in low-impact developmenttechniques. The hydrologic performance of pervious concrete ...
Fresh Properties and Compressive Strength of 3D Printing Concrete Containing GGBS as Partial Cement Replacement
Fresh Properties and Compressive Strength of 3D Printing Concrete Containing GGBS as Partial Cement Replacement
3D printingconcrete is a particular mix of concrete that has been specially prepared to flow easily through the printing nozzle. The foundations of 3D printingconcre...
Strength and serviceability performance of pervious concrete with bagasse ash as supplementary cementitious material and magnesite mine tailing as fine aggregate fraction
Strength and serviceability performance of pervious concrete with bagasse ash as supplementary cementitious material and magnesite mine tailing as fine aggregate fraction
Pervious concrete pavement could be a solution to urban flooding and associated with groundwater recharge. Agricultural and mining waste can be utilized in concrete production base...
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 ...
The Effects of Bi-Combination of GGBS and PFA on the Mechanical Properties of Concrete
The Effects of Bi-Combination of GGBS and PFA on the Mechanical Properties of Concrete
The main thrust of the current study is to examine the effects of ground granulated blast-furnace slag (GGBS), pulverized fuel ash (PFA), and bi-combination of GGBS and PFA on the ...
Mechanical And Infiltration Characteristics Of Pervious Concrete Pavement Incorporating Reclaimed Asphalt Pavement Aggregates: A Review
Mechanical And Infiltration Characteristics Of Pervious Concrete Pavement Incorporating Reclaimed Asphalt Pavement Aggregates: A Review
Natural permeable ground is being converted into an impermeable land cover as a result of increased construction of concrete and asphalt pavement accompanying the urbanisation and ...

