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partial replacement of steel slag in concrete

Kothai and Malathy 14 partially replace fine sand SG265 with fine steel slag SG295 in normal concrete and found increment of compressive strength at 5 to 10 when replacement level is

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Partial Replacement Of Fine Aggregate Using Steel Slag
Partial Replacement Of Fine Aggregate Using Steel Slag

steel slag as partial replacement of fine aggregate For this purpose different test on harden concrete were conducted at the age of 28 days like compressive strength on 150 x 150 x 150 mm size cube splitting tensile strength on 150 mm X 300 mm cylinder flexural strength on beam of size 100 x100 x 500 mm

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Properties of Concrete Manufactured Using Steel Slag
Properties of Concrete Manufactured Using Steel Slag

The results indicate that for conventional concrete the partial replacement of fine and coarse aggregates by steel slag improves the compressive tensile and flexural strength The mass loss in cubes after immersion in acids is found to be very low

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Abstract Index Terms IJSER
Abstract Index Terms IJSER

strength for partial replacement of Fine aggregate by Steel slag The results shows 30 replacement is desirable percentage replacement of fine aggregate by stel slag Compressive e strength goes on increasing upto 30 of replacement and more than 30 it goes on decreasing 2 O BJECTIVES The objective of reseach paper is to study behavior of steel slag concrete

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Effect of partial replacement of GGBS slag as fine
Effect of partial replacement of GGBS slag as fine

conventional concrete partial replacement of concrete by steel slag improves the compressive tensile flexural strength The mass loss in cubes after immersion in acids is found to be very low Deflection in the RCC beams gradually increases as the load on

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Steel Slag as a Partial Replacement of Fine Aggregate In
Steel Slag as a Partial Replacement of Fine Aggregate In

replacing steel slag at a level of 10 20 30 and 40 after 7 14 28 and 50 days of curing for an M35 grade of concrete Table Tensile strength test results for M35 grade of concrete Sr

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Experimental Investigation on Partial Replacement of
Experimental Investigation on Partial Replacement of

of cement concrete steel slag has been used in place of natural river sand as a partial replacement and waste limestone aggregates has been used in place of Coarse aggregates Basalt stones as the partial replacement Steel Slag is the waste byproduct obtained from the iron and steel

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Use of Iron Slag as Partial Replacement of Sand to
Use of Iron Slag as Partial Replacement of Sand to

20 and 30 of iron slag as partial replacement of fine aggregate sand were cast into cubes for testing 2313 In this study to make concrete cement and fine

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Study on replacement of coarse aggregate by steel slag and
Study on replacement of coarse aggregate by steel slag and

However Steel Slag SS can successfully be used as a partial replacement of coarse aggregate crushed stone in concrete for concrete grade M20 since the strength of concrete

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Partial Replacement of Steel Slag Aggregates in Concrete
Partial Replacement of Steel Slag Aggregates in Concrete

Partial Replacement of Steel Slag Aggregates in Concrete as Fine Aggregates Induction Blast Furnace Slag

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Evaluation of Steel Industrial Slag as Partial Replacement
Evaluation of Steel Industrial Slag as Partial Replacement

Evaluation of Steel Industrial Slag as Partial Replacement of Cement in Concrete Cement is the most important ingredient in concrete which acts as a binding material It is evaluated that cement is the second largest industrial source of CO2 on earth

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Effect of partial replacement of GGBS slag as fine
Effect of partial replacement of GGBS slag as fine

conventional concrete partial replacement of concrete by steel slag improves the compressive tensile flexural strength The mass loss in cubes after immersion in acids is found to be very low Deflection in the RCC beams gradually increases as the load on the beam increases for the replacement

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Steel Slag as a Partial Replacement of Fine Aggregate
Steel Slag as a Partial Replacement of Fine Aggregate

replacing steel slag at a level of 10 20 30 and 40 after 7 14 28 and 50 days of curing for an M35 grade of concrete Table Tensile strength test results for M35 grade of concrete Sr

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Experimental Study on Partial Replacement of Fine
Experimental Study on Partial Replacement of Fine

partial replacement of fine aggregate by steel slag on the various strength properties of concrete by using the mix design of M20 grade Test specimen with 0 10 20 30 4050 of partial replacement of fine aggregate by steel slag were cast and tested for compressive strength

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PDF Effect of Steel Slag as Partial Replacement of
PDF Effect of Steel Slag as Partial Replacement of

is a platform for academics to share research papers

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Experimental Investigation on Partial Replacement of
Experimental Investigation on Partial Replacement of

of cement concrete steel slag has been used in place of natural river sand as a partial replacement and waste limestone aggregates has been used in place of Coarse aggregates Basalt stones as the partial replacement Steel Slag is the waste byproduct obtained from the iron and steel

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EXPERIMENTAL INVESTIGATION ON REPLACEMENT OF
EXPERIMENTAL INVESTIGATION ON REPLACEMENT OF

60 70 of partial replacement of steel slag by coarse aggregate in concrete the water cement ratio of using for magnetic water The concrete specimens prepared The prepared concrete mixture is casted in cubes cylinder and beams by using hand held vibrator 24 hours mould will be removed then

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Sustainable use of industrialwaste as partial replacement
Sustainable use of industrialwaste as partial replacement

Figure 8 Figure 9 show the comparison of compressive strength of different industrial waste concretes in which Class F fly ash concrete Copper slag concrete and ISF slag concrete up to 50 percentages of replacement steel slag up to 40 replacement and palm oil clinker up to 10 replacement gives the more strength than control concrete Waste

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An Experimental Study on the Mechanical and Durability
An Experimental Study on the Mechanical and Durability

to investigate the possibility of utilizing a broad range of concrete raw materials as partial replacement for fine aggregate in the production of concrete In this study replacement of fine aggregate with steel slag Msand and bottom ash with 10 20 30 40and 50 for grade of concrete M30are tested for finding fresh and

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Effect of Partial Replacement of Cement with Blast
Effect of Partial Replacement of Cement with Blast

Effect of Partial Replacement of Cement with Blast Furnace Slag and Sand with Cast Iron Chips on the Strength of Concrete Er Nalin Verma Department of Civil Engineering Ramgarhia Institute of Engg and Tech Phagwara INDIA Er Arun Verma Department of Civil Engineering Ramgarhia Institute of Engg and Tech Phagwara INDIA Er

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Strength Behaviour of Geopolymer Concrete by Partial
Strength Behaviour of Geopolymer Concrete by Partial

of steel slag by partially replacing coarse aggregate in flyash based geopolymer concrete The mechanical and flexural properties were tested with steel slag in proportions of 10 20 30 and 40 in geopolymer concrete after 3 7 and 28 days of curing A total of 45

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Partial Replacement of Steel Slag Aggregates in Concrete
Partial Replacement of Steel Slag Aggregates in Concrete

Partial Replacement of Steel Slag Aggregates in Concrete as Fine Aggregates Induction Blast Furnace Slag

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Experimental Study on Concrete as a Partial
Experimental Study on Concrete as a Partial

slabs of size 1400 x 1200 x 100 mm containing steel slag that is been used as partial replacement of natural fine aggregate of size 20mm as opposed to that of normal concrete 13 Steel slags are made at the temperatures up to 1600oC utilization in concretes

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Experimental Study on Partial Replacement of Fine
Experimental Study on Partial Replacement of Fine

partial replacement of fine aggregate by steel slag on the various strength properties of concrete by using the mix design of M20 grade Test specimen with 0 10 20 30 4050 of partial replacement of fine aggregate by steel slag were cast and tested for compressive strength

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Comparative Study on Partial Replacement of Fine
Comparative Study on Partial Replacement of Fine

concrete and concrete with Steel slag as partial replacements The results shows that the strength of the normal concrete is slightly lower than the Steel slag replaced concrete The increment in compressive strength is about 3147 for 7 days curing 20 for 14 days curing 18 for 28 days while

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Experimental Behavior of Reinforced Concrete with
Experimental Behavior of Reinforced Concrete with

Ground granulated blast furnace slag concrete can protect the steel reinforcement more efficiently so that it can resist corrosion and thus the structure as a whole GGBS concrete is a type of concrete in which a part of the cement is replaced by ground granulated blast

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Sustainable use of industrialwaste as partial replacement
Sustainable use of industrialwaste as partial replacement

Devi and Gnanavel 2014 concluded that the concrete with partial substitution of fine aggregate by steel slag shows preferred imperviousness to hydrochloric acid HCl than sulphuric acid H 2 SO 4

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A STUDY ON CONCRETE PROPERTIES USING STEEL SLAG AS PARTIAL
A STUDY ON CONCRETE PROPERTIES USING STEEL SLAG AS PARTIAL

This paper aims to study experimentally the effect of partial replacement of coarse aggregate by steel slag SS on the various strength and durability properties of concrete by using the mix design of M40 grade In this study steel slag was used

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EFFECT OF PARTIAL REPLACEMENT OF SAND BY IRON
EFFECT OF PARTIAL REPLACEMENT OF SAND BY IRON

of using iron slag as partial replacement of sand in concrete Iron and steel making slag are by products of the iron making and steelmaking processes To date these types of slag have been widely used in cement and as aggregate for civil works The report presents an investigation of mechanical and durability properties of concrete by adding iron slag as replacement of sand in various percentages

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Partial Replacement of Cement with GGBS in Concrete
Partial Replacement of Cement with GGBS in Concrete

Iron ore coke and limestone are fed into the furnace and the resulting molten slag floats above the molten iron at a temperature of about 1500oC to 1600oC The molten slag has a composition of about 30 to 40 SiO 2 and about 40 CaO which is close to the chemical composition of Portland cement

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