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International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 07 Issue: 01 | Jan 2020 www.irjet.net p-ISSN: 2395-0072
© 2020, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 486
An Experimental Study on Strength of Concrete with partial
Replacement of Sand by Stone quarry dust & Copper slag
Ankur Jain1, Dr. Shubha Agarwal2
1Research Scholar, M. Tech(CTM), Department of Civil Engineering, LNCT, Bhopal
2Associate Professor & Head of the Department, Department of Civil Engineering, LNCT, Bhopal
---------------------------------------------------------------------***----------------------------------------------------------------------
Abstract - This work reports an experimental study to
investigate use of Copper Slag and Quarry Dust as partial
replacement of sand i. e. fine aggregate. The Copper Slag and
Stone Quarry dust in concrete provides economic benefits as
well as for all environmental related problems in industries.
Due to the scarcity of fine aggregate for the preparation of
mortar and concrete, partial replacement of Copper Slag and
Stone quarry Dust with Fine aggregate have been attempted.
Copper Slag is the by-product obtained during matte smelting
and refining of Copper Slag at industrial level. The strength
characteristics of conventional concrete and slag replaced
concrete such as compressive strength, split tensile strength
and flexural strength has to be determined. In this
experimental study concrete were tested by adding Copper
Slag and Quarry Dust to Fine aggregate in various
percentages ranging from 0%, 15%, 30%, 45%, 40. M-25&M-
30 Grade concrete specimens were cured for 7 to 28 days and
to be tested for compression strength, split tensile strength
and flexural strength.
Key Words: Copper slag, Quarry dust, concrete,
compressive strength, split tensile strength, flexural
strength.
1. INTRODUCTION
Concrete is the most popular building material in the
world. However, the production of cement has diminished
the limestone reserves in the world and requires a great
consumption of energy. River sand has been the most
popular choice for the fine aggregate component ofconcrete
in the past, but over use of the material has led to
environmental concerns, the depleting of securable river
sand deposits and a concomitant price increase in the
material. Therefore, it is desirable to obtain cheap,
environmentally friendly substitutes for cement and river
sand that are preferably by products. Quarry dust has been
proposed as an alternative to riversandthatgivesadditional
benefit to concrete. Quarry dust is known to increase the
strength of concrete over concrete made with equal
quantities of river sand, but it causes a reduction in the
workability of concrete.
Granulated copper slag (or) copper slag which is a by-
product of metallurgical operations in Sterile industries
(India) Ltd., Tuticorin was used for the experimental
investigation. For every tone of metal production, about 2.2
ton of waste slag is generated. Dumping or disposal of such
huge quantities of slag cause environmental and space
problems. During the past two decades, attempts have been
made by several investigatorsandcopperproducingunits all
over the world to explore the possible utilization of copper
slag. The physical and mechanical properties of granulated
copper slag shows that it can be used to make products like
coarse and fine aggregates, cement, fill, ballast, roofing
granules, glass, tiles etc.
2. NEED FOR REPLACEMENT OF FINE AGGREGATE
Large scale efforts are required for reducing the usage of
the raw material that arepresent,sothatlargereplacementis
done using the various by-product materials that are
available in the present day. The other material that can be
used is quarry dust which is made while in the processing of
the Granitestone into aggregates, this is formedasafinedust
in the crushers that process the coarse aggregates, which is
used a earthwork filling material in the road formations
majorly. Many studiesare madewith several other materials
which gave the concrete to be a material made of recycled
material but the parameters thatareprimaryforthematerial
was not satisfied. The properties of concrete in fresh and
hardened state are studied in the various papers that are
used as a reference for this. Some of the properties are
workability, compressive strength are the major onethatare
considered.
3. SCOPES AND OBJECTIVES
1. To investigate the effect of Copper Slag & Stone dust waste
materials in concrete on its strength.
2. By utilizing the knowledge about the different parameter
working out on the betterresultandsafeconcreteproduction
with M-25 & M-30 grades of concrete.
3. To save the natural resource and cost optimization.
4. Better consumption of resources and providing maximum
serviceability to concrete.
4. MATERIALS & METHODOLOGY
4.1 Cement
Ordinary Portland Cement (53 Grade) with 28% normal
consistency with specific surface 3300 cm2/gconforming to
IS 8112-1989 is used.
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 07 Issue: 01 | Jan 2020 www.irjet.net p-ISSN: 2395-0072
© 2020, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 487
Table -1: Properties of Cement
Properties Value
Fineness of cement 6%
Grade of Cement OPC(43 grade)
Specific gravity of cement 2.90
Initial setting time 112
Final setting time 320
Normal Consistency 34%
4.2 Fine Aggregate
The natural fine aggregates are river sand is used.
Medium size sand of passing through IS sieve of size 4.75
mm.
Table -2: Properties of Fine Aggregate (River Sand)
Properties Value
Specific Gravity 2.44
Fineness Modulus 2.25
Water absorption 1.5%
4.3 Coarse Aggregates:
Crushed granite conforming to IS 383 – 1987 was used.
Coarse aggregate passing through 20mm and retained on
16mm sieve was used.
Table -3: Properties of Coarse Aggregate
Properties Values
Specific Gravity 3.125
Size of Aggregates 20mm
Fineness Modulus 5.96
Water absorption 2.0%
Impact Test 15.2%
Crushing Test 22.5%
4.4 Copper Slag
Copper slag is a by-product during copper smelting and
refining process. As refineries draw metal out of copperore,
they produce a large volume of non-metallic dust, soot, and
rock. Copper slag which is an industrial wasteobtainedfrom
smelting and refining process of copper from Strelite
Industry Ltd., Tuticorin, and Tamilnadu. Nearly 4 tons of
copper is obtained as waste is disposed to lands cause’s
environmental impacts. So it can be reused as concreting
materials.
Table -4: Properties of Copper slag
Chemical
Component
Percentage of chemical
Component
SiO2 37.26
Fe2O3 47.45
Al2O3 3.95
CaO 2.38
Na2O 0.65
K2O 2.62
Mn2O3 0.086
TiO2 0.33
SO3 2.75
CuO 1.12
4.5 Quarry Dust
Stone dust produced from stone crushing zones appears
as a problem for effective disposal. Hence in this work stone
dust is used in the concrete as partial replacement of the
sand. The main purpose of this work is to waste
minimization. The study focuses to determine the relative
performance of concrete by using stone dust.Stonedustwas
collected from local stone crushing units of Hoshangabad,
District, M. P. It was initially dry in condition when collected
from plant.
4.6 WATER
Water is an important ingredient of concrete. As general
guidance, if the water is fit for drinking and it is fit for
making concrete. Water containing a small sum of salt is not
suitable for concrete. pH is between 6 and 8 the water is
accepted to be suitable. The best way to use the waterfroma
particular sources and concrete is made. Concreteissuitable
for 7 and 28 days strength.
5. EXPERIMENTAL PROGRAM
The basic mix proportions were modified for using
Copper Slag and Quarry Dust as partial replacement for fine
aggregates. Six Concrete mixes with different of CS and QD
ranging from 0% to 45% were considered.
5.1 Fresh Concrete Tests:
5.1.1Workability (Slump test)
A slump of 25mm is generally provides good workability
of concrete. Throughout the project, no more extra amount
of water needed to get slump. Moisture content and
absorption of ingredients were taken into account for
calculating the amount of water needed. Table shows the
measured slump and the amount of water needed to obtain
the slump during the project.
Table -5: Workability of Concrete (M-25)
S.
No.
Percentage
of Variation
Slump in
(mm) Contain
Copper slag
Slump in (mm)
Contain stone
dust
1 0 65 65
2 15 68 85
3 30 85 115
4 45 105 135
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 07 Issue: 01 | Jan 2020 www.irjet.net p-ISSN: 2395-0072
© 2020, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 488
5.1.2 STRENGTH TESTING PROCEDURE
The standard size of concrete cube is 150mm X 150mm X
150mm and concrete beam of size 700mm X 150mm X
150mm and cylinder specimen of 150mm diameter and
300mm height were cast to determine the compressive
strength and flexural strength and split tensile test of the
concrete at 7 days and 28 days. The specimens were de-
mould after casting and they are cured for 7 days and 28
days.
Table7: Compressive Strength of M-25 concrete Mix contain
copper slag at Different curing stages
Percentage
replacement7 Days 14 Days 28 Days 50 Days
0% 17.53 22.70 29.10 39.68
15% 19.18 24.63 33.56 41.65
30% 16.43 21.10 28.75 37.65
45% 14.75 19.51 26.05 31.25
Chart -1: Compressive Strength of M-25 concrete Mix
contain copper slag at Different curing stages
6. CONCLUSIONS
From the study of partial replacement of copper slag and
quarry dust the following results are obtained.
1. The highest compressive strength was obtained
41.87 Mpa for a replacement of Fine Aggregate by
40%.
2. It is observed that the Split Tensile Strength of
concrete 7 to 28 Days is higher for 15% of
replacement fine aggregate by C.S and Q.D. Alsosplit
tensile strength is more than control mix in all %
replacement.
3. More over target strength has been obtained from
[30-40%] replacement ratio and a only gradually
decrease is seen in full replacement of FA.
4. Hence, both C.S and Q.D can be partially replace. The
use of natural sand without sacrificing strength.
7. SCOPE OF FUTURE WORK
1. This research was intended to discover the
influence of copper slag additions in concrete
elements for M25, and M30 mixes.
2. Copper slag & stonedust can be effectively replaced
in concrete applications such as making bricks,
hollow blocks and pavement blocks.
3. While copper slag has higher shear strengthvalueit
can be used for soil stabilization.
4. Copper slag can be substituted along with fly ash,
silica fume and granulated blast oven slag in
concrete and RCC members which can be tested for
mechanical actions.
REFERENCES
[1] Al jabri KS. Copper slag as fine aggregate for high
performance concrete, high performancestructuresand
materialsIII, WIT transactions on the built environment
vol.85.WIT press;2006,.381-9.
[2] Toshiki A, osamuk.konjis.Concrete withcoppersalgasa
fine aggregate ; j soc master scijpn 0;49(10); 1097-102
[3] Al jabriks, hisada m, al sandy ah, aloraimisk,
performance of high strength concrete with copper slag
as a fine aggregate construct build mater
2009;2316:2131-40
[4] D brindha and s. Nagan durability studiesoncopperslag
admixed concrete. Weiwu, weideZhang, guoweimu,
mechanical properties of copper slag reinforced
concrete under dynamic compression.
[5] Chandanasukesh,skatambararao,partial replacementof
sand with quarry dust in concrte, ISSN:2278-3075,
volume 2 issue 6.
[6] Dr. Pbsakthivel, an innovative method of replacingriver
sand by quary dust waste in concrete for sustainability.
[7] Strength and durablities of concrete containing quarry
dust as fine aggregate R.ilangovanN.mahendran and
k.magamnibpg no26 ARPN journal of engineering and
applied sciences.

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IRJET- An Experimental Study on Strength of Concrete with Partial Replacement of Sand by Stone Quarry Dust & Copper Slag

  • 1. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 07 Issue: 01 | Jan 2020 www.irjet.net p-ISSN: 2395-0072 © 2020, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 486 An Experimental Study on Strength of Concrete with partial Replacement of Sand by Stone quarry dust & Copper slag Ankur Jain1, Dr. Shubha Agarwal2 1Research Scholar, M. Tech(CTM), Department of Civil Engineering, LNCT, Bhopal 2Associate Professor & Head of the Department, Department of Civil Engineering, LNCT, Bhopal ---------------------------------------------------------------------***---------------------------------------------------------------------- Abstract - This work reports an experimental study to investigate use of Copper Slag and Quarry Dust as partial replacement of sand i. e. fine aggregate. The Copper Slag and Stone Quarry dust in concrete provides economic benefits as well as for all environmental related problems in industries. Due to the scarcity of fine aggregate for the preparation of mortar and concrete, partial replacement of Copper Slag and Stone quarry Dust with Fine aggregate have been attempted. Copper Slag is the by-product obtained during matte smelting and refining of Copper Slag at industrial level. The strength characteristics of conventional concrete and slag replaced concrete such as compressive strength, split tensile strength and flexural strength has to be determined. In this experimental study concrete were tested by adding Copper Slag and Quarry Dust to Fine aggregate in various percentages ranging from 0%, 15%, 30%, 45%, 40. M-25&M- 30 Grade concrete specimens were cured for 7 to 28 days and to be tested for compression strength, split tensile strength and flexural strength. Key Words: Copper slag, Quarry dust, concrete, compressive strength, split tensile strength, flexural strength. 1. INTRODUCTION Concrete is the most popular building material in the world. However, the production of cement has diminished the limestone reserves in the world and requires a great consumption of energy. River sand has been the most popular choice for the fine aggregate component ofconcrete in the past, but over use of the material has led to environmental concerns, the depleting of securable river sand deposits and a concomitant price increase in the material. Therefore, it is desirable to obtain cheap, environmentally friendly substitutes for cement and river sand that are preferably by products. Quarry dust has been proposed as an alternative to riversandthatgivesadditional benefit to concrete. Quarry dust is known to increase the strength of concrete over concrete made with equal quantities of river sand, but it causes a reduction in the workability of concrete. Granulated copper slag (or) copper slag which is a by- product of metallurgical operations in Sterile industries (India) Ltd., Tuticorin was used for the experimental investigation. For every tone of metal production, about 2.2 ton of waste slag is generated. Dumping or disposal of such huge quantities of slag cause environmental and space problems. During the past two decades, attempts have been made by several investigatorsandcopperproducingunits all over the world to explore the possible utilization of copper slag. The physical and mechanical properties of granulated copper slag shows that it can be used to make products like coarse and fine aggregates, cement, fill, ballast, roofing granules, glass, tiles etc. 2. NEED FOR REPLACEMENT OF FINE AGGREGATE Large scale efforts are required for reducing the usage of the raw material that arepresent,sothatlargereplacementis done using the various by-product materials that are available in the present day. The other material that can be used is quarry dust which is made while in the processing of the Granitestone into aggregates, this is formedasafinedust in the crushers that process the coarse aggregates, which is used a earthwork filling material in the road formations majorly. Many studiesare madewith several other materials which gave the concrete to be a material made of recycled material but the parameters thatareprimaryforthematerial was not satisfied. The properties of concrete in fresh and hardened state are studied in the various papers that are used as a reference for this. Some of the properties are workability, compressive strength are the major onethatare considered. 3. SCOPES AND OBJECTIVES 1. To investigate the effect of Copper Slag & Stone dust waste materials in concrete on its strength. 2. By utilizing the knowledge about the different parameter working out on the betterresultandsafeconcreteproduction with M-25 & M-30 grades of concrete. 3. To save the natural resource and cost optimization. 4. Better consumption of resources and providing maximum serviceability to concrete. 4. MATERIALS & METHODOLOGY 4.1 Cement Ordinary Portland Cement (53 Grade) with 28% normal consistency with specific surface 3300 cm2/gconforming to IS 8112-1989 is used.
  • 2. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 07 Issue: 01 | Jan 2020 www.irjet.net p-ISSN: 2395-0072 © 2020, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 487 Table -1: Properties of Cement Properties Value Fineness of cement 6% Grade of Cement OPC(43 grade) Specific gravity of cement 2.90 Initial setting time 112 Final setting time 320 Normal Consistency 34% 4.2 Fine Aggregate The natural fine aggregates are river sand is used. Medium size sand of passing through IS sieve of size 4.75 mm. Table -2: Properties of Fine Aggregate (River Sand) Properties Value Specific Gravity 2.44 Fineness Modulus 2.25 Water absorption 1.5% 4.3 Coarse Aggregates: Crushed granite conforming to IS 383 – 1987 was used. Coarse aggregate passing through 20mm and retained on 16mm sieve was used. Table -3: Properties of Coarse Aggregate Properties Values Specific Gravity 3.125 Size of Aggregates 20mm Fineness Modulus 5.96 Water absorption 2.0% Impact Test 15.2% Crushing Test 22.5% 4.4 Copper Slag Copper slag is a by-product during copper smelting and refining process. As refineries draw metal out of copperore, they produce a large volume of non-metallic dust, soot, and rock. Copper slag which is an industrial wasteobtainedfrom smelting and refining process of copper from Strelite Industry Ltd., Tuticorin, and Tamilnadu. Nearly 4 tons of copper is obtained as waste is disposed to lands cause’s environmental impacts. So it can be reused as concreting materials. Table -4: Properties of Copper slag Chemical Component Percentage of chemical Component SiO2 37.26 Fe2O3 47.45 Al2O3 3.95 CaO 2.38 Na2O 0.65 K2O 2.62 Mn2O3 0.086 TiO2 0.33 SO3 2.75 CuO 1.12 4.5 Quarry Dust Stone dust produced from stone crushing zones appears as a problem for effective disposal. Hence in this work stone dust is used in the concrete as partial replacement of the sand. The main purpose of this work is to waste minimization. The study focuses to determine the relative performance of concrete by using stone dust.Stonedustwas collected from local stone crushing units of Hoshangabad, District, M. P. It was initially dry in condition when collected from plant. 4.6 WATER Water is an important ingredient of concrete. As general guidance, if the water is fit for drinking and it is fit for making concrete. Water containing a small sum of salt is not suitable for concrete. pH is between 6 and 8 the water is accepted to be suitable. The best way to use the waterfroma particular sources and concrete is made. Concreteissuitable for 7 and 28 days strength. 5. EXPERIMENTAL PROGRAM The basic mix proportions were modified for using Copper Slag and Quarry Dust as partial replacement for fine aggregates. Six Concrete mixes with different of CS and QD ranging from 0% to 45% were considered. 5.1 Fresh Concrete Tests: 5.1.1Workability (Slump test) A slump of 25mm is generally provides good workability of concrete. Throughout the project, no more extra amount of water needed to get slump. Moisture content and absorption of ingredients were taken into account for calculating the amount of water needed. Table shows the measured slump and the amount of water needed to obtain the slump during the project. Table -5: Workability of Concrete (M-25) S. No. Percentage of Variation Slump in (mm) Contain Copper slag Slump in (mm) Contain stone dust 1 0 65 65 2 15 68 85 3 30 85 115 4 45 105 135
  • 3. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 07 Issue: 01 | Jan 2020 www.irjet.net p-ISSN: 2395-0072 © 2020, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 488 5.1.2 STRENGTH TESTING PROCEDURE The standard size of concrete cube is 150mm X 150mm X 150mm and concrete beam of size 700mm X 150mm X 150mm and cylinder specimen of 150mm diameter and 300mm height were cast to determine the compressive strength and flexural strength and split tensile test of the concrete at 7 days and 28 days. The specimens were de- mould after casting and they are cured for 7 days and 28 days. Table7: Compressive Strength of M-25 concrete Mix contain copper slag at Different curing stages Percentage replacement7 Days 14 Days 28 Days 50 Days 0% 17.53 22.70 29.10 39.68 15% 19.18 24.63 33.56 41.65 30% 16.43 21.10 28.75 37.65 45% 14.75 19.51 26.05 31.25 Chart -1: Compressive Strength of M-25 concrete Mix contain copper slag at Different curing stages 6. CONCLUSIONS From the study of partial replacement of copper slag and quarry dust the following results are obtained. 1. The highest compressive strength was obtained 41.87 Mpa for a replacement of Fine Aggregate by 40%. 2. It is observed that the Split Tensile Strength of concrete 7 to 28 Days is higher for 15% of replacement fine aggregate by C.S and Q.D. Alsosplit tensile strength is more than control mix in all % replacement. 3. More over target strength has been obtained from [30-40%] replacement ratio and a only gradually decrease is seen in full replacement of FA. 4. Hence, both C.S and Q.D can be partially replace. The use of natural sand without sacrificing strength. 7. SCOPE OF FUTURE WORK 1. This research was intended to discover the influence of copper slag additions in concrete elements for M25, and M30 mixes. 2. Copper slag & stonedust can be effectively replaced in concrete applications such as making bricks, hollow blocks and pavement blocks. 3. While copper slag has higher shear strengthvalueit can be used for soil stabilization. 4. Copper slag can be substituted along with fly ash, silica fume and granulated blast oven slag in concrete and RCC members which can be tested for mechanical actions. REFERENCES [1] Al jabri KS. Copper slag as fine aggregate for high performance concrete, high performancestructuresand materialsIII, WIT transactions on the built environment vol.85.WIT press;2006,.381-9. [2] Toshiki A, osamuk.konjis.Concrete withcoppersalgasa fine aggregate ; j soc master scijpn 0;49(10); 1097-102 [3] Al jabriks, hisada m, al sandy ah, aloraimisk, performance of high strength concrete with copper slag as a fine aggregate construct build mater 2009;2316:2131-40 [4] D brindha and s. Nagan durability studiesoncopperslag admixed concrete. Weiwu, weideZhang, guoweimu, mechanical properties of copper slag reinforced concrete under dynamic compression. [5] Chandanasukesh,skatambararao,partial replacementof sand with quarry dust in concrte, ISSN:2278-3075, volume 2 issue 6. [6] Dr. Pbsakthivel, an innovative method of replacingriver sand by quary dust waste in concrete for sustainability. [7] Strength and durablities of concrete containing quarry dust as fine aggregate R.ilangovanN.mahendran and k.magamnibpg no26 ARPN journal of engineering and applied sciences.