• Compressive Strength of Concrete Made with Quarry

    Ephraim M E, RowlandLato E O Compressive Strength of Concrete Made with Quarry Rock Dust and Washed 10mm Washed Gravel as Aggregates American Journal of

  • Compressive Strength Of Concrete While Use Quarry

    minimum compressive strength of sand bricks concrete COMPRESSIVE STRENGTH OF CONCRETE USING advantage of quarry dust in concrete as load bearing bricks class 1 with minimum compressive strength of 7 N/mm2 while

  • Research Article Study on Compressive Strength of

    replaced concrete For % quarry dust concrete workability is and for % replacement of quarry dust concrete compacting factor was observed (d) e compressive strength results of quarry dust concrete (cubes) were obtained in the fourth series, where M, M, and M grades of concrete with , , and

  • Cited by: 22
  • [PDF] COMPRESSIVE STRENGTH OF CONCRETE USING

    Samples of concrete (eg cubes) were made using varying contents of laterite and quarry dust as fine aggregate The quantity of laterite was varied from 0% to 100% against quarry dust at intervals of 25% The samples were cured for specified periods and tested in the laboratory for compressive strength

  • Study on Compressive Strength of Quarry Dust as Fine

    Abstract
  • A STUDY OF COMPRESSIVE STRENGTH OF CONCRETE

    Comparing the compressive strength at 28 days between concrete mixing with quarry dust and sand, the maximum compressive strength is 407 ksc for concrete mixing with 70% of quarry dust while the normal concrete has value of 348 ksc From this research,

  • Analysis of Concrete Made from Quarry Dust

    when the percentage of the quarry dust increase from 0% to 15% and slightly decreased with 20% replacement at 50 days Keywords— Compressive Strength, Flexure Strength, Quarry Dust, Split Tensile Strength, Workability I INTRODUCTION The main Ingredients of conventional concrete are cement, sand and aggregate

  • Author: Gourav Soni, Anil Kumar Saxena, Fouziya Qureshi
  • [PDF] Use of Quarry Dust to Replace Sand in Concrete

    This experimental study presents the variation in the strength of concrete when replacing sand by quarry dust from 0% to 100% in steps of 10% M20 and M25 grades of concrete were taken for study keeping a constant slump of 60mm The compressive strength of concrete cubes at the age of 7 and 28 days were obtained at room temperature Also the temperature effect on concrete cubes at 100 o C on

  • An Experimental Study on Inhibitors in Quarry Dust

    concrete is to be replaced with quarry dust in the range of 25%, 50%, 75% and 100% The Compressive strength, flexural strength, split tensile strength and bond strength are to be taken for all the ranges of replaced quarry dust and best is taken for further studies 1% of diethanolamine and

  • (PDF) Compressive Strength of Concrete Using

    The data for 28day compressive strength of concrete with the proportion of 25% laterite: 75% quarry 43 Variation of compressive strength of concrete with age dust, 1:15:3 mix and 054 water/cement ratio were fitted The relationship between strength and age of by different trend models, namely: linear, polynomial and concrete using lateritic

  • Stone Dust in Concrete: Effect on Compressive Strength

    S Shetty, 2013) The compressive strength of concrete from stone powder showed 1476% higher value than that of the concrete made of normal sand (Mahzuz et al, 2011) It is found that the compressive and flexural strength of concrete made of Quarry Rock Dust are nearly 10% more than the conventional concrete (Suribabu et al, 2015) In the present

  • An Experimental Study on Inhibitors in Quarry Dust

    concrete is to be replaced with quarry dust in the range of 25%, 50%, 75% and 100% The Compressive strength, flexural strength, split tensile strength and bond strength are to be taken for all the ranges of replaced quarry dust and best is taken for further studies 1% of diethanolamine and

  • Partial Replacement of Sand by Quarry Dust in Concrete

    4 [5]According to the value of compressive strength collected, the value is high and it show that quarry dust suitable to use as sand replacement All the value of compressive strength surpasses the minimum value of compressive strength for normal concrete that is 7N/mm So, quarry dust can apply as sand replacement in

  • Properties of Micro Fine Quarry Dust Concrete

    While, Quarry dust (QD) defined as the material less than 4 mm machine *Corresponding author: Nur Hanani Abdul Rahim From figure 2 and 3, the compressive strength of OPC concrete for both w/b ratios were higher than the compressive strength of MFQD concrete It

  • Use of Quarry Dust as fine aggregates by Partial

    Keywords: Quarry dust, Sand, Concrete, Compressive strength INTRODUCTION: Quarry dust is a byproduct of the crushing process which is a concentrated material to use as aggregates for concreting purpose, especially as fine aggregates In quarrying activities, the rock has been crushed into various sizes; during the process the dust generated

  • Use of Quarry Fine as Partial Replacement of Concrete

    The use of quarry dust in concrete according to Chaturanga et al,[7] is desirable because of the benefits such as useful disposal of a byproduct, reduction of river sand consumption and increase in strength Quarry dust has rough, sharp and angular particles, and as such causes a gain in strength

  • Improved Concrete Properties Using Quarry Dust as

    Quarry dust has been proposed as an alternative to river sand that gives additional benefit to concrete Quarry dust is known to increase the strength of concrete over concrete made with equal quantities of river sand The Compressive strength of quarry dust concrete continues to increase with age for all the percentage of quarry dust contents

  • GEOPHYSICAL USE OF QUARRY DUST (AS ADMIXTURE)

    Quarry dust can be used as a substitute for sand to improve the properties of lateritic soil Soosan et al (2001b) Sridharan et al (2005), conducted studies on the effect of quarry dust on the geotechnical properties of soil used in highway construction and concluded that the CBR value steadily increased with increase in percentage of quarry

  • HIGH EARLY STRENGTH OF SELFCONSOLIDATING

    the early strength of selfconsolidating concrete incorporating QuaSiRHA was investigated in this study which the QuaSiRHA are the combination of Quarry Dust (Qua), Silica Fume (Si) and Rice HuskAash (RHA) Quarry dust had been use as partial fine aggregate replacement

  • Comparative Study of Conventional Concrete Strength

    4 Mix ratio of 1:1:2 (cement: aggregate : sand+ quarry dust) gives better strength as compared to mix ratio of 1:15:3 and can be declared as optimum mix ratio of compressed concrete using quarry dust V FUTURE SCOPES The compressive strength value is high up to some limit and it show that quarry dust suitable to use as sand replacement

  • Use of Quarry Fine as Partial Replacement of Concrete as

    Concrete with quarry dust as fine aggregate In a study in Thailand by Khamput [11] on the compressive strength of concrete using quarry dust as fine aggregate and mixing with admixture type E, it was found that with 70% quarry dust the concrete produced compared well with normal concrete He recommended quarry dust for

  • Strength and Durability Properties of Concrete Containing

    concrete admixture After 7 days of curing, at maximum load, 1378 N/mm2 was recorded for the control specimen as compressive strength while the cube with 80 % dust recorded 1601 N/mm2 at maximum load as average compressive strength respectively, giving rise to an increment of 1643 % of the compressive strength of the control specimen Also

  • An Experimental Study on Inhibitors in Quarry Dust

    concrete is to be replaced with quarry dust in the range of 25%, 50%, 75% and 100% The Compressive strength, flexural strength, split tensile strength and bond strength are to be taken for all the ranges of replaced quarry dust and best is taken for further studies 1% of diethanolamine and

  • Use of Quarry Fine as Partial Replacement of Concrete

    The use of quarry dust in concrete according to Chaturanga et al,[7] is desirable because of the benefits such as useful disposal of a byproduct, reduction of river sand consumption and increase in strength Quarry dust has rough, sharp and angular particles, and as such causes a gain in strength

  • Properties of Micro Fine Quarry Dust Concrete

    While, Quarry dust (QD) defined as the material less than 4 mm machine *Corresponding author: Nur Hanani Abdul Rahim From figure 2 and 3, the compressive strength of OPC concrete for both w/b ratios were higher than the compressive strength of MFQD concrete It

  • amranfresno: AN INVESTIGATION ON EFFECT OF

    different proportion of quarry dust in foam concrete Tests were conducted on cubes and beams to study the strength of concrete made of quarry dust and results were compared with the control foam concrete It is found that the compressive and flexural strength of foam concrete made of quarry dust are nearly 40 % more than the control foam

  • Strength and Durability Properties of Granite Powder

    for the use of Quarry Rock Dust as fine aggregate in Concrete Manufacturing Thus, it can be concluded that the replacement of natural sand with Quarry Rock Dust, as full replacement in concrete is possible B B Patel (et al 2012) [6] The compressive strength of concrete increases with increase in HRM co ntent up to 75% Thereafter there is

  • HIGH EARLY STRENGTH OF SELFCONSOLIDATING

    the early strength of selfconsolidating concrete incorporating QuaSiRHA was investigated in this study which the QuaSiRHA are the combination of Quarry Dust (Qua), Silica Fume (Si) and Rice HuskAash (RHA) Quarry dust had been use as partial fine aggregate replacement

  • GEOPHYSICAL USE OF QUARRY DUST (AS ADMIXTURE)

    Quarry dust can be used as a substitute for sand to improve the properties of lateritic soil Soosan et al (2001b) Sridharan et al (2005), conducted studies on the effect of quarry dust on the geotechnical properties of soil used in highway construction and concluded that the CBR value steadily increased with increase in percentage of quarry

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