concrete. Nitisha and Kumar [6] examined the use of marble powder as partial replacement in cement con-crete. They used 10% marble powder as replacement for cement and reported that increase in marble powder would signi cantly decrease the workability of concrete. Replacement of cement and sand with marble powder

In this paper cement is replace by marble powder the research is carried out by using M25 grade concrete with replacement of 5%, 10%, 15% marble powder by cement in addition of 50% replacement of normal sand by bore well sand and is carried out to determine the optimum percentage of replacement at which maximum compressive Strength, split ...

PARTIAL REPLACEMENT OF FINE AGGREGATES WITH QUARRY DUST AND MARBLE POWDER IN CONCRETE MERUVALA BHOPAL1, M.LAKSHMI2 1PG Student, Dept of CIVIL Engineering, SITE, Tirupati, AP, India. 2Assistant Professor, Dept of CIVIL Engineering, SITE, Tirupati, AP, India. Abstract- Quarry dust and Marble powder are the

incorporating marble powder as partial sand substitute. Corinaldesi et al. (2010), found that at same workability, marble powder showed high strength at 10% sand substitution. This research aims at utilization of waste marble powder and quarry dust in concrete as partial replacement of sand.

When the partial replacement of sand with marble waste and scoria increased from 33 to 67%, the concrete strength for all mix, improved by 27% (11.56 MPa), 28.7% (12.5 MPa), 24.3% (9.94 MPa) for the mix 5, mix 6 and mix 7 respectively when compared to the control mix. ... Berhanu N (2018) Utilization of waste marble powder as partial ...

Use of marble waste powder shows a great performance due to the efficient micro filling ability 4. it, marble powder when replacing with sand up to …

of using marble powder waste as partial replacement of fine aggregate in concrete. Since this concrete is prepared with marble powder as a partial replacement of fine aggregate (Sand) in four different proportions i.e. 10%, 15 %,20% and 25 % and tested for the period of …

river sand. Quarry dust and Marble powder contains similar properties as that of river sand and hence accepted as a building material. The present paper focuses on investigating maximum percentage replacement of river sand by Quarry dust and Marble powder in varying equal percentages 0%, 10%, 20%, 30%, 40%, 50%, and 60% for M25 mix designations.

powder and quarry sand as partial replacement of cement and fine aggregate in concrete and comparing it with conventional concrete. This experimental investigation is carried out in three phases in 1st phase M20 grade of concrete is produced by replacing cement with …

Different mixes was testing was also conducted by using a 100kN capacity prepared by using a different percentage of marble powder electrically operated flexural testing machine at a (0%, 10%, 10% and 20%) namely MX0, MX1, MX2& MX3 displacement rate of 0.05 mm/sec. Water absorption test was as a partial replacement in the cement sand mix, where ...

STUDY OF MARBLE POWER AS PARTIAL REPLACEMENT FOR CEMENT MORTAR USING M-SAND GLADWIN ALX. A 1, BASKAR. R2 & GANAPATY CHETTIAR 3 1Resarch Scholar, Department of Civil and Structural Engineering, Annamalai University, Chidambaram, Tamil Nadu, India 2Associate Professor, Department of Civil and Structural Engineering,

20% marble powder dust as partial replacement of cement and sand together and also MX3 with 15% marble powder as partial replacement of sand, MX4 with 15% marble powder dust as partial replacement of cement and MX6 with 30% marble powder dust as partial replacement of cement and sand together. S.No. Characterist ics Specified value as per IS ...

characteristics of concrete using marble dust powder as a partial replacement of cement. T h e Dissertation work is carried out with M 30 grade concrete for which the marble powder is replaced by 0%, 5%, 10%, 15%, 20% by weight of cement. For all the mixes compressive, flexural and split tensile

12%When the partial replacement of sand with marble waste and scoria increased from 33 to 67%, the concrete strength for all mix, improved by 27% (11.56 MPa), 28.7% (12.5 MPa), 24.3% (9.94 MPa) for the mix 5, mix 6 and mix 7 respectively when compared to the control mix. ... Berhanu N (2018) Utilization of waste marble powder as partial ...

Nitisha Sharma and Swami Dyal, (2015). Use of Marble Powder as Partial Replacement in Cement Sand Mix. International Journal of Engineering Science and Research Technology, vol. 4, Issue 05, PP 501-504. [14] Nutan C. and Jayeshkuma P., (2013). A Technical Study on Quarrying and Processing of Marble and Its Waste Incorporating With Concrete.

10% marble powder as partial replacement of cement and MX3 with 15% marble powder as partial replacement of sand, MX4 with 15% marble powder as partial replacement of cement and also MX5 with 20% marble powder as partial replacement of cement and sand together and MX6 with 30% marble powder dust as partial replacement of cement and sand ...

Partial Replacement of Cement with Marble Dust Powder. : In this project we have made fly ash cement bricks with variations in its percentage of composition. The project describes the use of local fly ash in construction industry in a way to minimize the industrial waste. The aim of this project is to find that percentage of composition by ...

Marble powder was used as partial replacement of sand and cement at 0, 25, 50, 75 and by [6] and [7] with 10% fly ash, 10 %slag, 7.5% silica fume and 1% …

This study aims to evaluate concrete having Waste Marble Powder (WMP) as partial replacement of cement. Marble is the metamorphic form of limestone (CaCO 3) and WMP was chosen as substitute of cement on account of its high calcium oxide content.WMP is by-product of marble industry and is an environmental burden.

6) D.suji experimental study on concrete using waste marble powder and quarry dust as partial replacement of cement and fine aggregate" ISSN:2348-7607. Volume 3 - sep. 2016 Ramya raju partial replacement of cement by with marble powder in concrete" ISSN: 2347- 2812 Apr. 2016

Partially Replacement On Sand Using Morble Powder Henan Partial Substitution Of Sand And Cement With Waste MarbleOct 31, 2021 · Abstract. This paper introduces the study on self-compacting concrete (SCC) using waste marble powder (WMP) as a partial substitution of sand along with waste limestone dust (WLSD) as a partial substitution for cement ...

In order to evaluate the effects of the marble powder on mechanical behaviour, many different mortar mixtures were tested, all prepared with sand to cement ratio of 3:1 at about the same workability.

of marble powder the compressive strength gradually de-creases. b) Compressive strength of 5% marble powder partially re-placed with fine aggregate at 28 days water curing is c) Partial replacement of fine aggregate with marble powder in a concrete mix boosts the compressive strength of con-crete.

describes the feasibility of using the marble sludge dust in concrete production as partial replacement of cement. In INDIA, the marble processing is one of the most thriving industry the effects of varying marble dust contents on the physical and mechanical properties of fresh and hardened concrete have been investigated.

Vaidevi C (2013) Study on marble dust as partial replacement of cement in concrete .ISSN 2319 – 7757.PP14-16. ... of Cement and Sand within …

Marble Powder As A Partial Replacement Of Sand. 1454 Words6 Pages. V. CONCLUSION From the test results it is clearly evident that granite powder as a partial replacement of sand proves to be beneficial when Durability properties of Concrete is considered. Durability of Concrete using Granite Fines is almost same as that of reference mix (GF0 ...

The use of industrial by-products like coal ash, waste plastics, rubber tire scrap, waste glass, foundry sand, marble powder and so forth in place of cement, sand can lead to sustainable development.

From this figure, it can be seen that the ratio between tensile and compressive strength increases with the increase of marble dust content as a partial replacement of cement. This ratio ranges from 7.86% to 12.45%. In case of using marble dust as a partial replacement of sand; this ratio ranges from 7.86% to 10.39%.

using waste marble powder as partial replacement of cement and sand. Keywords: Waste marble powder, concrete, compressive strength, flexure strength, split-tensile strength, workability, durability. I. INTRODUCTION. Marble is obtained from the transformation of pure limestone. The purity of marble depends upon the colour of the marble.

5. • Marble is industrially processed by being cut, polished, and used for decorative purposes, and thus, economically valuable. • In marble quarries, stones are cut as blocks through different methods • During the cutting process, 20-30% of a marble block becomes waste marble powder.Marble powder is a waste material generated in ...

But the split tensile strength decreased for the mix which contains 20 % marble powder dust against cement (10%) and sand (10%) by 11%. Hence result shows that marble powder when mixed with sand and cement together has low split strength as compared to the replacement of marble waste in cement and sand individually. 3.3 Durability.

Sep 01, 2016 · The concrete mix made using granite powder (GP) and iron powder (IP) as partial replacement of sand showed good workability and fluidity similar to normal concrete mixes. 2. The compressive strength of concrete increased with the addition of granite powder (GP) as partial replacement of sand.

Study of Partial Replacement of Cement by Marble Powder 1Ramya Raju, 2Geetha K. Jayaraj, 3Abuzar Aftab Shaikh Department of Civil Engineering, Shivajirao S. Jondhle College of Engineering and Technology, Asangaon Abstract- This paper presents the study of concrete mix design using marble powder. The disposal of marble

This paper introduces the study on self-compacting concrete (SCC) using waste marble powder (WMP) as a partial substitution of sand along with waste limestone dust (WLSD) as a partial substitution for cement in addition to sugarcane molasses as an admixture. The study focuses on the assessment of plastic and hardened properties of this SCC.

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