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The project describes the feasibility of using marble dust with partial replacement of cement. Total 42 cubes were casted by using marble dust with partial replacement of cement in various percentage of (5%, 10%, 15%, 20%, 25%, and 30%) and compressive strength test were done after 7 days and 28 days. 1.1 Main Ingredients
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PDF e-reader ... Raju, Billa. Subhan Ramji, V.V.S. Sarma " Exposure Effect of MgSo4 and Hcl on strength properties of ceramic waste powder by partial replacement with cement " International journal of ... Hassan A. Mohamadien " The effect of marble powder and silica fume as partial replacement for cement on mortar ...
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C. V.M shelke Prof. P.Y.pawde et alTo study the influence of partial replacement of cement with marble powder, and to compare it with the compressive strength of ordinary M30 concrete. and also trying to find the percentage of marble powder & silica fume replaced in concrete that makes the strength of the concrete maximum.
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This paper focus on the utilization of waste of Marble dust powder in concrete and enhancement of strength of concrete more economically. The Marble dust powder was added in M20 grade of concrete at (0%, 5%, 10%, 15%, 20%, 25% & 30%) with partial replacement by weight of cement.
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licensed under creative commons attribution cc by work is to determine the strength characteristics of concrete of m25 grade with partial replacement of cement by waste marble powder 5%, 10% and 15% and partial replacement of natural coarse aggregates with recycled coarse aggregates 15%, 30% and aggregate up to 45 percent, without affecting the .
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In the current research work, an attempt has been made to study the properties of high strength concrete using the blend of stone dust and Kadapa Marble Powder (KMP). In M60 grade mix of concrete, fine aggregates are partially supplanted with stone buildup and KMP is being added as a mineral admixture.
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Indeed, in this work, cement was partially replaced with marble powder at six different substitution levels, i.e. 5, 10, 15, 20, 25 and 30% by weight, with 1.5% adjuvant (super plasticizer) for each mixture. The samples prepared were then analyzed.
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Marble waste powder (MP) obtained from marble factories as a by-product resulted from marble cutting and shaping process was used as an additive to mixes. MP used was obtained in wet form as slurry; therefore it was dried in sun then manually sieved through sieve 0.3 mm. Limestone powder (LP) (pure calcite) from quarry wastes with particle
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Pawar M, Dewangan A. (2014). The Significance of Partial Replacement of Cement With Waste Marble. Powder. International Journal Online of Sports Technology & Human Engineering 3(1):1-6. Rai B, Naushad KH, Abhishek K, Rushad TS, Duggal SK. (2011). Influence of Marble powder/granules. in Concrete mix.
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PDF Partial Replacement of Cement with Marble Dust Powder Chandraprabha Sahu Engineering, Materials Science 2016 : 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. 126 PDF
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Darzi Musaib,Bhumre Shivkumar (2016) provide a review paper on "effective partial replacement of cement and sand with fly-ash and marble powder to make green concrete".In the experimental investigation, cement was replaced with fly ash in percentages of 5, 10 and 15 % and sand with marble powder in percentages of 20, 40 and 60 %.
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products (marble powder) and natural resources (limestone powder) as partial replacement of Ordinary Portland cement (OPC). The benefits of addition of supplementary materials to Ordinary Portland cement are well documented. ... marble dust at 15% substitution was found considerably less than that of concrete with 0% marble powder (Houari et al ...
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Partial replacement of cement by varying percentage of marble powder reveals that increased waste marble powder (WMP) ratio result in increased strengths of the mortar and concrete .Leaving the...
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Jan 1, 2022The utilization of marble dust powder (MDP) as cement replacement was studied in [12]. The cement was partially replaced with MDP up to 20% by weight with an increment of 5%. ... ... Authors in...
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In this study, self- compacting concrete was obtained using (marble dust waste) which replaced 15% cement, and kaolin which replaced 10% concrete waste. with the main element calcium oxide (CaO) and containing (SiO) can be used as an additive or partial replacement of cement in the manufacture of concrete and kaolin can be obtained ...
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"Strength and Durability of Recycled Aggregate Concrete Containing Milled Glass as Partial Replacement for Cement." Construction and Building Materials 29 (April 2012): 368-377. doi: 10.1016/jnbuildmat.2011.10.061. Taha, Bashar, and Ghassan Nounu. "Utilizing waste recycled glass as sand/cement replacement in concrete."
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the strength development of calcined products, it can be used as partial replacement of cement. The present paper deals with the experimental investigation on mechanical properties of partially cement replaced phosphogypsum concrete using0%, 2.5%, 5%, 7.5%, 10%, 12.5%, 15%, 17.5%and 20% replacement with M25 grade concrete with
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These results are indicated that MP can be used as partial replacement for cement mortar using m-sand in the range of 15 to 20% KEYWORDS: Manufactured Sand (M.S), CSH Gel Formation, Cement Mortar, Marble Power (RHA), Fine Aggregate (F.A) INTRODUCTION
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With the inclusion of Marble powder the strength of concrete gradually increases upto a certain limit but the gradually decreases. 2. With the inclusion of Marble powder upto 10% the init ial strength gain in concrete is high. 3. At 10% there is 12% increase in initial compressive strength for 7 days 4.
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20%). The effect of the partial replacement of cement with marble powder on the consistency of the concrete mixes was studied by slump test. The effect of using marble powder on hardened concrete properties at different ages (7, 28, 56 and 90 days) was studied. The samples were mixed and cast in steel cubes (100
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Figure 2: Compressive Strength of Mortar Mix (1: 3) with Partial Replacement of Marble Waste Powder in Cement Figure 3: Compressive Strength of Mortar Mix (1: 3) with Partial Replacement of Marble Granules in Sand 3.2 Concrete Mix 3.2.1Workability It is observed here that degree of workability is medium as per IS 456-2000. The slump
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Concrete mixtures were tested and compared in terms of compressive strength of the conventional concrete at 14 days and 28 days. The aim of this research study is to study the behavior of concrete durability in comparison by partial replacement of cement with MDP. Keywords: Cement Concrete, Industrial Waste, Marble Waste, Ceramic Waste
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To Study The Partial Replacement Of Cement By FA & RHA And Natural Sand By Quarry Sand In Concrete IOSR Journal of Mechanical and Civil Engineering, 2014, 11, 61-68 Rinki .K. Khot, R. S. Deotale, Abhijeet .R. Narde
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strength of slurry infiltrated fibrous concrete when waste marble powder is added as filler. 3. Investigating the optimum percentage of WMD in concrete production. 2. Materials and Methodology ... mix consisted of partial replacement of cement with different percentage of slag (15, 30, 45%, 60% & 75%) for getting an
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replacement of Cement with Waste Marble Powder Partial replacement of cement by varying percentage of marble powder reveals that increased waste marble powder (WMP) ratio result in increased strengths of the mortar and concrete Thus they found out the optimum percentage for replacement of MDP with cement and it is almost 12.5 % cement for both ...
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[27] Dhanalaxmi C, Nirmalkumar K. Study on the properties of concrete incorporated with various mineral admixtures-Limestone powder and marble powder (review paper). International Journal of Innovative Research in Science, Engineering and Technology, 2015;4(1): 18511-18515.
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Marble powder material (MP) is a very fine powder, obtained as a by-product of marble during the sawing and the shaping, and not recycling it due to environmental problems in the world.The possibility of using it and silica fume (S.F)... more, Publication Date: 2020,
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marble waste as partial replacement of cement will be introduced. Previous studies showed, Figure 5, that the mechanical properties of concrete mixtures are influenced when marble waste is incorporated. Ergün [3] observed that replacing 5% of the cement content by marble powder results in increasing the compressive strength of concrete by ...
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P.A. Shirulea (2012) researched on Partial replacement of cement with marble dust powder he found the Marble Stone slurry generated during processing corresponds to around 40% of the nal product from stone industry. His research was related to the stone industry present an annual output of 68 million tons of processed products. He also
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Partial replacement of cement with marble dust powder for making of cement concrete with 0.40 water cement ratio. Compressive strength, split tensile strength and flexural strength of concrete are tested at 1, 28 and 90 days. Test result shows that the strength increases up to 15 % replacement of cement then strength decreases.
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A distinctive study was undertaken by Abhishek and Pradeep to examine the effect of partial replacement of sand with granite quarry dust and cement with marble powder in concrete. The results indicated that the compressive strength increased gradually by adding up to 10% replacement of cement with marble powder and 20% replacement of fine ...
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Aliabdo, A.A. et al. [5] studied the effect of partially replacing cement by marble slurry for two water binder (w/b) ratios 0.40 and 0.50. Increase in compressive strength for up to 7.5% replacement for w/b ratio 0.5 and slight increase in compressive strength for up to 10% replacement for w/b ratio 0.40 was reported.
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An experimental study on high-performance concrete made with granite powder as fine aggregate and partial replacement of cement with admixtures subjected to water curing was carried out. The percentage of granite powder added by weight was 0, 25, 50, 75 and 100% as a replacement of the sand used in concrete and cement was partially replaced ...
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Five concrete mixtures containingud 0%, 5%, 10%, and 20% MDP as cement replacement by weightbasis has been prepared. Water/cement ratioud (0.43) was kept constant, in all the concretemixes. Compressive strength, split tensile strength & flexuralud strength of the concrete mixtures has been obtainedat 7 and 28 days.
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Abstract The current study involves the partial replacement of cement (varying proportion) with marble powder (4, 8%, 12% and 16%) and glass powder (4, 8%, 12% and 16%) to generate sustainable concrete. The Slump Test, Compressive Strength Test, Split Tensile Strength Test and Flexural Strength Test were carried out and the results were collected.
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Stuided partial replacement of cement with 10% marble dust proved to reduce CO2 emissions by 9% (Arel, 2016). The use of 20% marble dust as an alternative to sand improved the mechanical and durability aspects of concrete (Sardinha et al., 2016). Reported partial replacement of cement by 15% sand with marble dust in concrete proved to be effective
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Various percentage of basalt as a partial replacement weight percentage of ordinary Portland cement by 7.5%, 15%, and 22.5% is carried out. effect of basalt on workability, setting time, compressive strength, modulus of elasticity, tensile strength, flexural strength, and water absorption were conducted.
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Tayeh BA (2018) Investigation of the effect of marble, timber, and glass powder as a partial replacement of cement. J Civ Eng Constr 7(02):63-71. Article Google Scholar Hossain KMA (2006) Blended cement and lightweight concrete using scoria: Mix design, strength, durability, and heat insulation characteristics.
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In preparation of ceramic waste cement composition, natural was partial replaced with ceramic powder waste ceramic insulator and exposed to the 1,3,5%% mg so4 and hcl in curing period. Due to the influence of mgso4 and hcl compressive strength loss and weight loss of the concrete specimens were observed in the experimentation work.
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a small proportion of Portland cement [4]. Marble powder has higher density and it is assumed that this would improve the segregation resistance of the self-compacting concrete. Corinaldesi et al. [5] mentioned that high fineness of marble powder is proved to be very effective in assuming very good cohesiveness of mortar and concrete.
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