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From our study it is concluded that different Crushed sand gives different results for compressive strength depending on different quarries and from study of different research paper at 40% to 50% replacement of crushed sand the maximum compressive strength is obtained. The maximum tensile strength of concrete is obtain at 60% and 70% ...
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This paper presents findings on the geomorphic effects of sand mining in the ephemeral River Tyaa channel in Kitui County. The study adopts the concept of feedback response mechanism of a natural geomorphic system. Through purposive sampling River Tyaa was selected for the study, where rampant sand mining was reportedly taking place.
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Use of Quarry Dust to Replace Sand in Concrete ... International Journal of Scientific and Research Publications, Volume 3, Issue 12, December 2013 3 ISSN 2250-3153 60:40 Figure : 5.1 Compressive strength of concrete 50:50in 7 days Figure : 5.2 Compressive strength of concrete in 28 days ...
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In total, eight full-scale test sections, including one conventional flexible pavement with no QB as the control section, were constructed over a subgrade with an engineered strength of 6% California bearing ratio. The test sections were stabilized with either 3% Type I Portland cement or 10% Class C fly ash by dry weight.
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The optimum river sand replacement percentage is found to be 25% as compared to other percentage of 50% and 75%. The strength of hardened concrete in compression get reduced when the dosage of the dust is increased beyond the level of 25%, the concrete do not found to consist of more strength.
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The paper here presents utilization of RSDW (Reclaimed sand dust Waste) in fly ash as a replacement material of fly ash. RSDW is replaced with fly ash in different proportions like 20%, 40%, 60%, 80%, and 100%. In this paper detail discussion of compressive test and result is represented.
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This study shows the comparative analysis engineering, the physical and mechanical properties of river sand concrete with quarry dust concrete. The selected materials were batched by weight and volume. The water-cement ratio was opted as 0.50 1:2:4 for mix ratio was selected for the experimental investigation, respectively. The specimens were cured for 7, 14, 21 and 28 days.
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Using quarry waste as a substitute of sand in construction materials would resolve the environmental problems caused by the large-scale depletion of the natural sources of river and mining sands. This paper reports the experimental study undertaken to investigate the influence of partial replacement of sand with limestone waste (LSW), with ...
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For this purpose nine trial mixes were prepared, where the percentage replacement of river sand by quarry waste was 0%, 10%, 20%, 30%, 40%, 50%, 70%, and 100% to study the flowability characteristics of SCC. In all, 108 cube samples and 54 cylindrical samples were cast to study the strength parameters of SCC with and without quarry waste.
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The main parameter investigated in this study is M30 grade concrete with replacement of sand by granite powder by 0, 25 and 50% and cement was partial replacement with silica fume, fly ash, slag and super plasticizer. This paper presents a detailed experimental study on compressive strength, split tensile strength 28, 56 and 90 days.
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A static pipe-bursting experiment was performed in sand and gravel within an 8-m-long, 8-m-wide, and 3-m-deep test pit to quantify the ground displacements from pipe bursting. An existing unreinforced concrete pipe buried 1.385 m below the ground surface was replaced with a high-density polyethylene pipe.
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environmental friendly cement sand containing palm oil clinker. In this research, the effects of using different percentage of palm oil clinker as partial sand replacement in cement sand were investigated. Furthermore, the properties of this newly developed palm oil clinker cement sand was determined. 2.
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Journal Paper: Paper Title : Mechanical properties of M25 & M30 Grade Light weight Concrete with Quarry dust as Replacement . Author:Chinnakotti Sasidhar, Vinodh Kumar Balaji, P Seshadri Article Citation:Chinnakotti Sasidhar,Vinodh Kumar Balaji,P Seshadri, (2018 ) " Mechanical properties of M25 & M30 Grade Light weight Concrete with Quarry dust as Replacement ", International Journal of ...
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crushed stone very fine sand', ACI material journal vol.86, No. 4, pp, 417-424 [2] F.A. Olutoge (2010), 'Investigations on saw dust and palm kernel shells as aggregate replacement', ARPN Journal of Engineering and Applied Sciences Vol. 5, No. 4, pp,7-13 [3] IS: 10262 (1981) 'Code of practice for IS Method of
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Paper ID : IJERTV5IS020352 ; Volume & Issue : Volume 05 ... together with the replacement of river sand by Manufacture sand in various proportions. ... R.S.Deotale, Abhijeet R.Narde (2014)To study the partial replacement of cement by GGBS & RHA and natural sand by quarry sand in concrete IOSR Journal of mechanical and civil engineering vol 11 ...
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Only the fine aggregate (sand) content was changed, whereby the sand was replaced by CS at an incremental rate of 20% by weight from 0% to 100%, corresponding to 0 kg to 820 kg of CS per unit volume of the concrete mix. For example, Mix 3 consisted of 492 kg of sand and 328 kg of CS, whereby, 40% of the sand was replaced with CS. 3.3.
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1. M. P. Brown and K. Austin, The New Physique (Publisher Name, Publisher City, 2005), pp. 25- 30. Google Scholar; 2. K. Subramanian et.al,. An Experimental Study on Usage of Quarry Dust As Partial Replacement For Sand In Concrete And Mortar ", Australian Journal of Basic and Applied Sciences, Vol. 7(8), 2013, PP 955- 967. Google Scholar
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Also, the use of quarry dust as the fine aggregate decreases the cost of concrete production in terms of the complete replacement for natural river sand. This paper reports the experimental study which investigated the influence of 100% replacement of sand with quarry dust.
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Improved Concrete Properties Using Quarry Dust as Replacement for Natural Sand Ijerd, Hamid Mir Anzar Published 2015 Materials Science Concrete plays a major role in the construction industry. Natural sand is a prime material used for the preparation of concrete and also plays an important role in Mix Design.
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This paper presents the results of the experimental work conducted to study the effect of quarry waste on self-compacting concrete containing binary cementitious blends of fly ash and cement. For this purpose nine trial mixes were prepared, where the percentage replacement of river sand by quarry waste was 0%, 10%, 20%, 30%, 40%, 50%, 70%, and 100% to study the flowability ...
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Chandana Sukesh in his study published in the International Journal of Innovative Technology and Exploring Engineering in May 2013 says that the ideal percentage of the replacement of sand with the quarry dust is 55 per cent to 75 per cent in case of compressive strength. He further says that if combined with fly ash (another industrial waste ...
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An Experimental Study on Replacement of Fine Aggregate with Quarry Dust Mohammed Arbaz Khan, S. Zubairuddin, Mohd Arfath Khan Abstract The rapid growth in development of construction industry is leading to an increase in utilization of natural resources like river sand due to which there has been a much scarcity in availability for construction.
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Conventional concrete of grade M40 was considered for comparison. 100% replacement of fine aggregate in which 75% quarry dust and 25% granite fines combination achieved 40MPa strength at 28day age. Hence the study concludes over extraction of natural sand from river beds can be reduced by replacing it with quarry dust and granite fines with ...
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This studyis planned to make concrete totally replacing river sand with the quarry dust considering the fine fraction of quarry dust present for partial replacement of cement.Concrete of M30 grade has been designed by usingfines removed coarser quarry dust as fine aggregate.
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The concrete cubes are prepared by using replacement of 10%, 20%, and 30% of quarry dust. These cubes are tested for compressive strength at 3, 7 and 14 days. Three cube specimens were tested at 3, 7, and 14 days in each percentage and obtained the compressive strength. 6. Testing of Material 6.1. Specific Gravity for Quarry Dust Material
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This research presents the findings of experimental works in terms of mechanical properties and crack profile of cement composites containing quarry dust at different percentages as a partial sand replacement. The compositions of quarry dust were varied from 10 to 20 wt. % and were mixed into five different ratios. It was found that 0.45 water cement ratio was suitable to mix all proportions ...
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presented in this paper reports an investigation on ... cement with FA and RHA. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395 -0056 Volume: 03 Issue: 02 | Feb-2016 p-ISSN: 2395-0072 ... quarry dust as partial replacement of sand in concrete." [2] Manguriu,G.N kargu C.K Oyawa,W.O.abuodha,S.O ...
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Lohani T.K., Padhi M., Dash K.P., Jena S. (2012): Optimum utilization of quarry dust as partial replacement of sand in concrete. International Journal of Applied Sciences and Engineering Research, 5: 391-404.
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Performance Studies on Utilization of Ceramic Waste Tile and Quarry Dust as Partial Replacement of Gravel and Sand in Concrete Call for Papers Volume-6 | Issue-5 Last date : 27-Aug-2022 Best International Journal
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N2 - This paper reports an experimental study undertaken to investigate the utilisation of quarry waste as partial replacement of sand in the development of high-strength concrete (HSC) containing rice husk ash (RHA). HSC mixes were designed using water-binder ratio of 0.30 to achieve 70 MPa at 28 days.
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From these results, it was found that optimum Quarry Dust and Recron-3S fibres 20 % and 1.5 % respectively gives the maximum increment in the CBR compared with all the other combinations. Keywords: Expansive Soil, Quarry Dust, Recron-3S Fibres, Compaction and California Bearing Ratio Tests. Edition: Volume 7 Issue 8, August 2018. Pages: 929 - 933.
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The results of previously published research on the development of alternative sustainable building materials (i.e., bricks, pavers, and roofing tiles) that blend plastic waste and sand have been synthesized in this study. The following are some of the findings of this investigation:
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The physical and chemical properties of slag aggregate evidenced the feasibility of using this material as a substitute for river sand. Total of three mixes made with Ordinary Portland Cement (OPC), cement replaced with fly ash and river sand replaced with slag aggregate have been considered for this study. The mix is designed for M40 grade.
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Asian journal of civil engineering [Building and housing] Vol.8, , PP.49-62. [2]. Gurpreet Singh and Rafat siddique [2011] "Effect of waste foundry sand [WFS] as partial replacement of sand on the strength, ultrasonic pulse velocity and permeability of concrete", International journal of construction and building materials Vol.26, PP ...
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sand is fully replaced by quarry dust, Mahendra R. et al. [9]. R. IIangovana [12], the study gives attention towards physical and chemical properties of quarry dust are satisfied in respect of requirements of codal provision. The complete replacement of sand with quarry dust gives the better results in terms of compressive strength studies. 3.
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Replacement of artificial sand and recycled aggregate by using of crumb and shredded rubber Mr.Yadav S P1, Mr. Deshmukh V U2, Ms.Patil M B 3 1, 2, 3 Assistant Professor, KEC shelve, Pandharpur, Maharashatra, India. ABSTRACT-According to various research papers, it has been found that replacement of natural sand and aggregate by using
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Sand: Fine aggregate Water: Potable water Mineral admixtures: Fly ash B. Characteristic of Material Cement: 53 grade of ordinary Portland cement Aggregate: 20 mm maximum nominal size of aggregate Sand: Fine aggregate Water Cement ratio 0.35 We casted three cubes for each w/c ratio and cured these for four days.
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40% replacement of fine aggregate by quarry dust resulted in the highest compressive strength. In the study reported by Bahoria et al [4] sand was replaced with quarry dust in combination with waste plastic. A similar investigation was carried out by Aishwaryalakshmi et al [5] where up to a 30% substitution of fine aggregate was assessed.
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Considering all the previous research works, it can be understood that, papers describing foamed concrete using quarry fines are only few in number. Hence, it becomes inevitable to carry out an organized study on FC totally utilizing manufactured sand. The feasibility of substitution of manufactured sand with quarry dust is also needs to be ...
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Sand is used more than any other natural resources except water and air, However, it's extracted at a rate far greater than it's renewal. The availability of sand in the growing demand of the construction industry will be a challenge due to a wide range of variability, cost, and, quality problems. This study aims to investigate normal strength concrete by partially replacing sand with ...
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