期刊名称:International Journal of Innovative Research in Science, Engineering and Technology
印刷版ISSN:2347-6710
电子版ISSN:2319-8753
出版年度:2017
卷号:6
期号:9
页码:18381
DOI:10.15680/IJIRSET.2017.0609128
出版社:S&S Publications
摘要:The waste material generated directly in the environment can cause the environmental problem. Hencethe reuse of thiswaste material is necessary in the construction Industry. Presently large amounts of Stone dust aregenerated in natural stoneprocessing plants with an important impact on the environment and humans. Stone wastes aregenerated as a waste duringthe process of cutting and polishing of Marble/Granite/Kotastone/Jodhpurstone. Stoneindustry produces large amounts of Stone wastewhich causes environmental problems.The work is regarding, how tomake stone waste sand obtained from stone industries after cutting the stonewhich has low compressive strength andthus has nil cohesion and high permeability, useful for construction of embankments for all engineering works andimproves the engineering characteristics of soil and also useful for manufacturing of bricks. This paper analysisdiscusses the potential of stone waste sand stabilization with white cementas admixture. Present work has been takenup by addition of white cementas admixture. The varying percentage 6%,8%, 10%,12% and 14% of white cement weremixed with stone waste sand of different densities and moisture content. All the Compressive Strength Tests wereconducted at different mix compositions of normal cement and waste sand of different dry densities as arrived fromStandard Proctor Test. On the basis of the experiments performed, it is determined that the stabilization of stone wastesand with white cement as admixture improves the strength characteristics of the waste sand so that it becomes usableas construction of embankment and manufacturing of bricks. And also we manufacture a brick that is of mixture ofstone sand waste and white cement and the strength of this brick is as similar as II class brick.
关键词:Compressive Strength Tests; C.B.R. Test; Standard Proctor Test; Stone Waste Sand; White Cement.