Tuesday 21 April 2020

Quarry Mud as Partial Replacement for Fine Combination (Sand) in Concrete

Quarry Mud as Partial Replacement for Fine Combination (Sand) in Concrete

DOI: 10.4236/oalib.1104529, PP. 1-16
Subject Areas: Civil Engineering
Cite this paper
Aswinpalaniappan, S. and Panneerselvam, G. (2018). Quarry Mud as Partial Replacement for Fine Combination (Sand) in Concrete. Open Access Library Journal, 5, e4529. DOI: http://dx.doi.org/10.4236/oalib.1104529.
abstract

Concrete production has resulted inside the accumulated that has to be compelled to confirm substitute material to sand as inside the assembly of concretes. Quarry mud, a by-product of the crushing methodology throughout production activities is one in each of such materials. Granite fines or rock mud can be a by-product obtained throughout the crushing of granite rocks to boot observed as quarry mud. In recent days, there have been added several trials to use ash, academic degree industrial by-products as a partial replacement for the cement to possess higher workability, future strength and to make the concrete lots of economically accessible. This gift work could be a trial to use Quarry mud as a partial replacement for sand in concrete. Trials are created to review the properties of concrete and to research some properties of Quarry mud, the standard of those properties to alter them to be used partial replacement materials for sand in concrete. 
Keywords: Quarry Mud, Red Mud, Compressive Strength

References
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[2]  Ahmed Ahmed, E., and Ahemed Kourd, A.E. (1989) Properties of Concrete Incorporating Natural and Crushed Stone Very Fine Sand. ACI Material Journal, 86, 417-424.
[3]  Ahn, N. (2000) An Experimental Study on the Guidelines for Using Higher Contents of Aggregate Micro fines in Portland Cement Concrete. Ph.D. Dissertation, University of Texas, Austin.
[4]  
Ahn, N. and Fowler, D.W. (2001) An Experimental Study on the Guidelines for Using Higher Contents of Aggregate Micro fines in Portland Cement Concrete. International Center for Aggregates Research, Research Report ICAR 102-1F, 435.
[5]  Ahn, N. and Fowler, D.W. (2002) The Effects of High Fines on the Properties of Concrete. ICAR 10th Annual Symposium: Aggregates Asphalt Concrete, Portland Cement Concrete, Bases and Fines, 14-17 April 2002, Baltimore, 15 p.

Er.SP.ASWINPALANIAPPAN., M.E.,(Strut/.,)
Structural Engineer
Madras Terrace Architectural Works

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