Some Properties of Concrete Containing Waste Brick As Partial Replacement Of Coarse Aggregate And Addition Of Nano Brick Powder

Author:

Abdullah Duaa Jabbar,Abbas Zena K,Abed Suhair Kadhem

Abstract

Abstract The accumulation of construction and demolition waste is one of the major problems in modern construction. Hence, this research investigates the use of waste brick in concrete. Seven different concrete mixes were investigated in this study: a control concrete mix, three mixes with volumetric replacement (10, 20, and 30)% of natural aggregate with brick aggregate, and two mixes with the addition of nano brick powder at a percentage level of 5– 10% by weight of cementitious materials. And the last one was mixed with 10% nano brick and 10% coarse brick aggregate. The experimental results for the additive of nano brick powder showed an enhancement in mechanical properties (compressive, flexural, and tensile strength) compared to the control mix for all ages, while the mixes with 10% coarse brick replacement also showed a slight improvement in the mechanical properties up to 5.33%, 2.79%, and 2.38% for compressive, splitting tensile, and flexural strength, respectively, at 28 days. The nano particles modified the mechanical properties of the CBA concrete when mixed with 10% nano brick and 10% coarse brick aggregate, up to 11.54%, 8.56%, and 3.3% for compressive, flexural, and tensile strength, respectively, at 150 days.

Publisher

IOP Publishing

Subject

General Engineering

Reference38 articles.

1. Partial replacement of fine aggregate and coarse aggregate by waste glass powder and coconut shell;Animesh;Int. Res. J. Eng. Technol,2017

2. Recycled glass replacement as fine aggregate in self-compacting concrete;Sharifi;Frontiers of Structural and Civil Engineering,2013

3. Compressive Strength of Concrete Made with Quarry Rock Dust and Washed 10mm Washed Gravel as Aggregates;Ephraim;American Journal of Engineering, Technology and Society,2015

4. The effects of cement dosage on the mechanical properties of concrete produced with waste marble aggregate;Tunc,2018a

5. A critical review of waste glass powder -Multiple roles of utilization in cement-based materials and construction products;Jiang;J. Environ. Manag.,2019

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