Compressive Strength and Shrinkage Behavior of Concrete Produced from Portland Limestone Cement with Water Absorption Polymer Balls

Author:

Al-Mulla Ikram F. Ahmed1,Al-Rihimy Ammar S.2,Al-Shamaa Mushriq F.1

Affiliation:

1. University of Baghdad

2. University of Technology

Abstract

From the sustainability point of view a combination of using water absorption polymer balls in concrete mix produce from Portland limestone cement (IL) is worth to be perceived. Compressive strength and drying shrinkage behavior for the mixes of concrete prepared by Ordinary Portland Cement (O.P.C) and Portland limestone cement (IL) were investigated in this research. Water absorbent polymer balls (WAPB) are innovative module in producing building materials due to the internal curing which eliminates autogenous shrinkage, enhances the strength at early age, improve the durability, give higher compressive strength at early age, and reduce the effect of insufficient external curing. Polymer balls (WAPB) had been used in the mixes of this research to provide good progress in compressive strength with time. Water absorption polymer balls have the ability to absorb water and after usage in concrete it will spill it out and shrink leaving voids of their own diameter before shrinking that lead to provide internal curing. The required quantity of water for the mixes were reduced due to the addition of water from the absorption polymers. Mixes produced from Portland limestone cement in this research show drying shrinkage results and compressive strength results lower than mixes made from ordinary Portland cement.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference14 articles.

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3. L.K. Aggarwal, P.C. Thapliyal, and S.R. Harad, Properties of polymer mortar using epoxy and acrylic emulsions, Construction and Building Materials, 21 2007 379-383.

4. M.O. Jensen, Use of superabsorbent polymers in concrete, Concrete International, January (2013).

5. E.P. Kearsely and P.J. Wainwright, Porosity and permeability of foamed concrete, Cement and Concrete Research, 2 1972 91-100.

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