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Influence of accelerated curing on the compressive strength of polymer-modified concrete
Authors:Izhar AHMAD  Kashif Ali KHAN  Tahir AHMAD  Muhammad ALAM  Muhammad Tariq BASHIR
Affiliation:1. College of Civil and Transportation Engineering, Hohai University, Nanjing 210098, China2. Department of Civil Engineering, Muslim Youth University, Islamabad 44000, Pakistan3. Department of Civil Engineering, CECOS University of IT & Emerging Sciences, Peshawar 25000, Pakistan4. Department of Civil Engineering, University of Engineering & Technology, Mardan 23200, Pakistan
Abstract:In recent building practice, rapid construction is one of the principal requisites. Furthermore, in designing concrete structures, compressive strength is the most significant of all parameters. While 3-d and 7-d compressive strength reflects the strengths at early phases, the ultimate strength is paramount. An effort has been made in this study to develop mathematical models for predicting compressive strength of concrete incorporating ethylene vinyl acetate (EVA) at the later phases. Kolmogorov-Smirnov (KS) goodness-of-fit test was used to examine distribution of the data. The compressive strength of EVA-modified concrete was studied by incorporating various concentrations of EVA as an admixture and by testing at ages of 28, 56, 90, 120, 210, and 365 d. An accelerated compressive strength at 3.5 hours was considered as a reference strength on the basis of which all the specified strengths were predicted by means of linear regression fit. Based on the results of KS goodness-of-fit test, it was concluded that KS test statistics value (D) in each case was lower than the critical value 0.521 for a significance level of 0.05, which demonstrated that the data was normally distributed. Based on the results of compressive strength test, it was concluded that the strength of EVA-modified specimens increased at all ages and the optimum dosage of EVA was achieved at 16% concentration. Furthermore, it was concluded that predicted compressive strength values lies within a 6% difference from the actual strength values for all the mixes, which indicates the practicability of the regression equations. This research work may help in understanding the role of EVA as a viable material in polymer-based cement composites.
Keywords:compressive strength prediction  polymer-modified concrete  linear regression fit  early age strength  ethylene vinyl acetate  
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