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Experimental Investigation on Mechanical Properties of Lightweight Aggregate Concrete


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[1] PARHIZKAR, T. - NAJIMI, M. - POURKHORSHIDI, A. R.: Application of Pumice Aggregate in Structural Lightweight Concrete. Asian Journal of Civil Engineering, Vol. 13, Iss. 1, 2011, pp. 43-54. Search in Google Scholar

[2] MANGURIU, N. - MUTKU, G. N. - RAPHAEL, O. - WALTER, O. - SILVESTRE, O. A.: Properties of Pumice Lightweight Aggregate. Civil and Environmental Research, Vol. 2, Iss.10, 2012, pp. 58-67. Search in Google Scholar

[3] NEVILLE, M.: Properties of Concrete. Addison Wesley Longman Ltd., 2008. Search in Google Scholar

[4] SHAFIGH, P. - ALENGARAM, U. J. - MAHMUD, H. B. - JUMAAT, M. Z.: Engineering Properties of Oil Palm Shell Lightweight Concrete Containing Fly Ash. Elsevier, Vol. 49, 2013, pp. 613-62.10.1016/j.matdes.2013.02.004 Search in Google Scholar

[5] MON, T. K.: Performance of Concrete with Uncrushed Palm Oil Shell as Coarse Aggregate. Faculty of Civil Engineering Universiti Teknologi, Malaysia, 2012. Search in Google Scholar

[6] RAJESWARI, S. - GEORGE, S.: Experimental Study of Light Weight Concrete by Partial Replacement of Coarse Aggregate Using Pumice Aggregate. International Journal of Scientific Engineering and Research, Vol. 4, Iss. 5, 2015, pp. 50-53. Search in Google Scholar

[7] ASHTAR, S. – DIYAR, N.: Mechanical Properties of Concrete with Recycled Plastic Waste. Civil and Environmental Engineering, Vol. 17, Iss. 2, 2021, pp. 629-643.10.2478/cee-2021-0063 Search in Google Scholar

[8] ALEXANDER, M. G. - MINDNESS, S.: Aggregates in Concrete, 1st Edition. Taylor and Francis Publication, 2005, 448p.10.1201/9781482264647 Search in Google Scholar

[9] SATISH, C. - LEIF, B.: Lightweight Aggregate Concrete Science Technology and Application. Noyes Publications, 2002, 450 p. Search in Google Scholar

[10] BRYAN - DENNIS, S. P.: Occurrence and uses of Natural Lightweight Aggregate in the Western United States. Lightweight aggregate in Western United States, 1989, pp. 89-193. Search in Google Scholar

[11] OWENS, P. L.: Lightweight aggregates for structural concrete. Structural Lightweight Aggregate Concrete. Chapman and Hall, London, 1993, pp.1-18. Search in Google Scholar

[12] HOSSAIN, K. M. A.: Properties of Volcanic Pumice Based Cement and Lightweight Concrete. Cement and Concrete Research, Vol. 34, Iss. 2, 2004, pp. 283-291.10.1016/j.cemconres.2003.08.004 Search in Google Scholar

[13] IS 516:1959: Method of Tests for Strength of concrete. Bureau of Indian Standard, New Delhi. Search in Google Scholar

[14] IS 10262:2009: Indian Standard, recommended guidelines for concrete mix designs. Bureau of Indian Standard, New Delhi. Search in Google Scholar

[15] IS 456: 2000: Indian Standard, Plane and reinforced Concrete-Code of practice. Bureau of Indian Standard, New Delhi. Search in Google Scholar

[16] DELSYE, C. L. T. - MANNAN, M. A. - KURIAN, J. V.: Flexural Behaviour of Reinforced Lightweight Concrete Beams made with Oil Palm Shell (OPS). Journal of Advanced Concrete Technology, Vol. 4, No. 3, 2006, pp.1-10.10.3151/jact.4.459 Search in Google Scholar

[17] OMAR, W. - MOHAMED, R. N.: The Performance of Pre-Tensioned Pre-Stressed Concrete Beams Made with Lightweight Concrete. Journal of Civil Engineering, Vol.14, Iss.1, 2002, pp. 60-70. Search in Google Scholar

[18] KHAN, M. M. H. - WEI, L. G. - DEEPAK, T. J. - NAIR, S.: Use of Oil Palm Shell as Replacement of Coarse Aggregate for Investigating Properties of Concrete. International Journal of Applied Engineering Research, Vol. 11, 2016, pp. 2379-2383. Search in Google Scholar

[19] DATTATREYA, J. K. - RAJAMANE, N. P. - SABITHA, D. - AMBILY, P. S. - NATARAJA, M. C.: Flexural Behaviour of Reinforced Geo-Polymer Concrete Beams. International Journal of Civil and Structural Engineering, Vol. 2, Iss.1, 2011, pp. 138-159. Search in Google Scholar

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